ENTEROCOCCUS FAECALIS POLYNUCLEOTIDES AND POLYPEPTIDES

Information

  • Patent Application
  • 20020045737
  • Publication Number
    20020045737
  • Date Filed
    May 04, 1998
    27 years ago
  • Date Published
    April 18, 2002
    23 years ago
Abstract
The present invention relates to novel genes from E. faecalis and the polypeptides they encode. Also provided as are vectors, host cells, antibodies and methods for producing the same. The invention further relates to screening methods for identifying agonists and antagonists of E. faecalis polypeptide activity. The invention additionally relates to diagnostic methods for detecting Enterococcus nucleic acids, polypeptides and antibodies in a biological sample. The present invention further relates to novel vaccines for the prevention or attenuation of infection by Enterococcus.
Description


FIELD OF THE INVENTION

[0002] The present invention relates to novel Enterococcus faecalis genes (E. faecalis) nucleic acids and polypeptides. Also provided are vectors, host cells and recombinant methods for producing the same. Further provided are diagnostic methods for detecting Enterococcus faecalis using probes, primers, and antibodies to the E. faecalis nucleic acids and polypeptides of the present invention. The invention further relates to screening methods for identifying agonists and antagonists of E. faecalis polypeptide activity and to vaccines using E. faecalis nucleic acids and polypeptides.



BACKGROUND OF THE INVENTION

[0003] Enterococci have been recognized as being pathogenic for humans since the turn of the century when they were first described by Thiercelin in 1988 as microscopic organisms. The genus Enterococcus includes the species Enterococcus faecalis or E. faecalis which is the most common pathogen in the group, accounting for 80-90 percent of all enterococcal infections. See Lewis et al. (1990) Eur J. Clin Microbiol Infect Dis.9:111-117.


[0004] The incidence of enterococcal infections has increased in recent years and enterococci are now the second most frequently reported nosocomial pathogens. Enterococcal infection is of particular concern because of its resistance to antibiotics. Recent attention has focused on enterococci not only because of their increasing role in nosocomial infections, but also because of their remarkable and increasing resistance to antimicrobial agents. These factors are mutually reinforcing since resistance allows enterococci to survive in an environment in which antimicrobial agents are heavily used; the hospital setting provides the antibiotics which eliminate or suppress susceptible bacteria, thereby providing a selective advantage for resistant organisms, and the hospital also provides the potential for dissemination of resistant enterococci via the usual routes of hand and environmental contamination.


[0005] Antimicrobial resistance can be divided into two general types, inherent or intrinsic property and that which is acquired. The genes for intrinsic resistance, like other species characteristics, appear to reside on the chromosome. Acquired resistance results from either a mutation in the existing DNA or acquisition of new DNA. The various inherent traits expressed by enterococci include resistance to semisynthetic penicillinase-resistant penicillins, cephalosporins, low levels of aminoglycosides, and low levels of clindamycin. Examples of acquired resistance include resistance to chloramphenicol, erythromycin, high levels of clindamycin, tetracycline, high levels of aminoglycosides, penicillin by means of penicillinase, fluoroquinolones, and vancomycin. Resistance to high levels of penicillin without penicillinase and resistance to fluoroquinolones are not known to be plasmid or transposon mediated and presumably are due to mutation(s).


[0006] Although the main reservoir for enterococci in humans is the gastrointestinal tract, the bacteria can also reside in the gallbladder, urethra and vagina.


[0007]

E. faecalis
has emerged as an important pathogen in endocarditis, bacteremia, urinary tract infections (UTIs), intraabdominal infections, soft tissue infections, and neonatal sepsis. See Lewis et al. (1990) supra. In the 1970s and 1980s enterococci became firmly established as major nosocomial pathogens. They are now the fourth leading cause of hospital-acquired infection and the third leading cause of bacteremia in the United States. Fatality ratios for enterococcal bactermia range from 12% to 68%, with death due to enterococcal sepsis in 4 to 50% of these cases. See T. G. Emori (1993) Clin. Microbiol. Rev. 6:428-442.


[0008] The ability of enterococci to colonize the gastrointestinal tract, plus the many intrinsic and acquired resistance traits, means that these organisms, which usually seem to have relatively low intrinsic virulence, are given an excellent opportunity to become secondary invaders. Since nosocomial isolates of enterococci have displayed resistance to essentially every useful antimicrobial agent, it will likely become increasingly difficult to successfully treat and control enterococcal infections. Particularly when the various resistance genes come together in a single strain, an event almost certain to occur at some time in the future.


[0009] The etiology of diseases mediated or exacerbated by Enterococcus faecalis, involves the programmed expression of E. faecalis genes, and that characterizing these genes and their patterns of expression would dramatically add to our understanding of the organism and its host interactions. Knowledge of the E. faecalis gene and genomic organization would improve our understanding of disease etiology and lead to improved and new ways of preventing, treating and diagnosing diseases. Thus, there is a need to characterize the genome of E. faecalis and for polynucleotides of this organism.



SUMMARY OF THE INVENTION

[0010] The present invention provides for isolated E. faecalis polynucleotides and polypeptides shown in Table 1 and SEQ ID NO:1 through SEQ ID NO:496 (polynucleotide sequences having odd SEQ ID NOs and polypeptide sequences having even SEQ ID NOs). One aspect of the invention provides isolated nucleic acid molecules comprising polynucleotides having a nucleotide sequence selected from the group consisting of: (a) a nucleotide sequence shown in Table 1; (b) a nucleotide sequence encoding any of the amino acid sequences of the polypeptides shown in Table 1; and (c) a nucleotide sequence complementary to any of the nucleotide sequences in (a) or (b). The invention further provides for fragments of the nucleic acid molecules of (a), (b) & (c) above.


[0011] Further embodiments of the invention include isolated nucleic acid molecules that comprise a polynucleotide having a nucleotide sequence at least 90% identical, and more preferably at least 95%, 96%, 97%, 98% or 99% identical, to any of the nucleotide sequences in (a), (b) or (c) above, or a polynucleotide which hybridizes under stringent hybridization conditions to a polynucleotide in (a), (b) or (c) above. Additional nucleic acid embodiments of the invention relate to isolated nucleic acid molecules comprising polynucleotides which encode the amino acid sequences of epitope-bearing portions of a E. faecalis polypeptide having an amino acid sequence in (a) above.


[0012] The present invention also relates to recombinant vectors, which include the isolated nucleic acid molecules of the present invention, and to host cells containing the recombinant vectors, as well as to methods of making such vectors and host cells. The present invention further relates to the use of these vectors in the production of E. faecalis polypeptides or peptides by recombinant techniques.


[0013] The invention further provides isolated E. faecalis polypeptides having an amino acid sequence selected from the group consisting of an amino acid sequence of any of the polypeptides described in Table 1 or fragments thereof.


[0014] The polypeptides of the present invention also include polypeptides having an amino acid sequence with at least 70% similarity, and more preferably at least 75%, 80%, 85%, 90%, 95%, 96%, 97%, 98%, or 99% similarity to those described in Table 1, as well as polypeptides having an amino acid sequence at least 70% identical, more preferably at least 75% identical, and still more preferably 80%, 85%, 90%, 95%, 96%, 97%, 98%, or 99% identical to those above; as well as isolated nucleic acid molecules encoding such polypeptides.


[0015] The present invention further provides a single or multi-component vaccine comprising one or more of the E. faecalis polynucleotides or polypeptides described in Table 1, or fragments thereof, together with a pharmaceutically acceptable diluent, carrier, or excipient, wherein the E. faecalis polypeptide(s) are present in an amount effective to elicit an immune response to members of the Enterococcus genus. or at least E. faecalis, in an animal. The E. faecalis polypeptides of the present invention may further be combined with one or more immunogens of one or more other Enterococcal or non-Enterococcal organisms to produce a multi-component vaccine intended to elicit an immunological response against members of the Enterococcus genus and, optionally, one or more non-Enterococcal organisms.


[0016] The vaccines of the present invention can be administered in a DNA form, e.g., “naked” DNA, wherein the DNA encodes one or more Enterococcal polypeptides and, optionally, one or more polypeptides of a non-Enterococcal organism. The DNA encoding one or more polypeptides may be constructed such that these polypeptides are expressed as fusion proteins.


[0017] The vaccines of the present invention may also be administered as a component of a genetically engineered organism or host cell. Thus, a genetically engineered organism or host cell which expresses one or more E. faecalis polypeptides may be administered to an animal. For example, such a genetically engineered organism or host cell may contain one or more E. faecalis polypeptides of the present invention intracellularly, on its cell surface, or in its periplasmic space. Further, such a genetically engineered organism or host cell may secrete one or more E. faecalis polypeptides. The vaccines of the present invention may also be co-administered to an animal with an immune system modulator (e.g., CD86 and GM-CSF).


[0018] The invention also provides a method of inducing an immunological response in an animal to one or more members of the Enterococcus genus, preferably one or more isolates of the E. faecalis species, comprising administering to the animal a vaccine as described above.


[0019] The invention further provides a method of inducing a protective immune response in an animal, sufficient to prevent, attenuate, or control an infection by members of the Enterococcus genus, preferably at least E. faecalis species, comprising administering to the animal a composition comprising one or more of the polynucleotides or polypeptides described in Table 1, or fragments thereof. Further, these polypeptides, or fragments thereof, may be conjugated to another immunogen and/or administered in admixture with an adjuvant.


[0020] The invention further relates to antibodies elicited in an animal by the administration of one or more E. faecalis polypeptides of the present invention and to methods for producing such antibodies and fragments thereof. The invention further relates to recombinant antibodies and fragments thereof and to methods for producing such antibodies and fragments thereof.


[0021] The invention also provides diagnostic methods for detecting the expression of the polynucleotides of Table 1 by members of the Enterococcits genus in an animal. One such method involves assaying for the expression of a polynucleotide encoding E. faecalis polypeptides in a sample from an animal. This expression may be assaved either directly (e.g., by assaying polypeptide levels using antibodies elicited in response to amino acid sequences described in Table 1) or indirectly (e.g., by assaying for antibodies having specificity for amino acid sequences described in Table 1). The expression of polynucleotides can also be assayed by detecting the nucleic acids of Table 1. An example of such a method involves the use of the polymerase chain reaction (PCR) to amplify and detect Enterococcus nucleic acid sequences.


[0022] The present invention also relates to nucleic acid probes having all or part of a nucleotide sequence described in Table 1 (odd SEQ ID NOs) which are capable of hybridizing under stringent conditions to Enterococcus nucleic acids. The invention further relates to a method of detecting one or more Enterococcus nucleic acids in a biological sample obtained from an animal, said one or more nucleic acids encoding Enterococcus polypeptides, comprising: (a) contacting the sample with one or more of the above-described nucleic acid probes, under conditions such that hybridization occurs, and (b) detecting hybridization of said one or more probes to the Enterococczis nucleic acid present in the biological sample.


[0023] Other uses of the polypeptides of the present invention include: inter alia, to detect E. faecalis immunoassays, as epitope tags, as molecular weight markers on SDS-PAGE gels, as molecular weight markers for molecular sieve gel filtration columnns, to generate antibodies that specificaly bind E. faecalis polypeotides of the present invention for the detection E. faecalis in irrununoassays, to generate an immune response against E. faecalis and other Enterococczus species, and as vaccines against E. faecalis, other Enterococcus species and other bacteria genuses.


[0024] Isolated nucleic acid molecules of the present invention, particularly DNA molecules, are useful as probes for gene mapping and for identifying E. faecalis in a biological samples, for instance, by Southern and Northern blot analysis. Polynucleotides of the present invention are also useful in detecting E. faecalis by PCR using primers for a particular E. faecalis polynucleotide. Isolated polynucleotides of the present invention are also useful in making the polypeptides of the present invention.







DETAILED DESCRIPTION

[0025] The present invention relates to recombinant E. faecalis nucleic acids and fragments thereof. The present invention further relates to recombinant E. faecalis polypeptides and fragments thereof. The invention also relates to methods for using these polypeptides to produce immunological responses and to confer immunological protection to disease caused by members of the genus Entejococcus, at least isolates of the E. faecalis genus. The invention further relates to nucleic acid sequences which encode antigenic E. faecalis polypeptides and to methods for detecting E. faecalis nucleic acids and polypeptides in biological samples. The invention also relates to antibodies specific for the polypeptides and peptides of the present invention and methods for detecting such antibodies produced in a host animal.


[0026] Definitions


[0027] The following definitions are provided to clarify the subject matter which the inventors consider to be the present invention.


[0028] As used herein, the phrase “pathogenic agent” means an agent which causes a disease state or affliction in an animal. Included within this definition, for examples, are bacteria, protozoans, fungi, viruses and metazoan parasites which either produce a disease state or render an animal infected with such an organism susceptible to a disease state (e.g., a secondary infection). Further included are species and strains of the genus Enterococcus which produce disease states in animals.


[0029] As used herein, the term “organism” means any living biological system, including viruses, regardless of whether it is a pathogenic agent.


[0030] As used herein, the term “Enterococczs” means any species or strain of bacteria which is members of the genus Enterococcus. Such species and strains are known to those of skill in the art, and include those that are pathogenic and those that are not.


[0031] As used herein, the phrase “one or more E. faecalis polypeptides of the present invention” means polypeptides comprising the amino acid sequence of one or more of the E. faecalis polypeptides described in Table 1 (even SEQ ID NOs). These polypeptides may be expressed as fusion proteins wherein the E. faecalis polypeptides of the present invention are linked to additional amino acid sequences which may be of Enterococcal or non-Enterococcal origin. This phrase further includes polypeptide comprising fragments of the E. faecalis polypeptides of the present invention. Additional definitions are provided throughout the specification.


[0032] Explanation of Table 1


[0033] Table 1, below, provides information describing genes which encode polypeptides of E. faecalis. The table lists the gene identifier which consists of the letters EF, which denote E. faecalis, followed immediately by a three digit numeric code, which arbitrarily number the E. faecalis genes of the present invention. A number from 1 through 4 follows the three digit number. A number 1 represents the full length open reading frame of the gene specified by the preceeding three digit number. A number 2 represents the full length potypeptide encoded by the gene specified the preceeding three digit number. A number 3 represents a polynucleotide fragment, of the gene represented by the preceeding three digit number, used to produce an antigenic polypeptide. A number 4 represents an antigenic polypeptide fragment, of the gene represented by the preceeding three digit number, used to stimulate an immune response or as a vaccine. The nucleotide and amino acid sequences of each gene and fragment are also shown in the Sequence Listing under the SEQ ID NO listed in Table 1.


[0034] Explanation of Table 2


[0035] Table 2 lists accession numbers for the closest matching sequences between the polypeptides of the present invention and those available through GenBank and Derwent databases. These reference numbers are the database entry numbers commonly used by those of skill in the art, who will be familar with their denominations. The descriptions of the numenclature for GenBank are available from the National Center for Biotechnology Information. Column 1 lists the gene or ORF of the present invention. Column 2 lists the accession number of a “match” gene sequence in GenBank or Derwent databases. Column 3 lists the description of the “match” gene sequence. Columns 4 and 5 are the high score and smallest sum probability, respectively, calculated by BLAST. Polypeptides of the present invention that do not share significant identity/similarity with any polypeptide sequences of GenBank and Derwent are not represented in Table 2. Polypeptides of the present invention that share significant identity/similarity with more than one of the polypeptides of GenBank and Derwent are represented more than once.


[0036] Explanation of Table 3.


[0037] The E. faecalis polypeptides of the present invention may include one or more conservative amino acid substitutions from natural mutations or human manipulation as indicated in Table 3. Changes are preferably of a minor nature, such as conservative amino acid substitutions that do not significantly affect the folding or activity of the protein. Residues from the following groups, as indicated in Table 3, may be substituted for one another: Aromatic, Hydrophobic, Polar, Basic, Acidic, and Small,


[0038] Explanation of Table 4


[0039] Table 4 lists residues comprising antigenic epitopes of antigenic epitope-bearing fragments present in each of the full length E. faecalis polypeptides described in Table 1 as predicted by the inventors using the algorithm of Jameson and Wolf, (1988) Comp. Appl. Biosci. 4:181-186. The Jameson-Wolf antigenic analysis was performed using the computer program PROTEAN (Version 3.11 for the Power MacIntosh, DNASTAR, Inc., 1228 South Park Street Madison, Wis.). E. faecalis polypeptide shown in Table 1 may one or more antigenic epitopes comprising residues described in Table 4. It will be appreciated that depending on the analytical criteria used to predict antigenic determinants, the exact address of the determinant may vary slightly. The residues and locations shown described in Table 4 correspond to the amino acid sequences for each full length gene sequence shown in Table 1 and in the Sequence Listing. Polypeptides of the present invention that do not have antigenic epitopes recognized by the Jameson-Wolf algorithm are not represented in Table 2.


[0040] Selection of Nucleic Acid Sequences Encoding Antigenic E. Faecalis Polypeptides


[0041] Sequenced E. faecalis genomic DNA was obtained from the E. faecalis strain V586. The E. faecalis strain V586 was deposited May 2, 1997 at the ATCC. 10801 University Blvd. Manassas, Va20110-2209, and given accession number 55969.


[0042] Some ORFs contained in the subset of fragments of the E. faecalis genome disclosed herein were derived through the use of a number of screening criteria detailed below. The ORFs are bounded at the amino terminus by a methionine or valine residue and usually at the carboxy terminus by a stop codon.


[0043] Most of the selected sequences consist of complete ORFs. The polypeptides that do not comprise a complete ORF can be determined by determining whether the corresponding polynucleotide sequence comprises a stop codon after the codon for the last amino acid residue in the polypeptide sequence. It is not always preferred to express a complete ORF in a heterologous system. It may be challenging to express and purify a highly hydrophobic protein by common laboratory methods. Some of the polypeptide vaccine candidates described herein have been modified slightly to simplify the production of recombinant protein. For example, nucleotide sequences which encode highly hydrophobic domains, such as those found at the amino terminal signal sequence, have been excluded from some constructs used for expression of the polypeptides. Furthermore, any highly hydrophobic amino acid sequences occurring at the carboxy terminus have also been excluded from the recombinant expression constructs. Thus, in one embodiment, a polypeptide which represents a truncated or modified ORF may be used as an antigen.


[0044] While numerous methods are known in the art for selecting potentially immunogenic polypeptides, many of the ORFs disclosed herein were selected on the basis of screening Enterococcus faecalis ORFs for several aspects of potential immunogenicity. One set of selection criteria are as follows:


[0045] 1. Type I signal sequence: An amino terminal type I signal sequence generally directs a nascent protein across the plasma and outer membranes to the exterior of the bacterial cell. Experimental evidence obtained from studies with Escherichia coli suggests that the typical type I signal sequence consists of the following biochemical and physical attributes (Izard, J. W. and Kendall, D. A. Mol. Microbiol. 13:765-773 (1994)). The length of the type I signal sequence is approximately 15 to 25 primarily hydrophobic amino acid residues with a net positive charge in the extreme amino terminus. In addition, the central region of the signal sequence adopts an alpha-helical conformation in a hydrophobic environment. Finally, the region surrounding the actual site of cleavage is ideally six residues long, with small side-chain amino acids in the −1 and −3 positions.


[0046] 2. Type IV signal sequence: The type IV signal sequence is an example of the several types of functional signal sequences which exist in addition to the type I signal sequence detailed above. Although functionally related, the type IV signal sequence possesses a unique set of biochemical and physical attributes (Strom, M. S. and Lory, S., J Bacteriol. 174:7345-7351 (1992)). These are typically six to eight amino acids with a net basic charge followed by an additional sixteen to thirty primarily hydrophobic residues. The cleavage site of a type IV signal sequence is typically after the initial six to eight amino acids at the extreme amino terminus. In addition, type IV signal sequences generally contain a phenylalanine residue at the +1 site relative to the cleavage site.


[0047] 3. Lipoprotein: Studies of the cleavage sites of twenty-six bacterial lipoprotein precursors has allowed the definition of a consensus amino acid sequence for lipoprotein cleavage. Nearly three-fourths of the bacterial lipoprotein precursors examined contained the sequence L—(A,S)—(G,A)—C at positions −3 to +1, relative to the point of cleavage (Hayashi, S. and Wu, H. C., J Bioenerg. Biomembr. 22:451-471 (1 990)).


[0048] 4. LPXTG motif: It has been experimentally determined that most anchored proteins found on the surface of gram-positive bacteria possess a highly conserved carboxy terminal sequence. More than fifty such proteins from organisms such as S. pyogenes, S. mutans, E. fa ecalis, S. pneumoniae, and others, have been identified based on their extracellular location and carboxy terminal amino acid sequence (Fischetti, V. A., ASM News 62:405-410 (1996)). The conserved region consists of six charged amino acids at the extreme carboxy terminus coupled to 15-20 hydrophobic amino acids presumed to function as a transmembrane domain. Immediately adjacent to the transmembrane domain is a six amino acid sequence conserved in nearly all proteins examined. The amino acid sequence of this region is L-P-X-T-G-X, where X is any amino acid.


[0049] An algorithm for selecting antigenic and immunogenic Enterococcis faecalis polypeptides including the foregoing criteria was developed. The algorithm is similar to that described in U.S. patent application Ser. No. 08/781,986, filed Jan. 3, 1997, which is fully incorporated by reference herein. Use of the algorithm by the inventors to select immunologically useful Enterococcus faecalis polypeptides resulted in the selection of a number of the disclosed ORFs. Polypeptides comprising the polypeptides identified in this group may be produced by techniques standard in the art and as further described herein.


[0050] Nucleic Acid Molecules


[0051] Sequenced E. faecalis genomic DNA was obtained from the E. faecalis strain V586. As discussed elsewhere hererin, polynucleotides of the present invention readily may be obtained by routine application of well known and standard procedures for cloning and sequencing DNA. Detailed methods for obtaining libraries and for sequencing are provided below, for instance. A wide variety of Enterococcus faecalis strains that can be used to prepare E. faecalis genomic DNA for cloning and for obtaining polynucleotides and polypeptides of the present invention. A wide variety of Enterococcus faecalis strains are available to the public from recognized depository institutions, such as the American Type Culture Collection (ATCC). It is recognized that minor variation is the nucleic acid and amino acid sequence may be expected from E. faecalis strain to strain. The present invention provides for genes, including both polynucleotides and polypeptides, of the of the present invention from all the Enterococcus faecalis strains.


[0052] Unless otherwise indicated, all nucleotide sequences determined by sequencing a DNA molecule herein were determined using an automated DNA sequencer (such as the Model 373 from Applied Biosystems, Inc., Foster City, Calif.), and all amino acid sequences of polypeptides encoded by DNA molecules determined herein were predicted by translation of a DNA sequence determined as above. Therefore, as is known in the art for any DNA sequence determined by this automated approach, any nucleotide sequence determined herein may contain some errors. Nucleotide sequences determined by automation are typically at least about 90% identical, more typically at least about 95% to at least about 99.9% identical to the actual nucleotide sequence of the sequenced DNA molecule. The actual sequence can be more precisely determined by other approaches including manual DNA sequencing methods well known in the art. As is also known in the art, a single insertion or deletion in a determined nucleotide sequence compared to the actual sequence will cause a frame shift in translation of the nucleotide sequence such that the predicted amino acid sequence encoded by a determined nucleotide sequence will be completely different from the amino acid sequence actually encoded by the sequenced DNA molecule, beginning at the point of such an insertion or deletion. In case of conflict between Table 1 and either the nucleic acid sequence of the clones listed in Table 1 or the amino acid sequence of the protein expressed by the clones listed in Table 1, the clones listed in Table 1 are controlling. By “nucleotide sequence” of a nucleic acid molecule or polynucleotide is intended to mean either a DNA or RNA sequence.Using the information provided herein, such as the nucleotide sequence in Table 1, a nucleic acid molecule of the present invention encoding a E. faecalis polypeptide may be obtained using standard cloning and screening procedures, such as those for cloning DNAs using genomic DNA as starting material. See, e.g., Sambrook et al. MOLECULAR CLONING: A LABORATORY MANUAL (Cold Spring Harbor, N.Y. 2nd ed. 1989); Ausubel et al., CURRENT PROTOCALS IN MOLECULAR BIOLOGY (John Wiley and Sons, N.Y. 1989). Illustrative of the invention, the nucleic acid molecule described in Table 1 was discovered in a DNA library derived from a E. faecalis genomic DNA.


[0053] Nucleic acid molecules of the present invention may be in the form of RNA, such as mRNA, or in the form of DNA, including, for instance, DNA and genomic DNA obtained by cloning or produced synthetically. The DNA may be double-stranded or single-stranded. Single-stranded DNA or RNA may be the coding strand, also known as the sense strand, or it may be the non-coding strand, also referred to as the anti-sense strand.


[0054] By “isolated” nucleic acid molecule(s) is intended a nucleic acid molecule. DNA or RNA, which has been removed from its native environment. This includes segments of DNA comprising the E. faecalis polynucleotides of the present invention isolated from the native chromosome. These fragments include both isolated fragments consisting only of E. faecalis DNA and fragments comprising heterologous sequences such as vector sequences or other foreign DNA. For example, recombinant DNA molecules contained in a vector are considered isolated for the purposes of the present invention. Further examples of isolated DNA molecules include recombinant DNA molecules maintained in heterologous host cells or purified (partially or substantially) DNA molecules in solution. Isolated RNA molecules include in vivo or in vitro RNA transcripts of the DNA molecules of the present invention. Isolated nucleic acid molecules according to the present invention further include such molecules produced synthetically.


[0055] In addition, isolated nucleic acid molecules of the invention include DNA molecules which comprise a sequence substantially different from those described above but which, due to the degeneracy of the genetic code, still encode a E. faecalis polypeptides and peptides of the present invention (e.g. polypeptides of Table 1). That is, all possible DNA sequences that encode the E. faecalis polypeptides of the present invention. This includes the genetic code and species-specific codon preferences known in the art. Thus, it would be routine for one skilled in the art to generate the degenerate variants described above, for instance, to optimize codon expression for a particular host (e.g., change codons in the bacteria mRNA to those preferred by a mammalian or other bacterial host such as E. coli).


[0056] The invention further provides isolated nucleic acid molecules having the nucleotide sequence shown in Table 1 or a nucleic acid molecule having a sequence complementary to one of the above sequences. Such isolated molecules, particularly DNA molecules, are useful as probes for gene mapping and for identifying E. faecalis in a biological sample, for instance, by PCR, Southern blot, Northern blot, or other form of hybridization analysis.


[0057] The present invention is further directed to nucleic acid molecules encoding portions or fragments of the nucleotide sequences described herein. Fragments include portions of the nucleotide sequences of Table 1, or the E. faecalis nucleotide sequences contained in the plasimd clones listed in Table 1, at least 10 contiguous nucleotides in length selected from any two integers, one of which representing a 5′ nucleotide position and a second of which representing a 3′ nucleotide position, where the first nucleotide for each nucleotide sequence in Table 1 is position 1. That is, every combination of a 5′ and 3′ nucleotide position that a fragment at least 10 contiguous nucleotides in length could occupy is included in the invention. At least means a fragment may be 10 contiguous nucleotide bases in length or any integer between 10 and the length of an entire nucleotide sequence of Table 1 minus 1. Therefore, included in the invention are contiguous fragments specified by any 5′ and 3′ nucleotide base positions of a nucleotide sequences of Table 1 wherein the contiguous fragment is any integer between 10 and the length of an entire nucleotide sequence minus 1.


[0058] Further, the invention includes polynucleotides comprising fragments specified by size, in nucleotides, rather than by nucleotide positions. The invention includes any fragment size, in contiguous nucleotides, selected from integers between 10 and the length of an entire nucleotide sequence minus 1. Preferred sizes of contiguous nucleotide fragments include 20 nucleotides, 30 nucleotides, 40 nucleotides, 50 nucleotides. Other preferred sizes of contiguous nucleotide fragments, which may be useful as diagnostic probes and primers, include fragments 50-300 nucleotides in length which include, as discussed above, fragment sizes representing each integer between 50-300. Larger fragments are also useful according to the present invention corresponding to most, if not all, of the nucleotide sequences shown in Table 1 or of the E. faecalis nucleotide sequences of the plasimd clones listed in Table 1. The preferred sizes are, of course, meant to exemplify not limit the present invention as all size fragments, representing any integer between 10 and the length of an entire nucleotide sequence minus 1, are included in the invention. Additional preferred nucleic acid fragments of the present invention include nucleic acid molecules encoding epitope-bearing portions of E. faecalis polypeptides identified in Table 4.


[0059] The present invention also provides for the exclusion of any fragment, specified by 5′ and 3′ base positions or by size in nucleotide bases as described above for any nucleotide sequence of Table 1 or the plasmid clones listed in Table 1. Any number of fragments of nucleotide sequences in Table 1 or the plasimd clones listed in Table 1, specified by 5′ and 3′ base positions or by size in nucleotides, as described above, may be excluded from the present invention.


[0060] In another aspect, the invention provides an isolated nucleic acid molecule comprising a polynucleotide which hybridizes under stringent hybridization conditions to a portion of a polynucleotide in a nucleic acid molecules of the invention described above, for instance, nucleotide sequences of Table 1 or the E. faecalis sequences of the plasimd clones listed in Table 1. By “stringent hybridization conditions” is intended overnight incubation at 42° C. in a solution comprising: 50% formamide, 5× SSC (150 mM NaCl, 15 mM trisodium citrate), 50 mM sodium phosphate (pH 7.6), 5× Denhardt's solution, 10% dextran sulfate, and 20 μg/ml denatured, sheared salmon sperm DNA, followed by washing the filters in 0.1× SSC at about 65° C.


[0061] By a polynucleotide which hybridizes to a “portion” of a polynucleotide is intended a polynucleotide (either DNA or RNA) hybridizing to at least about 15 nucleotides bases, and more preferably at least about 20 nucleotides bases, still more preferably at least about 30 nucleotides bases, and even more preferably about 30-70 (e.g., 50) nucleotides bases of the reference polynucleotide. These are useful as diagnostic probes and primers as discussed above. By a portion of a polynucleotide of “at least 20 nucleotides bases in length,” for example, is intended 20 or more contiguous nucleotides bases nucleotides from the nucleotide sequence of the reference polynucleotide (e.g., the nucleotide sequence as shown in Table 1). Portions of a polynucleotide which hybridizes to a nucleotide sequence in Table 1, which can be used as probes and primers, may also be precisely specified by 5′ and 3′ base positions or by size in nucleotide bases as described above or precisely excluded in the same manner.


[0062] The nucleic acid molecules of the present invention include those encoding the full length E. faecalis polypeptides of Table 1 and portions of the E. faecalis polypeptides of Table 1. Also included in the present invention are nucleic acids encoding the above full length sequences and further comprise additional sequences, such as those encoding an added secretory leader sequence such as a pre-, or pro- or prepro- protein sequence. Further included in the present invention are nucleic acids encoding the above full length sequences and portions thereof and further comprise additional heterologous amino acid sequences encoded by nucleic acid sequences from a different source.


[0063] Also included in the present invention are nucleic acids encoding the above protein sequences together with additional, non-coding sequences, including for example, but not limited to non-coding 5′ and 3′ sequences. These sequences include transcribed, non-translated sequences that may play a role in transcription, and mRNA processing, for example, ribosome binding and stability of mRNA. Also included in the present invention are additional coding sequences which provide additional functionalities.


[0064] Thus, a nucleotide sequence encoding a polypeptide may be fused to a marker sequence, such as a sequence encoding a peptide which facilitates purification of the fused polypeptide. In certain preferred embodiments of this aspect of the invention, the marker amino acid sequence is a hexa-histidine peptide, such as the tag provided in a pQE vector (QIAGEN, Inc., 9259 Eton Avenue, Chatsworth, Calif., 91311), among others, many of which are commercially available. For instance, hexa-histidine provides for convenient purification of the fusion protein. See Gentz et al. (1989) Proc. Natl. Acad. Sci. 86:821-24. The “HA” tag is another peptide useful for purification which corresponds to an epitope derived from the influenza hemagglutinin protein. See Wilson et al. (1 984) Cell 37:767. As discussed below, other such fusion proteins include the E. faecalis polypeptides of the present invention fused to Fc at the N- or C-terminus.


[0065] Variant and Mutant Polynucleotides


[0066] The present invention further relates to variants of the nucleic acid molecules which encode portions, analogs or derivatives of a E. faecalis polypeptides of Table 1 and variant polypeptides thereof including portions, analogs, and derivatives of the E. faecalis polypeptides. Variants may occur naturally, such as a natural allelic variant.


[0067] By an “allelic variant” is intended one of several alternate forms of a gene occupying a given locus on a chromosome of an organism. See, e.g., B. Lewin, Genes IV (1990). Non-naturally occurring variants may be produced using art-known mutagenesis techniques.


[0068] Such nucleic acid variants include those produced by nucleotide substitutions, deletions, or additions. The substitutions, deletions, or additions may involve one or more nucleotides. The variants may be altered in coding regions, non-coding regions, or both. Alterations in the coding regions may produce conservative or non-conservative amino acid substitutions, deletions or additions. Especially preferred among these are silent substitutions, additions and deletions, which do not alter the properties and activities of a E. faecalis protein of the present invention or portions thereof. Also especially preferred in this regard are conservative substitutions.


[0069] Such polypeptide variants include those produced by amino acid substitutions, deletions or additions. The substitutions, deletions, or additions may involve one or more residues. Alterations may produce conservative or non-conservative amino acid substitutions, deletions, or additions. Especially preferred among these are silent substitutions, additions and deletions, which do not alter the properties and activities of a E. faecalis protein of the present invention or portions thereof. Also especially preferred in this regard are conservative substitutions.


[0070] The present invention also relates to recombinant vectors, which include the isolated nucleic acid molecules of the present invention, and to host cells containing the recombinant vectors, as well as to methods of making such vectors and host cells and for using them for production of E. faecalis polypeptides or peptides by recombinant techniques.


[0071] The present application is directed to nucleic acid molecules at least 90%, 95%, 96%, 97%, 98% or 99% identical to a nucleic acid sequence shown in Table 1. The above nucleic acid sequences are included irrespective of whether they encode a polypeptide having E. faecalis activity. This is because even where a particular nucleic acid molecule does not encode a polypeptide having E. faecalis activity, one of skill in the art would still know how to use the nucleic acid molecule, for instance, as a hybridization probe. Uses of the nucleic acid molecules of the present invention that do not encode a polypeptide having E. faecalis activity include, inter alia, isolating an E. faecalis gene or allelic variants thereof from a DNA library, and detecting E. faecalis mRNA expression samples, environmental samples, suspected of containing E. faecalis by Northern Blot analysis.


[0072] Preferred, are nucleic acid molecules having sequences at least 90%, 95%, 96%, 97%, 98% or 99% identical to the nucleic acid sequence shown in Table 1, which do, in fact, encode a polypeptide having E. faecalis protein activity By “a polypeptide having E. faecalis activity” is intended polypeptides exhibiting activity similar, but not necessarily identical, to an activity of the E. faecalis protein of the invention, as measured in a particular biological assay suitable for measuring activity of the specified protein.


[0073] Due to the degeneracy of the genetic code, one of ordinary skill in the art will immediately recognize that a large number of the nucleic acid molecules having a sequence at least 90%, 95%, 96%, 97%, 98%, or 99% identical to the nucleic acid sequences shown in Table 1 will encode a polypeptide having E. faecalis protein activity. In fact, since degenerate variants of these nucleotide sequences all encode the same polypeptide, this will be clear to the skilled artisan even without performing the above described comparison assay. It will be further recognized in the art that, for such nucleic acid molecules that are not degenerate variants, a reasonable number will also encode a polypeptide having E. faecalis protein activity. This is because the skilled artisan is fully aware of amino acid substitutions that are either less likely or not likely to significantly effect protein function (e.g., replacing one aliphatic amino acid with a second aliphatic amino acid), as further described below.


[0074] The biological activity or function of the polypeptides of the present invention are expected to be similar or identical to polypeptides from other bacteria that share a high degree of structural identity/similarity. Tables 2 lists accession numbers and descriptions for the closest matching sequences of polypeptides available through Genbank and Derwent databases. It is therefore expected that the biological activity or function of the polypeptides of the present invention will be similar or identical to those polypeptides from other bacterial genuses, species, or strains listed in Table 2.


[0075] By a polynucleotide having a nucleotide sequence at least, for example, 95% “identical” to a reference nucleotide sequence of the present invention, it is intended that the nucleotide sequence of the polynucleotide is identical to the reference sequence except that the polynucleotide sequence may include up to five point mutations per each 100 nucleotides of the reference nucleotide sequence encoding the E. faecalis polypeptide. In other words, to obtain a polynucleotide having a nucleotide sequence at least 95% identical to a reference nucleotide sequence, up to 5% of the nucleotides in the reference sequence may be deleted, inserted, or substituted with another nucleotide. The query sequence may be an entire sequence shown in Table 1, the ORF (open reading frame), or any fragment specified as described herein.


[0076] As a practical matter, whether any particular nucleic acid molecule or polypeptide is at least 90%, 95%. 96%, 97%, 98% or 99% identical to a nucleotide sequence of the presence invention can be determined conventionally using known computer programs. A preferred method for determining the best overall match between a query sequence (a sequence of the present invention) and a subject sequence, also referred to as a global sequence alignment, can be determined using the FASTDB computer program based on the algorithm of Brutlag et al. See Brutlag et al. (1990) Comp. App. Biosci. 6:237-245. In a sequence alignment the query and subject sequences are both DNA sequences. An RNA sequence can be compared by first converting U's to T's. The result of said global sequence alignment is in percent identity. Preferred parameters used in a FASTDB alignment of DNA sequences to calculate percent identity are: Matrix=Unitary, k-tuple=4, Mismatch Penalty=1, Joining Penalty=30. Randomization Group Length=0, Cutoff Score=1, Gap Penalty=5, Gap Size Penalty 0.05, Window Size=500 or the lenght of the subject nucleotide sequence, whichever is shorter.


[0077] If the subject sequence is shorter than the query sequence because of 5′ or 3′ deletions, not because of internal deletions, a manual correction must be made to the results. This is because the FASTDB program does not account for 5′ and 3′ truncations of the subject sequence when calculating percent identity. For subject sequences truncated at the 5′ or 3′ ends, relative to the query sequence, the percent identity is corrected by calculating the number of bases of the query sequence that are 5′ and 3′ of the subject sequence, which are not matched/aligned, as a percent of the total bases of the query sequence. Whether a nucleotide is matched/aligned is determined by results of the FASTDB sequence alignment. This percentage is then subtracted from the percent identity, calculated by the above FASTDB program using the specified parameters, to arrive at a final percent identity score. This corrected score is what is used for the purposes of the present invention. Only nucleotides outside the 5′ and 3′ nucleotides of the subject sequence, as displayed by the FASTDB alignment, which are not matched/aligned with the query sequence, are calculated for the purposes of manually adjusting the percent identity score.


[0078] For example, a 90 nucleotide subject sequence is aligned to a 100 nucleotide query sequence to determine percent identity. The deletions occur at the 5′ end of the subject sequence and therefore, the FASTDB alignment does not show a matched/alignment of the first 10 nucleotides at 5′ end. The 10 unpaired nucleotides represent 10% of the sequence (number of nucleotides at the 5′ and 3′ ends not matched/total number of nucleotides in the query sequence) so 10% is subtracted from the percent identity score calculated by the FASTDB program. If the remaining 90 nucleotides were perfectly matched the final percent identity would be 90%. In another example, a 90 nucleotide subject sequence is compared with a 100 nucleotide query sequence. This time the deletions are internal deletions so that there are no nucleotides on the 5′ or 3′ of the subject sequence which are not matched/aligned with the query. In this case the percent identity calculated by FASTDB is not manually corrected. Once again, only nucleotides 5′ and 3′ of the subject sequence which are not matched/aligned with the query sequence are manually corrected for. No other manual corrections are to made for the purposes of the present invention.


[0079] Vectors and Host Cell


[0080] The present invention also relates to vectors which include the isolated DNA molecules of the present invention, host cells comprising the recombinant vectors, and the production of E. faecalis polypeptides and peptides of the present invention expressed by the host cells.


[0081] Recombinant constructs may be introduced into host cells using well known techniques such as infection, transduction, transfection, transvection, electroporation and transformation. The vector may be, for example, a phage, plasmid, viral or retroviral vector. Retroviral vectors may be replication competent or replication defective. In the latter case, viral propagation generally will occur only in complementing host cells.


[0082] The polynucleotides may be joined to a vector containing a selectable marker for propagation in a host. Generally, a plasmid vector is introduced in a precipitate, such as a calcium phosphate precipitate, or in a complex with a charged lipid. If the vector is a virus, it may be packaged in vitro using an appropriate packaging cell line and then transduced into host cells.


[0083] Preferred are vectors comprising cis-acting control regions to the polynucleotide of interest. Appropriate trans-acting factors may be supplied by the host, supplied by a complementing vector or supplied by the vector itself upon introduction into the host.


[0084] In certain preferred embodiments in this regard, the vectors provide for specific expression, which may be inducible and/or cell type-specific. Particularly preferred among such vectors are those inducible by environmental factors that are easy to manipulate, such as temperature and nutrient additives.


[0085] Expression vectors useful in the present invention include chromosomal-, episomal- and virus-derived vectors, e.g., vectors derived from bacterial plasmids, bacteriophage, yeast episomes, yeast chromosomal elements, viruses such as baculoviruses, papova viruses, vaccinia viruses, adenoviruses, fowl pox viruses, pseudorabies viruses and retroviruses, and vectors derived from combinations thereof, such as cosmids and phagemids.


[0086] The DNA insert should be operatively linked to an appropriate promoter, such as the phage lambda PL promoter, the E. coli lac, Irp and tac promoters, the SV40 early and late promoters and promoters of retroviral LTRs, to name a few. Other suitable promoters will be known to the skilled artisan. The expression constructs will further contain sites for transcription initiation, termination and, in the transcribed region, a ribosome binding site for translation. The coding portion of the mature transcripts expressed by the constructs will preferably include a translation initiating site at the beginning and a termination codon (UAA, UGA or UAG) appropriately positioned at the end of the polypeptide to be translated.


[0087] As indicated, the expression vectors will preferably include at least one selectable marker. Such markers include dihydrofolate reductase or neomycin resistance for eukaryotic cell culture and tetracycline, kanamycin, or ampicillin resistance genes for culturing in E. coli and other bacteria. Representative examples of appropriate hosts include, but are not limited to, bacterial cells, such as E. coli, Streptomyces and Salmonella typhimurium cells; fungal cells, such as yeast cells; insect cells such as Drosophila S2 and Spodoptera Sf9 cells; animal cells such as CHO, COS and Bowes melanoma cells; and plant cells. Appropriate culture mediums and conditions for the above-described host cells are known in the art.


[0088] Among vectors preferred for use in bacteria include pQE70, pQE60 and pQE9, pQE10 available from Qiagen; pBS vectors, Phagescript vectors, Bluescript vectors, pNH8A, pNH16a, pNH18A, pNH46A available from Stratagene; pET series of vectors available from Novagen; and ptrc99a, pKK223-3, pKK233-3, pDR540, pRIT5 available from Pharmacia. Among preferred eukaryotic vectors are pWLNEO, pSV2CAT, pOG44, pXT1 and pSG available from Stratagene; and pSVK3, pBPV, pMSG and pSVL available from Pharmacia. Other suitable vectors will be readily apparent to the skilled artisan.


[0089] Among known bacterial promoters suitable for use in the present invention include the E. coli lacl and lacZ promoters, the T3, T5 and T7 promoters, the gpt promoter, the lambda PR and PL promoters and the trp promoter. Suitable eukaryotic promoters include the CMV immediate early promoter, the HSV thymidine kinase promoter, the early and late SV40 promoters, the promoters of retroviral LTRs, such as those of the Rous sarcoma virus (RSV), and metallothionein promoters, such as the mouse metallothionein-I promoter.


[0090] Introduction of the construct into the host cell can be effected by calcium phosphate transfection, DEAE-dextran mediated transfection, cationic lipid-mediated transfection, electroporation, transduction, infection or other methods. Such methods are described in many standard laboratory manuals (for example, Davis, et al., Basic


[0091] Methods In Molecular Biology (1986)).


[0092] Transcription of DNA encoding the polypeptides of the present invention by higher eukaryotes may be increased by inserting an enhancer sequence into the vector. Enhancers are cis-acting elements of DNA, usually about from 10 to 300 nucleotides that act to increase transcriptional activity of a promoter in a given host cell-type. Examples of enhancers include the SV40 enhancer, which is located on the late side of the replication origin at nucleotides 100 to 270, the cytomegalovirus early promoter enhancer, the polyoma enhancer on the late side of the replication origin, and adenovirus enhancers.


[0093] For secretion of the translated polypeptide into the lumen of the endoplasmic reticulum, into the periplasmic space or into the extracellular environment, appropriate secretion signals may be incorporated into the expressed polypeptide, for example, the amino acid sequence KDEL. The signals may be endogenous to the polypeptide or they may be heterologous signals.


[0094] The polypeptide may be expressed in a modified form, such as a fusion protein, and may include not only secretion signals, but also additional heterologous functional regions. For instance, a region of additional amino acids, particularly charged amino acids, may be added to the N-terminus of the polypeptide to improve stability and persistence in the host cell, during purification, or during subsequent handling and storage. Also, peptide moieties may be added to the polypeptide to facilitate purification. Such regions may be removed prior to final preparation of the polypeptide. The addition of peptide moieties to polypeptides to engender secretion or excretion, to improve stability and to facilitate purification, among others, are familiar and routine techniques in the art. A preferred fusion protein comprises a heterologous region from immunoglobulin that is useful to solubilize proteins. For example, EP-A-O 464 533 (Canadian counterpart 2045869) discloses fusion proteins comprising various portions of constant region of immunoglobulin molecules together with another human protein or part thereof. In many cases, the Fc part in a fusion protein is thoroughly advantageous for use in therapy and diagnosis and thus results, for example, in improved pharmacokinetic properties (EP-A 0232 262). On the other hand, for some uses it would be desirable to be able to delete the Fc part after the fusion protein has been expressed, detected and purified in the advantageous manner described. This is the case when Fc portion proves to be a hindrance to use in therapy and diagnosis, for example when the fusion protein is to be used as antigen for immunizations. In drug discovery, for example, human proteins, such as, hIL5-receptor has been fused with Fc portions for the purpose of high-throughput screening assays to identify antagonists of hIL-5. See Bennett, D. et al. (1995) J. Molec. Recogn. 8:52-58 and Johanson, K. et al. (1995) J. Biol. Chem. 270 (16):9459-9471.


[0095] The E. faecalis polypeptides can be recovered and purified from recombinant cell cultures by well-known methods including ammonium sulfate or ethanol precipitation, acid extraction, anion or cation exchange chromatography, phosphocellulose chromatography, hydrophobic interaction chromatography, affinity chromatography, hydroxylapatite chromatography, lectin chromatography and high performance liquid chromatography (“HPLC”) is employed for purification. Polypeptides of the present invention include naturally purified products, products of chemical synthetic procedures, and products produced by recombinant techniques from a prokaryotic or eukaryotic host. including, for example, bacterial, yeast, higher plant, insect and mammalian cells.


[0096] Polypeptides and Fragments


[0097] The invention further provides an isolated E. faecalis polypeptide having an amino acid sequence in Table 1, or a peptide or polypeptide comprising a portion of the above polypeptides.


[0098] Variant and Mutant Polypeptides


[0099] To improve or alter the characteristics of E. faecalis polypeptides of the present invention, protein engineering may be employed. Recombinant DNA technology known to those skilled in the art can be used to create novel mutant proteins or muteins including single or multiple amino acid substitutions, deletions, additions, or fusion proteins. Such modified polypeptides can show, e.g., enhanced activity or increased stability. In addition, they may be purified in higher yields and show better solubility than the corresponding natural polypeptide, at least under certain purification and storage conditions.


[0100] N-Terminal and C-Terminal Deletion Mutiants


[0101] It is known in the art that one or more amino acids may be deleted from the N-terminus or C-terminus without substantial loss of biological function. For instance, Ron et al. J. Biol. Chem., 268:2984-2988 (1993), reported modified KGF proteins that had heparin binding activity even if 3, 8, or 27 N-terminal amino acid residues were missing. Accordingly, the present invention provides polypeptides having one or more residues deleted from the amino terminus of the amino acid sequence of the E. faecalis polypeptides shown in Table 1, and polynucleotides encoding such polypeptides.


[0102] Similarly, many examples of biologically functional C-terminal deletion muteins are known. For instance, Interferon gamma shows up to ten times higher activities by deleting 8-10 amino acid residues from the carboxy terminus of the protein See, e.g., Dobeli, et al. (1988) J. Biotechnology 7:199-216. Accordingly, the present invention provides polypeptides having one or more residues from the carboxy terminus of the amino acid sequence of the E. faecalis polypeptides shown in Table 1. The invention also provides polypeptides having one or more amino acids deleted from both the amino and the carboxyl termini as described below.


[0103] The present invention is further directed to polynucleotide encoding portions or fragments of the amino acid sequences described herein as well as to portions or fragments of the isolated amino acid sequences described herein. Fragments include portions of the amino acid sequences of Table 1, are at least 5 contiguous amino acid in length, are selected from any two integers, one of which representing a N-terminal position. The initiation codon of the polypeptides of the present inventions position 1. Every combination of a N-terminal and C-terminal position that a fragment at least 5 contiguous amino acid residues in length could occupy, on any given amino acid sequence of Table 1 is included in the invention. At least means a fragment may be 5 contiguous amino acid residues in length or any integer between 5 and the number of residues in a full length amino acid sequence minus 1. Therefore, included in the invention are contiguous fragments specified by any N-terminal and C-terminal positions of amino acid sequence set forth in Table 1 wherein the contiguous fragment is any integer between 5 and the number of residues in a full length sequence minus 1.


[0104] Further, the invention includes polypeptides comprising fragments specified by size, in amino acid residues, rather than by N-terminal and C-terminal positions. The invention includes any fragment size, in contiguous amino acid residues, selected from integers between 5 and the number of residues in a full length sequence minus 1. Preferred sizes of contiguous polypeptide fragments include about 5 amino acid residues, about 10 amino acid residues, about 20 amino acid residues, about 30 amino acid residues, about 40 amino acid residues, about 50 amino acid residues, about 100 amino acid residues, about 200 amino acid residues, about 300 amino acid residues, and about 400 amino acid residues. The preferred sizes are, of course, meant to exemplify, not limit, the present invention as all size fragments representing any integer between 5 and the number of residues in a full length sequence minus 1 are included in the invention. The present invention also provides for the exclusion of any fragments specified by N-terminal and C-terminal positions or by size in amino acid residues as described above. Any number of fragments specified by N-terminal and C-terminal positions or by size in amino acid residues as described above may be excluded.


[0105] The above fragments need not be active since they would be useful, for example, in immunoassays, in epitope mapping, epitope tagging, to generate antibodies to a particular portion of the protein, as vaccines, and as molecular weight markers.


[0106] Other Mutants


[0107] In addition to N- and C-terminal deletion forms of the protein discussed above, it also will be recognized by one of ordinary skill in the art that some amino acid sequences of the E. faecalis polypeptide can be varied without significant effect of the structure or function of the protein. If such differences in sequence are contemplated, it should be remembered that there will be critical areas on the protein which determine activity.


[0108] Thus, the invention further includes variations of the E. faecalis polypeptides which show substantial E. faecalis polypeptide activity or which include regions of E. faecalis protein such as the protein portions discussed below. Such mutants include deletions, insertions, inversions, repeats, and type substitutions selected according to general rules known in the art so as to have little effect on activity. For example, guidance concerning how to make phenotypically silent amino acid substitutions is provided. There are two main approaches for studying the tolerance of an amino acid sequence to change. See, Bowie, J. U. et al. (1990), Science 247:1306-1310. The first method relies on the process of evolution, in which mutations are either accepted or rejected by natural selection. The second approach uses genetic engineering to introduce amino acid changes at specific positions of a cloned gene and selections or screens to identify sequences that maintain functionality.


[0109] These studies have revealed that proteins are surprisingly tolerant of amino acid substitutions. The studies indicate which amino acid changes are likely to be permissive at a certain position of the protein. For example, most buried amino acid residues require nonpolar side chains, whereas few features of surface side chains are generally conserved. Other such phenotypically silent substitutions are described by Bowie et al. (supra) and the references cited therein. Typically seen as conservative substitutions are the replacements, one for another, among the aliphatic amino acids Ala, Val, Leu and Ile; interchange of the hydroxyl residues Ser and Thr, exchange of the acidic residues Asp and Glu, substitution between the amide residues Asn and Gln, exchange of the basic residues Lys and Arg and replacements among the aromatic residues Phe, Tyr.


[0110] Thus, the fragment, derivative, analog, or homolog of the polypeptide of Table 1, or that encoded by the plaimds listed in Table 1, may be: (i) one in which one or more of the amino acid residues are substituted with a conserved or non-conserved amino acid residue (preferably a conserved amino acid residue) and such substituted amino acid residue may or may not be one encoded by the genetic code: or (ii) one in which one or more of the amino acid residues includes a substituent group: or (iii) one in which the E. faecalis polypeptide is fused with another compound, such as a compound to increase the half-life of the polypeptide (for example, polyethylene glycol): or (iv) one in which the additional amino acids are fused to the above form of the polypeptide, such as an IgG Fc fusion region peptide or leader or secretory sequence or a sequence which is employed for purification of the above form of the polypeptide or a proprotein sequence. Such fragments, derivatives and analogs are deemed to be within the scope of those skilled in the art from the teachings herein.


[0111] Thus, the E. faecalis polypeptides of the present invention may include one or more amino acid substitutions, deletions, or additions, either from natural mutations or human manipulation. As indicated, changes are preferably of a minor nature, such as conservative amino acid substitutions that do not significantly affect the folding or activity of the protein (see Table 3).


[0112] Amino acids in the E. faecalis proteins of the present invention that are essential for function can be identified by methods known in the art, such as site-directed mutagenesis or alanine-scanning mutagenesis. See, e.g., Cunningham et al. (1989) Science 244:1081-1085. The latter procedure introduces single alanine mutations at every residue in the molecule. The resulting mutant molecules are then tested for biological activity using assays appropriate for measuring the function of the particular protein.


[0113] Of special interest are substitutions of charged amino acids with other charged or neutral amino acids which may produce proteins with highly desirable improved characteristics, such as less aggregation. Aggregation may not only reduce activity but also be problematic when preparing pharmaceutical formulations, because aggregates can be immunogenic. See, e.g., Pinckard et al., (1967) Clin. Exp. Immunol. 2:331-340; Robbins, et al., (1987) Diabetes 36:838-845; Cleland, et al., (1993) Crit. Rev. Therapeutic Drug Carrier Systems 10:307-377.


[0114] The polypeptides of the present invention are preferably provided in an isolated form, and preferably are substantially purified. A recombinantly produced version of the E. faecalis polypeptide can be substantially purified by the one-step method described by Smith et al. (1988) Gene 67:31-40. Polypeptides of the invention also can be purified from natural or recombinant sources using antibodies directed against the polypeptides of the invention in methods which are well known in the art of protein purification.


[0115] The invention further provides for isolated E. faecalis polypeptides comprising an amino acid sequence selected from the group consisting of: (a) the amino acid sequence of a full-length E. faecalis polypeptide having the complete amino acid sequence shown in Table 1; (b) the amino acid sequence of a full-length E. faecalis polypeptide having the complete amino acid sequence shown in Table 1 excepting the N-terminal methionine; (c) the complete amino acid sequence encoded by the plaimds listed in Table 1; and (d) the complete amino acid sequence excepting the N-terminal methionine encoded by the plaimds listed in Table 1. The polypeptides of the present invention also include polypeptides having an amino acid sequence at least 80% identical, more preferably at least 90% identical, and still more preferably 95%, 96%, 97%, 98% or 99% identical to those described in (a), (b), (c), and (d) above.


[0116] Further polypeptides of the present invention include polypeptides which have at least 90% similarity, more preferably at least 95% similarity, and still more preferably at least 96%, 97%, 98% or 99% similarity to those described above.


[0117] A further embodiment of the invention relates to a polypeptide which comprises the amino acid sequence of a E. faecalis polypeptide having an amino acid sequence which contains at least one conservative amino acid substitution, but not more than 50 conservative amino acid substitutions, not more than 40 conservative amino acid substitutions, not more than 30 conservative amino acid substitutions, and not more than 20 conservative amino acid substitutions. Also provided are polypeptides which comprise the amino acid sequence of a E. faecalis polypeptide, having at least one, but not more than 10, 9, 8, 7, 6, 5, 4, 3, 2 or 1 conservative amino acid substitutions.


[0118] By a polypeptide having an amino acid sequence at least, for example, 95% “identical” to a query amino acid sequence of the present invention, it is intended that the amino acid sequence of the subject polypeptide is identical to the query sequence except that the subject polypeptide sequence may include up to five amino acid alterations per each 100 amino acids of the query amino acid sequence. In other words, to obtain a polypeptide having an amino acid sequence at least 95% identical to a query amino acid sequence, up to 5% of the amino acid residues in the subject sequence may be inserted, deleted, (indels) or substituted with another amino acid. These alterations of the reference sequence may occur at the amino or carboxy terminal positions of the reference amino acid sequence or anywhere between those terminal positions, interspersed either individually among residues in the reference sequence or in one or more contiguous groups within the reference sequence.


[0119] As a practical matter, whether any particular polypeptide is at least 90%, 95%, 96%, 97%, 98% or 99% identical to, for instance, the amino acid sequences shown in Table 1 or to the amino acid sequence encoded by the plaimds listed in Table 1 can be determined conventionally using known computer programs. A preferred method for determining the best overall match between a query sequence (a sequence of the present invention) and a subject sequence, also referred to as a global sequence alignment, can be determined using the FASTDB computer program based on the algorithm of Brutlag et al., (1990) Comp. App. Biosci. 6:237-245. In a sequence alignment the query and subject sequences are both amino acid sequences. The result of said global sequence alignment is in percent identity. Preferred parameters used in a FASTDB amino acid alignment are: Matrix=PAM 0, k-tuple=2, Mismatch Penalty=1, Joining Penalty=20, Randomization Group Length=0, Cutoff Score=1, Window Size=sequence length, Gap Penalty=5, Gap Size Penalty=0.05, Window Size=500 or the length of the subject amino acid sequence, whichever is shorter.


[0120] If the subject sequence is shorter than the query sequence due to N- or C-terminal deletions, not because of internal deletions, the results, in percent identity, must be manually corrected. This is because the FASTDB program does not account for N- and C-terminal truncations of the subject sequence when calculating global percent identity. For subject sequences truncated at the N- and C-termini, relative to the query sequence, the percent identity is corrected by calculating the number of residues of the query sequence that are N- and C-terminal of the subject sequence, which are not matched/aligned with a corresponding subject residue, as a percent of the total bases of the query sequence. Whether a residue is matched/aligned is determined by results of the FASTDB sequence alignment. This percentage is then subtracted from the percent identity, calculated by the above FASTDB program using the specified parameters, to arrive at a final percent identity score. This final percent identity score is what is used for the purposes of the present invention. Only residues to the N- and C-termini of the subject sequence, which are not matched/aligned with the query sequence, are considered for the purposes of manually adjusting the percent identity score. That is. only query amino acid residues outside the farthest N- and C-terminal residues of the subject sequence.


[0121] For example, a 90 amino acid residue subject sequence is aligned with a 100 residue query sequence to determine percent identity. The deletion occurs at the N-terminus of the subject sequence and therefore, the FASTDB alignment does not match/align with the first 10 residues at the N-terminus. The 10 unpaired residues represent 10% of the sequence (number of residues at the N- and C-termini not matched/total number of residues in the query sequence) so 10% is subtracted from the percent identity score calculated by the FASTDB program. If the remaining 90 residues were perfectly matched the final percent identity would be 90%. In another example, a 90 residue subject sequence is compared with a 100 residue query sequence. This time the deletions are internal so there are no residues at the N- or C-termini of the subject sequence which are not matched/aligned with the query. In this case the percent identity calculated by FASTDB is not manually corrected. Once again, only residue positions outside the N- and C-terminal ends of the subject sequence, as displayed in the FASTDB alignment, which are not matched/aligned with the query sequence are manually corrected. No other manual corrections are to made for the purposes of the present invention.


[0122] The above polypeptide sequences are included irrespective of whether they have their normal biological activity. This is because even where a particular polypeptide molecule does not have biological activity, one of skill in the art would still know how to use the polypeptide, for instance, as a vaccine or to generate antibodies. Other uses of the polypeptides of the present invention that do not have E. faecalis activity include, inter alia, as epitope tags, in epitope mapping, and as molecular weight markers on SDS-PAGE gels or on molecular sieve gel filtration columns using methods known to those of skill in the art.


[0123] As described below, the polypeptides of the present invention can also be used to raise polyclonal and monoclonal antibodies, which are useful in assays for detecting E. faecalis protein expression or as agonists and antagonists capable of enhancing or inhibiting E. Faecalis protein function. Further, such polypeptides can be used in the yeast two-hybrid system to “capture” E. faecalis protein binding proteins which are also candidate agonists and antagonists according to the present invention. See, e.g., Fields et al. (1989) Nature 340:245-246.


[0124] Epitope-Bearing Portions


[0125] In another aspect, the invention provides peptides and polypeptides comprising epitope-bearing portions of the E. faecalis polypeptides of the present invention. These epitopes are immunogenic or antigenic epitopes of the polypeptides of the present invention. An “immunogenic epitope” is defined as a part of a protein that elicits an antibody response when the whole protein or polypeptide is the immunogen. These immunogenic epitopes are believed to be confined to a few loci on the molecule. On the other hand, a region of a protein molecule to which an antibody can bind is defined as an “antigenic determinant” or “antigenic epitope.” The number of immunogenic epitopes of a protein generally is less than the number of antigenic epitopes. See, e.g., Geysen, et al. (1983) Proc. Natl. Acad. Sci. USA 81:3998-4002. Predicted antigenic epitopes are shown in Table 4, below. It is pointed out that Table 4 only lists amino acid residues comprising epitopes predicted to have the highest degree of antigenicity. The polypeptides not listed in Table 4 and portions of polypeptides not listed in Table 4 are not considered non-antigenic. This is because they may still be antigenic in vivo but merely not recognized as such by the particular algorithm used. Thus, Table 4 lists the amino acid residues comprising preferred antigenic epitopes but not a complete list. Amino acid residues comprising other antigenic epitopes may be determined by algorithms similar to the Jameson-Wolf analysis or by in vivo testing for an antigenic response using the methods described herein or those known in the art.


[0126] As to the selection of peptides or polypeptides bearing an antigenic epitope (i.e., that contain a region of a protein molecule to which an antibody can bind), it is well known in that art that relatively short synthetic peptides that mimic part of a protein sequence are routinely capable of eliciting an antiserum that reacts with the partially mimicked protein. See. e.g., Sutcliffe, et al., (1983) Science 219:660-666. Peptides capable of eliciting protein-reactive sera are frequently represented in the primary sequence of a protein, can be characterized by a set of simple chemical rules, and are confined neither to immunodominant regions of intact proteins (i.e., immunogenic epitopes) nor to the amino or carboxyl terminals. Peptides that are extremely hydrophobic and those of six or fewer residues generally are ineffective at inducing antibodies that bind to the mimicked protein; longer, peptides, especially those containing proline residues, usually are effective. See. Sutcliffe, et al., supra, p. 661. For instance, 18 of 20 peptides designed according to these guidelines, containing 8-39 residues covering 75% of the sequence of the influenza virus hemagglutinin HA1 polypeptide chain, induced antibodies that reacted with the HA1 protein or intact virus; and 12/12 peptides from the MuLV polymerase and 18/18 from the rabies glycoprotein induced antibodies that precipitated the respective proteins.


[0127] Antigenic epitope-bearing peptides and polypeptides of the invention are therefore useful to raise antibodies, including monoclonal antibodies, that bind specifically to a polypeptide of the invention. Thus, a high proportion of hybridomas obtained by fusion of spleen cells from donors immunized with an antigen epitope-bearing peptide generally secrete antibody reactive with the native protein. See Sutcliffe, et al., supra, p. 663. The antibodies raised by antigenic epitope-bearing peptides or polypeptides are useful to detect the mimicked protein, and antibodies to different peptides may be used for tracking the fate of various regions of a protein precursor which undergoes post-translational processing. The peptides and anti-peptide antibodies may be used in a variety of qualitative or quantitative assays for the mimicked protein, for instance in competition assays since it has been shown that even short peptides (e.g., about 9 amino acids) can bind and displace the larger peptides in immunoprecipitation assays. See, e.g., Wilson, et al., (1984) Cell 37:767-778. The anti-peptide antibodies of the invention also are useful for purification of the mimicked protein, for instance, by adsorption chromatography using methods known in the art.


[0128] Antigenic epitope-bearing peptides and polypeptides of the invention designed according to the above guidelines preferably contain a sequence of at least seven, more preferably at least nine and most preferably between about 10 to about 50 amino acids (i.e. any integer between 7 and 50) contained within the amino acid sequence of a polypeptide of the invention. However, peptides or polypeptides comprising a larger portion of an amino acid sequence of a polypeptide of the invention, containing about 50 to about 100 amino acids, or any length up to and including the entire amino acid sequence of a polypeptide of the invention, also are considered epitope-bearing peptides or polypeptides of the invention and also are useful for inducing antibodies that react with the mimicked protein. Preferably, the amino acid sequence of the epitope-bearing peptide is selected to provide substantial solubility in aqueous solvents (i.e., the sequence includes relatively hydrophilic residues and highly hydrophobic sequences are preferably avoided); and sequences containing proline residues are particularly preferred.


[0129] Non-limiting examples of antigenic polypeptides or peptides that can be used to generate an enterococcal-specific immune response or antibodies include portions of the amino acid sequences identified in Table 1. More specifically, Table 4 discloses a list of non-limiting residues that are involved in the antigenicity of the epitope-bearing fragments of the present invention. Therefore, the present inventions provides for isolatd and purified antigenic epitope-bearing fragements of the polypeptides of the present invention comprising a peptide sequences of Table 4. The antigenic epitope-bearing fragments comprising a peptide sequence of Table 4 preferably contain a sequence of at least seven, more preferably at least nine and most preferably between about 10 to about 50 amino acids (i.e. any integer between 7 and 50) of a polypeptide of the present invention. That is, included in the present invention are antigenic polypeptides between the integers of 7 and 50 amino acid in length comprising one or more of the sequences of Table 4. Therefore, in most cases, the polypeptides of Table 4 make up only a portion of the antigenic polypeptide. All combinations of sequences between the integers of 7 and 50 amino acid in length comprising one or more of the sequences of Table 4 are included. The antigenic epitope-bearing fragements may be specified by either the number of contiguous amino acid residues or by specific N-terminal and C-terminal positions as described above for the polypeptide fragements of the present invention, wherein the initiation codon is residue 1. Any number of the described antigenic epitope-bearing fragements of the present invention may also be excluded from the present invention in the same manner.


[0130] The epitope-bearing peptides and polypeptides of the invention may be produced by any conventional means for making peptides or polypeptides including recombinant means using nucleic acid molecules of the invention. For instance, an epitope-bearing amino acid sequence of the present invention may be fused to a larger polypeptide which acts as a carrier during recombinant production and purification, as well as during immunization to produce anti-peptide antibodies. Epitope-bearing peptides also may be synthesized using known methods of chemical synthesis. For instance, Houghten has described a simple method for synthesis of large numbers of peptides, such as 10-20 mg of 248 different 13 residue peptides representing single amino acid variants of a segment of the HA1 polypeptide which were prepared and characterized (by ELISA-type binding studies) in less than four weeks (Houghten, R. A. Proc. Natl. Acad. Sci. USA 82:5131-5135 (1985)). This “Simultaneous Multiple Peptide Synthesis (SMPS)” process is further described in U.S. Pat. No. 4,631.211 to Houghten and coworkers (1986). In this procedure the individual resins for the solid-phase synthesis of various peptides are contained in separate solvent-permeable packets, enabling the optimal use of the many identical repetitive steps involved in solid-phase methods. A completely manual procedure allows 500-1000 or more syntheses to be conducted simultaneously (Houghten et al. (1985) Proc. Natl. Acad. Sci. 82:5131-5135 at 5134.


[0131] Epitope-bearing peptides and polypeptides of the invention are used to induce antibodies according to methods well known in the art. See, e.g., Sutcliffe, et al., supra;; Wilson, et al., supra;; and Bittle, et al. (1985) J. Gen. Virol. 66:2347-2354. Generally, animals may be immunized with free peptide; however, anti-peptide antibody titer may be boosted by coupling of the peptide to a macromolecular carrier, such as keyhole limpet hemacyanin (KLH) or tetanus toxoid. For instance, peptides containing cysteine may be coupled to carrier using a linker such as m-maleimidobenzoyl-N-hydroxysuccinimide ester (MBS), while other peptides may be coupled to carrier using a more general linking agent such as glutaraldehyde. Animals such as rabbits, rats and mice are immunized with either free or carrier-coupled peptides, for instance, by intraperitoneal and/or intradermal injection of emulsions containing about 100 μg peptide or carrier protein and Freund's adjuvant. Several booster injections may be needed, for instance, at intervals of about two weeks, to provide a useful titer of anti-peptide antibody which can be detected, for example, by ELISA assay using free peptide adsorbed to a solid surface. The titer of anti-peptide antibodies in serum from an immunized animal may be increased by selection of anti-peptide antibodies, for instance, by adsorption to the peptide on a solid support and elution of the selected antibodies according to methods well known in the art.


[0132] Immunogenic epitope-bearing peptides of the invention, i.e., those parts of a protein that elicit an antibody response when the whole protein is the immunogen, are identified according to methods known in the art. For instance, Geysen, et al., supra, discloses a procedure for rapid concurrent synthesis on solid supports of hundreds of peptides of sufficient purity to react in an ELISA. Interaction of synthesized peptides with antibodies is then easily detected without removing them from the support. In this manner a peptide bearing an immunogenic epitope of a desired protein may be identified routinely by one of ordinary skill in the art. For instance, the immunologically important epitope in the coat protein of foot-and-mouth disease virus was located by Geysen et al. supra with a resolution of seven amino acids by synthesis of an overlapping set of all 208 possible hexapeptides covering the entire 213 amino acid sequence of the protein. Then, a complete replacement set of peptides in which all 20 amino acids were substituted in turn at every position within the epitope were synthesized, and the particular amino acids conferring specificity for the reaction with antibody were determined. Thus, peptide analogs of the epitope-bearing peptides of the invention can be made routinely by this method. U.S. Pat. No. 4,708,781 to Geysen (1987) further describes this method of identifying a peptide bearing an immunogenic epitope of a desired protein.


[0133] Further still, U.S. Pat. No. 5,194,392, to Geysen (1990), describes a general method of detecting or determining the sequence of monomers (amino acids or other compounds) which is a topological equivalent of the epitope (i.e., a “mimotope”) which is complementary to a particular paratope (antigen binding site) of an antibody of interest. More generally, U.S. Pat. No. 4,433,092, also to Geysen (1989), describes a method of detecting or determining a sequence of monomers which is a topographical equivalent of a ligand which is complementary to the ligand binding site of a particular receptor of interest. Similarly, U.S. Pat. No. 5,480,971 to Houghten, R. A. et al. (1996) discloses linear C1-C7-alkyl peralkylated oligopeptides and sets and libraries of such peptides, as well as methods for using such oligopeptide sets and libraries for determining the sequence of a peralkylated oligopeptide that preferentially binds to an acceptor molecule of interest. Thus, non-peptide analogs of the epitope-bearing peptides of the invention also can be made routinely by these methods. The entire disclosure of each document cited in this section on “Polypeptides and Fragments” is hereby incorporated herein by reference.


[0134] As one of skill in the art will appreciate, the polypeptides of the present invention and the epitope-bearing fragments thereof described above can be combined with parts of the constant domain of immunoglobulins (IgG), resulting in chimeric polypeptides. These fusion proteins facilitate purification and show an increased half-life in vivo. This has been shown, e.g., for chimeric proteins consisting of the first two domains of the human CD4-polypeptide and various domains of the constant regions of the heavy or light chains of mammalian immunoglobulins. (EPA 0,394,827; Traunecker et al. (1988) Nature 331:84-86. Fusion proteins that have a disulfide-linked dimeric structure due to the IgG part can also be more efficient in binding and neutralizing other molecules than a monomeric E. faecalis polypeptide or fragment thereof alone. See Fountoulakis et al. (1995) J. Biochem. 270:3958-3964. Nucleic acids encoding the above epitopes of E. faecalis polypeptides can also be recombined with a gene of interest as an epitope tag to aid in detection and purification of the expressed polypeptide.


[0135] Antibodies


[0136]

E. faecalis
protein-specific antibodies for use in the present invention can be raised against the intact E. faecalis protein or an antigenic polypeptide fragment thereof, which may be presented together with a carrier protein, such as an albumin, to an animal system (such as rabbit or mouse) or, if it is long enough (at least about 25 amino acids), without a carrier.


[0137] As used herein, the term “antibody” (Ab) or “monoclonal antibody” (Mab) is meant to include intact molecules, single chain whole antibodies, and antibody fragments. Antibody fragments of the present invention include Fab and F(ab′)2 and other fragments including single-chain Fvs (scFv) and disulfide-linked Fvs (sdFv). Also included in the present invention are chimeric and humanized monoclonal antibodies and polyclonal antibodies specific for the polypeptides of the present invention. The antibodies of the present invention may be prepared by any of a variety of methods. For example, cells expressing a polypeptide of the present invention or an antigenic fragment thereof can be administered to an animal in order to induce the production of sera containing polyclonal antibodies. For example, a preparation of E. faecalis polypeptide or fragment thereof is prepared and purified to render it substantially free of natural contaminants. Such a preparation is then introduced into an animal in order to produce polyclonal antisera of greater specific activity.


[0138] In a preferred method, the antibodies of the present invention are monoclonal antibodies or binding fragments thereof. Such monoclonal antibodies can be prepared using hybridoma technology. See, e.g. Harlow et al., ANTIBODIES: A LABORATORY MANUAL, (Cold Spring Harbor Laboratory Press, 2nd ed. 1988); Hammerling, et al., in: MONOCLONAL ANTIBODIES AND T-CELL HYBRIDOMAS 563-681 (Elsevier, N.Y., 1981). Fab and F(ab′)2 fragments may be produced by proteolytic cleavage, using enzymes such as papain (to produce Fab fragments) or pepsin (to produce F(ab′)2 fragments). Alternatively, E. faecalis polypeptide-binding fragments, chimeric, and humanized antibodies can be produced through the application of recombinant DNA technology or through synthetic chemistry using methods known in the art.


[0139] Alternatively, additional antibodies capable of binding to the polypeptide antigen of the present invention may be produced in a two-step procedure through the use of anti-idiotypic antibodies. Such a method makes use of the fact that antibodies are themselves antigens, and that, therefore, it is possible to obtain an antibody which binds to a second antibody. In accordance with this method, E. faecalis polypeptide-specific antibodies are used to immunize an animal, preferably a mouse. The splenocytes of such an animal are then used to produce hybridoma cells, and the hybridoma cells are screened to identify clones which produce an antibody whose ability to bind to the E. faecalis polypeptide-specific antibody can be blocked by the E. faecalis polypeptide antigen. Such antibodies comprise anti-idiotypic antibodies to the E. faecalis polypeptide-specific antibody and can be used to immunize an animal to induce formation of further E. faecalis polypeptide-specific antibodies.


[0140] Antibodies and fragements thereof of the present invention may be described by the portion of a polypeptide of the present invention recognized or specifically bound by the antibody. Antibody binding fragements of a polypeptide of the present invention may be described or specified in the same manner as for polypeptide fragements discussed above., i.e, by N-terminal and C-terminal positions or by size in contiguous amino acid residues. Any number of antibody binding fragments, of a polypeptide of the present invention, specified by N-terminal and C-terminal positions or by size in amino acid residues, as described above, may also be excluded from the present invention. Therefore, the present invention includes antibodies the specifically bind a particuarlly discribed fragement of a polypeptide of the present invention and allows for the exclusion of the same.


[0141] Antibodies and fragements thereof of the present invention may also be described or specified in terms of their cross-reactivity. Antibodies and fragements that do not bind polypeptides of any other species of Enterococcus other than E. faecalis are included in the present invention. Likewise, antibodies and fragements that bind only species of Enterococcus, i.e. antibodies and fragements that do not bind bacteria from any genus other than Enterococcus, are included in the present invention.


[0142] Diagnostic Assays


[0143] The present invention further relates to methods for assaying staphylococcal infection in an animal by detecting the expression of genes encoding staphylococcal polypeptides of the present invention. The methods comprise analyzing tissue or body fluid from the animal for Enterococcus-specific antibodies, nucleic acids, or proteins. Analysis of nucleic acid specific to Enterococcus is assayed by PCR or hybridization techniques using nucleic acid sequences of the present invention as either hybridization probes or primers. See, e.g., Sambrook et al. Molecular cloning: A Laboratory Manual (Cold Spring Harbor Laboratory Press, 2nd ed., 1989, page 54 reference); Eremeeva et al. (1994) J. Clin. Microbiol. 32:803-810 (describing differentiation among spotted fever group Rickettsiae species by analysis of restriction fragment length polymorphism of PCR-amplified DNA) and Chen et al. 1994 J. Clin. Microbiol. 32:589-595 (detecting B. burgdorferi nucleic acids via PCR).


[0144] Where diagnosis of a disease state related to infection with Enterococcus has already been made, the present invention is useful for monitoring progression or regression of the disease state whereby patients exhibiting enhanced Enterococcus gene expression will experience a worse clinical outcome relative to patients expressing these gene(s) at a lower level.


[0145] By “biological sample” is intended any biological sample obtained from an animal, cell line, tissue culture, or other source which contains Enterococcus polypeptide, MRNA, or DNA. Biological samples include body fluids (such as saliva, blood, plasma, urine, mucus, synovial fluid, etc.) tissues (such as muscle, skin, and cartilage) and any other biological source suspected of containing Enterococcus polypeptides or nucleic acids. Methods for obtaining biological samples such as tissue are well known in the art.


[0146] The present invention is useful for detecting diseases related to Enterococcus infections in animals. Preferred animals include monkeys, apes, cats, dogs, birds, cows, pigs, mice, horses, rabbits and humans. Particularly preferred are humans.


[0147] Total RNA can be isolated from a biological sample using any suitable technique such as the single-step guanidinium-thiocyanate-phenol-chloroform method described in Chomczynski et al. (1987) Anal. Biochem. 162:156-159. mRNA encoding Enterococcus polypeptides having sufficient homology to the nucleic acid sequences identified in Table 1 to allow for hybridization between complementary sequences are then assayed using any appropriate method. These include Northern blot analysis, S1 nuclease mapping, the polymerase chain reaction (PCR), reverse transcription in combination with the polymerase chain reaction (RT-PCR), and reverse transcription in combination with the ligase chain reaction (RT-LCR).


[0148] Northern blot analysis can be performed as described in Harada et al. (1990) Cell 63:303-312. Briefly, total RNA is prepared from a biological sample as described above. For the Northern blot, the RINA is denatured in an appropriate buffer (such as glyoxaludimethyl sulfoxide/sodium phosphate buffer), subjected to agarose gel electrophoresis, and transferred onto a nitrocellulose filter. After the RNAs have been linked to the filter by a UV linker, the filter is prehybridized in a solution containing formamide, SSC, Denhardt's solution, denatured salmon sperm, SDS, and sodium phosphate buffer. A E. faecalis polynucleotide sequence shown in Table 1 labeled according to any appropriate method (such as the 32P-multiprimed DNA labeling system (Amersham)) is used as probe. After hybridization overnight, the filter is washed and exposed to x-ray film. DNA for use as probe according to the present invention is described in the sections above and will preferably at least 15 nucleotides in length.


[0149] S1 mapping can be performed as described in Fujita et al. (1987) Cell 49:357-367. To prepare probe DNA for use in S1 mapping, the sense strand of an above-described E. faecalis DNA sequence of the present invention is used as a template to synthesize labeled antisense DNA. The antisense DNA can then be digested using an appropriate restriction endonuclease to generate further DNA probes of a desired length. Such antisense probes are useful for visualizing protected bands corresponding to the target mRNA (i. e., mRNA encoding Enterococcus polypeptides).


[0150] Levels of mRNA encoding Enterococcus polypeptides are assayed, for e.g., using the RT-PCR method described in Makino et al. (1990) Technique 2:295-301. By this method, the radioactivities of the “amplicons” in the polyacrylamide gel bands are linearly related to the initial concentration of the target mRNA. Briefly, this method involves adding total RNA isolated from a biological sample in a reaction mixture containing a RT primer and appropriate buffer. After incubating for primer annealing, the mixture can be supplemented with a RT buffer, dNTPs, DTT, RNase inhibitor and reverse transcriptase. After incubation to achieve reverse transcription of the RNA, the RT products are then subject to PCR using labeled primers. Alternatively, rather than labeling the primers, a labeled dNTP can be included in the PCR reaction mixture. PCR amplification can be performed in a DNA thermal cycler according to conventional techniques. After a suitable number of rounds to achieve amplification, the PCR reaction mixture is electrophoresed on a polyacrylamide gel. After drying the gel, the radioactivity of the appropriate bands (corresponding to the mRNA encoding the Enterococcus polypeptides of the present invention) are quantified using an imaging analyzer. RT and PCR reaction ingredients and conditions, reagent and gel concentrations, and labeling methods are well known in the art. Variations on the RT-PCR method will be apparent to the skilled artisan. Other PCR methods that can detect the nucleic acid of the present invention can be found in PCR PRIMER: A LABORATORY MANUAL (C. W. Dieffenbach et al. eds., Cold Spring Harbor Lab Press, 1995).


[0151] The polynucleotides of the present invention, including both DNA and RNA, may be used to detect polynucleotides of the present invention or Enterococcal species including E. faecalis using bio chip technology. The present invention includes both high density chip arrays (>1000 oligonucleotides per cm2) and low density chip arrays (<1000 oligonucleotides per cm2). Bio chips comprising arrays of polynucleotides of the present invention may be used to detect Enterococcal species, including E. faecalis, in biological and environmental samples and to diagnose an animal, including humans, with an E. faecalis or other Enterococcal infection. The bio chips of the present invention may comprise polynucleotide sequences of other pathogens including bacteria, viral, parasitic, and fungal polynucleotide sequences, in addition to the polynucleotide sequences of the present invention, for use in rapid diffenertial pathogenic detection and diagnosis. The bio chips can also be used to monitor an E. faecalis or other Enterococcal infections and to monitor the genetic changes (deletions, insertions, mismatches, etc.) in response to drug therapy in the clinic and drug development in the laboratory. The bio chip technology comprising arrays of polynucleotides of the present invention may also be used to simultaneously monitor the expression of a multiplicity of genes, including those of the present invention. The polynucleotides used to comprise a selected array may be specified in the same manner as for the fragements, i.e, by their 5′ and 3′ positions or length in contigious base pairs and include from. Methods and particular uses of the polynucleotides of the present invention to detect Enterococcal species, including E. faecalis, using bio chip technology include those known in the art and those of: U.S. Pat. Nos. 5510270, 5545531, 5445934, 5677195, 5532128, 5556752, 5527681, 5451683, 5424186, 5607646, 5658732 and World Pat. Nos. WO/9710365. WO/9511995, WO/9743447, WO/9535505, each incorporated herein in their entireties.


[0152] Biosensors using the polynucleotides of the present invention may also be used to detect, diagnose, and monitor E. faecalis or other Enterococcal species and infections thereof. Biosensors using the polynucleotides of the present invention may also be used to detect particular polynucleotides of the present invention. Biosensors using the polynucleotides of the present invention may also be used to monitor the genetic changes (deletions, insertions, mismatches, etc.) in response to drug therapy in the clinic and drug development in the laboratory. Methods and particular uses of the polynucleotides of the present invention to detect Enterococcal species, including E. faecalis, using biosenors include those known in the art and those of: U.S. Pat. Nos 5721102, 5658732, 5631170, and World Pat. Nos. WO97/3501 1, WO/9720203, each incorporated herein in their entireties.


[0153] Thus, the present invention includes both bio chips and biosensors comprising polynucleotides of the present invention and methods of their use.


[0154] Assaying Enterococcius polypeptide levels in a biological sample can occur using any art-known method, such as antibody-based techniques. For example, Enterococcus polypeptide expression in tissues can be studied with classical immunohistological methods. In these, the specific recognition is provided by the primary antibody (polyclonal or monoclonal) but the secondary detection system can utilize fluorescent, enzyme, or other conjugated secondary antibodies. As a result, an immunohistological staining of tissue section for pathological examination is obtained. Tissues can also be extracted, e.g., with urea and neutral detergent, for the liberation of Enterococcus polypeptides for Western-blot or dot/slot assay. See, e.g., Jalkanen, M. et al. (1985) J. Cell. Biol. 101:976-985; Jalkanen, M. et al. (1987) J. Cell . Biol. 105:3087-3096. In this technique, which is based on the use of cationic solid phases, quantitation of a Enterococcus polypeptide can be accomplished using an isolated Enterococcus polypeptide as a standard. This technique can also be applied to body fluids.


[0155] Other antibody-based methods useful for detecting Enterococcus polypeptide gene expression include immunoassays, such as the ELISA and the radjoimmunoassay (RIA). For example, a Enterococcus polypeptide-specific monoclonal antibodies can be used both as an immunoabsorbent and as an enzyme-labeled probe to detect and quantify a Enterococcus polypeptide. The amount of a Enterococcus polypeptide present in the sample can be calculated by reference to the amount present in a standard preparation using a linear regression computer algorithm. Such an ELISA is described in lacobelli et al. (1988) Breast Cancer Research and Treatment 11:19-30. In another ELISA assay, two distinct specific monoclonal antibodies can be used to detect Enterococcus polypeptides in a body fluid. In this assay, one of the antibodies is used as the immunoabsorbent and the other as the enzyme-labeled probe.


[0156] The above techniques may be conducted essentially as a “one-step” or “two-step” assay. The “one-step” assay involves contacting the Enterococcus polypeptide with immobilized antibody and, without washing, contacting the mixture with the labeled antibody. The “two-step” assay involves washing before contacting the mixture with the labeled antibody. Other conventional methods may also be employed as suitable. It is usually desirable to immobilize one component of the assay system on a support, thereby allowing other components of the system to be brought into contact with the component and readily removed from the sample. Variations of the above and other immunological methods included in the present invention can also be found in Harlow et al., ANTIBODIES: A LABORATORY MANUAL, (Cold Spring Harbor Laboratory Press, 2nd ed. 1988).


[0157] Suitable enzyme labels include, for example, those from the oxidase group, which catalyze the production of hydrogen peroxide by reacting with substrate. Glucose oxidase is particularly preferred as it has good stability and its substrate (glucose) is readily available. Activity of an oxidase label may be assayed by measuring the concentration of hydrogen peroxide formed by the enzyme-labeled antibody/substrate reaction. Besides enzymes, other suitable labels include radioisotopes, such as iodine (125I, 121I), carbon (14C), sulphur (35S), tritium (3H), indium (112In), and technetium (99mTc), and fluorescent labels, such as fluorescein and rhodamine, and biotin.


[0158] Further suitable labels for the Enterococcus polypeptide-specific antibodies of the present invention are provided below. Examples of suitable enzyme labels include malate dehydrogenase, Enterococcal nuclease, delta-5-steroid isomerase, yeast-alcohol dehydrogenase, alpha-glycerol phosphate dehydrogenase, triose phosphate isomerase, peroxidase, alkaline phosphatase, asparaginase, glucose oxidase, beta-galactosidase, ribonuclease, urease, catalase, glucose-6-phosphate dehydrogenase, glucoamylase, and acetylcholine esterase.


[0159] Examples of suitable radioisotopic labels include 3H, 111In, 125I, 131I, 32P, 35S, 14C, 51Cr, 57To, 58Co, 59Fe, 75Se, 152Eu, 90Y, 67Cu, 217Ci, 211At, 212Pb, 47Sc, 109Pd, etc. 111In is a preferred isotope where in vivo imaging is used since its avoids the problem of dehalogenation of the 251I or 131I-labeled monoclonal antibody by the liver. In addition, this radionucleotide has a more favorable gamma emission energy for imaging. See, e.g., Perkins et al. (1985) Eur. J. Nucl. Med. 10:296-301; Carasquillo et al. (1987) J. Nucl. Med. 28:281-287. For example, 111In coupled to monoclonal antibodies with 1 (P isothiocyanatobenzyl)-DPTA has shown little uptake in non-tumors tissues, particularly the liver, and therefore enhances specificity of tumor localization. See, Esteban et al. (1987) J. Nucl. Med. 28:861-870.


[0160] Examples of suitable non-radioactive isotopic labels include 157Gd, 55Mn, 162Dy, 52Tr, and 56Fe.


[0161] Examples of suitable fluorescent labels include an 152Eu label, a fluorescein label, an isothiocyanate label, a rhodamine label, a phycoerythrin label, a phycocyanin label, an allophycocyanin label, an o-phthaldehyde label, and a fluorescamine label.


[0162] Examples of suitable toxin labels include, Pseudomonas toxin, diphtheria toxin, ricin, and cholera toxin.


[0163] Examples of chemiluminescent labels include a luminal label, an isoluminal label, an aromatic acridinium ester label. an imidazole label. an acridinium salt label, an oxalate ester label, a luciferin label, a luciferase label, and an aequorin label.


[0164] Examples of nuclear magnetic resonance contrasting agents include heavy metal nuclei such as Gd, Mn, and iron.


[0165] Typical techniques for binding the above-described labels to antibodies are provided by Kennedy et al. (1976) Clin. Chim. Acta 70:1-31, and Schurs et al. (1977) Clin. Chim. Acta 81:1-40. Coupling techniques mentioned in the latter are the glutaraldehyde method, the periodate method, the dimaleimide method, the m-maleimidobenzyl-N-hydroxy-succinimide ester method, all of which methods are incorporated by reference herein.


[0166] In a related aspect, the invention includes a diagnostic kit for use in screening serum containing antibodies specific against E. faecalis infection. Such a kit may include an isolated E. faecalis antigen comprising an epitope which is specifically immunoreactive with at least one anti-E. faecalis antibody. Such a kit also includes means for detecting the binding of said antibody to the antigen. In specific embodiments, the kit may include a recombinantly produced or chemically synthesized peptide or polypeptide antigen. The peptide or polypeptide antigen may be attached to a solid support.


[0167] In a more specific embodiment, the detecting means of the above-described kit includes a solid support to which said peptide or polypeptide antigen is attached. Such a kit may also include a non-attached reporter-labeled anti-human antibody. In this embodiment, binding of the antibody to the E. faecalis antigen can be detected by binding of the reporter labeled antibody to the anti-E. faecalis polypeptide antibody.


[0168] In a related aspect, the invention includes a method of detecting E. faecalis infection in a subject. This detection method includes reacting a body fluid, preferably serum, from the subject with an isolated E. faecalis antigen, and examining the antigen for the presence of bound antibody. In a specific embodiment, the method includes a polypeptide antigen attached to a solid support, and serum is reacted with the support. Subsequently, the support is reacted with a reporter-labeled anti-human antibody. The support is then examined for the presence of reporter-labeled antibody.


[0169] The solid surface reagent employed in the above assays and kits is prepared by known techniques for attaching protein material to solid support material, such as polymeric beads, dip sticks, 96-well plates or filter material. These attachment methods generally include non-specific adsorption of the protein to the support or covalent attachment of the protein, typically through a free amine group, to a chemically reactive group on the solid support, such as an activated carboxyl, hydroxyl, or aldehyde group. Alternatively, streptavidin coated plates can be used in conjunction with biotinylated antigen(s).


[0170] The polypeptides and antibodies of the present invention, including fragments thereof, may be used to detect Enterococcal species including E. faecalis using bio chip and biosensor technology. Bio chip and biosensors of the present invention may comprise the polypeptides of the present invention to detect antibodies, which specifically recognize Enterococcal species, including E. faecalis. Bio chip and biosensors of the present invention may also comprise antibodies which specifically recognize the polypeptides of the present invention to detect Enterococcal species, including E. faecalis or specific polypeptides of the present invention. Bio chips or biosensors comprising polypeptides or antibodies of the present invention may be used to detect Enterococcal species, including E. faecalis, in biological and environmental samples and to diagnose an animal, including humans, with an E. faecalis or other Enterococcal infection. Thus, the present invention includes both bio chips and biosensors comprising polypeptides or antibodies of the present invention and methods of their use.


[0171] The bio chips of the present invention may further comprise polypeptide sequences of other pathogens including bacteria, viral, parasitic, and fungal polypeptide sequences, in addition to the polypeptide sequences of the present invention, for use in rapid diffenertial pathogenic detection and diagnosis. The bio chips of the present invention may further comprise antibodies or fragements thereof specific for other pathogens including bacteria, viral, parasitic, and fungal polypeptide sequences, in addition to the antibodies or fragements thereof of the present invention, for use in rapid diffenertial pathogenic detection and diagnosis. The bio chips and biosensors of the present invention may also be used to monitor an E. faecalis or other Enterococcal infection and to monitor the genetic changes (amio acid deletions, insertions, substitutions, etc.) in response to drug therapy in the clinic and drug development in the laboratory. The bio chip and biosensors comprising polypeptides or antibodies of the present invention may also be used to simultaneously monitor the expression of a multiplicity of polypeptides, including those of the present invention. The polypeptides used to comprise a bio chip or biosensor of the present invention may be specified in the same manner as for the fragements, i.e, by their N-terminal and C-terminal positions or length in contigious amino acid residue. Methods and particular uses of the polypeptides and antibodies of the present invention to detect Enterococcal species, including E. faecalis, or specific polypeptides using bio chip and biosensor technology include those known in the art, those of the U.S. Pat. Nos. and World Pat. Nos. listed above for biochips and biosensors using polynucleotides of the present invention, and those of: U.S. Pat. Nos. 5658732, 5135852, 5567301, 5677196, 5690894 and World Pat. Nos. WO9729366, WO9612957, each incorporated herein in their entireties.


[0172] Treatment


[0173] Agonists and Antagonists—Assays and Molecules


[0174] The invention also provides a method of screening compounds to identify those which enhance or block the biological activity of the E. faecalis polypeptides of the present invention. The present invention further provides where the compounds kill or slow the growth of E. faecalis. The ability of E. faecalis antagonists, including E. faecalis ligands, to prophylactically or therapeutically block antibiotic resistance may be easily tested by the skilled artisan. See, e.g., Straden et al. (1997) J. Bacteriol. 179(1):9-16.


[0175] An agonist is a compound which increases the natural biological function or which functions in a manner similar to the polypeptides of the present invention, while antagonists decrease or eliminate such functions. Potential antagonists include small organic molecules, peptides, polypeptides, and antibodies that bind to a polypeptide of the invention and thereby inhibit or extinguish its activity.


[0176] The antagonists may be employed for instance to inhibit peptidoglycan cross bridge formation. Antibodies against E. faecalis may be employed to bind to and inhibit E. faecalis activity to treat antibiotic resistance. Any of the above antagonists may be employed in a composition with a pharmaceutically acceptable carrier.


[0177] Vaccines


[0178] The present invention also provides vaccines comprising one or more polypeptides of the present invention. Heterogeneity in the composition of a vaccine may be provided by combining E. faecalis polypeptides of the present invention. Multi-component vaccines of this type are desirable because they are likely to be more effective in eliciting protective immune responses against multiple species and strains of the Enterococcus genus than single polypeptide vaccines.


[0179] Multi-component vaccines are known in the art to elicit antibody production to numerous immunogenic components. See, e.g., Decker et al. (1996) J. Infect. Dis. 174:S270-275. In addition, a hepatitis B, diphtheria, tetanus, pertussis tetravalent vaccine has recently been demonstrated to elicit protective levels of antibodies in human infants against all four pathogenic agents. See, e.g., Aristegui, J. et al. (1997) Vaccine 15:7-9.


[0180] The present invention in addition to single-component vaccines includes multi-component vaccines. These vaccines comprise more than one polypeptide, immunogen or antigen. Thus, a multi-component vaccine would be a vaccine comprising more than one of the E. faecalis polypeptides of the present invention.


[0181] Further within the scope of the invention are whole cell and whole viral vaccines. Such vaccines may be produced recombinantly and involve the expression of one or more of the E. faecalis polypeptides described in Table 1. For example, the E. faecalis polypeptides of the present invention may be either secreted or localized intracellular, on the cell surface, or in the periplasmic space. Further, when a recombinant virus is used, the E. faecalis polypeptides of the present invention may, for example, be localized in the viral envelope, on the surface of the capsid, or internally within the capsid. Whole cells vaccines which employ cells expressing heterologous proteins are known in the art. See, e.g., Robinson, K. et al. (1997) Nature Biotech. 15:653-657; Sirard, J. et al. (1997) Infect. Immun. 65:2029-2033; Chabalgoity, J. et al. (1997) Infect. Immun. 65:2402-2412. These cells may be administered live or may be killed prior to administration. Chabalgoity, J. et al., supra, for example, report the successful use in mice of a live attenuated Salmonella vaccine strain which expresses a portion of a platyhelminth fatty acid-binding protein as a fusion protein on its cells surface.


[0182] A multi-component vaccine can also be prepared using techniques known in the art by combining one or more E. faecalis polypeptides of the present invention, or fragments thereof, with additional non-Enterococcal components (e.g., diphtheria toxin or tetanus toxin, and/or other compounds known to elicit an immune response). Such vaccines are useful for eliciting protective immune responses to both members of the Enterococcus genus and non-Enterococcal pathogenic agents.


[0183] The vaccines of the present invention also include DNA vaccines. DNA vaccines are currently being developed for a number of infectious diseases. See, et al., Boyer, et al. (1997) Nat. Med. 3:526-532; reviewed in Spier, R. (1996) Vaccine 14:1285-1288. Such DNA vaccines contain a nucleotide sequence encoding one or more E. faecalis polypeptides of the present invention oriented in a manner that allows for expression of the subject polypeptide. For example, the direct administration of plasmid DNA encoding B. burgdorgeri OspA has been shown to elicit protective immunity in mice against borrelial challenge. See, Luke et al. (1997) J. Infect. Dis. 175:91-97.


[0184] The present invention also relates to the administration of a vaccine which is co-administered with a molecule capable of modulating immune responses. Kim et al. (1997) Nature Biotech. 15:641-646, for example, report the enhancement of immune responses produced by DNA immunizations when DNA sequences encoding molecules which stimulate the immune response are co-administered. In a similar fashion, the vaccines of the present invention may be co-administered with either nucleic acids encoding immune modulators or the immune modulators themselves. These immune modulators include granulocyte macrophage colony stimulating factor (GM-CSF) and CD86.


[0185] The vaccines of the present invention may be used to confer resistance to Enterococcal infection by either passive or active immunization. When the vaccines of the present invention are used to confer resistance to Enterococcal infection through active immunization, a vaccine of the present invention is administered to an animal to elicit a protective immune response which either prevents or attenuates a Enterococcal infection. When the vaccines of the present invention are used to confer resistance to Enterococcal infection through passive immunization, the vaccine is provided to a host animal (e.g., human, dog, or mouse), and the antisera elicited by this antisera is recovered and directly provided to a recipient suspected of having an infection caused by a member of the Enierococcus genus.


[0186] The ability to label antibodies, or fragments of antibodies, with toxin molecules provides an additional method for treating Enterococcal infections when passive immunization is conducted. In this embodiment, antibodies, or fragments of antibodies, capable of recognizing the E. faecalis polypeptides disclosed herein, or fragments thereof, as well as other Enterococcus proteins, are labeled with toxin molecules prior to their administration to the patient. When such toxin derivatized antibodies bind to Enterococcus cells, toxin moieties will be localized to these cells and will cause their death.


[0187] The present invention thus concerns and provides a means for preventing or attenuating a Enterococcal infection resulting from organisms which have antigens that are recognized and bound by antisera produced in response to the polypeptides of the present invention. As used herein, a vaccine is said to prevent or attenuate a disease if its administration to an animal results either in the total or partial attenuation (i e., suppression) of a symptom or condition of the disease, or in the total or partial immunity of the animal to the disease.


[0188] The administration of the vaccine (or the antisera which it elicits) may be for either a “prophylactic” or “therapeutic” purpose. When provided prophylactically, the compound(s) are provided in advance of any symptoms of Enterococcal infection. The prophylactic administration of the compound(s) serves to prevent or attenuate any subsequent infection. When provided therapeutically, the compound(s) is provided upon or after the detection of symptoms which indicate that an animal may be infected with a member of the Enterococcus genus. The therapeutic administration of the compound(s) serves to attenuate any actual infection. Thus, the E. faecalis polypeptides, and fragments thereof, of the present invention may be provided either prior to the onset of infection (so as to prevent or attenuate an anticipated infection) or after the initiation of an actual infection.


[0189] The polypeptides of the invention, whether encoding a portion of a native protein or a functional derivative thereof, may be administered in pure form or may be coupled to a macromolecular carrier. Example of such carriers are proteins and carbohydrates. Suitable proteins which may act as macromolecular carrier for enhancing the immunogenicity of the polypeptides of the present invention include keyhole limpet hemacyanin (KLH) tetanus toxoid, pertussis toxin, bovine serum albumin, and ovalbumin. Methods for coupling the polypeptides of the present invention to such macromolecular carriers are disclosed in Harlow et al., ANTIBODIES: A LABORATORY MANUAL, (Cold Spring Harbor Laboratory Press, 2nd ed. 1988).


[0190] A composition is said to be “pharmacologically or physiologically acceptable” if its administration can be tolerated by a recipient animal and is otherwise suitable for administration to that animal. Such an agent is said to be administered in a “therapeutically effective amount” if the amount administered is physiologically significant. An agent is physiologically significant if its presence results in a detectable change in the physiology of a recipient patient.


[0191] While in all instances the vaccine of the present invention is administered as a pharmacologically acceptable compound, one skilled in the art would recognize that the composition of a pharmacologically acceptable compound varies with the animal to which it is administered. For example, a vaccine intended for human use will generally not be co-administered with Freund's adjuvant. Further, the level of purity of the E. faecalis polypeptides of the present invention will normally be higher when administered to a human than when administered to a non-human animal.


[0192] As would be understood by one of ordinary skill in the art, when the vaccine of the present invention is provided to an animal, it may be in a composition which may contain salts, buffers, adjuvants, or other substances which are desirable for improving the efficacy of the composition. Adjuvants are substances that can be used to specifically augment a specific immune response. These substances generally perform two functions: (1) they protect the antigen(s) from being rapidly catabolized after administration and (2) they nonspecifically stimulate immune responses.


[0193] Normally, the adjuvant and the composition are mixed prior to presentation to the immune system, or presented separately, but into the same site of the animal being immunized. Adjuvants can be loosely divided into several groups based upon their composition. These groups include oil adjuvants (for example, Freund's complete and incomplete), mineral salts (for example, AlK(SO4)2, AlNa(SO4)2, AlNH4(SO4), silica, kaolin, and carbon), polynucleotides (for example, poly IC and poly AU acids), and certain natural substances (for example, wax D from Mycobacterium tuberculosis, as well as substances found in Corynebacterium parvum, or Bordetella pertussis, and members of the genus Brucella. Other substances useful as adjuvants are the saponins such as, for example, Quil A. (Superfos A/S, Denmark). Preferred adjuvants for use in the present invention include aluminum salts, such as AlK(SO4)2, AlNa(SO4)2, and AlNH4(SO4). Examples of materials suitable for use in vaccine compositions are provided in REMINGTON'S PHARMACEUTICAL SCIENCES 1324-1341 (A. Osol, ed, Mack Publishing Co, Easton, Pa., (1980) (incorporated herein by reference).


[0194] The therapeutic compositions of the present invention can be administered parenterally by injection, rapid infusion, nasopharyngeal absorption (intranasopharangeally), dermoabsorption, or orally. The compositions may alternatively be administered intramuscularly, or intravenously. Compositions for parenteral administration include sterile aqueous or non-aqueous solutions, suspensions, and emulsions. Examples of non-aqueous solvents are propylene glycol, polyethylene glycol, vegetable oils such as olive oil, and injectable organic esters such as ethyl oleate. Carriers or occlusive dressings can be used to increase skin permeability and enhance antigen absorption. Liquid dosage forms for oral administration may generally comprise a liposome solution containing the liquid dosage form. Suitable forms for suspending liposomes include emulsions, suspensions, solutions, syrups, and elixirs containing inert diluents commonly used in the art, such as purified water. Besides the inert diluents, such compositions can also include adjuvants, wetting agents, emulsifying and suspending agents, or sweetening, flavoring, or perfuming agents.


[0195] Therapeutic compositions of the present invention can also be administered in encapsulated form. For example, intranasal immunization using vaccines encapsulated in biodegradable microsphere composed of poly(DL-lactide-co-glycolide). See, Shahin, R. et al. (1995) Infect. Immun. 63:1195-1200. Similarly, orally administered encapsulated Salmonella typhimurium antigens can also be used. Allaoui-Attarki, K. et al. (1997) Infect. Immun. 65:853-857. Encapsulated vaccines of the present invention can be administered by a variety of routes including those involving contacting the vaccine with mucous membranes (e.g., intranasally, intracolonicly, intraduodenally).


[0196] Many different techniques exist for the timing of the immunizations when a multiple administration regimen is utilized. It is possible to use the compositions of the invention more than once to increase the levels and diversities of expression of the immunoglobulin repertoire expressed by the immunized animal. Typically, if multiple immunizations are given, they will be given one to two months apart.


[0197] According to the present invention, an “effective amount” of a therapeutic composition is one which is sufficient to achieve a desired biological effect. Generally, the dosage needed to provide an effective amount of the composition will vary depending upon such factors as the animal's or human's age, condition, sex, and extent of disease, if any, and other variables which can be adjusted by one of ordinary skill in the art.


[0198] The antigenic preparations of the invention can be administered by either single or multiple dosages of an effective amount. Effective amounts of the compositions of the invention can vary from 0.01-1,000 μg/ml per dose, more preferably 0.1-500 μg/ml per dose, and most preferably 10-300 μg/ml per dose.



Examples


Example 1

[0199] Isolation of a Selected DNA Clone From the Deposited Sample of E. Faecalis


[0200] Three approaches can be used to isolate a E. faecalis clone comprising a polynucleotide of the present invention from any E. faecalis genomic DNA library. The E. faecalis strain V586 has been deposited as a convienent source for obtaining a E. faecalis strain although a wide varity of strains E. faecalis strains can be used which are known in the art.


[0201]

E. faecalis
genomic DNA is prepared using the following method. A 20 ml overnight bacterial culture grown in a rich medium (e.g., Trypticase Soy Broth, Brain Heart Infusion broth or Super broth), pelleted, washed two times with TES (3 OmM Tris-pH 8.0, 25 mM EDTA, 50 mM NaCl), and resuspended in 5 ml high salt TES (2.5 M NaCl). Lysostaphin is added to final concentration of approx 50 μg/ml and the mixture is rotated slowly 1 hour at 37 C to make protoplast cells. The solution is then placed in incubator (or place in a shaking water bath) and warmed to 55 C. Five hundred micro liter of 20% sarcosyl in TES (final concentration 2%) is then added to lyse the cells. Next, guanidine HCl is added to a final concentration of 7M (3.69 g in 5.5 ml). The mixture is swirled slowly at 55 C for 60-90 min (solution should clear). A CsCl gradient is then set up in SW41 ultra clear tubes using 20 ml 5.7 M CsCl and overlaying with 2.85 M CsCl. The gradient is carefully overlayed with the DNA-containing GuHCl solution. The gradient is spun at 30,000 rpm, 20 C for 24 hr and the lower DNA band is collected. The volume is increased to 5 ml with TE buffer. The DNA is then treated with protease K (10 μg/ml) overnight at 37 C, and precipitated with ethanol. The precipitated DNA is resuspended in a desired buffer.


[0202] In the first method, a plasmid is directly isolated by screening a plasmid E. faecalis genomic DNA library using a polynucleotide probe corresponding to a polynucleotide of the present invention. Particularly, a specific polynucleotide with 30-40 nucleotides is synthesized using an Applied Biosystems DNA synthesizer according to the sequence reported. The oligonucleotide is labeled, for instance, with 32P-γ-ATP using T4 polynucleotide kinase and purified according to routine methods. (See, e.g., Maniatis et al., Molecular Cloning: A Laboratory Manual, Cold Spring Harbor Press, Cold Spring, N.Y. (1982).) The library is transformed into a suitable host, as indicated above (such as XL-1 Blue (Stratagene)) using techniques known to those of skill in the art. See, e.g., Sambrook et al. MOLECULAR CLONING: A LABORATORY MANUAL (Cold Spring Harbor, N.Y. 2nd ed. 1989); Ausubel et al., CURRENT PROTOCALS IN MOLECULAR BIOLOGY (John Wiley and Sons, N.Y. 1989). The transformants are plated on 1.5% agar plates (containing the appropriate selection agent, e.g., ampicillin) to a density of about 150 transfornants (colonies) per plate. These plates are screened using Nylon membranes according to routine methods for bacterial colony screening. See, e.g., Sambrook et al. MOLECULAR CLONING: A LABORATORY MANUAL (Cold Spring Harbor, N.Y. 2nd ed. 1989); Ausubel et al., CURRENT PROTOCALS IN MOLECULAR BIOLOGY (John Wiley and Sons, N.Y. 1989) or other techniques known to those of skill in the art.


[0203] Alternatively, two primers of 15-25 nucleotides derived from the 5′ and 3′ ends of a polynucleotide of Table 1 are synthesized and used to amplify the desired DNA by PCR using a E. faecalis genomic DNA prep as a template. PCR is carried out under routine conditions, for instance, in 25 μl of reaction mixture with 0.5 μg of the above DNA template. A convenient reaction mixture is 1.5-5 mM MgCl2, 0.01% (w/v) gelatin, 20 μM each of dATP, dCTP, dGTP, dTTP, 25 pmol of each primer and 0.25 Unit of Taq polymerase. Thirty five cycles of PCR (denaturation at 94° C. for 1 min; annealing at 55° C. for 1 min; elongation at 72° C. for 1 min) are performed with a Perkin-Elmer Cetus automated thermal cycler. The amplified product is analyzed by agarose gel electrophoresis and the DNA band with expected molecular weight is excised and purified. The PCR product is verified to be the selected sequence by subcloning and sequencing the DNA product.


[0204] Finally, overlapping oligos of the DNA sequences of Table 1 can be chemically synthesized and used to generate a nucleotide sequence of desired length using PCR methods known in the art.



Example 2(a)

[0205] Expression and Purification Enterococcal polypeptides in E. Coli


[0206] The bacterial expression vector pQE60 was used for bacterial expression of some of the polypeptide fragements used in the soft tissue and systemic infection models discussed below. (QIAGEN, Inc., 9259 Eton Avenue, Chatsworth, Calif., 91311). pQE60 encodes ampicillin antibiotic resistance (“Ampr”) and contains a bacterial origin of replication (“ori”), an IPTG inducible promoter, a ribosome binding site (“RBS”), six codons encoding histidine residues that allow affinity purification using nickel-nitrilo-tri-acetic acid (“Ni-NTA”) affinity resin (QIAGEN, Inc., supra) and suitable single restriction enzyme cleavage sites. These elements are arranged such that an inserted DNA fragment encoding a polypeptide expresses that polypeptide with the six His residues (i.e., a “6× His tag”) covalently linked to the carboxyl terminus of that polypeptide.


[0207] The DNA sequence encoding the desired portion of a E. faecalis protein of the present invention was amplified from E. faecalis genomic DNA using PCR oligonucleotide primers which anneal to the 5′ and 3′ sequences coding for the portions of the E. faecalis polynucleotide shown in Table 1. Additional nucleotides containing restriction sites to facilitate cloning in the pQE60 vector are added to the 5′ and 3′ sequences, respectively.


[0208] For cloning the mature protein, the 5′ primer has a sequence containing an appropriate restriction site followed by nucleotides of the amino terminal coding sequence of the desired E. faecalis polynucleotide sequence in Table 1. One of ordinary skill in the art would appreciate that the point in the protein coding sequence where the 5′ and 3′ primers begin may be varied to amplify a DNA segment encoding any desired portion of the complete protein shorter or longer than the mature form. The 3′ primer has a sequence containing an appropriate restriction site followed by nucleotides complementary to the 3′ end of the polypeptide coding sequence of Table 1, excluding a stop codon, with the coding sequence aligned with the restriction site so as to maintain its reading frame with that of the six His codons in the pQE60 vector.


[0209] The amplified E. faecalis DNA fragment and the vector pQE60 were digested with restriction enzymes which recognize the sites in the primers and the digested DNAs were then ligated together. The E. faecalis DNA was inserted into the restricted pQE60 vector in a manner which places the E. faecalis protein coding region downstream from the IPTG-inducible promoter and in-frame with an initiating AUG and the six histidine codons.


[0210] The ligation mixture was transformed into competent E. coli cells using standard procedures such as those described by Sambrook et al., supra. E. coli strain M15/rep4, containing multiple copies of the plasmid pREP4, which expresses the lac repressor and confers kanamycin resistance (“Kanr”), was used in carrying out the illustrative example described herein. This strain, which was only one of many that are suitable for expressing a E. faecalis polypeptide, is available commercially (QIAGEN, Inc., supra). Transformants were identified by their ability to grow on LB agar plates in the presence of ampicillin and kanamycin. Plasmid DNA was isolated from resistant colonies and the identity of the cloned DNA confirmed by restriction analysis, PCR and DNA sequencing.


[0211] Clones containing the desired constructs were grown overnight (“O/N”) in liquid culture in LB media supplemented with both ampicillin (100 μg/ml) and kanamycin (25 μg/ml). The O/N culture was used to inoculate a large culture, at a dilution of approximately 1:25 to 1:250. The cells were grown to an optical density at 600 nm (“OD600”) of between 0.4 and 0.6. Isopropyl-β-D-thiogalactopyranoside (“IPTG”) was then added to a final concentration of 1 mM to induce transcription from the lac repressor sensitive promoter, by inactivating the lacd repressor. Cells subsequently were incubated further for 3 to 4 hours. Cells then were harvested by centrifugation.


[0212] The cells were then stirred for 3-4 hours at 4° C. in 6 M guanidine-HCl, pH 8. The cell debris was removed by centrifugation, and the supernatant containing the E. faecalis polypeptide was loaded onto a nickel-nitrilo-tri-acetic acid (“Ni-NTA”) affinity resin column (QIAGEN, Inc., supra). Proteins with a 6× His tag bind to the Ni-NTA resin with high affinity were purified in a simple one-step procedure (for details see: The QlAexpressionist, 1995, QIAGEN, Inc., supra). Briefly the supernatant was loaded onto the column in 6 M guanidine-HCl, pH 8, the column was first washed with 10 volumes of 6 M guanidine-HCl, pH 8, then washed with 10 volumes of 6 M guanidine-HCl pH 6, and finally the E. faecalis polypeptide was eluted with 6 M guanidine-HCI, pH 5.


[0213] The purified protein was then renatured by dialyzing it against phosphate-buffered saline (PBS) or 50 mM Na-acetate, pH 6 buffer plus 200 mM NaCl. Alternatively, the protein could be successfully refolded while immobilized on the Ni-NTA column. The recommended conditions are as follows: renature using a linear 6M-1M urea gradient in 500 mM NaCl, 20% glycerol, 20 mM Tris/HCl pH 7.4, containing protease inhibitors. The renaturation should be performed over a period of 1.5 hours or more. After renaturation the proteins can be eluted by the addition of 250 mM immidazole. Immidazole was removed by a final dialyzing step against PBS or 50 mM sodium acetate pH 6 buffer plus 200 mM NaCl. The purified protein was stored at 4° C. or frozen at −80° C.


[0214] Some of the polypeptide of the present invention were prepared using a non-denaturing protein purification method. For these polypeptides, the cell pellet from each liter of culture was resuspended in 25 mls of Lysis Buffer A at 4° C. (Lysis Buffer A=50 mM Na-phosphate, 300 mM NaCl, 10 mM 2-mercaptoethanol, 10% Glycerol, pH 7.5 with 1 tablet of Complete EDTA-free protease inhibitor cocktail (Boehringer Mannheim #1873580) per 50 ml of buffer). Absorbance at 550 nm was approximately 10-20 O.D./ml. The suspension was then put through three freeze/thaw cycles from −70° C. (using a ethanol-dry ice bath) up to room temperature. The cells were lysed via sonication in short 10 sec bursts over 3 minutes at approximately 80 W while kept on ice. The sonicated sample was then centrifuged at 15,000 RPM for 30 minutes at 4° C. The supernatant was passed through a column containing 1.0 ml of CL-4B resin to pre-clear the sample of any proteins that may bind to agarose non-specifically, and the flow-through fraction was collected.


[0215] The pre-cleared flow-through was applied to a nickel-nitrilo-tri-acetic acid (“Ni-NTA”) affinity resin column (Quiagen, Inc., supra). Proteins with a 6× His tag bind to the Ni-NTA resin with high affinity and can be purified in a simple one-step procedure. Briefly, the supernatant was loaded onto the column in Lysis Buffer A at 4° C., the column was first washed with 10 volumes of Lysis Buffer A until the A280 of the eluate returns to the baseline. Then, the column was washed with 5 volumes of 40 mM Imidazole (92% Lysis Buffer A/8% Buffer B) (Buffer B=50 mM Na-Phosphate, 300 mM NaCl, 10% Glycerol, 10 mM 2-mercaptoethanol, 500 mM Imidazole, pH of the final buffer should be 7.5). The protein was eluted off of the column with a series of increasing Imidazole solutions made by adjusting the ratios of Lysis Buffer A to Buffer B. Three different concentrations were used: 3 volumes of 75 mM Imidazole, 3 volumes of 150 mM Imidazole, 5 volumes of 500 mM Imidazole. The fractions containing the purified protein were analyzed using 8%, 10% or 14% SDS-PAGE depending on the protein size. The purified protein was then dialyzed 2× against phosphate-buffered saline (PBS) in order to place it into an easily workable buffer. The purified protein was stored at 4° C. or frozen at −80°.


[0216] The following alternative method may be used to purify E. faecalis expressed in E. coli when it is present in the form of inclusion bodies. Unless otherwise specified, all of the following steps are conducted at 4-10° C.


[0217] Upon completion of the production phase of the E. coli fermentation, the cell culture is cooled to 4-1 0° C. and the cells are harvested by continuous centrifugation at 15,000 rpm (Heraeus Sepatech). On the basis of the expected yield of protein per unit weight of cell paste and the amount of purified protein required, an appropriate amount of cell paste, by weight, is suspended in a buffer solution containing 100 mM Tris. 50 mM EDTA, pH 7.4. The cells are dispersed to a homogeneous suspension using a high shear mixer.


[0218] The cells are then lysed by passing the solution through a microfluidizer (Microfuidics, Corp. or APV Gaulin, Inc.) twice at 4000-6000 psi. The homogenate is then mixed with NaCl solution to a final concentration of 0.5 M NaCl, followed by centrifugation at 7000× g for 15 min. The resultant pellet is washed again using 0.5 M NaCl, 100 mM Tris, 50 mM EDTA, pH 7.4.


[0219] The resulting washed inclusion bodies are solubilized with 1.5 M guanidine hydrochloride (GuHCl) for 2-4 hours. After 7000× g centrifugation for 15 min., the pellet is discarded and the E. faecalis polypeptide-containing supernatant is incubated at 4° C. overnight to allow further GuHCI extraction.


[0220] Following high speed centrifugation (30,000× g) to remove insoluble particles, the GuHCI solubilized protein is refolded by quickly mixing the GuHCl extract with 20 volumes of buffer containing 50 mM sodium, pH 4.5, 150 mM NaCl, 2 mM EDTA by vigorous stirring. The refolded diluted protein solution is kept at 4° C. without mixing for 12 hours prior to further purification steps.


[0221] To clarify the refolded E. faecalis polypeptide solution, a previously prepared tangential filtration unit equipped with 0.16 μm membrane filter with appropriate surface area (e.g., Filtron), equilibrated with 40 mM sodium acetate, pH 6.0 is employed. The filtered sample is loaded onto a cation exchange resin (e.g., Poros HS-50, Perseptive Biosystems). The column is washed with 40 mM sodium acetate, pH 6.0 and eluted with 250 mM, 500 mM, 1000 mM, and 1500 mM NaCl in the same buffer, in a stepwise manner. The absorbance at 280 mm of the effluent is continuously monitored. Fractions are collected and further analyzed by SDS-PAGE.


[0222] Fractions containing the E. faecalis polypeptide are then pooled and mixed with 4 volumes of water. The diluted sample is then loaded onto a previously prepared set of tandem columns of strong anion (Poros HQ-50, Perseptive Biosystems) and weak anion (Poros CM-20, Perseptive Biosystems) exchange resins. The columns are equilibrated with 40 mM sodium acetate, pH 6.0. Both columns are washed with 40 mM sodium acetate, pH 6.0, 200 mM NaCl. The CM-20 column is then eluted using a 10 column volume linear gradient ranging from 0.2 M NaCl, 50 mM sodium acetate, pH 6.0 to 1.0 M NaCl, 50 mM sodium acetate, pH 6.5. Fractions are collected under constant A280 monitoring of the effluent. Fractions containing the E. faecalis polypeptide (determined, for instance, by 16% SDS-PAGE) are then pooled.


[0223] The resultant E. faecalis polypeptide exhibits greater than 95% purity after the above refolding and purification steps. No major contaminant bands are observed from Commassie blue stained 16% SDS-PAGE gel when 5 μg of purified protein is loaded. The purified protein is also tested for endotoxin/LPS contamination, and typically the LPS content is less than 0.1 ng/ml according to LAL assays.



Example 2(b)

[0224] Alternative Expression and Purification Enterococcalpolypeptides in E. Coli


[0225] the vector pQE10 was alternatively used to clone and express some of the polypeptides of the present invention for use in the soft tissue and systemic infection models discussed below. The difference being such that an inserted DNA fragment encoding a polypeptide expresses that polypeptide with the six His residues (i.e., a “6× His tag”) covalently linked to the amino terminus of that polypeptide. The bacterial expression vector pQE10 (QIAGEN, Inc., 9259 Eton Avenue, Chatsworth, Calif., 91311) was used in this example. The components of the pQE10 plasmid are arranged such that the inserted DNA sequence encoding a polypeptide of the present invention expresses the polypeptide with the six His residues (i.e., a “6× His tag”)) covalently linked to the amino terminus.


[0226] The DNA sequences encoding the desired portions of a polypeptide of Table 1 were amplified using PCR oligonucleotide primers from genomic E. faecalis DNA. The PCR primers anneal to the nucleotide sequences encoding the desired amino acid sequence of a polypeptide of the present invention. Additional nucleotides containing restriction sites to facilitate cloning in the pQE 10 vector were added to the 5′ and 3′ primer sequences, respectively.


[0227] For cloning a polypeptide of the present invention, the 5′ and 3′ primers were selected to amplify their respective nucleotide coding sequences. One of ordinary skill in the art would appreciate that the point in the protein coding sequence where the 5′ and 3′ primers begins may be varied to amplify a DNA segment encoding any desired portion of a polypeptide of the present invention. The 5′ primer was designed so the coding sequence of the 6× His tag is aligned with the restriction site so as to maintain its reading frame with that of E. faecalis polypeptide. The 3′ was designed to include an stop codon. The amplified DNA fragment was then cloned, and the protein expressed, as described above for the pQE60 plasmid.


[0228] The DNA sequences encoding the amino acid sequences of Table 1 may also be cloned and expressed as fusion proteins by a protocol similar to that described directly above, wherein the pET-32b(+) vector (Novagen, 601 Science Drive, Madison, Wis. 53711) is preferentially used in place of pQE10.


[0229] The above methods are not limited to the polypeptide fragements actually produced. The above method, like the methods below, can be used to produce either full length polypeptides or desired fragements therof.



Example 2(c)

[0230] Alternative Expression and Pitriflcation of Enterococcal polypeptides in E. Coli


[0231] The bacterial expression vector pQE60 is used for bacterial expression in this example (QIAGEN, Inc., 9259 Eton Avenue, Chatsworth, Calif., 91311). However, in this example, the polypeptide coding sequence is inserted such that translation of the six His codons is prevented and, therefore, the polypeptide is produced with no 6× His tag.


[0232] The DNA sequence encoding the desired portion of the E. faecalis amino acid sequence is amplified from an E. faecalis genomic DNA prep the deposited DNA clones using PCR oligonucleotide primers which anneal to the 5′ and 3′ nucleotide sequences corresponding to the desired portion of the E. faecalis polypeptides. Additional nucleotides containing restriction sites to facilitate cloning in the pQE60 vector are added to the 5′ and 3′ primer sequences.


[0233] For cloning a E. faecalis polypeptides of the present invention, 5′ and 3′ primers are selected to amplify their respective nucleotide coding sequences. One of ordinary skill in the art would appreciate that the point in the protein coding sequence where the 5′ and 3′ primers begin may be varied to amplify a DNA segment encoding any desired portion of a polypeptide of the present invention. The 3′ and 5′ primers contain appropriate restriction sites followed by nucleotides complementary to the 5′ and 3′ ends of the coding sequence respectively. The 3′ primer is additionally designed to include an in-frame stop codon.


[0234] The amplified E. faecalis DNA fragments and the vector pQE60 are digested with restriction enzymes recognizing the sites in the primers and the digested DNAs are then ligated together. Insertion of the E. faecalis DNA into the restricted pQE60 vector places the E. faecalis protein coding region including its associated stop codon downstream from the IPTG-inducible promoter and in-frame with an initiating AUG. The associated stop codon prevents translation of the six histidine codons downstream of the insertion point.


[0235] The ligation mixture is transformed into competent E. coli cells using standard procedures such as those described by Sambrook et al. E. coli strain M15/rep4, containing multiple copies of the plasmid pREP4, which expresses the lac repressor and confers kanamycin resistance (“Kanr”), is used in carrying out the illustrative example described herein. This strain, which is only one of many that are suitable for expressing E. faecalis polypeptide, is available commercially (QIAGEN, Inc., supra). Transformants are identified by their ability to grow on LB plates in the presence of ampicillin and kanamycin. Plasmid DNA is isolated from resistant colonies and the identity of the cloned DNA confirmed by restriction analysis, PCR and DNA sequencing.


[0236] Clones containing the desired constructs are grown overnight (“O/N”) in liquid culture in LB media supplemented with both ampicillin (100 μg/ml) and kanamycin (25 μg/ml). The O/N culture is used to inoculate a large culture, at a dilution of approximately 1:25 to 1:250. The cells are grown to an optical density at 600 nm (“OD600”) of between 0.4 and 0.6. isopropyl-b-D-thiogalactopyranoside (“IPTG”) is then added to a final concentration of 1 mM to induce transcription from the lac repressor sensitive promoter, by inactivating the lacl repressor. Cells subsequently are incubated further for 3 to 4 hours. Cells then are harvested by centrifugation.


[0237] To purify the E. faecalis polypeptide, the cells are then stirred for 3-4 hours at 4° C. in 6 M guanidine-HCl, pH 8. The cell debris is removed by centrifugation, and the supernatant containing the E. faecalis polypeptide is dialyzed against 50 mM Na-acetate buffer pH 6, supplemented with 200 mM NaCl. Alternatively, the protein can be successfully refolded by dialyzing it against 500 mM NaCl, 20% glycerol, 25 mM Tris/HCl pH 7.4, containing protease inhibitors. After renaturation the protein can be purified by ion exchange, hydrophobic interaction and size exclusion chromatography. Alternatively, an affinity chromatography step such as an antibody column can be used to obtain pure E. faecalis polypeptide. The purified protein is stored at 4° C. or frozen at −80° C.


[0238] The following alternative method may be used to purify E. faecalis polypeptides expressed in E. coli when it is present in the form of inclusion bodies. Unless otherwise specified, all of the following steps are conducted at 4-10° C.


[0239] Upon completion of the production phase of the E. coli fermentation, the cell culture is cooled to 4-10° C. and the cells are harvested by continuous centrifugation at 15,000 rpm (Heraeus Sepatech). On the basis of the expected yield of protein per unit weight of cell paste and the amount of purified protein required, an appropriate amount of cell paste, by weight, is suspended in a buffer solution containing 100 mM Tris, 50 mM EDTA, pH 7.4. The cells are dispersed to a homogeneous suspension using a high shear mixer.


[0240] The cells ware then lysed by passing the solution through a microfluidizer (Microfuidics, Corp. or APV Gaulin, Inc.) twice at 4000-6000 psi. The homogenate is then mixed with NaCi solution to a final concentration of 0.5 M NaCl, followed by centrifugation at 7000× g for 15 min. The resultant pellet is washed again using 0.5 M NaCl, 100 mM Tris, 50 mM EDTA, pH 7.4.


[0241] The resulting washed inclusion bodies are solubilized with 1.5 M guanidine hydrochloride (GuHCl) for 2-4 hours. After 7000× g centrifugation for 15 min., the pellet is discarded and the E. faecalis polypeptide-containing supernatant is incubated at 4° C. overnight to allow further GuHCl extraction.


[0242] Following high speed centrifugation (30,000× g) to remove insoluble particles, the GuHCI solubilized protein is refolded by quickly mixing the GuHCl extract with 20 volumes of buffer containing 50 mM sodium, pH 4.5, 150 mM NaCl, 2 mM EDTA by vigorous stirring. The refolded diluted protein solution is kept at 4° C. without mixing for 12 hours prior to further purification steps.


[0243] To clarify the refolded E. faecalis polypeptide solution, a previously prepared tangential filtration unit equipped with 0.16 μm membrane filter with appropriate surface area (e.g., Filtron), equilibrated with 40 mM sodium acetate, pH 6.0 is employed. The filtered sample is loaded onto a cation exchange resin (e.g., Poros HS-50, Perseptive Biosystems). The column is washed with 40 mM sodium acetate. pH 6.0 and eluted with 250 mM, 500 mM, 1000 mM, and 1500 mM NaCl in the same buffer, in a stepwise manner. The absorbance at 280 mm of the effluent is continuously monitored. Fractions are collected and further analyzed by SDS-PAGE.


[0244] Fractions containing the E. faecalis polypeptide are then pooled and mixed with 4 volumes of water. The diluted sample is then loaded onto a previously prepared set of tandem columns of strong anion (Poros HQ-50, Perseptive Biosystems) and weak anion (Poros CM-20, Perseptive Biosystems) exchange resins. The columns are equilibrated with 40 mM sodium acetate, pH 6.0. Both columns are washed with 40 mM sodium acetate, pH 6.0, 200 mM NaCl. The CM-20 column is then eluted using a 10 column volume linear gradient ranging from 0.2 M NaCl, 50 mM sodium acetate, pH 6.0 to 1.0 M NaCl, 50 mM sodium acetate, pH 6.5. Fractions are collected under constant A280 monitoring of the effluent. Fractions containing the E. faecalis polypeptide (determined, for instance, by 16% SDS-PAGE) are then pooled.


[0245] The resultant E. faecalis polypeptide exhibits greater than 95% purity after the above refolding and purification steps. No major contaminant bands are observed from Commassie blue stained 16% SDS-PAGE gel when 5 μg of purified protein is loaded. The purified protein is also tested for endotoxin/LPS contamination, and typically the LPS content is less than 0.1 ng/ml according to LAL assays.



Example 2(d)

[0246] Cloning and Expression of E. Faecalis in Other Bacteria


[0247]

E. faecalis
polypeptides can also be produced in: E. faecalis using the methods of S. Skinner et al., (1988) Mol. Microbiol. 2:289-297 or J. I. Moreno (1996) Protein Expr. Purif. 8(3):332-340; Lactobacillus using the methods of C. Rush et al., 1997 Appl. Microbiol. Biotechnol. 47(5):537-542; or in Bacillus suibtilis using the methods Chang et al., U.S. Pat. No. 4,952,508.



Example 3

[0248] Cloning and Expression in COS Cells


[0249] A E. faecalis expression plasmid is made by cloning a portion of the DNA encoding a E. faecalis polypeptide into the expression vector pDNAI/Amp or pDNAIII (which can be obtained from Invitrogen, Inc.). The expression vector pDNAI/amp contains: (1) an E. coli origin of replication effective for propagation in E. coli and other prokaryotic cells; (2) an ampicillin resistance gene for selection of plasmid-containing prokaryotic cells; (3) an SV40 origin of replication for propagation in eukaryotic cells; (4) a CMV promoter, a polylinker, an SV40 intron; (5) several codons encoding a hemagglutinin fragment (i.e., an “HA” tag to facilitate purification) followed by a termination codon and polyadenylation signal arranged so that a DNA can be conveniently placed under expression control of the CMV promoter and operably linked to the SV40 intron and the polyadenylation signal by means of restriction sites in the polylinker. The HA tag corresponds to an epitope derived from the influenza hemagglutinin protein described by Wilson et al. 1984 Cell 37:767. The fusion of the HA tag to the target protein allows easy detection and recovery of the recombinant protein with an antibody that recognizes the HA epitope. pDNAIII contains, in addition, the selectable neomycin marker.


[0250] A DNA fragment encoding a E. faecalis polypeptide is cloned into the polylinker region of the vector so that recombinant protein expression is directed by the CMV promoter. The plasmid construction strategy is as follows. The DNA from a E. faecalis genomic DNA prep is amplified using primers that contain convenient restriction sites, much as described above for construction of vectors for expression of E. faecalis in E. coli. The 5′ primer contains a Kozak sequence, an AUG start codon, and nucleotides of the 5′ coding region of the E. faecalis polypeptide. The 3′ primer, contains nucleotides complementary to the 3′ coding sequence of the E. faecalis DNA. a stop codon, and a convenient restriction site.


[0251] The PCR amplified DNA fragment and the vector, pDNAI/Amp, are digested with appropriate restriction enzymes and then ligated. The ligation mixture is transformed into an appropriate E. coli strain such as SURE™ (Stratagene Cloning Systems, La Jolla, Calif. 92037), and the transformed culture is plated on ampicillin media plates which then are incubated to allow growth of ampicillin resistant colonies. Plasmid DNA is isolated from resistant colonies and examined by restriction analysis or other means for the presence of the fragment encoding the E. faecalis polypeptide


[0252] For expression of a recombinant E. faecalis polypeptide, COS cells are transfected with an expression vector, as described above, using DEAE-dextran, as described, for instance, by Sambrook et al. (supra). Cells are incubated under conditions for expression of E. faecalis by the vector.


[0253] Expression of the E. faecalis-HA fusion protein is detected by radiolabeling and immunoprecipitation, using methods described in, for example Harlow et al., supra. To this end, two days after transfection, the cells are labeled by incubation in media containing 35S-cysteine for 8 hours. The cells and the media are collected, and the cells are washed and the lysed with detergent-containing RIPA buffer: 150 mM NaCl, 1% NP-40, 0.1% SDS, 1% NP-40, 0.5% DOC, 50 mM TRIS, pH 7.5, as described by Wilson et al. (supra ). Proteins are precipitated from the cell lysate and from the culture media using an HA-specific monoclonal antibody. The precipitated proteins then are analyzed by SDS-PAGE and autoradiography. An expression product of the expected size is seen in the cell lysate, which is not seen in negative controls.



Example 4

[0254] Cloning and Expression in CHO Cells


[0255] The vector pC4 is used for the expression of E. faecalis polypeptide in this example. Plasmid pC4 is a derivative of the plasmid pSV2-dhfr (ATCC Accession No. 37146). The plasmid contains the mouse DHFR gene under control of the SV40 early promoter. Chinese hamster ovary cells or other cells lacking dihydrofolate activity that are transfected with these plasmids can be selected by growing the cells in a selective medium (alpha minus MEM, Life Technologies) supplemented with the chemotherapeutic agent methotrexate. The amplification of the DHFR genes in cells resistant to methotrexate (MTX) has been well documented. See, e.g., Alt et al., 1978, J. Biol. Chem. 253:1357-1370; Hamlin et al., 1990, Biochem. et Biophys. Acta, 1097:107-143; Page et al., 1991, Biotechnology 9:64-68. Cells grown in increasing concentrations of MTX develop resistance to the drug by overproducing the target enzyme, DHFR, as a result of amplification of the DHFR gene. If a second gene is linked to the DHFR gene, it is usually co-amplified and over-expressed. It is known in the art that this approach may be used to develop cell lines carrying more than 1,000 copies of the amplified gene(s). Subsequently, when the methotrexate is withdrawn, cell lines are obtained which contain the amplified gene integrated into one or more chromosome(s) of the host cell.


[0256] Plasmid pC4 contains the strong promoter of the long terminal repeat (LTR) of the Rouse Sarcoma Virus, for expressing a polypeptide of interest, Cullen, et al. (1985) Mol. Cell. Biol. 5:438-447; plus a fragment isolated from the enhancer of the immediate early gene of human cytomegalovirus (CMV), Boshart, et al., 1985, Cell 41:521-530. Downstream of the promoter are the following single restriction enzyme cleavage sites that allow the integration of the genes: Bam HI, Xba I, and Asp 718. Behind these cloning sites the plasmid contains the 3′ intron and polyadenylation site of the rat preproinsulin gene. Other high efficiency promoters can also be used for the expression, e.g., the human β-actin promoter, the SV40 early or late promoters or the long terminal repeats from other retroviruses, e.g., HIV and HTLVI. Clontech's Tet-Off and Tet-On gene expression systems and similar systems can be used to express the E. faecalis polypeptide in a regulated way in mammalian cells (Gossen et al., 1992, Proc. Natl. Acad. Sci. USA 89:5547-5551. For the polyadenylation of the mRNA other signals, e.g., from the human growth hormone or globin genes can be used as well. Stable cell lines carrying a gene of interest integrated into the chromosomes can also be selected upon co-transfection with a selectable marker such as gpt, G418 or hygromycin. It is advantageous to use more than one selectable marker in the beginning, e.g., G418 plus methotrexate.


[0257] The plasmid pC4 is digested with the restriction enzymes and then dephosphorylated using calf intestinal phosphates by procedures known in the art. The vector is then isolated from a 1% agarose gel. The DNA sequence encoding the E. faecalis polypeptide is amplified using PCR oligonucleotide primers corresponding to the 5′ and 3′ sequences of the desired portion of the gene. A 5′ primer containing a restriction site, a Kozak sequence, an AUG start codon, and nucleotides of the 5′ coding region of the E. faecalis polypeptide is synthesized and used. A 3′ primer, containing a restriction site, stop codon, and nucleotides complementary to the 3′ coding sequence of the E. faecalis polypeptides is synthesized and used. The amplified fragment is digested with the restriction endonucleases and then purified again on a 1% agarose gel. The isolated fragment and the dephosphorylated vector are then ligated with T4 DNA ligase. E. coli HB101 or XL-1 Blue cells are then transformed and bacteria are identified that contain the fragment inserted into plasmid pC4 using, for instance, restriction enzyme analysis.


[0258] Chinese hamster ovary cells lacking an active DHFR gene are used for transfection. Five μg of the expression plasmid pC4 is cotransfected with 0.5 μg of the plasmid pSVneo using a lipid-mediated transfection agent such as Lipofectin™ or LipofectAMINE™ (LifeTechnologies Gaithersburg, MD). The plasmid pSV2-neo contains a dominant selectable marker, the neo gene from Tn5 encoding an enzyme that confers resistance to a group of antibiotics including G418. The cells are seeded in alpha minus MEM supplemented with 1 mg/ml G418. After 2 days, the cells are trypsinized and seeded in hybridoma cloning plates (Greiner, Germany) in alpha minus MEM supplemented with 10, 25, or 50 ng/ml of methotrexate plus 1 mg/ml G418. After about 10-14 days single clones are trypsinized and then seeded in 6-well petri dishes or 10 ml flasks using different concentrations of methotrexate (50 nM, 100 nM, 200 nM, 400 nM, 800 nM). Clones growing at the highest concentrations of methotrexate are then transferred to new 6-well plates containing even higher concentrations of methotrexate (1 μM, 2 μM, 5 μM, 10 mM, 20 mM). The same procedure is repeated until clones are obtained which grow at a concentration of 100-200 μM. Expression of the desired gene product is analyzed, for instance, by SDS-PAGE and Western blot or by reversed phase HPLC analysis.



Example 5

[0259] Quantitative Murine Soft Tissue Infection Model for E. Faecalis


[0260] Compositions of the present invention, including polypeptides and peptides, are assayed for their ability to function as vaccines or to enhance/stimulate an immune response to a bacterial species (e.g., E. faecalis) using the following quantitative murine soft tissue infection model. Mice (e.g., NIH Swiss female mice, approximately 7 weeks old) are first treated with a biologically protective effective amount, or immune enhancing/stimulating effective amount of a composition of the present invention using methods known in the art, such as those discussed above. See,e.g., Harlow et al., ANTIBODIES: A LABORATORY MANUAL, (Cold Spring Harbor Laboratory Press, 2nd ed. 1988). An example of an appropriate starting dose is 20 μg per animal.


[0261] The desired bacterial species used to challenge the mice, such as E. faecalis, is grown as an overnight culture. The culture is diluted to a concentration of 5×108 cfu/ml, in an appropriate media, mixed well, serially diluted, and titered. The desired doses are further diliuted 1:2 with sterilized Cytodex 3 microcarrier beads preswollen in sterile PBS (3 g/100 ml). Mice are anesthetize briefly until docile, but still mobile and injected with 0.2 ml of the Cytodex 3 bead/bacterial mixture into each animal subcutaneously in the inguinal region. After four days, counting the day of injection as day one, mice are sacrificed and the contents of the abscess is excised and placed in a 15 ml conical tube containing 1.0 ml of sterile PBS. The contents of the abscess is then enzymatically treated and plated as follows.


[0262] The abscess is first disrupted by vortexing with sterilized glass beads placed in the tubes. 3.Omls of prepared enzyme mixture (1.0 ml Collagenase D (4.0 mg/ml), 1.0 ml Trypsin (6.0 mg/ml) and 8.0 mls PBS) is then added to each tube followed by a 20 min. incubation at 37 C. The solution is then centrifuged and the supernatant drawn off. 0.5 ml dH20 is then added and the tubes are vortexed and then incubated for 10 min. at room temperature. 0.5 ml media is then added and samples are serially diluted and plated onto agar plates, and grown overnight at 37 C. Plates with distinct and separate colonies are then counted, compared to positive and negative control samples, and quantified. The method can be used to identify composition and determine appropriate and effective doses for humans and other animals by comparing the effective doses of compositions of the present invention with compositions known in the art to be effective in both mice and humans. Doses for the effective treatment of humans and other animals, using compositions of the present invention, are extrapolated using the data from the above experiments of mice. It is appreciated that further studies in humans and other animals may be needed to determine the most effective doses using methods of clinical practice known in the art.



Example 6

[0263] Murine Systemic Neutropenic Model for E. Faecalis Infection


[0264] Compositions of the present invention, including polypeptides and peptides, are assayed for their ability to function as vaccines or to enhance/stimulate an immune response to a bacterial species (e.g., E. faecalis) using the following qualitative murine systemic neutropenic model. Mice (e.g., NIH Swiss female mice, approximately 7 weeks old) are first treated with a biologically protective effective amount, or immune enhancing/stimulating effective amount of a composition of the present invention using methods known in the art, such as those discussed above. See, e.g., Harlow et al., ANTIBODIES: A LABORATORY MANUAL, (Cold Spring Harbor Laboratory Press, 2nd ed. 1988). An example of an appropriate starting dose is 20 μg per animal. Mice are then injected with 250-300 mg/kg cyclophosphamide intraperitonially. Counting the day of C.P. injection as day one, the mice are left untreated for 5 days to begin recovery of PMNL'S.


[0265] The desired bacterial species used to challenge the mice, such as E. faecalis, is grown as an overnight culture. The culture is diluted to a concentration of 5×108 cfu/ml, in an appropriate media, mixed well, serially diluted, and titered. The desired doses are further diliuted 1:2 in 4% Brewer's yeast in media. Mice are injected with the bacteria/brewer's yeast challenge intraperitonially. The Brewer's yeast solution alone is used as a control. The mice are then monitered twice daily for the first week following challenge, and once a day for the next week to ascertain morbidity and mortality. Mice remaining at the end of the experiment are sacrificed. The method can be used to identify compositions and determine appropriate and effective doses for humans and other animals by comparing the effective doses of compositions of the present invention with compositions known in the art to be effective in both mice and humans. Doses for the effective treatment of humans and other animals, using compositions of the present invention, are extrapolated using the data from the above experiments of mice. It is appreciated that further studies in humans and other animals may be needed to determine the most effective doses using methods of clinical practice known in the art.


[0266] The disclosure of all publications (including patents, patent applications, journal articles, laboratory manuals, books, or other documents) cited herein are hereby incorporated by reference in their entireties.


[0267] The present invention is not to be limited in scope by the specific embodiments described herein, which are intended as single illustrations of individual aspects of the invention. Functionally equivalent methods and components are within the scope of the invention, in addition to those shown and described herein and will become apparant to those skilled in the art from the foregoing description and accompanying drawings. Such modifications are intended to fall within the scope of the appended claims.
1TABLE 1Nucleotide and Amino Acid Seqeuences of E. faecalis Genes.EF001-1 (SEQ ID NO:1)TGAAAGAATA TTGCCAGAAC GTGGCGAGCA AATTGTTTTA TAAATTTTTT TAAGGGAGAGAAAAAAATGA AGTTCAAAAC TCTAGCAACA ACAGTGTTAG CAACCGCAGC TATTTTCGCATTGGGGGCTT GTGGTAACGG TAATGGGGCC AAAGAATCAA ACGATATTGT GAAAGAAGTGAAGGAAGATA CGACAATCAC TTTCTCGCAT GCAATGAATG GGGTTCAAGA AGAAGCGTTAACAAAATTAA CGAAAGACTT CATGAAAGAA AATCCAAAAA TTAAACTGGA ATTACAAAATCAATCTGCTT ACCCTGATTT ACAAGCCAAA ATCAATTCGA CTTTAACTTC ACCAAAAGATTTACCAACAA TTACGCAAGC GTACCCAGGC TGGTTATGGA ATGCTGCACA AGATGAAATGTTAGTGGACT TAAAACCATA TATGGATGAT GACACAATCG GCTGGAAAGA TGCAGAGCCAATTCGTGAAG TATTGTTAGA CGGCGCCAAA ATCGACGGCA AACAATACGG CATTCCATTTAATAAATCGA CAGAAATGTT ATTCTATAAT GCTGATTTGT TGAAAGAATA TGGTGTTGAAGTACCGAAAA CATTAGAGGA ATTAAAAGAA GCTTCTAAAA CAATTTACGA AAAATCCAACAAAGAAGTCG TTGGTGCTGG TTTTGACTCG TTAAATAACT ATTACGCAAT TGGAATGAAAAACAAAGGCG TTGATTTTAA TAAAGACTTA GATTTAACAA GCAAAGATTC ACAAGAAGTCGTGGACTATT ACCGTGATGG TATCGAAGCA GGTTACTTCC GCACAGCTGG TTCAGATAAATATTTATCTG GCCCATTTGC AAACAAAAAG GTAGCAATGT TTGTCGGTAG TATTGCTGGTGCTGGTTTTG TTCAAAAAGA TGCTGAAGCT GGTGGCTATG AATACGGTGT TGCACCACGTCCTGAAAAAA TCAACTTACA ACAAGGAACA GATATTTATA TGTTCGATAG TGCTACGCCAGAACAACGGA CAGCGGCATT TGAATTCATG AAATTCTTAG CTACTCCTGA TTCACAATTGTACTGGGCAC AACAAACAGG TTATATGCCA ATTTTAGAAT CTGTTTTACA CAGTGATGAGTACAAAAATT CTAAGACAAC CAAAGTACCT GCACAACTTG AAAACGCAGT AAAAGATTTATTCGCTATCC CAGTAGAAGA AAATGCTGAT TCAGCCTATA ATGAAATGCG GACAATTATGGAAAGTATTT TTGCTTCATC AAATAAAGAC ACGAGAAAAT TATTGAAAGA TGCAACATCACAATTTGAAC AAGCATGGAA CCAATAAEF001-2 (SEQ ID NO:2)MKFKTLATT VLATAAIFAL GACGNGNGAK ESNDIVKEVKEDTTITFWHA MNGVQEEALT KLTKDFMKEN PKIKVELQNQ SAYPDLQAKI NSTLTSPKDLPTITQAYPGW LWNAAQDEML VDLKPYMDDD TIGWKDAEPI REVLLDGAKI DGKQYGIPFNKSTEMLFYNA DLLKEYGVEV PKTLEELKEA SKTIYEKSNK EVVGAGFDSL NNYYAIGMKNKGVDFNKDLD LTSKDSQEVV DYYRDGIEAG YFRTAGSDKY LSGPFANKKV AMFVGSIAGAGFVQKDAEAG GYEYGVAPRP EKINLQQGTD IYMFDSATPE QRTAAFEFMK FLATPDSQLYWAQQTGYMPI LESVLHSDEY KNSKTTKVPA QLENAVKDLF AIPVEENADS AYNEMRTIMESIFASSNKDT RKLLKDATSQ FEQAWNQEF001-3 (SEQ ID NO:3)TT GTGGTAACGG TAATGGGGCC AAAGAATCAA ACGATATTGT GAAAGAAGTGAAGGAAGATA CGACAATCAC TTTCTGGCAT GCAATGAATG GGGTTCAAGA AGAAGCGTTAACAAAATTAA CGAAAGACTT CATGAAAGAA AATCCAAAAA TTAAAGTGGA ATTACAAAATCAATCTGCTT ACCCTGATTT ACAAGCCAAA ATCAATTCGA CTTTAACTTC ACCAAAAGATTTACCAACAA TTACGCAAGC GTACCCAGGC TGGTTATGGA ATGCTGCACA AGATGAAATGTTAGTGGACT TAAAACCATA TATGGATGAT GACACAATCG GCTGGAAAGA TGCAGAGCCAATTCGTGAAG TATTGTTAGA CGGCGCCAAA ATCGACGGCA AACAATACGG CATTCCATTTAATAAATCGA CAGAAATGTT ATTCTATAAT GCTGATTTGT TGAAAGAATA TGGTGTTGAAGTACCGAAAA CATTAGAGGA ATTAAAAGAA GCTTCTAAAA CAATTTACGA AAAATCCAACAAAGAAGTCG TTGGTGCTGG TTTTGACTCG TTAAATAACT ATTACGCAAT TGGAATGAAAAACAAAGGCG TTGATTTTAA TAAAGACTTA GATTTAACAA GCAAAGATTC ACAAGAAGTCGTGGACTATT ACCGTGATGG TATCGAAGCA GGTTACTTCC GCACAGCTGG TTCAGATAAATATTTATCTG GCCCATTTGC AAACAAAAAG GTAGCAATGT TTGTCGGTAG TATTGCTGGTGCTGGTTTTG TTCAAAAAGA TGCTGAAGCT GGTGGCTATG AATACGGTGT TGCACCACGTCCTGAAAAAA TCAACTTACA ACAAGGAACA GATATTTATA TGTTCGATAG TGCTACGCCAGAACAACGGA CAGCGGCATT TGAATTCATG AAATTCTTAG CTACTCCTGA TTCACAATTGTACTGGGCAC AACAAACAGG TTATATGCCA ATTTTAGAAT CTGTTTTACA CAGTGATGAGTACAAAAATT CTAAGACAAC CAAAGTACCT GCACAACTTG AAAACGCAGT AAAAGATTTATTCGCTATCC CAGTAGAAGA AAATGCTGAT TCAGCCTATA ATGAAATGCG GACAATTATGGAAAGTATTT TTGCTTCATC AAATAAAGAC ACGAGAAAAT TATTGAAAGA TGCAACATCACAATTTGAAC AAGCATGGAA CCAAEF001-4 (SEQ ID NO:4)CGNGNGAK ESNDTVKEVKEDTTITFWHA MNGVQEEALT KLTKDFMKEN PKIKVELQNQ SAYPDLQAKI NSTLTSPKDLPTITQAYPGW LWNAAQDEML VDLKPYMDDD TIGWKDAEPI REVLLDGAKI DGKQYGIPFNKSTEMLFYNA DLLKEYGVEV PKTLEELKEA SKTTYEKSNK EVVGAGFDSL NNYYALGMKNKGVDFNKDLD LTSKDSQEVV DYYRDGTEAG YFRTAGSDKY LSGPFANKKV AMFVGSIAGAGPVQKDAEAG GYEYGVAPRP EKINLQQGTD IYMFDSATPE QRTAAFEFMK FLATPDSQLYWAQQTGYNPI LESVLHSDEY KNSKTTKVPA QLENAVKDLF AIPVEENADS AYNEMRTIMESIFASSNKDT RKLLKDATSQ FEQAWNQEF002-1 (SEQ ID NO:5)TAAATAGCGG AGGTAGTACA AATGAAATTT TGGAAAAAAG GCTTAACAGC GGCAGCGCTGTTAGCAGTGG CGGCAGTAAC TTTAACAGCA TGTCGTGGTT CAAGTGAAAA GAAAGCAACTGAAAAGAGTG AAGATGGCAA AACAAAATTA ACAGTAACTA CTTGGAATTA TGACACGACCCCAGAATTTG AGAAATTATT CAGAGCTTTT GAAGCGGAAA ATCCTGATAT CACTATTGAACCGGTGGACA TTGCTTCAGA TGATTATGAC ACAAAAGTAA CAACGATGCT TTCATCAGGAGATACGACGG ATATTTTAAC CATGAAAAAC TTACTTTCAT ATTCTAATTA CGCGCTACGCAATCAATTGG TGGATTTAAC CGATCACGTT AAAGATTTAG ATATCGAACC TGCCAAAGCAAGTTACGAGA TGTATGAAAT CGATGGTAAA ACCTATGCTC AGCCTTACCG TACAGATTTCTGGGTATTGT ATTACAATAA AM,AATGTTT GATGAAGCCG GAATTGCCTA TCCCGATAACTTAACTTGGG ATGAATATGA AGCGTTAGCG AAAAAATTAT CTAAACCAGA AGAACAAGTATATCGTGCCT ATCAACATAC TTGGCGCTCA ACCGTTCAAG CGATTGCTGC TGCTCAAAACAATGCCAATT TGATTGAACC AAAATACAAT TATATGGAAA CTTATTATGA TCGCGCATTGAGAATGCAAA AAGATCAATC ACAAATGGAT TTTGGAACAG CAAAATCAAC AAAAGTAACGTATCAATCAC AATTTGAAAA TTCAAAAGCG GCGATGATGT ACATGGGTAG CTGGTACATGGGGACTTTAT TAACAAACAT TGATGATGGC AAAACAAATG TCGAATGGGG GATTGCCGAAATACCACAAC AAGAAAAAGG CAAAGCAACT ACCTTTGGCT CACCGACAAG TTTTGCAATTAATAAAAACA GTAAAAAACA AAAAGCTGCT CAAAAATTCT TAGACTTTGC TTCAGGTAAAGAAGGTGCAA AACTTTTAGC AGAAGTAGGG GTGGTTCCTT CTTATAAAAC AGATGAAATTGATAAAATCT ACTTTGCAAG AAAAGGAATG CCTTCAGACG AGTCTCACAA AAACCCTTTAACCCAGATAC AATTAATTTA GEF002-2 (SEQ ID NO:6)MKFW KKGLTAAALL AVAAVTLTAC GGSSEKKATE KSEDGKTKLT VTTWNYDTTPEFEKLFRAFE AENPDITIEP VDIASDDYDT KVTTMLSSGD TTDILTMKNL LSYSNYALRNQLVDLTDHVK DLDIEPAKAS YEMYEIDGKT YAQPYRTDFW VLYYNKKMFD EAGIAYPDNLTWDEYEALAK KLSKPEEQVY GAYQHTWRST VQAIAAAQNN ANLIEPKYNY METYYDRALRMQKDQSQMDF GTAKSTKVTY QSQFENSKAA MMYMGSWYMG TLLTNIDDCK TNVEWGIAEIPQQEKGKATT FGSPTSFAIN KNSKKQKAAQ KFLDFASGKE GAKLLAEVGV VPSYKTDEIDKIYFARKGMP SDESHKKPLT QIQLTEF002-3 (SEQ ID NO:7)A TGTGGTGGTT CAAGTGAAAA GAAAGCAACTGAAAAGAGTG AAGATGGCAA AACAAAATTA ACAGTAACTA CTTGGAATTA TGACACCACCCCAGAATTTG AGAAATTATT CAGAGCTTTT GAAGCGGAAA ATCCTGATAT CACTATTGAACCGGTGGACA TTGCTTCAGA TGATTATGAC ACAAAAGTAA CAACGATGCT TTCATCAGGAGATACGACGG ATATTTTAAC CATGAAAAAC TTACTTTCAT ATTCTAATTA CGCGCTACGCAATCAATTGG TGGATTTAAC CGATCACGTT AAAGATTTAG ATATCGAACC TGCCAAAGCAAGTTACGAGA TGTATGAAAT CGATGGTAAA ACCTATGCTC AGCCTTACCG TACAGATTTCTGGGTATTGT ATTACAATAA AAAAATGTTT GATGAAGCCG GAATTGCCTA TCCCGATAACTTAACTTGGG ATGAATATGA AGCGTTAGCG AAAAAATTAT CTAAACCAGA AGAACAAGTATATGGTGCCT ATCAACATAC TTGGCGCTCA ACCGTTCAAG CGATTGCTGC TGCTCAAAACAATGCCAATT TGATTGAACC AAAATACAAT TATATGGAAA CTTATTATGA TCGCGCATTGAGAATGCAAA AAGATCAATC ACAAATGCAT TTTGGAACAG CAAAATCAAC AAAAGTAACGTATCAATCAC AATTTGAAAA TTCAAAAGCG GCGATGATGT ACATGGGTAG CTGGTACATGGGGACTTTAT TAACAAACAT TGATGATGGC AAAACAAATG TCGAATGGGG GATTGCCGAAATACCACAAC AAGAAAAAGG CAAAGCAACT ACCTTTGGCT CACCGACAAG TTTTGCAATTAATAAAAACA GTAAAAAACA AAAAGCTGCT CAAAAATTCT TAGACTTTGC TTCAGGTAAACAAGGTGCAA AACTTTTAGC AGAAGTAGGG GTGGTTCCTT CTTATAAAAC AGATGAAATTGATAAAATCT ACTTTGCAAG AAAAGGAATG CCTTCAGACG AGTCTCACAA AAAGCCTTTAACCCAGATAC AATTAATTEF002-4 (SEQ ID NO:8)C GGSSEKKATE KSEDGKTKLT VTTWNYDTTPEFEKLFRAFE AENPDITIEP VDIASDDYDT KVTTMLSSGD TTDILTMKNL LSYSNYALRNQLVDLTDHVK DLDIEPAKAS YEMYEIDGKT YAQPYRTDFW VLYYNKKMFD EAGIAYPDNLTWDEYEALAK KLSKPEEQVY GAYQHTWRST VQAIAAAQNN ANLIEPKYNY METYYDRALRMQKDQSQMDF GTAKSTKVTY QSQFENSKAA MMYMGSWYMG TLLTNIDDGK TNVEWGIAEIPQQEKGKATT FGSPTSFAIN KNSKKQKAAQ KFLDFASGKE GAKLLAEVGV VPSYKTDEIDKTYFARKGMP SDESHKKPLT QIQLIEF003-1 (SEQ ID NO:9)TAGGAGGACA AAAGAATGAA GAAGTTTTAT TTAGCNACAT TCGCTGTTAT TGCAACAGTTATTTTAGCTG CCTGTGGGGG AAATAAACAA GCAGACCAGA AAGAAGACAA GGAGATTACCGTTGCCGTGC AATTGGAATC TTCAAAAGAT ATCTTGGAGA TTGCCAAGAA AGAAGCTGAGAAAAAAGGGT ACAAAATTAA CATTATGGAA GTGAGCGACA ATGTTGCCTA CAACGATGCCGTGCAACATG ACGAAGCGGA TGCTAATTTT GCGCAACATC AACCCTTCAT GGAAATGTTTAACAAAGAGA AAAAAGCTGA TTTAGTGGCT GTGCAACCGA TTTATTATTT TGCTGGTGGTTTCTATTCAA AAGAATACCA AGATGCGAAA GATTTACCTG AAAATGCCAA AGTGGGGATTCCTAGCGATC CAACCAATGA AGGTCGTGCT TTAGCAATTT TAAATGCAAA CGGCGTGATTAAATTAAAAG AAGGTGTCGG CTTTAACGGC ACGGTGGCAG ATGTCGTGGA AAATCCTAAAAACATCACTT TTGAAAGCAT TGATTTACTG AATTTAGCTA AAGCCTATGA TGAAAAAGACATCGCTATGG TGTTCTGCTA CCCAGCCTAC TTAGAACCTG CTGGTTTAAC AACGAAAGATGCGATCTTGT TAGAAGATAA AGAAGCAAGT AAACATTACG CATTGCAAGT TGTGACACGCAAAGGCGAAA AACATAGCGA AAAAATCAAG GTTTTAAAAG AAGCGATGAC AACAAAAGAAGTTGCTGAAT ACATCAAGAA AAATTCTAAA GGCGCCAATA TTCCTGCGTT TTAAEF003-2 (SEQ ID NO:10)MKKFYL ATFAVIATVI LAACGGNKQA DQKEDKEITV AVQLESSKDI LEIAKKEAEKKGYKINIMEV SDNVAYNDAV QHDEADANFA QHQPFMEMFN KEKKADLVAV QPIYYFAGGFYSKEYQDAKD LPENAKVCIP SDPTNEGRAL AILNANGVIK LKEGVGFNGT VADVVENPKNITFESTDLLN LAKAYDEKUT AMVFCYPAYL EPAGLTTKDA ILLEDKEASK HYALQVVTRKGEKDSEKTKV LKEAMTTKEV AEYTKKNSKG ANIPAFEF003-3 (SEQ ID NO:11)CTGTGGGGG AAATAAACAA GCAGACCAGA AAGAAGACAA GGAGATTACCGTTGCCGTGC AATTGGAATC TTCAAAAGAT ATCTTGGAGA TTGCCAAGAA AGAAGCTGAGAAAAAAGGGT ACAAAATTAA CATTATGGAA GTGAGCGACA ATCTTGCCTA CAACGATGCCGTGCAACATG ACGAAGCGGA TGCTAATTTT GCGCAACATC AACCCTTCAT GGAAATGTTTAACAAAGAGA AAAAAGCTGA TTTAGTGGCT GTGCAACCGA TTTATTATTT TGCTGGTGGTTTCTATTCAA AAGAATACCA AGATGCGAAA GATTTACCTG AAAATGCCAA AGTGGGGATTCCTAGCGATC CAACCAATGA AGGTCGTGCT TTAGCAATTT TAAATGCAAA CGGCGTGATTAAATTAAAAG AAGGTGTCGG CTTTAACGGC ACGGTGGCAG ATGTCGTGGA AAATCCTAAAAACATCACTT TTGAAAGCAT TGATTTACTG AATTTAGCTA AAGCCTATGA TGAAAAAGACATCGCTATGG TGTTCTGCTA CCCAGCCTAC TTAGAACCTG CTGGTTTAAC AACGAAAGATGCGATCTTGT TAGAAGATAA AGAAGCAAGT AAACATTACG CATTGCAAGT TGTGACACGCAAAGGCGAAA AAGATAGCGA AAAAATCAAG GTTTTAAAAG AAGCGATGAC AACAAAAGAAGTTGCTGAAT ACATCAAGAA AAATTCTAAA GGCGCCAATA TTCCTGCGTT TEF003-4 (SEQ ID NO:12)CGGNKQA DQKEDKEITV AVQLESSKDI LEIAKKEAEKKGYKINTMEV SDNVAYNDAV QHDEADANFA QHQPFNEMFN KEKKADLVAV QPIYYFAGGFYSKEYQDAKD LPENAKVGIP SDPTNEGRAL AILNANGVIK LKEGVGFNGT VADVVENPKNITFESIDLLN LAKAYDEKDI ANVECYPAYL EPAGLTTKDA ILLEDKEASK HYALQVVTRKGEKDSEKIKV LKEANTTKEV AEYIKKNSKG ANIPAFEF004-1 (SEQ ID NO:13)TAAATCGAAA GAAGGATGAT AGAAATGAAA AAAATGATTA AATTTGCAGG CATTGCTCTTATTTTTGCAG CTCTTCTCTC TGCCTGTAGC AACGCAAAAA ATAATACACA AAAGAAAGCCGAAACTGCTG CCCAGTCAAG CACTATTGAA GCTTCAGACA GTAACGAAAA CGAGCCTAATACAGAAAACA TAACCCAAGC AGTTAAACAG TTAGAAGAAA AATTTAACTC TGACGAGAAATTAGTAAAAA TAGATGTTAA AAATAATGTT AAAGATGACA CATCAGATAA CCCTCACGCTGTCATTACGG TTAAGGTAAT TAATGATGAA GCAAAAAAAA ATATGGAAGA AATGCAGACTGCGATAGATT CCAACTCAGG TACAGAGGCA CAAAAGACTG CCATATACGG AATTCAATTAAATGTTGAAG AAGTAGCCAA AACATTAGAA AATGATAACG ATGTTATTTC TTTCATCACACCTTACACGA ATGGGAACGA CAGAACCATA GCAAAATCAA CTAAAAATGA AAATATTATTCCGTTAGTAA AATAAEF004-2 (SEQ ID NO:14)MKK MIKFAGIALI FAALLSACSN AKNNTQKKAE TAAQSSTIEA SDSNENEPNTENITQAVKQL EEKFNSDEKL VKIDVKNNVK DDTSDNPHAV ITVKVINDEA KKNMEEMQTAIDSNSGTEAQ KTAIYGIQLN VEEVAKTLEN DNDVISFITP YTNGNDRTIA KSTKNENIIPLVKEF004-3 (SEQ ID NO:15)CTGTAGC AACGCAAAAA ATAATACACA AAAGAAAGCCGAAACTGCTG CCCAGTCAAG CACTATTGAA GCTTCAGACA GTAACGAAAA CGAGCCTAATACAGAAAACA TAACCCAAGC ACTTAAACAG TTAGAAGAAA AATTTAACTC TGACGAGAAATTAGTAAAAA TAGATGTTAA AAATAATGTT AAAGATGACA CATCAGATAA CCCTCACGCTGTCATTACGG TTAAGGTAAT TAATGATGAA GCAAAAAAAA ATATGGAAGA AATGCAGACTGCGATAGATT CCAACTCAGG TACAGAGOCA CAAAAGACTG CCATATACGG AATTCAATTAAATGTTGAAG AAGTAGCCAA AACATTAGAA AATGATAACG ATGTTATTTC TTTCATCACACCTTACACGA ATGGGAACGA CAGAACCATA GCAAAATCAA CTAAAAATGA AAATATTATTCCGTTAGTAA AAEF004-4 (SEQ ID NO:16)CSN AKNNTQKKAE TAAQSSTIEA SDSNENEPNTENITQAVKQL EEKFNSDEKL VKIDVKNNVK DDTSDNPHAV ITVKVINDEA KKNMEEMQTAIDSNSGTEAQ KTAIYGIQLN VEEVAKTLEN DNDVISFITP YTNGNDRTIA KSTKNENIIPLVKEF005-1 (SEQ ID NO:17)TAAAAAATGA AAAAACGATT GACGATTGTG GGGATGCTTT TTCTGGCCAT TTTAGTAATGGTTGGTTGTG GTAAAAATCA GCAAGCAACG ACAAAAGAAA AAGAGACAAA ACCTGAAGAACTAACTCTTT ACATTGTGCG CCACGGAAAA ACCATGTTAA ATACGACGGA CCGCGTACAAGGATGGTCAG ATGCGGTCCT AACACCAGAA GGTGAAAAAG TTGTGACAGC AACTGGGATTGGACTGAAAG ATGTTGCCTT TCAAAATGCA TATAGTAGTG ATAGTGGCCG CGCCTTGCAAACTGCTCAAC TTATTTTAGA TCAAAATAAA GCAGGCAAAG ACCTTGAAGT CGTGCGTGACCCAGATTTAC GTGAATTTAA TTTTGGTAGC TATGAAGGGG ATTTAAATAA GACAATGTGGCAGGATATTG CTGATGATCA AGGTGTTTCC TTAGAAGAAT TTATGAAAAA CATGACTCCTGAATCCTTTG CCAATAGTGT AGCTAAACTG GATCAACAGC GCGAGGAAAG CAAGAATAACTGGCCTGCAG AAGACTATGC TACAATTACT AAACGTTTGA AAAAAGGCTT AGATAAAATTGTTGCCACAG AATCAGCCAA TTCTGGGAAT GGCAATGTTT TAGTGGTCTC TCATGGCTTGAGTATTTCAG CGTTGTTAGC AACTTTATTT GATGATTTTA AAGTCCCAGA AGGCGGTTTGAAGAATGCTA GTGTCACAAC AATTCATTAC AAAAATGGCG AATATACTTT GGATAAAGTCAATCATGTCA GCTACTTAGA AGCAGGCGAA AAAGAATCAA AATAAEF005-2 (SEQ ID NO:18)MKKRLTIVG MLFLAILVMV GCGKNQQATT KEKETKPEEL TLYIVRHGKT MLNTTDRVQGWSDAVLTPEG EKVVTATGTC LKDVAFQNAY SSDSGRALQT AQLILDQNKA GKDLEVVRDPDLREFNFGSY EGDLNKTMWQ DIADDQGVSL EEFMKNMTPE SFANSVAKLD QQREESKNNWPAEDYATITK RLKKGLDKIV ATESANSGNG NVLVVSHGLS ISALLATLED DFKVPEGGLKNASVTTIHYK NGEYTLDKVN DVSYLEAGEK ESKEF005-3 (SEQ ID NO:19)TTGTG GTAAAAATCA GCAAGCAACG ACAAAAGAAA AAGAGACAAA ACCTGAAGAACTAACTCTTT ACATTGTGCG CCACGGAAAA ACCATGTTAA ATACGACGGA CCGCGTACAAGGATGGTCAG ATGCGGTCCT AACACCAGAA GGTGAAAAAG TTGTGACAGC AACTGGGATTGGACTGAAAG ATGTTGCCTT TCAAAATCCA TATAGTAGTG ATAGTGGCCG CGCCTTGCAAACTGCTCAAC TTATTTTAGA TCAAAATAAA GCAGGCAAAG ACCTTGAAGT CGTGCGTGACCCAGATTTAC GTGAATTTAA TTTTGGTAGC TATGAAGGGG ATTTAAATAA GACAATGTCGCAGGATATTG CTGATGATCA AGGTGTTTCC TTAGAAGAAT TTATGAAAAA CATGACTCCTGAATCCTTTG CCAATAGTGT AGCTAAACTG GATCAACAGC GCGAGGAAAG CAAGAATAACTGGCCTGCAG AAGACTATGC TACAATTACT AAACGTTTGA AAAAAGGCTT AGATAAAATTGTTCCCACAG AATCAGCCAA TTCTCGGAAT GGCAATGTTT TAGTGGTCTC TCATGGCTTGAGTATTTCAG CGTTGTTAGC AACTTTATTT GATGATTTTA AAGTCCCAGA AGGCGGTTTGAAGAATGCTA GTGTCACAAC AATTCATTAC AAAAATGGCG AATATACTTT GGATAAAGTCAATGATGTCA GCTACTTAGA AGCAGGCGAA AAAGAATCAA AAEF005-4 (SEQ ID NO:20)CGKNQQATT KEKETKPEEL TLYIVRHGKT MLNTTDRVQGWSDAVLTPEG EKVVTATGIG LKDVAFQNAY SSDSCRALQT AQLILDQNKA GKDLEVVRDPDLREFNFGSY EGDLNKTMWQ DIADDQGVSL EEFMKNMTPE SFANSVAKLD QQREESKNNWPAEDYATITK RLKKGLDKTV ATESANSGNG NVLVVSHGLS ISALLATLED DFKVPEGGLKNASVTTIHYK NGEYTLDKVN DVSYLEAGEK ESKEF006-1 (SEQ ID NO:21)TAAACGATAA ATGGAGGGAA TAAGATGAAA AAACGTACAT TATCGTCAGT AATTACTGTAGCAGTACCTG TCTTAGTTTT AGGGGCTTGC GGCAATAAAA AGAGTGATGA CTCCGTCTTGAAAGTTGGAG CTTCACCAGT TCCACATGCA GAGATTTTAG AACATGTAAA ACCTTTATTAGAAAAAGAAG GCGTAAAATT AGAAGTGACG ACTTATACAG ATTACGTCCT ACCTAACAAGGCGTTGGAAA GTGGCGATAT CGATGCCAAC TATTTCCAAC ATGTGCCGTT CTTTAATGAAGCGGTTAAAG AAAATGATTA TGACTTTGTG AATGCAGGTG CGATTCATTT AGAACCAGTTGGGCTTTACT CGAAAAAATA CAAATCGTTA CAAGAAATTC CTGATGGTTC AACGATTTACGTTACCTCTT CCGTTTCAGA TTGGCCACGC GTATTAACTA TCTTAGAAGA TGCTGGTTTAATCACGCTGA AAGAAGGGGT AGACCGGACA ACTGCTACTT TCGATGATAT TGATAAAAATACTAAAAAGT TGAAATTCAA TCATGAAAGT GATCCAGCAA TCATGACCAC TCTTTATGACAXTGAAGAAC GGGCTGCGGT TTTAATTAAC TCAAACTTTG CCGTGGATCA AGGATTAAATCCGAAAAAAG ATGCGATTGC CTTAGAAAAA GAAAGTTCAC CTTATGCCAA TATTATTGCGGTTCGTAAAG AAGACGAAAA CAACGAAAAT GTAAAAAAAT TAGTCAAAGT GTTACCTAGCAAAGAAGTCC AAGATTGGAT TACGAAAAAA TGGAACGGCG CTATTGTTCC AGTCAATGAATAAEF006-2 (SEQ ID NO:22)MKK RTLWSVITVA VAVLVLGACG NKKSDDSVLK VGASPVPHAE ILEHVKPLLEKEGVKLEVTT YTDYVLPNKA LESGDIDANY FQHVPFFNEA VKENDYDFVN AGAIHLEPVGLYSKKYKSLQ EIPDGSTIYV SSSVSDWPRV LTILEDAGLI TLKEGVDRTT ATFDDIDKNTKKLKFNHESD PAIMTTLYDN EEGAAVLINS NFAVDQGLNP KKDAIALEKE SSPYANIIAVRKEDENNENV KKLVKVLRSK EVQDWITKKW NGAIVPVNEEF006-3 (SEQ ID NO:23)TTGC GGCAATAAAA AGAGTGATGA CTCGCTCTTGAAAGTTGGAG CTTCACCAGT TCCACATGCA GAGATTTTAG AACATGTAAA ACCTTTATTAGAAAAAGAAG GCGTAAAATT AGAAGTGACG ACTTATACAG ATTACGTGCT ACCTAACAAGGCGTTGGAAA GTGGCGATAT CGATGCCAAC TATTTCCAAC ATGTGCCGTT CTTTAATGAAGCGGTTAAAG AAAATGATTA TGACTTTGTG AATGCAGGTG CGATTCATTT AGAACCAGTTGGGCTTTACT CGAAAAAATA CAAATCGTTA CAAGAAATTC CTGATGGTTC AACGATTTACGTTAGCTCTT CCGTTTCAGA TTGCCCACGC CTATTAACTA TCTTAGAAGA TGCTCGTTTAATCACGCTGA AAGAAGGGGT AGACCGGACA ACTGCTACTT TCGATGATAT TGATAAAAATACTAAAAAGT TGAAATTCAA TCATGAAAGT GATCCAGCAA TCATGACCAC TCTTTATGACAATGAAGAAG CGGCTGCGGT TTTAATTAAC TCAAACTTTG CCGTGGATCA AGGATTAAATCCGAAAAAAG ATGCGATTGC CTTAGAAAAA GAAAGTTCAC CTTATGCCAA TATTATTGCGGTTCGTAAAG AAGACGAAAA CAACGAAAAT GTAAAAAAAT TAGTCAAAGT GTTACGTAGCAAAGAAGTCC AAGATTGGAT TACGAAAAAA TGGAACGGCC CTATTGTTCC AGTCAATGAAEF006-4 (SEQ ID NO:24)CC NKKSDDSVLK VGASPVPHAE ILEHVKPLLEKEGVKLEVTT YTDYVLPNKA LESGDIDANY FQHVPFFNEA VKENDYDFVN AGAIHLEPVGLYSKKYKSLQ EIPDCSTIYV SSSVSDWPRV LTILEDAGLI TLKEGVDRTT ATFDDIDKNTKKLKFNHESD PAIMTTLYDN EEGAAVLTNS NFAVDQGLNP KKDAIALEKE SSPYANIIAVRKEDENNENV KKLVKVLRSK EVQDWTTKKW NGAIVPVNEEF008-1 (SEQ ID NO:25)TAAACCCTGA GAAAGAAATC GAGOAATCAA CCAATGAAAA AATTTAGTTT ATTTTTTTTAACACTTTTAG CAGGGTTAAC GTTAGCTGCT TCCGCGAATC AAGCCGCTGA AAAGAAAGAAAAATTAGCAA TTGTGACAAC GAACTCGATC CTATCTGATT TAGTCAAAAA TGTTGCCCAAGACAAAATTG AGCTGCATAG TATTGTGCCA ATTGGGACAG ACCCTCACGA ATATGAACCGTTACCAGAAG ACATTGCGAA AGCTTCTGAA GCCGACATTT TATTCTTTAA CGGCTTGAACTTAGAAACAG GCGGAAATGG CTGGTTTAAC AAATTAATGA AAACGGCCAA AAAAGTTGAGAATAAAGATT ACTTTTCTAC AAGCAAAAAT GTTACGCCAC AATATTTAAC AAGTGCCGGTCAACAACAAA CAGAAGATCC ACATGCTTGG TTAGACATTG AAAATGGCAT TAAATATGTAGAAAACATTC GTGACGTGTT AGTAGAAAAA CATCCAAAAA ATAAAGATTT CTATACAGAAAACGCGAAAA ATTATACCGA AAAACTTAGC AAACTACATG AGGAAGCCAA AGCTAAATTTGCTCATATTC CTGATGATAA AAAATTATTA GTTACAAGTG AAGGTGCCTT TAAATATTTCTCCAAAGCTT ATGATTTAAA TGCCGCTTAT ATTTGGGAAA TTAACACAGA AAGTCAACGNACACCTCAAC AAATGACCAC GATTATTGAT ACCATTAAGA AATCAAAAGC ACCTGTGTTATTTGTTGAAA CCAGTGTCGA TAAACGTAGT ATGGAACGCG TCTCAAAAGA ACTGAAACGACCAATTTACG ATACACTTTT CACAGACTCT CTTGCCAAAG AAGGAACAGA AGGCCATACGTACTACACCA TGATGAACTG GAATTTAACA AAAATCCATG ATGGCTTAAT GAGTAAATAAEF008-2 (SEQ ID NO:26)MKKFSLFFLT LLAGLTLAAC CNQAAEKKEK LAIVTTNSIL SDLVKNVGQDKIELHSIVPI GTDPHEYEPL PEDIAKASSA DILFFNGLNL ETGCNGWFNK LMKTAKKVENKDYFSTSKNV TPQYLTSAGQ EQTEDPHAWL DIENGIKYVE NIRDVLVEKD PKNKDFYTENAKNYTEKLSK LHEEAKAKFA DIPDDKKLLV TSEGAFKYFS KAYDLNAAYI WEINTESQGTPEQMTTIIDT IKKSKAPVLF VETSVDKRSM ERVSKEVKRP IYDTLFTDSL AKEGTEGDTYYSMMNWNLTK IHDGLMSKEF008-3 (SEQ ID NO:27)T TGCGGGAATC AAGCCGCTGA AAAGAAAGAAAAATTAGCAA TTGTGACAAC GAACTCGATC CTATCTGATT TACTGAAAAA TGTTGGGCAAGACAAAATTG AGCTGCATAG TATTGTGCCA ATTGGGACAG ACCCTCACGA ATATGAACCCTTACCAGAAG ACATTGCGAA AGCTTCTGAA GCGGACATTT TATTCTTTAA CGGCTTGAACTTAGAAACAG CCGGAAATCG CTGGTTTAAC AAATTAATGA AAACGGCCAA AAAAGTTGAGAATAAAGATT ACTTTTCTAC AAGCAAAAAT CTTACGCCAC AATATTTAAC AAGTGCCGGTCAAGAACAAA CAGAAGATCC ACATGCTTGG TTAGACATTG AAAATCGCAT TAAATATCTACAAAACATTC GTGACGTGTT AGTAGAAAAA GATCCAAAAA ATAAAGATTT CTATACAGAAAACGCCAAAA ATTATACCGA AAAACTTAGC AAACTACATG AGGAAGCCAA AGCTAAATTTGCTGATATTC CTGATCATAA AAAATTATTA GTTACAAGTG AAGGTGCCTT TAAATATTTCTCCAAAGCTT ATGATTTAAA TGCCGCTTAT ATTTGGGAAA TTAACACAGA AAGTCAAGGNACACCTGAAC AAATGACCAC GATTATTGAT ACCATTAAGA AATCAAAAGC ACCTGTGTTATTTGTTGAAA CCAGTGTCGA TAAACGTAGT ATGGAACGGG TCTCAAAAGA AGTGAAACGACCAATTTACG ATACACTTTT CACAGACTCT CTTGCCAAAG AAGGAACAGA AGGCGATACGTACTACAGCA TGATGAACTG GAATTTAACA AAAATCCATG ATGGCTTAAT GAGTAAAEF008-4 (SEQ ID NO:28)c GNQAAEKKEK LAIVTTNSIL SDLVKNVGQDKIELHSIVPI GTDPHEYEPL PEDIAKASSA DILFFNGLNL ETOGNOWENK LMKTAKKVENKDYESTSKNV TPQYLTSAGQ EQTEDPHAWL DIENGIKYVE NIRDVLVEKD PKNKDFYTENAKNYTEKLSK LHEEAKAKFA DIPDDKKLLV TSECAFKYFS KAYDLNAAYI WEINTESQOTPEQMTTIIDT IKKSKAPVLF VETSVDKRSM ERVSKEVKRP IYDTLFTDSL AKEGTEGDTYYSMMNWNLTK IHDGLMSKEF009-1 (SEQ ID NO:29)TGACAAATGA AAAAATTTAG TAAATTAATT GGACTTATTG GGCTATTAGC TTTTACGATTGCAGGTTGTG CATCGGGGTC TGTGAAGGAT ACTAAGACAG AAACCGTTAA ACTAGGGGTTGTAGGAACAA AAAATGATGA ATGGGAATCG GTCAAAGACC GTTTGAAAAA GAAAAATATTGATTTACAAT TGGTAGAATT TACAGACTAT ACGCAACCAA ACGCAGCATT AGCAGAAAAAGAAATTGATT TAAATGCCTT TCAGCATCAA ATCTTTTTAG ACAATTACAA TAAAGAGCATGGAACGAAAT TAGTATCAAT TGGCAATACA GTCAATGCAC CATTGGGAAT TTACGCTAATAAATTGAAAG ATATCACGAA AATTAAAGAC GGCGGAGAAA TTGCTATTCC TAATGACCCAACGAATGGCG GGCGGGCGTT AATTTTATTA CAAACTGCAG GACTGATAAA ACTAGATOCTGCGAAACAGC AACTACCGAC TGTCAGTGAT ATTACTGAAA ATAAACGCCA ATTGAAAATAACTGAATTAG ATOCTACOCA AACAGCGCGC GCTTTACAAG ATGTCGATGC TTCAGTGATTAATAGCGGCA TGGCTGTCGA TGCTGGGTAT ACACCAGATA AAGATGCTAT TTTCTTAGAACCTGTAAACG AAAAAGCGAA ACCTTATGTG AACATTGTCG TGGCCCGAGA AGAAGATCAAGAGAATAAAC TTTATCAAAA AGTTGTAGAA GAATATCAAC AAGAAGAAAC GAAAAAGGTCATTGCAGAAA CATCAAAAGG CGCCAATGTT CCAGCCTGCG AAACATTTCG TAAAAAATAAEF009-2 (SEQ ID NO:30)MKKFSKLIG LIGVLAFTIA GCASGSVKDT KTETVKLGVV GTKNDEWESV KDRLKKKNIDLQLVEFTDYT QPNAALAEKE IDLNAFQHQI FLDNYNKEHG TKLVSIGNTV NAPLGIYANKLKDTTKIKDG GEIAIPNDPT NGGEALILLQ TAGLIKVDPA KQQLPTVSDI TENKRQLKITELDATQTARA LQDVDASVIN SGMAVDAGYT PDKDAIELEP VNEKAKPYVN IVVAREEDQENKLYQKVVEE YQQEETKKVI AETSKGANVP AWETFGKKEF009-3 (SEQ ID NO:31)TTGTG CATCGGGGTC TGTGAAGGAT ACTAAGACAG AAACCGTTAA ACTAGGGGTTGTAGGAACAA AAAATGATGA ATGGGAATCG GTCAAAGACC GTTTGAAAAA GAAAAATATTGATTTACAAT TGGTAGAATT TACAGACTAT ACGCAACCAA ACGCAGCATT AGCAGAAAAAGAAATTGATT TAAATGCCTT TCAGCATCAA ATCTTTTTAG ACAATTACAA TAAAGAGCATGGAACGAAAT TAGTATCAAT TGGCAATACA GTCAATGCAC CATTGGGAAT TTACGCTAATAAATTGAAAG ATATCACGAA AATTAAAGAC GGCGGAGAAA TTGCTATTCC TAATGACCCAACGAATGGCG GGCGGGCGTT AATTTTATTA CAAACTGCAG GACTGATAAA AGTAGATCCTGCGAAACAGC AACTACCGAC TGTCAGTGAT ATTACTGAAA ATAAACGCCA ATTGAAAATAACTGAATTAG ATGCTACGCA AACAGCGCGC GCTTTACAAG ATGTCGATGC TTCAGTGATTAATAGCGGCA TGGCTGTCGA TGCTGGGTAT ACACCAGATA AAGATGCTAT TTTCTTAGAACCTGTAAACG AAAAAGCGAA ACCTTATGTG AACATTGTCG TGGCCCGAGA AGAAGATCAAGAGAATAAAC TTTATCAAAA AGTTGTAGAA GAATATCAAC AAGAAGAAAC GAAAAAGGTCATTGCAGAAA CATCAAAAGC CCCCAATGTT CCAGCCTGGG AAACATTTGG TAAAAAAEF009-4 (SEQ ID NO:32)CASGSVKDT KTETVKLOVV GTKNDEWESV KDRLKKKNIDLQLVEFTDYT QPNAALAEKE IDLNAFQHQI FLDNYNKEHG TKLVSIGNTV NAPLGIYANKLKDITKTKDG GEIAIPNDPT NGGRALILLQ TAGLIKVDPA KQQLPTVSDI TENKRQLKITELDATQTAEA LQDVDASVIN SGMAVDAGYT PDKDAIFLEP VNEKAKPYVN IVVAREEDQENKLYQKVVEE YQQEETKKVT AETSKGANVP AWETFGKKEF010-1 (SEQ ID NO:33)TGAAAGAATA AAATTGTACA GGAGGAAATA AGGAATGAAA AAATGGCAAA AAGGATTAGCCGTAGCTGGC GCACAGCTTT AGCTGTAGGA CTAAGCGCGT GCGGTAAATC TTCAAAAGATGCAGCGTCAA AAGGTGATGA TAGTACACCA ACCTTATTAA TGTATCGTGT TGGGGACAAACCAGATAATT ATGACCAATT AATCGATAAT GCGAATAAAA TTATCGAGAA AAAAATTGGGGCAAAATTAA AAATGGAATT TGTTGGTTGG GGCGATTGGG ACCAAAAAAT GTCAACAATCGTTCCTTCTG GTGAAAGCTA TGATATTTCA TTAGCACAAA ATTATGCAAC GAATGCACAAAAAGGCGCCT ATCCTGATTT AACTGATTTA GCACCTAAAT ATGCCAAAGA AGCCTATGATCAATTGCCAG ATAACTATAT TAAAGGAAAT ACGATTAATG GAAAACTGTA TGCGTTCCCAATTTTAGGTA ACTCTTACGC TCAACAAGTT TTAACTTTTA ATAAAGAATA TGTCGATAAATACAATTTAG ATATTAGTAA AGTCGATGGT AGTTATGAAA GTGCAACGGA AGTTCTAAAAGAATTCCNTA AAAANGANCC AAATATTGCT GCTTTTGCTA TCGGCCAAAC ATTCTTTGCAACAGGTAATT ATGACTTCCC TATTGGTAAC CAATATCCAT TTGCAGTAAA AACAACTGATACTGGCTCAC CAAAAATTAT TAACCAATAT GCCGACAAAG ACATGATTAA TAACTTAAAAGTCTTGCATC AATGGTATAA AGATGGCTTG ATTCCAACAC ATGCTGCTAC AAGTACAACACCATATGACT TAAATACCAA TACTTGGTTT ATGCGTCAAG AAACACAAGG ACCTATGGATTATGGTCATA CAATCTTAAC ACAACCTGCT CGCAAACCAC TTGTTTCTCG TCCACTAACAGAACCATTAA AAACAACACC TCAAGCGCAA ATCGCTAACT ATGTTGTTGC AAACACGTCTAAAAACAAAG AAAAATCTGT TGAATTGTTA CGTTTATTAA ACAGCAATCC AGAATTGTTAAACGGACTTG TTTATGGTGA ACAAGGCAAA CAATATGAAA AACTTGGCGA TGATCGTGTGAAATTGTTGA AAGATTACAC ACCAACAACT CATTTGAGTG CTTGGAACAC AGGAAACAACTTAATCATTT CGCCAGAAGA ATCTGTCACT GAAGAAATGG TTAAAGAACG TGATAAGAGCATCGAAGAAG CAAAAGATTC ACCAATTCTT GGTTTTACTT TTGTAAATGA TAAAGTGAAAACTGAAATCA CTAACGTTCC TACAGTTATG AACCGTTACG CAGCAACCTT AAATACAGGAACTGTTCATC CAGAAGAAAC ACTTCCAAAA TTAATGGATG ACCTAAAAAC AGCTGGCTGGCATAAAGTTC AAAAAGAAAT GCAAACACAA TTAGACGAAT ATATCCAATC TCAAAAATAAEF010-2 (SEQ ID NO:34)MAKRISR SWRTALAVGL SACGKSSKDA ASKGDDSTPT LLMYRVGDKPDNYDQLIDNA NKIIEKKIGA KLKMEFVGWG DWDQKNSTIV ASGESYDISL AQNYATNAQKGAYADLTDLA PKYAKEAYDQ LPDNYIKGNT INGKLYAFPI LCNSYGQQVL TFNKEYVDKYNLDISKVDGS YESATEVLKE FXKXXPNIAA FAIGQTFFAT GNYDFPIGNQ YPFAVKTTDTGSPKIINQYA DKDMINNLKV LHQWYKDGLI PTDAATSTTP YDLNTNTWFM RQETQGPMDYGDTILTQAAG KPLVSRPLTE PLKTTAQAQM ANYVVANTSK NKEKSVELLG LLNSNPELLNGLVYCEEGKQ YEKVGDDRVK LLKDYTPTTH LSAWNTGNNL IIWPEESVTE EMVKERDKSIEEAKDSPILG FTFVNDKVKT EITNVATVHN RYAASLNTGT VDPEETLPKL MDDLKTAGWDKVQKEMQTQL DEYIQSQKEF010-3 (SEQ ID NO:35)GT GCGGTAAATC TTCAAAAGATGCAGCGTCAA AAGGTGATGA TAGTACACCA ACGTTATTAA TGTATCGTGT TGGGGACAAACCAGATAATT ATGACCAATT AATCGATAAT GCGAATAAAA TTATCGAGAA AAAAATTGGGGCAAAATTAA AAATGGAATT TCTTGGTTGG GGCGATTGGG ACCAAAAAAT GTCAACAATCGTTGCTTCTG GTGAAAGCTA TGATATTTCA TTAGCACAAA ATTATGCAAC GAATGCACAAAAAGGCGCCT ATGCTGATTT AACTGATTTA GCACCTAAAT ATGCCAAAGA AGCCTATGATCAATTGCCAG ATAACTATAT TAAAGGAAAT ACGATTAATG GAAAACTGTA TGCGTTCCCAATTTTAGGTA ACTCTTACGG TCAACAAGTT TTAACTTTTA ATAAAGAATA TGTCGATAAATACAATTTAG ATATTAGTAA AGTCGATGGT AGTTATGAAA GTGCAACGGA AGTTCTAAAAGAATTCCNTA AAAANGANCC AAATATTGCT GCTTTTGCTA TCGGCCAAAC ATTCTTTGCAACAGGTAATT ATGACTTCCC TATTGGTAAC CAATATCCAT TTGCAGTAAA AACAACTGATACTGGCTCAC CAAAAATTAT TAACCAATAT GCCGACAAAC ACATGATTAA TAACTTAAAAGTCTTGCATC AATGGTATAA AGATGGCTTG ATTCCAACAG ATGCTGCTAC AAGTACAACACCATATGACT TAAATACCAA TACTTGGTTT ATGCGTCAAG AAACACAAGG ACCTATGGATTATGGTGATA CAATCTTAAC ACAAGCTGCT GGCAAACCAC TTGTTTCTCG TCCACTAACAGAACCATTAA AAACAACAGC TCAAGCGCAA ATGGCTAACT ATGTTGTTGC AAACACGTCTAAAAACAAAG AAAAATCTGT TGAATTGTTA GGTTTATTAA ACAGCAATCC AGAATTCTTAAACGGACTTG TTTATGGTGA AGAAGGCAAA CAATATGAAA AAGTTGGCGA TGATCGTGTGAAATTGTTGA AAGATTACAC ACCAACAACT CATTTGAGTG CTTGGAACAC AGGAAACAACTTAATCATTT GGCCAGAAGA ATCTGTCACT GAAGAAATGG TTAAAGAACG TGATAAGAGCATCGAAGAAG CAAAAGATTC ACCAATTCTT GGTTTTACTT TTGTAAATGA TAAAGTGAAAACTGAAATCA CTAACGTTGC TACAGTTATG AACCGTTACG CAGCAAGCTT AAATACAGGAACTGTTGATC CAGAAGAAAC ACTTCCAAAA TTAATGGATG ACCTAAAAAC AGCTGGCTGGGATAAAGTTC AAAAAGAAAT GCAAACACAA TTAGACGAAT ATATCCAATC TCAAAAAEF010-4 (SEQ ID NO:36)CGKSSKDA ASKGDDSTPT LLMYRVGDKPDNYDQLIDNA NKIIEKKIGA KLKMEFVGWG DWDQKMSTIV ASGESYDISL AQNYATNAQKGAYADLTDLA PKYAKEAYDQ LPDNYIKGNT INGKLYAFPI LGNSYGQQVL TFNKEYVDKYNLDISKVDGS YESATEVLKE FXKXXPNIAA FAIGQTFFAT GNYDFPIGNQ YPFAVKTTDTGSPKIINQYA DKDMINNLKV LHQWYKDGLI PTDAATSTTP YDLNTNTWFM RQETQGPMDYGDTILTQAAG KPLVSRPLTE PLKTTAQAQM ANYVVANTSK NKEKSVELLG LLNSNPELLNGLVYGEEGKQ YEKVGDDRVK LLKDYTPTTH LSAWNTGNNL IIWPEESVTE EMVKERDKSIEEAKDSPILG FTFVNDKVKT EITNVATVMN RYAASLNTGT VDPEETLPKL MDDLKTAGWDKVQKEMQTQL DEYIQSQKEF011-1 (SEQ ID NO:37)TAACGTTTTT GGAGGAAAAG AATGAAAAAG AAATTTTTAG CAATGATGGC AGTTTCAATGATGGGACTGT TAATGTTAAG TGCTTGTCAA ACAAATAAAA AAACAGCAGA TTCTGCAACAACAGAAACAA CAGCTAAAAC GGAAGTCACA GTCAAAGACA CCAATGGTCA ATTAACCGTTCCCAAAAATC CTAAGAAAGT CGTTGTTTTT GATAATGGTT CCTTGGATAC AATGGATGCACTAGGTGTCG GTGACCGCGT GGTAGGTGCG CCAACTAAAA ATATCCCTGC GTATTTGAAAAAATACCAAA AAGTTCAATC AGCAGGCGGC ATTAAAGAAC CAGATTTAGA AAAAATCAATCAACTAAAAC CAGACTTAAT TATTATTTCT GGTCGTCAAC AAGATTATCA AGAACAATTAAAAGCCATTG CGCCAACCAT TTACTTAGCT GTAGATGCCA AAAATCCTTG GGCATCAACGAAACAAAATA TCGAAACGTT AGGCACTATT TTTGATAAAG AAGAGGTAGC TAAAGAAAAAATAACTGCCT TAGAAAAAGA AATTGCTGAC GTGAAAAAAC AAGCAGAAGC TAGCGCGAATAATGCGCTTG TTGTGTTAGT TAACGAAGGA CAACTTTCCG CTTACGGAAA AGGCTCTCGTTTCGGTTTAA TTCATGATAC ATTTGGCTTC AAAGCAGCAG ACGATAAGAT TGAAGCTTCCACTCATGGGC AAAGTGTTTC TTACGAATAT GTTTTAGAAA AAAATCCTGG GATTCTCTTTGTGGTAGATC GCACCAAAGC AATTGGTGGC GACGATTCAA AAGATAACGT CGCTGCAAACGAATTGATTC AAAAAACCGA TGCTGGTAAA AATGATAAAG TCATTATGCT TCAACCAGATGTTTGGTATC TAAGCGGTGG TGGATTAGAA TCAATGCATT TGATGATAGA AGATGTTAAAAAAGGATTAG AGTAAEF011-2 (SEQ ID NO:38)MKKK FLANMAVSMM GLLMLSACQT NKKTADSATT ETTAKTEVTV KDTNGQLTVPKNPKKVVVFD NGSLDTMDAL GVGDRVVGAP TKNIPAYLKK YQKVESAGGI KEPDLEKINQLKPDLIIISG RQQDYQEQLK AIAPTIYLAV DAKNPWASTK QNIETLGTIF DKEEVAKEKITGLEKEIADV KKQAEASANN ALVVLVNEGQ LSAYGKGSRF GLIHDTFGFK AADDKIEASTHGQSVSYEYV LEKNPGILFV VDRTKAIGGD DSKDNVAANE LIQKTDAGKN DKVIMLQPDVWYLSGGGLES MHLMIEDVKK GLEEF011-3 (SEQ ID NO:39)TTGTCAA ACAAATAAAA AAACAGCAGA TTCTGCAACAACAGAAACAA CAGCTAAAAC GGAAGTCACA GTCAAAGACA CCAATGGTCA ATTAACCGTTCCCAAAAATC CTAAGAAAGT CGTTGTTTTT GATAATGGTT CCTTGGATAC AATGGATGCACTAGGTGTCG GTGACCGCGT GGTAGGTGCG CCAACTAAAA ATATCCCTGC GTATTTGAAAAAATACCAAA AAGTTGAATC AGCACGCCGC ATTAAAGAAC CAGATTTAGA AAAAATCAATCAACTAAAAC CAGACTTAAT TATTATTTCT GGTCGTCAAC AAGATTATCA AGAACAATTAAAAGCCATTG CGCCAACCAT TTACTTAGCT GTAGATGCCA AAAATCCTTG GGCATCAACGAAACAAAATA TCGAAACGTT AGGCACTATT TTTGATAAAG AAGAGGTAGC TAAAGAAAAAATAACTGGCT TAGAAAAAGA AATTGCTGAC GTGAAAAAAC AAGCAGAAGC TAGCGCGAATAATGCGCTTG TTGTGTTAGT TAACGAAGGA CAACTTTCCG CTTACGGAAA AGGCTCTCGTTTCGGTTTAA TTCATGATAC ATTTGGCTTC AAAGCAGCAG ACGATAAGAT TGAAGCTTCCACTCATGGGC AAAGTGTTTC TTACGAATAT GTTTTAGAAA AAAATCCTGG GATTCTCTTTGTGGTAGATC GCACCAAAGC AATTGGTGGC GACGATTCAA AAGATAACGT CGCTGCAAACGAATTGATTC AAAAAACCGA TGCTGGTAAA AATGATAAAG TCATTATGCT TCAACCAGATGTTTGGTATC TAAGCGGTGG TGGATTAGAA TCAATGCATT TGATGATAGA AGATGTTAAAAAAGGATTAG AGEF011-4 (SEQ ID NO:40)CQT NKKTADSATT ETTAKTEVTV KDTNGQLTVPKNPKKVVVFD NGSLDTMDAL GVGDRVVGAP TKNIPAYLKK YQKVESAGGI KEPDLEKINQLKPDLIIISG RQQDYQEQLK AIAPTIYLAV DAKNPWASTK QNIETLGTIF DKEEVAKEKITGLEKEIADV KKQAEASANN ALVVLVNEGQ LSAYGKGSRF GLIHDTFGFK AADDKIEASTHGQSVSYEYV LEKNPGILFV VDRTKAIGGD DSKDNVAANE LIQKTDAGKN DKVIMLQPDVWYLSGGGLES MHLMIEDVKK GLEEF012-1 (SEQ ID NO:41)TGAGGGGGCA ACAACATGAA ATTGGGGAAA AAAGTAGTAG GTTTGATTGC AACAGGGTTTCTTTTAGCCG CATGTGGCGG AACCAAAGAA GCGGCAGAGA AAGTAGATTC GGGAAATTTAGCAGCTGAAC AAAAAATCAG TATTAGTTCA CCTGCACCAA TCTCAACATT GGATACAACACAAACAACAG ATAAAAATAC CTTTACAATG GCACAACATT TATTTGAAGG CCTTTATCGGTTTGATGATG ATAGTGCCAC GGTGCCAGCT CTAGCTAAAG ATGTCAAGAT TAGTGACGATGGGCGCAAGT ACCACTTTAC CTTGCGGGAG GGGATTAAGT GGAGCAACGG CGAGCCAATCACGGCCCAAG ATTTTGTTTA TTCTTGGAAA AAACTGGTGA CACCAGCGAC GATTGGACCGAATGCCTATT TACTAGACAG TGTTAAAAAT AGTTTTGAAA TACGCAACGG TGAAAAGTCAGTCGATGAAT TAGGGATTTC AGCCCCGAAT GACAAAGAAT TCATTGTTGA ATTAAAACAGGCCCAACCTT CCTTCTTAGC AGTCGTTTCG ATTGCTTGGT TAGCGCCACA AAATCAAAAATTTGTCGAAG CGCAAGGCAA AGATTACGCC TTGGATAGTG AACATTTACT TTATAGCGGGCCATTTACGC TAGCCAATTG GGATGCGACT TCAGATACTT GGACATTGAA AAAAAATCCAGAATACTATG ATGCGGATCA AGTGAAACTG GAAGAAGTTG CGGTTAGCAC AATCAAAGAAGATAATACTG GGATTAACTT ATATCAAGTG AATGAACTAG ACTTAGTTCG CATTAACGGACAATATGTTC AACAATATCA AGATGATCCA GGCTATGTCA GTCATCCAGA TGTGGCCAACTACTTCTTAG ATTTCAACAA AAAAGAAGGA ACGCCATTAG CGAATGTTCA TTTACGAAAAGCGATTGGCC AAGCAATTGA TAAAGAAGCC TTAACACAAA GTGTCTTAAA CGATGGGTCAAAACCCCTTA ACGGATTGAT TCCAAGTAAA CTTTATGCGA ATCCAGAAAC GGATGAAGATTTCCGAGCTT ACAGTGGCGA ATATTTGAAA AATGACGTCA AAAAAGCTCA AGCTGAATGGACGAAAGCCC AAGCGGATGT CGGTAAAAAA GTGAAACTTT CATTGCTGGC GGCAGACACAGATCAAGGAA AACGAATTGC TGAATATGTT CAAAGTCAGT TGCAAGAAAA TCTGCCAGGTTTAGAAATTA CCATTTCATC GCAACCAAGT AATAATGTGA ACCAATCGCG ACGTGAAAAAAATTATGAGT TGTCTCTTTC AGGATGGATT GCCGGCAGTA GTGAATTAGA CTCTTACTTTAACTTATATG CAGGAGAATC AAGTTACAAT TACGGCAATT ATCATAATGC CAAATACGACCAATTGGTAG AAGAGGCACG AACGATTAAT GCCAATAATC CAGAGAAACA GTTTGCAGAATACAAAGAAG CGGAAGACAT CTTGTTGAAC CAAGATGCTG CCCAAGTACC GCTGTATCAAAGTGCCTCAA ATTATCTAAT CAATCCTAAA TTGAAAGGCA TTAGTTATCA CTTGTATGGGGATTATTTCC ACTTGCGCAA TGCCTATTTA ACAGAATGAEF012-2 (SEQ ID NO:42)MKLGKK WGLIATGFL LAACGGTKEA AEKVDSGNLA AEQKISISSP APISTLDTTQTTDKNTFTMA QHLFEGLYRF DDDSATVPAL AKDVKISDDG RKYHFTLREG IKWSNGEPITAQDFVYSWKK LVTPATIGPN AYLLDSVKNS FEIRNGEKSV DELGISAPND KEFIVELKQAQPSFLAVVSI AWLAPQNQKF VEAQGKDYAL DSEHLLYSGP FTLANWDATS DTWTLKKNPEYYDADQVKLE EVAVSTIKED NTGINLYQVN ELDLVRINGQ YVQQYQDDPG YVSHPDVANYFLDFNKKEGT PLANVHLRKA IGQAIDKEAL TQSVLNDGSK PLNGLIPSKL YANPETDEDFPAYSGEYLKN DVKKAQAEWT KAQADVGKKV KLSLLAADTD QGKRIAEYVQ SQLQENLPGLEITISSQPSN NVNQSRREKN YELSLSGWIA GSSELDSYFN LYAGESSYNY GNYHNAKYDQLVEEARTINA NNPEKQFAEY KEAEDILLNQ DAAQVPLYQS ASNYLINPKL KGISYHLYGDYFHLRNAYLT SEF012-3 (SEQ ID NO:43)ATGTGGCGG AACCAAAGAA GCGGCAGAGA AAGTAGATTC GGGAAATTTAGCAGCTGAAC AAAAAATCAG TATTAGTTCA CCTGCACCAA TCTCAACATT GGATACAACACAAACAACAG ATAAAAATAC CTTTACAATG GCACAACATT TATTTGAAGG CCTTTATCGGTTTGATGATG ATAGTGCCAC GGTGCCAGCT CTAGCTAAAG ATGTCAAGAT TAGTGACGATGGGCGCAAGT ACCACTTTAC CTTGCGGGAG GGGATTAAGT GGAGCAACGG CGAGCCAATCACCGCCCAAC ATTTTGTTTA TTCTTGGAAA AAACTGGTGA CACCAGCGAC GATTGGACCGAATGCCTATT TACTAGACAG TGTTAAAAAT AGTTTTGAAA TACGCAACGG TGAAAAGTCAGTCGATGAAT TAGGGATTTC AGCCCCGAAT GACAAAGAAT TCATTGTTGA ATTAAAACAGGCCCAACCTT CCTTCTTAGC AGTCGTTTCG ATTGCTTGGT TAGCGCCACA AAATCAAAAATTTGTCGAAG CGCAAGGCAA AGATTACGCC TTGGATAGTG AACATTTACT TTATAGCGGGCCATTTACGC TAGCCAATTG GGATGCGACT TCAGATACTT GGACATTGAA AAAAAATCCAGAATACTATG ATGCGGATCA AGTGAAACTG GAAGAAGTTG CGGTTAGCAC AATCAAAGAAGATAATACTG GGATTAACTT ATATCAAGTG AATGAACTAG ACTTAGTTCG CATTAACGGACAATATGTTC AACAATATCA AGATGATCCA GGCTATGTCA GTCATCCAGA TGTGGCCAACTACTTCTTAG ATTTCAACAA AAAAGAAGGA ACGCCATTAG CGAATGTTCA TTTACGAAAAGCGATTGGCC AAGCAATTGA TAAAGAAGCC TTAACACAAA GTGTCTTAAA CGATGGGTCAAAACCCCTTA ACGGATTGAT TCCAAGTAAA CTTTATGCGA ATCCAGAAAC CGATGAAGATTTCCGAGCTT ACAGTGGCGA ATATTTGAAA AATGACGTCA AAAAAGCTCA AGCTGAATGGACGAAAGCCC AAGCGGATGT CGGTAAAAAA GTGAAACTTT CATTGCTGGC GGCAGACACAGATCAAGGAA AACGAATTGC TGAATATGTT CAAAGTCAGT TGCAAGAAAA TCTGCCAGGTTTAGAAATTA CCATTTCATC GCAACCAAGT AATAATGTGA ACCAATCGCG ACGTGAAAkAAATTATGAGT TGTCTCTTTC AGGATGGATT GCCGGCAGTA GTGAATTAGA CTCTTACTTTAACTTATATG CAGGAGAATC AAGTTACAAT TACGGCAATT ATCATAATGC CAAATACGACCAATTGGTAG AAGAGGCACG AACGATTAAT GCCAATAATC CAGAGAAACA GTTTGCAGAATACAAAGAAG CGGAAGACAT CTTGTTGAAC CAAGATGCTG CCCAAGTACC GCTGTATCAAAGTGCCTCAA ATTATCTAAT CAATCCTAAA TTGAAAGGCA TTAGTTATCA CTTGTATGGGGATTATTTCC ACTTGCGCAA TGCCTATTTA ACAGAAEF012-4 (SEQ ID NO:44)CGGTKEA AEKVDSGNLA AEQKISISSP APISTLDTTQTTDKNTFTMA QHLFEGLYRF DDDSATVPAL AKDVKISDDG RKYHFTLREG IKWSNGEPITAQDFVYSWKK LVTPATIGPN AYLLDSVKNS FEIRNGEKSV DELGISAPND KEFTVELKQAQPSFLAVVST AWLAPQNQKF VEAQGKDYAL DSEHLLYSGP FTLANWDATS DTWTLKKNPEYYDADQVKLE EVAVSTIKED NTGINLYQVN ELDLVRINGQ YVQQYQDDPG YVSHPDVANYFLDFNKKEGT PLANVHLRKA IGQAIDKEAL TQSVLNDGSK PLNGLIPSKL YANPETDEDFRAYSGEYLKN DVKKAQAEWT KAQADVGKKV KLSLLAADTD QGKRIAEYVQ SQLQENLPGLEITISSQPSN NVNQSRREKN YELSLSGWIA GSSELDSYFN LYAGESSYNY GNYHNAKYDQLVEEARTINA NNPEKQFAEY KEAEDILLNQ DAAQVPLYQS ASNYLINPKL KGISYHLYGDYFHLRNAYLT EEF013-1 (SEQ ID NO:45)TAACGAAAAA TGAAAAAAAT TGCTTTGTTC AGTATGTTAA CGTTCAGTGT ATTGTCTTTAAGTCTAGCAG GATGTGGAAA CAAAAAAACA GCAAGCACAA ATGATTCTAA GCCAAAGCAAGAAACAAAGA AAGCCACGCA GAAATCCTCT AGCCAACAAG AAATGAAAAG TAGTCATTCGTCTGTCACGG GTCAAAATTC TAATGTGACA GGGGAAAATC CGTCAGAAAA TGCCACGCAGCCTTCTGCAG GAACTGATGA AACGAATGAA GTCCCTCAAA ACCAAGCACC TGATACAAACATTACAATTA CCAATGTTGT TTTCAATCCT GAAAGAAATG AAATTAATGG TACTACATTACCTAATGCAA CCATTACAGC AACGGTAGTC GGTGATGCTT CTGCACAAGC AGGTGTTTTTTATGCGGATG CCAATGGCAA TTTTACAGTA ATTAGTCCCA GAGCGGGAGC GACTACTCAATTAATCGCAA CCGTTGATCA ACGGAATAGT GCACCTGTCC AAATTGATAT TCCAAGTTCAGGACAAGAAG CAGCGCTTTC TTTTAGCAAT ATTACGATTG ATCCGAAACA AGGGACAATTTCTGGTAAAA CAGCACCGAA TGCAACTATT TTAGTGTCAC GTGCAGATGA TGCGCGGGTGATTTTAGCAA GTTTTACTGC GGATGCCCAA GGGAATTTCA CAGCCAGTAA TTTAGTTCCCGGCACAAAAA ATCGCTTAGA TGTTACGTTA AATGGAGAAA TAGGGACACC TTACTTGTTTGATTTACCAA ATTAAEF013-2 (SEQ ID NO:46)MKKIALFS MLTFSVLSLS LAGCGNKKTA STNDSKPKQE TKKATQKSSS QQEMKSSHSSVTGQNSNVTG ENPSENATQP SAGTDETNEV PQNQAPDTNI TITNVVFNPE RNEINGTTLPNATITATVVG DASAQAGVFY ADANGNFTVI SPRAGATTQL IATVDQRNSA PVQIDIPSSGQEAALSFSNI TIDPKQGTIS GKTAPNATTL VSRADDARVI LASFTADAQG NFTASNLVPGTKNRLDVTLN GEIGTPYLFD LPNEF013-3 (SEQ ID NO:47)ATGTGGAAA CAAAAAAACA GCAAGCACAA ATGATTCTAA GCCAAAGCAAGAAACAAAGA AAGCCACGCA GAAATCCTCT AGCCAACAAG AAATGAAAAG TAGTCATTCGTCTGTCACGG GTCAAAATTC TAATGTGACA GGGGAAAATC CGTCAGAAAA TGCCACGCAGCCTTCTGCAG GAACTGATGA AACGAATGAA GTCCCTCAAA ACCAAGCACC TGATACAAACATTACAATTA CCAATGTTGT TTTCAATCCT GAAAGAAATG AAATTAATGG TACTACATTACCTAATGCAA CCATTACAGC AACGGTAGTC GGTGATGCTT CTGCACAAGC AGGTGTTTTTTATGCGGATG CCAATCGCAA TTTTACAGTA ATTAGTCCCA GAGCGGGAGC GACTACTCAATTAATCGCAA CCGTTGATCA ACGGAATAGT GCACCTGTCC AAATTGATAT TCCAAGTTCAGGACAAGAAG CAGCGCTTTC TTTTAGCAAT ATTACGATTG ATCCGAAACA AGGGACAATTTCTGGTAAAA CAGCACCGAA TGCAACTATT TTAGTGTCAC GTGCAGATGA TGCGCGGGTGATTTTAGCAA GTTTTACTGC GGATGCCCAA GGGAATTTCA CAGCCAGTAA TTTAGTTCCCGGCACAAAAA ATCGCTTAGA TGTTACGTTA AATGGAGAAA TAGGGACACC TTACTTGTTTGATTTACCAA ATEF013-4 (SEQ ID NO:48)CCNKKTA STNDSKPKQE TKKATQKSSS QQEMKSSHSSVTGQNSNVTG ENPSENATQP SAGTDETNEV PQNQAPDTNI TITNVVFNPE RNEINGTTLPNATITATVVG DASAQAGVFY ADANGNFTVI SPRAGATTQL IATVDQRNSA PVQIDIPSSGQEAALSFSNI TIDPKQGTTS GKTAPNATIL VSRADDARVI LASFTADAQG NFTASNLVPGTKNRLDVTLN GEIGTPYLFD LPNEF014-1 (SEQ ID NO:49)TGATGGTGGA GACTTTTTAA GAGAGAGGAA GTACAGCCAA TGAGTAGGAA GCGAAAAATCACCTTAATTA GTTTAGTCAT CATTTTGGTT TTTGTCACAG TCGGCTCAGC ATACTTTGCTGTAGCGGGTA GCTATTTAAA GAAAACAATT GATAAAGGCT ATGTTCCCAT AAAAAATGATTATAATGAAG CCCAAAATAA AGATAGTCAA TCGTTTTTGA TTATGGGGCT AGACAATACAATTGAACGGA AATTAGGCAC AACTAGGACT GATGCTATGA TGGTGATTAC CGTGAATAACAAGACGAAGA AAATAACCTA TTTAAGTTTG CCACGGGATA GTTTTGTTCA AATTGATGCGAAAAATTACC AAGGGATGCA GCGAATTGAA GCCGCCTATA CCTACGATGG ACCAACAGCTTCTGTTAACA CAGTTGAGAA ATTATTGAAT ATTCCAATCA ATCATTACGT TGTGTTTAACTTTTTATCTT TTATTAAGTT AATTGATGCG GTTCGCGGCA TAGATGTCAA TGTCAAGCAGGCGTTTGATG GTGTCACCAA AGACGGCCCA GGATCCATTC ATTTTGATGC AGGGAAACAGCATTTAGATG GTACGAAAGC TTTATCTTAT GCCCGTGAAA GACATAGCGA TAACGATATTATGCGTGGAT TCCGACAACA AGAAATTATT CAAGCAGTTG AAGACAAGTT GAAATCTCGTCAATCAATCA TGAAAATAAT GGACATTATT GATTCGTTAA ATGGAAACAT TCAAACTGATGTGGATTCCA ATGAATTGAC TCATTTAGTC AAAGAAGGTT TCACTTGGAC CAATTATGATAAACAACAGC TTTCTTTTGA CTGGCGCACT TTTAGTAATG AAGGGCGCAG TATGGTTGAACTATACCCAG ATAGTATTGA AAATGTCCGT CATCAATTAC GTGTGTCTTT AAATTTAGAAAAGCCAGATG AACCAGATCA AGACGGCTAT GTCTTCCATA CGAACGGTGA ATTTTTATATCAAAGTGATT ATACCGTTCA AGATGAAGCA GCTGAGGAAA ACGAAATGAC TTCCATCAACCGCAATACGT ATATTGGTGT TCCTGCTAAT ACACAGACCO GCCCGTTGCC ATCAGTTAAAACGGAAAATG GCTTTATAAA ATAAEF014-2 (SEQ ID NO:50)MSRKRKIS LISLVIILVF VTVGSAYFAV AGSYLKKTID KGYVPIKNDYNEAQNKDSQS FLIMGLDNTI ERKLGTTRTD ANMVITVNNK TKKITYLSLP RDSFVQIDAKNYQGMQRIEA AYTYDGPTAS VNTVEKLLNI PINHYVVFNF LSFIKLIDAV GGIDVNVKQAFDGVTKDGPG SIHFDAGKQH LDGTKALSYA RERHSDNDIM RGFRQQEIIQ AVEDKLKSGQSIMKIMDIID SLNGNIQTDV DSNELTHLVK EGLTWTNYDK QQLSFDWRTF SNEGRSMVELYPDSIENVRH QLRVSLNLEK PDERDQDGYV FHTNGEFLYQ SDYTVQDEAA EENEMTSINGNTYIGVPGNT QTGPLPSVKT ENGFIKEF014-3 (SEQ ED NO:51)TGCTGTAGCGCGTA GCTATTTAAA GAAAACAATT GATAAAGGCT ATGTTCCCAT AAAAAATGATTATAATGAAG CGCAAAATAA ACATAGTCAA TCGTTTTTGA TTATGGGGCT AGACAATACAATTGAACGGA AATTAGGCAC AACTAGGACT GATGCTATGA TGGTGATTAC CGTGAATAACAAGACGAAGA AAATAACCTA TTTAAGTTTG CCACGGGATA GTTTTGTTCA AATTGATGCGAAAAATTACC AAGGGATGCA GCGAATTGAA GCCGCCTATA CCTACGATGG ACCAACAGCTTCTGTTAACA CAGTTGAGAA ATTATTGAAT ATTCCAATCA ATCATTACGT TGTGTTTAACTTTTTATCTT TTATTAAGTT AATTGATGCG GTTGGCCGCA TAGATGTCAA TGTCAAGCAGGCGTTTGATG GTGTCACCAA AGACGGGCCA GGATCCATTC ATTTTGATGC ACGGAAACAGCATTTAGATG GTACGAAAGC TTTATCTTAT GCCCGTGAAA GACATAGCGA TAACGATATTATGCGTGGAT TCCGACAACA AGAAATTATT CAAGCAGTTG AAGACAAGTT GAAATCTGGTCAATCAATCA TGAAAATAAT GGACATTATT GATTCGTTAA ATGGAAACAT TCAAACTGATGTGGATTCCA ATGAATTGAC TCATTTAGTC AAAGAAGGTT TGACTTGGAC CAATTATGATAAACAACAGC TTTCTTTTGA CTGGCGCACT TTTAGTAATG AAGGGCGCAG TATGGTTGAACTATACCCAG ATAGTATTGA AAATGTCCGT CATCAATTAC GTGTGTCTTT AAATTTAGAAAAGCCAGATG AACGAGATCA AGACGGCTAT GTCTTCCATA CGAACGGTGA ATTTTTATATCAAAGTGATT ATACCGTTCA AGATGAAGCA GCTGAGGAAA ACGAAATGAC TTCCATCAACGGCAATACGT ATATTGGTGT TCCTGGTAAT ACACAGACCG GCCCGTTGCC ATCAGTTAAAACGGAAAATG GCTTTATAAA AEF014-4 (SEQ ID NO:52)AV AGSYLKKTID KGYVPIKNDYNEAQNKDSQS FLIMGLDNTI ERKLGTTRTD AMMVITVNNK TKKITYLSLP RDSFVQIDAKNYQGMQRIEA AYTYDGPTAS VNTVEKLLNI PINHYVVFNF LSFIKLIDAV GGIDVNVKQAFDCVTKDGPG SIHFDAGKQH LDGTKALSYA RERHSDNDIM RGFRQQEIIQ AVEDKLKSGQSIMKIMDIID SLNGNIQTDV DSNELTHLVK EGLTWTNYDK QQLSFDWRTF SNEGRSMVELYPDSIENVRH QLRVSLNLEK PDERDQDGYV FHTNGEFLYQ SDYTVQDEAA EENEMTSINGNTYIGVPGNT QTGPLPSVKT ENGFIKEF015-1 (SEQ ID NO:53)TAATTAAAAA TGTGTAAAAA GGGTCTGATG AAAAAAGGAG ACATAATAGT TATTATCTTTTTAATAGCTA TCTCTTTTTC TCCATATTTT ATTTTTTTTC ACAATAATCC ATTTAACTCCAAAAGTTTTG ACGACACTAA ATATGCTGTG GTCAAGATAG ATGGGAAAGA GATTGAGCGTATAAATTTAG ATGATTCAAA AGAATTTATC AAAACATATT ATCCATCAAA AGGGCAATATAATACTATAG AAGTTAAAAA TGGGCACGTT CGTGTAAAAA AAGATAATAG TCCAGATCAAATTGCGGTGA AAACAGGATG GATATCAGAA CCAGGGCNAA CTACTATCTG TATTCCTCACAGATTCATTT TAGAAATTGT TCAACAATAT TCTAAGGATT ATTATATTTA CTAAEF015-2 (SEQ ID NO:54)MK KGDIIVIIFL TAISESPYFI FFHNNPFNSK SFDDTKYAVV KIDGKEIERILNLDDSKEFIK TYYPSKGQYN TIEVKNGHVR VKKDNSPDQI AVKTGWISEP GXTSICTPHRFILEIEVQQYS KDYYIYEF015-3 (SEQ ID NO:55)CAATAATCC ATTTAACTCCAAAAGTTTTG ACGACACTAA ATATGCTGTG GTCAAGATAG ATGGGAAAGA GATTGAGCGTATAAATTTAG ATGATTCAAA AGAATTTATC AAAACATATT ATCCATCAAA AGGGCAATATAATACTATAG AAGTTAAAAA TGGGCACGTT CGTGTAAAAA AAGATAATAG TCCAGATCAAATTGCGGTGA AAACAGGATG GATATCAGAA CCAGGCCNAA CTAGTATCTG TATTCCTCACAGATTCATTT TAGAAATTGT TCAACAATAT TCTAAGGATT ATTATATTTA CEF015-4 (SEQ ID NO:56)NNPFNSK SFDDTKYAVV KTDGKEIERINLDDSKEFIK TYYPSKGQYN TIEVKNGHVR VKKDNSPDQT AVKTGWISEP GXTSICIPHRFILEIVQQYS KDYYIYEF016-1 (SEQ ID NO:57)TGACGGTTGC CCCCGTCCAA TAGAAAGGAG TTTATGATGA AAAAGAAATA TTCTTTAGCCTTGCTGGTTA TCTGTTGTAG TTTACTCCTA TTTGCAGGTT GTGGTAAAAG AAAAAGCAACGAAGATCAAT GGACACGGAT TAACGAAGAA AAACGGATTA TTATTGGCTT AGATGACTCCTTTGTGCCCA TGGGTTTTCA AGATAAATCA GGCAAAATTG TCGGCTTTGA TGTCGACTTAGCCAAAGCGG TTTTTAAACT TTATGGCATT TCCGTTGACT TCCAACCGAT TGATTGGTCTATGAAAGAAA CAGAATTACA AAATCAAACC ATTGATCTTA TTTGGAACGG CTACACTAAAACGAGCGAGC GGGCCGAAAA AGTTCAATTC ACACAACCTT ACATGACGAA CGACCAAGTACTTGTTTCTT TAAAAGAAAA AAACATTGCA ACAGCGAGCG ACATGCAAGG CAAAATTTTAGGCGTTCAAA ACGGCTCTTC TGGCTATGAT GGCTTCGAAA GTCAGCCTGA CGTTTTGAAAAAATTTGTTA AAGACCAAAC ACCTATTTTA TATGACGGCT TTAATGAAGC TTTCTTAGATTTAAAATCTG GTCGAATTGA CGGACTCCTA ATCGATCGCG TTTACGCCAA CTACTATCTTTCCCACGAAG ATAATTTAAA AAACTATACT ATTTCTCATG TAGGCTATGA CAATGAAGATTTTGCTGTGG GCGTCCGCAA ATCAGACAAT CAATTAGTCC AAAAAATCAA TACTGCCTTTGAAACGTTAC GAAAAGATGG CACCCTTACT AAAATTTCTC AAAAATGGTT TGGAGAGGACGTTACAAATA ACACAAAAAT AAACTAAEF016-2 (SEQ ID NO:58)MMKKKYSLAL LVICCSLLLF AGCGKRKSNE DQWTRINEEK RIIIGLDDSFVPMGFQDKSG KIVGFDVDLA KAVFKLYGIS VDFQPIDWSM KETELQNQTI DLIWNGYTKTSERAEKVQFT QPYMTNDQVL VSLKEKNIAT ASDMQGKILG VQNGSSGYDG FESQPDVLKKFVKDQTPILY DGFNEAFLDL KSGRIDGLLI DRVYANYYLS HEDNLKNYTI SHVGYDNEDFAVGVRKSDNQ LVQKINTAFE TLRKDGTLSK TSQKWFGEDV TNNTKINEF016-3 (SEQ ID NO:59)AAGCAACGAAGATCAAT GGACACGGAT TAACGAAGAA AAACGGATTA TTATTGGCTT AGATGACTCCTTTGTGCCCA TGGGTTTTCA AGATAAATCA GGCAAAATTG TCGGCTTTGA TGTCGACTTAGCCAAAGCGG TTTTTAAACT TTATGGCATT TCCGTTGACT TCCAACCGAT TGATTGGTCTATGAAAGAAA CAGAATTACA AAATCAAACC ATTGATCTTA TTTGGAACGG CTACACTAAAACGAGCGAGC GGGCCGAAAA AGTTCAATTC ACACAACCTT ACATGACGAA CGACCAAGTACTTGTTTCTT TAAAAGAAAA AAACATTGCA ACAGCGAGCG ACATGCAAGG CAAAATTTTAGGGGTTCAAA ACGGCTCTTC TGGCTATGAT GGCTTCGAAA GTCAGCCTGA CGTTTTGAAAAAATTTGTTA AAGACCAAAC ACCTATTTTA TATGACGGCT TTAATGAAGC TTTCTTAGATTTAAAATCTG GTCGAATTGA CGGACTCCTA ATCGATCGCG TTTACGCCAA CTACTATCTTTCCCACGAAG ATAATTTAAA AAACTATACT ATTTCTCATG TAGGCTATGA CAATGAAGATTTTGCTGTGG GCGTCCGCAA ATCAGACAAT CAATTAGTCC AAAAAATCAA TACTGCCTTTGAAACGTTAC GAAAAGATGG CACCCTTAGT AAAATTTCTC AAAAATGGTT TGGAGAGGACGTTACAAATA ACACAAAAAT AAACEF016-4 (SEQ ID NO:60)SNE DQWTRINEEK RIIIGLDDSFVPMGFQDKSG KIVGFDVDLA KAVFKLYGIS VDFQPIDWSM KETELQNQTI DLIWNGYTKTSERAEKVQFT QPYMTNDQVL VSLKEKNIAT ASDMQGKILG VQNGSSGYDG FESQPDVLKKFVKDQTPILY DGFNEAFLDL KSGRIDGLLI DRVYANYYLS HEDNLKNYTI SHVGYDNEDFAVGVRKSDNQ LVQKINTAFE TLRKDGTLSK ISQKWFGEDV TNNTKINEF017-1 (SEQ ID NO:61)TGAGGTGTTT TTATGAAAAG CGCAACAAAG CAAAGGCTGT CTTTGGCAGC AATCATGGTTCTACTTCTCT CGGGCTGTGG AAGTGTTGGG AAAGAAACCA AAAAGCAAGA ACAACAGGTATTACGGGTCG GGATTGATTC GGAATTATCA ACGGCAGACG TGTCGTTGGC AATGGATAATACCGCAGCAG ATGTAATGAG CCAAGTAGGG GAGGGACTTT TCTCCTTTGA CGAAAAAGGAGAAGCGAAAC CAGCATTGGC AACTGAAAAA GTACAGCCCT CCAATGATGG TTTAAGCTATACTTTTACGA TTCGAAAAGA TGCAAAATGG AGTAACGGCG AGCCAATCAC AGCAAATGATTTTGAATACT CTTGGAAGCG CACAGTGGAC CCAAAAACAG CTTCCCCGCA AGCGTATTACTTTGAAGGGT TAAAAAATTA TCGTGCTATT GTTGACGGTA GCAAATCTAA AGAAGAGTTAGGGGTAACAG CCATTGATGA CCATACCTTG GAAGTAGAGC TAAGCTATCC TATGAGTTATTTTCAACAAT TATTGGCGGT ACCAGCTTTT TATCCTTTAA ATGAAGCATT TGTCGAAAAAACGGGCAAAA ACTATGGTAC ATCAGCTGAG TCAACACTTT ACAATGGCGC CTTCACATTAGAAGGTTGGG ATGGCACGAA TAATACTTGG TCCTATGTGA AGAATAAAAA TTATTGGGATCAAGCGAATG TTTCGCTAGA TAAGGTGGAT GTCCAAGTAG TTAAAGAAGT CAATACTGGGAAAAATCTTT TCGAAGGGAA AGAATTAGAT GTTGTAAAAA TTTCTGGAGA AATTGTTGCACAAGAACAAG GCAATGCAGC TTTGAAAATT CGTGAAATTC CTGGAACGTA TTATATCCAATTAAATACGC AAAAAGATCT TTTGGCAAAT AAGAATGCAC GTCGAGCAAT AGCATTATCATTGAATTCTG AGCGTTTAGC TAAAAATGTT TTAAATGATG GCTCAAAAAA AGCACTTGGCTTCGTGCCAA CAGGTTTCAC TAATCAACAA ACCCAAAAAG ATTTTGCAGA GGAATTAGGAGATTTAAATC CTAGTGAACC AGAAAAAGCG AAAGAGTTAT GGCAAACGGC TAAAAAAGAATTAGGAATTG AAAAAGCGGA GCTAACGATT TTAAGTTCGG ATACAGAAAA TGCTAAAAAAATCAGTGAGT ATGTTCAAGG AGCTTTAGCA GATAATTTAG AAAATTTAAC AGTCAATGTTTCACCAGTTC CTTTTAATAA TCGTTTAGAA AAAAGTCGCA GCGGAGATTT CGACATTGTGGTTGGTGGCT GGACGCCAGT ATATGCTGAT CCAATCGATT TCTTAAACTT ACTGCAATCAAAAAATTCCA ATAATTTTGG TAAATGGTCT AATAAGACCT TTGATCAGTT GCTTCAAGAACCAAACGTAA CTTATGCAAA TAAATATGAA GAACGTTGGA AAACATTACA AAAAGCGGATCAATTGGTTG CGGAAGAAGC CCCCCTAGTT CCTCTTTATC AATTAACAGA AGCACGCTTAGTGGCCGATT CTGTCCAAAA TTTAGTCTAT GGTCCATTAG GTTCAGGCTA TTACAAATCAGTCTCTATCG GCGACAAGTA AEF017-2 (SEQ ID NO:62)MKRATKQ RLSLAAIMVL LLSGCGSVGK ETKKQEQQVL RVGIDSELST ADVSLAMDNTAADVMSQVGE GLFSFDEKGE AKPALATEKV QPSNDGLSYT FTIRKDAKWS NGEPITANDFEYSWKRTVDP KTASPQAYYF EGLKNYRAIV DGSKSKEELG VTAIDDHTLE VELSYPMSYFQQLLAVPAFY PLNEAFVEKT GKNYGTSAES TLYNGAFTLE GWDGTNNTWS YVKNKNYWDQANVSLDKVDV QVVKEVNTGK NLFEGKELDV VKISGEIVAQ EQGNAALKIR EIPGTYYIQLNTQKDLLANK NARPAIALSL NSERLAKNVL NDGSKKALGF VPTGFTNQET QKDFAEELGDLNPSEPEKAK ELWQTAKKEL GIEKAELTIL SSDTENAKKI SEYVQGALAD NLENLTVNVSPVPFNNRLEK SRSGDFDIVV GGWTPVYADP IDFLNLLQSK NSNNFGKWSN KTFDQLLQEANVTYANKYEE RWKTLQKADQ LVAEEAPLVP LYQLTEARLV ADSVQNLVYG PLGSGYYKSVSIGDKEF017-3 (SEQ ID NO:63)CTGTGG AAGTGTTGGG AAAGAAACCA AAAAGCAAGA ACAACAGGTATTACGGGTCG GGATTGATTC GGAATTATCA ACGGCAGACG TGTCGTTGGC AATGGATAATACCGCAGCAG ATGTAATGAG CCAAGTAGGG GAGGGACTTT TCTCCTTTGA CGAAAAAGCAGAAGCGAAAC CAGCATTGGC AACTGAAAAA GTACAGCCCT CCAATGATGG TTTAAGCTATACTTTTACGA TTCGAAAAGA TGCAAAATGG AGTAACGGCG AGCCAATCAC AGCAAATGATTTTGAATACT CTTGGAAGCG CACAGTGGAC CCAAAAACAG CTTCCCCGCA AGCGTATTACTTTGAAGGGT TAAAAAATTA TCGTGCTATT GTTGACGGTA GCAAATCTAA AGAAGAGTTAGGGGTAACAG CCATTGATGA CCATACCTTG GAAGTAGAGC TAAGCTATCC TATGAGTTATTTTCAACAAT TATTGGCGGT ACCAGCTTTT TATCCTTTAA ATGAAGCATT TGTCGAAAAAACGGGCAAAA ACTATGGTAC ATCAGCTGAG TCAACACTTT ACAATGGCGC CTTCACATTAGAAGGTTGGG ATGGCACGAA TAATACTTGG TCCTATGTGA AGAATAAAAA TTATTGGGATCAAGCGAATC TTTCGCTAGA TAAGGTGGAT GTCCAAGTAG TTAAAGAAGT CAATACTGGGAAAAATCTTT TCGAAGGGAA AGAATTAGAT GTTGTAAAAA TTTCTGGAGA AATTGTTGCACAACAACAAG GCAATGCAGC TTTGAAAATT CGTGAAATTC CTGGAACGTA TTATATCCAATTAAATACGC AAAAAGATCT TTTGGCAAAT AAGAATGCAC GTCGAGCAAT AGCATTATCATTGAATTCTG AGCGTTTAGC TAAAAATGTT TTAAATGATG GCTCAAAAAA AGCACTTGGCTTCGTGCCAA CAGGTTTCAC TAATCAAGAA ACGCAAAAAG ATTTTGCAGA GGAATTAGGAGATTTAAATC CTAGTGAACC AGAAAAAGCG AAAGAGTTAT GGCAAACGGC TAAAAAAGAATTAGGAATTG AAAAACCGGA GCTAACGATT TTAAGTTCGG ATACAGAAAA TGCTAAAAAAATCAGTGAGT ATGTTCAAGG AGCTTTAGCA GATAATTTAG AAAATTTAAC AGTCAATGTTTCACCAGTTC CTTTTAATAA TCGTTTAGAA AAAAGTCGCA GCGGAGATTT CGACATTGTGGTTGGTGGCT GGACGCCAGT ATATGCTGAT CCAATCGATT TCTTAAACTT ACTGCAATCAAAAAATTCCA ATAATTTTGG TAAATGGTCT AATAAGACCT TTGATCAGTT GCTTCAAGAAGCAAACGTAA CTTATGCAAA TAAATATGAA GAACGTTGCA AAACATTACA AAAAGCGGATCAATTGGTTG CGGAAGAAGC CCCCCTAGTT CCTCTTTATC AATTAACAGA AGCACGCTTAGTGGCCGATT CTGTCCAAAA TTTAGTCTAT GGTCCATTAG GTTCAGGCTA TTACAAATCAGTCTCTATCG GCGACAAGEF017-4 (SEQ ID NO:64)CGSVGK ETKKQEQQVL RVGIDSELST ADVSLAIADNTAADVMSQVGE GLFSFDEKGE AKPALATEKV QPSNDGLSYT FTIRKDAKWS NGEPITANDFEYSWKRTVDP KTASPQAYYF EGLKNYRAIV DGSKSKEELG VTAIDDHTLE VELSYPMSYFQQLLAVPAFY PLNEAFVEKT GKNYGTSAES TLYNGAFTLE GWDGTNNTWS YVKNKNYWDQANVSLDKVDV QVVKEVNTGK NLFEGKELDV VKISGEIVAQ EQGNAALKIR EIPGTYYIQLNTQKDLLANK NARRAIALSL NSERLAKNVL NDGSKKALGF VPTGFTNQET QKDFAEELGDLNPSEPEKAK ELWQTAKKEL GIEKAELTIL SSDTENAKKI SEYVQGALAD NLENLTVNVSPVPFNNRLEK SRSGDFDIVV GGWTPVYADP IDFLNLLQSK NSNNFGKWSN KTFDQLLQEANVTYANKYEE RWKTLQKADQ LVAEEAPLVP LYQLTEARLV ADSVQNLVYG PLGSGYYKSVSIGDKEF018-1 (SEQ ID NO:65)TGTCATTACA ACGATACCAA TTTTAATCAT TTATCCATTA CTACAAAAAC ACTTTATCGGCGGTATGATG GCCGGTGCAG TAAAAGAATA AAGAAAGTAG GGAACAATAT GAAAAAAGTTTTAGGCGGTT TATTGGTGGC AACGGCGGTC GTTAGTTTAG CGGCCTGTAG CGGTGGGGAAAAGAAAGCTA GCTCAGATGT CTCAATTAAG GATCGGTATG AATTAGATGA AAAGACGCCTGCTTGGAAGT TACATAAGAA GAAAGAACCG ACCAAGATTA AATGGTATAT TAACTCAGATTGGACGGCGC TCCCTTTTGG AAAAGACGTG ACCACTGCGC AGATTAAAAA AGACTTAAATGTGGATATTG AATTTATTTC CGGCGATGAT TCAAAATTAA ATGCCATGAT TTCAAGTGGAGATATGCCTG ATATCGTGAC ATTAACTGAA AAAACTGGAC AAGCAGCATT GAAAGCAGATTCTTGGGCCT ATTCTTTAAA CGATTTAGCT AAAAAATATG ACCCCTATTT AATGAAAGTTGTTAACCAAG ATACGTTTAA ATGGTATGCC TTAGAGGATG GAAAAACATA TGGTTACCCTAATTACTCTA ATACAAAAGC GGATTATGAA AGTGGAAATA TCCCAGTAAA TGATAATTTTGTTATTCGTG AAGATGTCTA TAATGCATTA GGCAAGCCAG ACGTTTCAAC ACCAGAAAATTTTGAAAAAG TCATGCAACA GATTAAAGAA AAATATCCTG AGATGACCCC AATGGGCTTCACCACAGTGG GCGATGGTGC AGGACCATTT TTAGACAAAT TACAAGACTT CTTAGGTGTTCCTTTAGAGG ATAAAAATGG TAAATACTAT GATCGAAATT TAGATAAAGA ATATTTAGAATGGTTAAAAA CATTTAATGA TGTTTACCGA GCAGGCAATA TTAGTGATGA TAGCTTCACAGATGATGGGG CAACGTTTGA TGAAAAAGTG AAACAAGGAA ATTATGCAAC CATGCTCGTTGCTGGAACCA GTGGTCAAGG TGGGAACTTC ACAGAATTTA TGAAAAAATC TGGCACACGTTATATAGCCA TTGATGGACC AAGTAGCACT TCTGGCCGAA AACCAACATT AAATCAAACCGGCATTTCAG GTTGGTTAAG TAATTACATT ACGAAAGATG CGAAAGATCC AGCAAAAGTCACTCAACTGT TCACATATTT AATTGATGAA CCGGGACAAA TTTTAACAAA ATATGGCGTTGAAGGAGTTA CTTATGCGTA CAATGATCAA GGAAAAATTG ATTATTTACC AGAAGTGAAAAAATTAGAAC AAACAGACAA TGATGCCTAC AACAAAAAAT ATGGCATTAG TCGTTTCCTATACTTTAACA ACGACCGTGT CAATAAACTA AAAGTACCAA TGGAAAGTGC TTTAACGCAAATGCAAGAAT GCGGCAAAGG AAAATTAGTC CCACATTTCG TAATTGAAAA TATTAATCCAGATGCAGGAA CGCCGGAAGC TCGTGCGAAT GAAGCGATTG AAACCAAACT AAATACAACCGTTATTTCAA TGATTCGTGC GAAAGATGAT AAAGCCTTTG ACAAATCTTT AGAAGACTACAAAGCATTCT TAAAATCAAA TAAATCGGAT GCAATTGAAA AAATAAAATC TGAGAAAATGGCGGAAAACA GAGACAAACT TAAGTAAEF018-2 (SEQ ID NO:66)MKKV LGGLLVATAV VSLAACSGGEKKASSDVSIK DRYELDEKTP AWKLDKKKEP TKIKWYTNSD WTALPFGKDV TTAQIKKDLNVDIEFISGDD SKLNANISSG DMPDIVTLTE KTGQAALKAD SWAYSLNDLA KKYDPYLMKVVNQDTFKWYA LEDGKTYGYP NYSNTKADYE SGNIPVNDNF VIREDVYNAL GKPDVSTPENFEKVMQQIKE KYPEMTPMGF TTVGDGAGPF LDKLQDFLGV PLEDKNGKYY DRNLDKEYLEWLKTFNDVYR AGNTSDDSFT DDGATFDEKV KQGNYATMLV AGTSGQGGNF TEFMKKSGTRYIAIDGPSST SGRKPTLNQT GISGWLSNYI TKDAKDPAKV TQLFTYLIDE PGQILTKYGVEGVTYAYNDQ GKIDYLPEVK KLEQTDNDAY NKKYGISRFL YFNNDRVNKL KVPMESALTQMQEWGKGKLV PHFVIENINP DAGTPEARAN EAIETKLNTT VISMTRAKDD KAFDKSLEDYKAFLKSNKWD AIEKIKSEKM AENRDKLKEF018-3 (SEQ ID NO:67)CTGTAG CGGTGGGGAAAAGAAAGCTA GCTCACATGT CTCAATTAAG GATCGGTATG AATTAGATGA AAAGACGCCTGCTTGGAAGT TAGATAAGAA GAAAGAACCG ACCAAGATTA AATGGTATAT TAACTCAGATTGGACGGCGC TGCCTTTTGG AAAAGACGTG ACCACTGCGC ACATTAAAAA AGACTTAAATGTGGATATTG AATTTATTTC CGGCGATGAT TCAAAATTAA ATGCCATGAT TTCAAGTGGAGATATGCCTG ATATCGTGAC ATTAACTGAA AAAACTGGAC AAGCAGCATT GAAAGCAGATTCTTGGGCCT ATTCTTTAAA CGATTTAGCT AAAAAATATG ACCCCTATTT AATGAAAGTTGTTAACCAAG ATACGTTTAA ATGGTATGCC TTAGAGGATG GAAAAACATA TGGTTACCCTAATTACTCTA ATACAAAAGC GGATTATGAA AGTGGAAATA TCCCAGTAAA TGATAATTTTGTTATTCGTG AAGATGTCTA TAATCCATTA CGCAAGCCAG ACGTTTCAAC ACCAGAAAATTTTGAAAAAG TCATGCAACA GATTAAAGAA AAATATCCTG AGATGACCCC AATGGGCTTCACCACAGTGG GCGATGGTGC AGGACCATTT TTAGACAAAT TACAAGACTT CTTAGGTGTTCCTTTAGAGG ATAAAAATGG TAAATACTAT GATCGAAATT TAGATAAAGA ATATTTAGAATGGTTAAAAA CATTTAATGA TGTTTACCGA GCAGGCAATA TTAGTGATGA TAGCTTCACAGATGATGGGG CAACGTTTGA TGAAAAAGTG AAACAAGGAA ATTATGCAAC CATGCTCGTTGCTGGAACCA GTGGTCAAGG TGGGAACTTC ACAGAATTTA TGAAAAAATC TGGCACACGTTATATAGCCA TTGATGGACC AAGTACCACT TCTCGCCGAA AACCAACATT AAATCAAACCGGCATTTCAG GTTGGTTAAG TAATTACATT ACGAAAGATG CGAAAGATCC AGCAAAAGTCACTCAACTGT TCACATATTT AATTGATGAA CCGGGACAAA TTTTAACAAA ATATGGCGTTGAAGGAGTTA CTTATGCGTA CAATGATCAA GGAAAAATTG ATTATTTACC AGAAGTGAAAAAATTAGAAC AAACAGACAA TGATGCCTAC AACAAAAAAT ATGGCATTAG TCGTTTCCTATACTTTAACA ACGACCGTGT CAATAAACTA AAAGTACCAA TGGAAAGTGC TTTAACGCAAATGCAAGAAT GGGGCAAAGG AAAATTAGTC CCACATTTCG TAATTGAAAA TATTAATCCAGATGCACGAA CGCCGGAAGC TCGTGCGAAT GAAGCGATTG AAACCAAACT AAATACAACCGTTATTTCAA TGATTCGTGC GAAAGATGAT AAAGCCTTTG ACAAATCTTT AGAAGACTACAAAGCATTCT TAAAATCAAA TAAATGGGAT CCAATTGAAA AAATAAAATC TCAGAAAATGGCGGAAAACA GAGACAAACT TAAGEF018-4 (SEQ ID NO:68)CSGGEKKASSDVSIK DRYELDEKTP AWKLDKKKEP TKIKWYINSD WTALPFGKDV TTAQIKKDLNVDIEFISGDD SKLNAMTSSG DMPDIVTLTE KTGQAALKAD SWAYSLNDLA KKYDPYLMKVVNQDTFKWYA LEDGKTYGYP NYSNTKADYE SGNIPVNDNF VIREDVYNAL GKPDVSTPENFEKVMQQIKE KYPEMTPMGF TTVGDGAGPF LDKLQDFLGV PLEDKNGKYY DRNLDKEYLEWLKTFNDVYR AGNISDDSFT DDGATFDEKV KQGNYATMLV AGTSGQGGNF TEFMKKSGTRYIAIDGPSST SGRKPTLNQT GISGWLSNYI TKDAKDPAKV TQLFTYLIDE PGQILTKYGVEGVTYAYNDQ GKIDYLPEVK KLEQTDNDAY NKKYGISRFL YFNNDRVNKL KVPMESALTQMQEWGKGKLV PHFVIENINP DAGTPEARAN EAIETKLNTT VISMIRAKDD KAFDKSLEDYKAFLKSNKWD AIEKIKSEKM AENRDKLKSF019-1 (SEQ ID NO:69)TAAAGGAGTT ACACAATGAA ACTTTTAAAA AAGACGGTCC TAATTGGTAC AACCCTTCTTCTTGGTTCAT TCTTACTCGC AGCTTGTGGT AATACGAATA AAGAAGCCAA CAACGCTGACAAAACACATG AAGTAACAGA TACOTTAGGO AATAAAGTAA CCGTCCCCGC GAAACCCAAACGGATTATTG CGAGTTATTT AGAAGATTAT CTAGTTGCAT TAGGAGAAAA ACCAGTGGCACAATGGACAG TTGGACAAGG CAGCATTCAA GATTATTTAG CGAAAGAATT GAAAGATGTCCCCACTATTT CCTATGACTT GCCATATGAA GCGGTTCTAA AATTTGAACC TGACTTATTATTAATCAGTT CATCTGCTCT AGTTGAAGGC GGTAAATACA AAGAATACAG TAAAATTGCGCCAACTTATG TAGTCAAAAA CGGCGAAAAT GTCACCTGGC GTGATCAATT GGAAGATATTGCCACTGTTT TAGATAAAAA AGAACAAGCG AAAAAAGTGT TAGAAGATTA TGATACCTTAACCAAAGGCG TCCAAGAATA TCTTGGCAAA AAAGATGCTG GCAAATCTGC GGCAGTCTTATGGGTAACCA ACAACCAAGT CTTTATGGTT AGCGATAATC GCTCAAGCGG AACCGTGCTCTATCAGGACT TAGGCCTCCA AGTTCCAAAA TTAGTGGAAG AAATTTCTAA AAACGCTACTGCGGATTGGA ATCAAGTTTC TTTAGAAAAA TTAGCTGAGC TTGACGCAGA CCACATTTTCCTTGTAAACA GCGATGAATC AGCACCTCTT TTCCAAGAAG CAATTTGGAA GAACTTACCTGCTGTGAAAA ATAACCAAGT TCATACCTAT GATAAAAAAA GTAGTTGGTT ATACAACGGACCTATTGCGA ATACTCAAAT TGTTGAAGAT GTAAAAAAAG CGCTCTTAAA TTAA5F019-2 ((SEQ ID NO:70)MKLLKK TVLIGTTLLL GSFLLAACGN TNKEANNADK THEVTDTLGN KVTVPAKPKRIIASYLEDYL VALGEKPVAQ WTVGQGSIQD YLAKELKDVP TISYDLPYEA VLKFEPDLLLTSSSALVEGG KYKEYSKIAP TYVVKNGENV TWRDQLEDIA TVLDKKEQAK KVLEDYDTLTKGVQEYLGKK DAGKSAAVLW VTNNQVFMVS DNRSSGTVLY QDLGLQVPKL VEEISKNATADWNQVSLEKL AELDADHIEL VNSDESAPLF QEAIWKNLPA VKNNQVHTYD KKSSWLYNGPIANTQIVEDV KKALLNEF019-3 (SEQ ID NO:71)TTGTGGT AATACGAATA AAGAAGCCAA CAACGCTGACAAAACACATG AAGTAACAGA TACCTTAGGC AATAAAGTAA CCGTCCCCGC GAAACCCAAACGGATTATTG CGAGTTATTT AGAAGATTAT CTAGTTGCAT TAGGAGAAAA ACCAGTGGCACAATGGACAG TTGGACAAGG CAGCATTCAA GATTATTTAG CGAAAGAATT GAAAGATGTCCCCACTATTT CCTATGACTT GCCATATGAA GCGGTTCTAA AATTTGAACC TGACTTATTATTAATCAGTT CATCTGCTCT AGTTGAAGGC GGTAAATACA AAGAATACAG TAAAATTGCGCCAACTTATG TAGTCAAAAA CGGCGAAAAT GTCACCTGGC GTGATCAATT GGAAGATATTGCCACTGTTT TAGATAAAAA AGAACAAGCG AAAAAAGTGT TAGAAGATTA TGATACCTTAACCAAAGGCG TCCAAGAATA TCTTGGCAAA AAAGATGCTG GCAAATCTGC GGCAGTCTTATGGGTAACCA ACAACCAAGT CTTTATGGTT AGCGATAATC GCTCAAGCGG AACCGTGCTCTATCAGGACT TAGGCCTCCA AGTTCCAAAA TTAGTGGAAG AAATTTCTAA AAACGCTACTGCGGATTGGA ATCAAGTTTC TTTAGAAAAA TTAGCTGAGC TTGACGCAGA CCACATTTTCCTTGTAAACA GCGATGAATC AGCACCTCTT TTCCAAGAAG CAATTTGGAA GAACTTACCTGCTGTGAAAA ATAACCAAGT TCATACCTAT GATAAAAAAA GTAGTTGGTT ATACAACGGACCTATTGCGA ATACTCAAAT TGTTGAAGAT GTAAAAAAAG CGCTCTTAAA TEF019-4 (SEQ ID NO:72)CGN TNKEANNADK THEVTDTLGN KVTVPAKPKRIIASYLEDYL VALGEKPVAQ WTVGQGSIQD YLAKELKDVP TISYDLPYEA VLKFEPDLLLISSSALVEGG KYKEYSKIAP TYVVKNGENV TWRDQLEDIA TVLDKKEQAK KVLEDYDTLTKGVQEYLGKK DAGKSAAVLW VTNNQVFMVS DNRSSGTVLY QDLGLQVPKL VEEISKNATADWNQVSLEKL AELDADHIEL VNSDESAPLF QEATWKNLPA VKNNQVHTYD KKSSWLYNGPIANTQIVEDV KKALLNEF020-1 (SEQ ID NO:73)TGAGGAGATG AGAAAATGAA AAAGGTAGTT TCAATTTTGT TGATGGTTGT TGCAGTCTTCACATTAACTG CATGTAATGG TTCTAAATTA GATAAAACAG GTGAAGAATT TAAAAATTCTATAATGAAAG ATTCTTCATA TGGTGATGAA TATTCAGAAG ATGGTTTTAG TTTTTTAATATATAAAGATA AAGACACTAA TCGTTATTTG GCTGATGTTT GGGTTCCTGT TAAAGATGAAACTAGCGCAT TGGAGTATTT TTATTATTAT GATGAAGATA AGCGATTAGA TAGTACTAAAAGTAAAGTAA CCTTTGATGA TATGAAAGCT AGTGGAAACT ATGAAGTAGT GTATAAATCAGGGAAATTTA AATAAEF020-2 (SEQ ID NO:74)MKKVVS ILLMVVAVFT LTACNGSKLD KTGEEFKNSI MKDSSYGDEY SEDGFSFLIYKDKDTNRYLA DVWVPVKDET SALEYFYYYD EDKRLDSTKS KVTFDDMKAS GNYEVVYKSGKFKEF020-3 (SEQ ID NO:75)ATGTAATGG TTCTAAATTA GATAAAACAG GTGAAGAATT TAAAAATTCTATAATGAAAG ATTCTTCATA TGGTGATGAA TATTCAGAAG ATGGTTTTAG TTTTTTAATATATAAAGATA AAGACACTAA TCGTTATTTG GCTGATCTTT GGGTTCCTGT TAAAGATGAAACTAGCGCAT TGGAGTATTT TTATTATTAT GATGAAGATA AGCGATTAGA TAGTACTAAAAGTAAAGTAA CCTTTGATCA TATGAAAGCT AGTGGAAACT ATGAAGTAGT GTATAAATCAGGGAAATTTA AAEF020-4 (SEQ ID NO:76)CNGSKLD KTGEEFKNSI MKDSSYGDEY SEDGFSFLILYKDKDTNRYLA DVWVPVKDET SALEYFYYYD EDKRLDSTKS KVTFDDMKAS GNYEVVYKSGKFKEF021-1 (SEQ ID NO:77)TAGTTGTTTA AATACATTAA ACTATTTTTA GGAGGCTTTA CAGAAATGAA AAAAGCAAAATTATTCGGTT TTAGTTTGAT TGCATTAGGT TTATCAGTTT CACTTGCAGC ATGTGGTGGTGGCAAAGGCA AAACCGCTGA AAGCGGCGGT GGCAAAGGGG ATGCAGCGCA TAGTGCTGTAATOATTACAG ATACAGGCGG CGTGGATGAC AAGTCGTTCA ACCAATCTTC TTGGGAAGGATTGCAAGCTT GGGGTAAAGA ACATGATTTA CCAGAAGGTT CAAAAGGGTA TGCATATATTCAATCGAATG ATGCAGCTGA CTATACAACC AATATTGACC AAGCGGTATC AAGTAAATTCAACACAATCT TTGGTATTGG CTACTTGCTA AAAGATGCAA TTTCTTCTGC AGCAGATGCCAACCCTGATA CAAACTTTGT TTTAATCGAT GATCAAATCG ATGGCAAAAA GAATGTCGTTTCTGCAACAT TTAGAGATAA TGAAGCAGCT TACTTAGCCG GTGTTGCTGC TGCAAATGAAACAAAAACGA ACAAAGTCCG TTTTGTTGGT GCTGAAGAAG GGGTCGTAAT TGACCGTTTCCAAGCTGGTT TTGAAAAAGG TGTGGCTGAT GCTGCGAAAG AATTAGGTAA AGAAATTACTGTTGATACGA AATATGCGGC TTCATTTGCT GATCCTGCCA AAGGGAAAGC TTTAGCTGCTGCAATGTACC AAAACGGCGT TGATATCATC TTCCATGCTT CTGGTGCGAC TGGACAAGGGGTCTTCCAAG AAGCAAAAGA CTTGAATGAA TCAGGTTCTG GCGACAAAGT TTGGGTAATCGGCGTTGACC GCGATCAAGA TGCTGATGGC AAGTACAAAA CAAAAGACGG CAAAGAAGACAACTTCACGT TAACTTCAAC GCTTAAAGGT GTCGGCACAG CGGTTCAAGA TATTGCCAACCGTGCGTTAG AAGACAAATT CCCTGGTGGC GAACATTTAG TTTATGGATT AAAAGATGGTGGCGTTGACT TAACAGACGG CTATTTAAAC GACAAAACAA AAGAAGCTGT TAAAACAGCAAAAGATAAAG TAATCTCAGG TGACGTAAAA GTCCCAGAAA AACCAGAATA AEF021-2 (SEQ ID NO:78)MKKAKL FGFSLIALGL SVSLAACGGG KGKTAESGGG KGDAAHSAVIITDTGGVDDK SFNQSSWEGL QAWGKEHDLP EGSKGYAYIQ SNDAADYTTN IDQAVSSKFNTIFGIGYLLK DAISSAADAN PDTNFVLIDD QIDGKKNVVS ATFRDNEAAY LAGVAAANETKTNKVGFVGG EEGVVIDRFQ AGFEKGVADA AKELGKEITV DTKYAASFAD PAKGKALAAAMYQNGVDIIF HASGATGQGV FQEAKDLNES GSGDKVWVIG VDRDQDADGK YKTKDGKEDNFTLTSTLKGV GTAVQDIANR ALEDKFPGGE HLVYGLKDGG VDLTDGYLND KTKEAVKTAKDKVISGDVKV PEKPEEF021-3 (SEQ ID NO:79)ATGTGGTGGTGGCAAAGGCA AAACCGCTGA AAGCGGCGGT GGCAAAGGGG ATCCAGCGCA TAGTGCTGTAATCATTACAG ATACAGGCGG CGTGGATGAC AAGTCGTTCA ACCAATCTTC TTGGGAAGGATTGCAAGCTT CGGGTAAAGA ACATGATTTA CCAGAAGGTT CAAAAGGCTA TGCATATATTCAATCGAATG ATGCAGCTGA CTATACAACC AATATTGACC AAGCGGTATC AAGTAAATTCAACACAATCT TTGGTATTGG CTACTTGCTA AAAGATGCAA TTTCTTCTGC AGCAGATGCCAACCCTGATA CAAACTTTGT TTTAATCGAT GATCAAATCG ATGGCAAAAA GAATGTCGTTTCTGCAACAT TTAGAGATAA TGAAGCAGCT TACTTAGCCG GTGTTGCTGC TGCAAATGAAACAAAAACGA ACAAAGTCGG TTTTGTTGGT GGTGAAGAAG GGGTCGTAAT TGACCGTTTCCAAGCTGGTT TTGAAAAAGG TGTGGCTGAT GCTGCGAAAG AATTAGGTAA AGAAATTACTGTTGATACGA AATATGCGCC TTCATTTGCT GATCCTGCCA AAGGGAAAGC TTTAGCTGCTGCAATGTACC AAAACGGCGT TGATATCATC TTCCATGCTT CTCGTGCGAC TCGACAAGGGGTCTTCCAAG AAGCAAAAGA CTTGAATGAA TCAGGTTCTG GCGACAAAGT TTGGGTAATCGGCGTTGACC GCGATCAAGA TGCTGATGGC AAGTACAAAA CAAAAGACGG CAAAGAAGACAACTTCACGT TAACTTCAAC GCTTAAAGGT GTCGGCACAG CGGTTCAAGA TATTGCCAACCGTGCGTTAG AAGACAAATT CCCTGGTGGC GAACATTTAG TTTATGGATT AAAAGATGGTGGCGTTGACT TAACAGACGG CTATTTAAAC GACAAAACAA AAGAAGCTGT TAAAACAGCAAAAGATAAAG TAATCTCAGG TGACGTAAAA GTCCCAGAAA AACCAGAAEF021-4 (SEQ ID NO:80)CGGG KCKTAESGGG KGDAAHSAVIITDTGGVDDK SFNQSSWEGL QAWGKEHDLP EGSKGYAYIQ SNDAADYTTN IDQAVSSKFNTIFGIGYLLK DAISSAADAN PDTNFVLIDD QIDGKKNVVS ATFRDNEAAY LAGVAAANETKTNKVGFVGG EEGVVIDRFQ AGFEKCVADA AKELGKEITV DTKYAASFAD PAKGKALAAAMYQNGVDIIF HASGATGQGV FQEAKDLNES GSGDKVWVIG VDRDQDADGK YKTKDGKEDNFTLTSTLKGV GTAVQDIANR ALEDKFPGGE HLVYGLKDGG VDLTDGYLND KTKEAVKTAKDKVISGDVKV PEKPEEF022-1 (SEQ ID NO:81)TAAGAGCATA AAAAAATGAA GAGTTATACG AGAAACAAGA TGAAAAAGTA TTTAAAAATCACAATGGTTT GTATTTTATT GGTAGCATTT TTAGCTGGGT GTACCAATAA AAATGAAAATAAAAAGAAAC AGAAAAATAC CAAAGAAGCC GTTCAACTGA TGTCACCCTC GGAATTAACAACGCTCAACA CCTCTGTATT ATTGGATTTT CCACATGCTA TTGTCCAAAC TGCAGCGTTTGAAGGGTTAT ATAGTTTAGA TGAACAAGAC CAATTGGTAC CAGCCGTAGC AAAAGCATTGCCGATGATTT CAGAAGATGG AAAAACCTAC ACGATTTCTT TGAGAAAAGA AGCGGTTTGGAGTAACGATG ATCCTGTCAC AGCACATGAT TTTGAATATG CTTGGAAAAA AATGATTGATCCTAAAAACG GCTTTGTTTA TAGCTTCCTC ATCGTTGAAA CAATTCAAAA TGGTGCAGAAATCTCAGCGG GGAAATTAGC ACCCAATGAA CTAGGTGTCA CAGCTGTGGA TGATTATACATTAAAGGTGA CCCTCAAAGA GCCAAAACCG TACTTTACGT CCTTGTTAGC TTTTCCGACATTTTTCCCGC AAAATCNAAA AGTAGTCGAA CAATTTGGTG CGGACTATGG AACTGCTAGTGATAAAGTCG TCTATAATGG TCCGTTCGTG GTAAAAGATT GGCAGCAAAC AAAGATGGACTGCCAACTAG CAAAAAATAA TCGCTATTGG GATCACCAGA ACGTGCGCTC AGACATTATCAATTATACAG TTATCAAAGA AACATCTACC GCATTGAATC TTTTTGAAGA TGGACAATTAGATGTGGCTA CACTAAGTGG TGAACTCGCG CAACAGAATA AAAATAATAC GTTGTATCATTCGTATCCAA CAGCGACAAT GAACTATTTG CGCTTAAATC AAAAACGGNA AGGGCAAGCNACGCCGCTTG CAAACGAAAA CCTGCGTAAA GCATTGGCTT TAGGAATAGA TAAAGAAAATCTAGTCAATA ATATTATTGC AGATGGTTCT AAAGCCCTAC ATGGTGCGAT TACGGAAGGCTTTGTGGCGA ATCCCACAAC GGGTCTCGAT TTTCGTCAAG AAGCAGGTAA TTTAATGGTTTATAACAAAG AAAAAGCGCA AAGTTATTGG AAAAAAGCAC AAGCAGAATT AGGAGAAAAGGTTAACGTTG AATTGATGGT AACAGATGAT GGTTCTTACA AAAAAATTGG TGAAAGTTTGCAAGGCTCGC TACAAGAATT GTTTCCTGGT TTGACAATAG AGCTAACCGC ATTGCCGACTGAAGCTGCAT TGAACTTTGG GCCACAAAGT GACTATGATT TATTCTTAAT TTACTGGACACCAGACTATC AAGACCCTAT TTCTACCCTG ATGACTTTAT ACAAGGGCAA TGATCGCAATTATCAGAACC CTGTCTATGA CAAATTATTA GATGAAGCAG CCACAACCTA TGCCTTAGAGCCAGAAAAAA GATGGGCGAC ACTGATTGCA GCTGAAAAAG AAGTGATTGA AACGACTGCTGGCATGATTC CACTTAGCCA AAATGAACAA ACAGTCCTGC AAAATGATAA AGTCAAAGGCTTGAATTTTC ATACCTTTGG CGCTCCATTA ACGTTAAAAA ATGTTTATAA GGAAAAATAAEF022-2 (SEQ ID NO:82)MKKYLKIET MVCILLVGFL AGCTNKNENK KKQKNTKEAV QLMSPSELTTLNTSVLLDFP DAIVQTAAFE GLYSLDEQDQ LVPAVAKALP MISEDGKTYT ISLRKEAVWSNDDPVTAHDF EYAWKKMIDP KNGFVYSFLI VETIQNGAEI SAGKLAPNEL GVTAVDDYTLKVTLKEPKPY FTSLLAFPTF FPQNXKVVEQ FGADYGTASD KVVYNGPFVV KDWQQTKMDWQLAKNNRYWD HQNVRSDIIN YTVIKETSTA LNLFEDCQLD VATLSGELAQ QNKNNTLYHSYPTATHNYLR LNQKRXGQAT PLANENLRKA LALGIDKENL VNNIIADGSK ALHGAITEGFVANPTTGLDF RQEAGNLMVY NKEKAQSYWK KAQAELGEKV NVELMVTDDG SYKKICESLQGSLQELFPGL TIELTALPTE AALNFGRESD YDLFLIYWTP DYQDPISTLM TLYKGNDRNYQNPVYDKLLD EAATTYALEP EKRWATLIAA EKEVIETTAG MIPLSQNEQT VLQNDKVKGLNFHTFGAPLT LKNVYKEKEF022-3 (SEQ ID NO:83)CT GTACCAATAA AAATGAAAATAAAAAGAAAC ACAAAAATAC CAAAGAAGCC GTTCAACTGA TGTCACCCTC GGAATTAACAACGCTCAACA CCTCTGTATT ATTGGATTTT CCAGATGCTA TTGTCCAAAC TGCAGCGTTTGAAGGGTTAT ATAGTTTAGA TGAACAAGAC CAATTGCTAC CACCCGTAGC AAAAGCATTGCCGATGATTT CAGAAGATGG AAAAACCTAC ACGATTTCTT TGAGAAAAGA AGCGGTTTGGAGTAACGATG ATCCTGTCAC AGCACATGAT TTTCAATATG CTTCGAAAAA AATGATTGATCCTAAAAACG GCTTTGTTTA TAGCTTCCTC ATCGTTGAAA CAATTCAAAA TGGTGCAGAAATCTCAGCGG GGAAATTAGC ACCCAATGAA CTAGGTGTCA CAGCTGTGGA TGATTATACATTAAAGGTGA CGCTCAAAGA GCCAAAACCG TACTTTACGT CCTTGTTAGC TTTTCCGACATTTTTCCCGC AAAATCNAAA AGTAGTCGAA CAATTTGGTG CGGACTATGG AACTGCTAGTGATAAAGTCG TCTATAATGG TCCGTTCGTG GTAAAAGATT GGCAGCAAAC AAAGATGGACTGGCAACTAG CAAAAAATAA TCGCTATTGG GATCACCAGA ACGTGCGCTC AGACATTATCAATTATACAG TTATCAAAGA AACATCTACC GCATTGAATC TTTTTGAAGA TGGACAATTAGATGTGGCTA CACTAAGTGG TGAACTGGCG CAACAGAATA AAAATAATAC GTTGTATCATTCGTATCCAA CACCGACAAT GAACTATTTG CGCTTAAATC AAAAACGGNA AGGGCAAGCNACGCCGCTTC CAAACGAAAA CCTGCGTAAA GCATTGGCTT TAGGAATAGA TAAAGAAAATCTAGTCAATA ATATTATTCC AGATGGTTCT AAAGCGCTAC ATGGTGCGAT TACGGAAGGCTTTGTGGCGA ATCCCACAAC GGGTCTCGAT TTTCGTCAAG AAGCAGGTAA TTTAATGGTTTATAACAAAG AAAAAGCGCA AAGTTATTGG AAAAAAGCAC AAGCAGAATT AGGAGAAAAGGTTAACGTTG AATTGATGGT AACAGATGAT GGTTCTTACA AAAAAATTGG TGAAAGTTTGCAAGGCTCGC TACAAGAATT GTTTCCTGGT TTGACAATAG AGCTAACCGC ATTGCCGACTGAAGCTGCAT TGAACTTTGG GCGAGAAAGT GACTATGATT TATTCTTAAT TTACTGGACACCAGACTATC AAGACCCTAT TTCTACCCTG ATGACTTTAT ACAAGGGCAA TGATCGCAATTATCAGAACC CTGTCTATGA CAAATTATTA GATGAAGCAG CCACAACCTA TGCCTTAGAGCCACAAAAAA GATGGGCGAC ACTGATTGCA GCTGAAAAAG AAGTGATTGA AACGACTGCTGGCATGATTC CACTTAGCCA AAATGAACAA ACAGTCCTGC AAAATGATAA AGTCAAAGGCTTGAATTTTC ATACCTTTGG CGCTCCATTA ACGTTAAAAA ATGTTTATAA CGAAAAAEF022-4 (SEQ ID NO:84)CTNKNENK KKQKNTKEAV QLMSPSELTTLNTSVLLDFP DAIVQTAAFE GLYSLDEQDQ LVPAVAKALP MISEDGKTYT ISLRKEAVWSNDDPVTAHDF EYAWKKMIDP KNGFVYSFLI VETIQNGAEI SAGKLAPNEL GVTAVDDYTLKVTLKEPKPY FTSLLAFPTF FPQNXKVVEQ FGADYGTASD KVVYNGPFVV KDWQQTKMDWQLAKNNRYWD HQNVRSDIIN YTVIKETSTA LNLFEDGQLD VATLSGELAQ QNKNNTLYHSYPTATMNYLR LNQKRXGQAT PLANENLEKA LALGTDKENL VNNIIADGSK ALHGAITEGEVANPTTGLDF RQEAGNLMVY NKEKAQSYWK KAQAELGEKV NVELMVTDDG SYKKIGESLQGSLQELFPGL TIELTALPTE AALNFGRESD YDLFLIYWTP DYQDPISTLM TLYKGNDENYQNPVYDKLLD EAATTYALEP EKRWATLIAA EKEVIETTAG MIPLSQNEQT VLQNDKVKGLNFHTFCAPLT LKNVYKEKEF023-1 (SEQ ID NO:85)TAAAATGGAG GGATCGGTAT GAAGAAATTA AAAATGTTAG GATGCGTCGG GTTCCTTTTAGCTTTAACGG CTTGTCAGGC GGGAACGGGA AACTCGGCTG ATAGTAACAA AGCAGCGGAACAAAAAATTG CAATTAGTTC TGAAGCCGCT ATTTCGACAA TGGAACCACA CACAGCGGGGGATACGACCT CGACTTTAGT CATCAATCAA GTTTATGAAG GACTCTATGT TTTAGGTAAAGAAGATGAAT TAGAGTTGGG GGTCGCTGCG GAAGAACCAG CGATTTCTGA AGATGAAACCCTTTATACAT TTAACATTAG AGAAGATCCC AAATGGTCGA ATGATGATCC AGTAACAGCAAACGACTTTG TTTATGCATG GCAACAAGTT GCTTCCCCTA AATCAGGATC GATTCATCAAGCTTTATTTT TTCATGTCAT TAAAAATCCT AACCAAATTG CTTTAGAAGG CGCAGATGTGAATACTCTTG GGCTTAAGGC GCTAGATGAT AAAACGTTAG AAATAACTTT AGAACGGCCCACCCCTTATT TGAAATCATT ACTTTCGTTT CCTGTTTTGT TTCCACAAAA TGAAAAATATATCAAAGAAC AAGGGGATAA ATATGCTACT GATGCAGAAC ATTTGATTTA TAATGGTCCTTTTAAATTGA AAGAATGGGA TAATGCCTCT TCTGATGACT GGACCTACCA AAAAAATGATACOTATTOGO ATGCTGAAAA AGTTAAATTA ACAGAAGCGA AAGTTTCAGT AATTAAGAGCCCAACGACAC CGGTGAATTT GTTTGACTCC AATGAATTCG ATGTAGTGAA TAAGCTAAGTGCTGAATTTA TTCCTGGTTA TGTTGATAAT CCACCCTTTC TTTCAATTCC TCAATTCGTCACATACTTTT TAAAAATGAA CAGCGTTCGT GATGGAAAAG AAAATCCGGC TTTAGCGAACAACAATATTC GTAAAGCGTT GGCACAAGCT TTTGATAAAG AAAGTTTTGT AAAAGAAGTCTTGCAAGATC AATCAACGGC TACACATCAA GTAATTCCGC CGGGACAAAC GATTGCGCCAGATCCAACAG ATTTCACAAA ACTAGCTGCT AAGAAAAATA ACTACTTAAC CTACGATACACCGAAACCAA AACAATTCTC GGAAAAAGGG AAAAAAGAAA TTGGGCTCCA TAAAATCAAATTAGAATTTT TAACAGATGA TACAGACAGC GCCAAAAAAG CTGCTGAGTT TTTCCAATTTCAATTGGAAG AAAATCTAGA TGGATTAGAA GTGAATGTTA CTCAAGTTCC TTTTACTATTCGTGTTGATC GTCATCAAAC GAGACACTAT CATTTAGAAT TATCTCCTTG GGGAACCGATTATCGTGATC CATTAACAGT TATGCGCATC TTTACTTCGG ATAGTACCTT GGGCGGCGTAACGTTCAAGA GTGATACGTA TGATCAATTA ATTCAAGAAA CTAGAACAAC ACATGCGGCTGATCAAGAGG CTCGTTTAAA TGACTTTGCT CAAGCACAAG ATATTTTGGT GAATCACGAAACCGTTTTAG CACCAATCTA CAATCGAAGC ATTTCTGTAT TAGCTAATCA AAAAATCAAGGATCTGTATT GGCATTCATT TGGACCCACG TACAGTTTAA AATGGGCTTA TGTTAACTAAEF023-2 (SEQ ID NO:86)MKKLK MLGCVGLLLA LTACQAGTGN SADSNKAAEQ KIAISSEAAI STNEPHTAGDTTSTLVMNQV YECLYVLCKE DELELGVAAE EPAISEDETV YTFKIREDAK WSNDDPVTANDFVYAWQQVA SPKSCSIHQA LFFDVIKNAK EIALEGADVN TLGVKALDDK TLEITLERPTPYLKSLLSFP VLFPQNEKYI KEQGDKYATD AEHLIYNCPF KLKEWDNASS DDWTYEKNDTYWDAEKVKLT EAKVSVIKSP TTAVNLFDSN ELDVVNKLSG EFTPGYVDNP AFLSIPQFVTYELKNNSVRD GKENPALANN NIRKALAQAF DKESFVKEVL QDQSTATDQV IPPGQTIAPDGTDFTKLAAK KNNYLTYDTA KAKEFWEKGK KEIGLDKIKL EFLTDDTDSA KKAAEFFQFQLEENLDGLEV NVTQVPFTIR VDRDQTRDYD LELSGWGTDY RDPLTVMRIF TSDSTLGGVTFKSDTYDQLI QETRTTHAAD QEARLNDFAQ AQDILVNQET VLAPTYNRSI SVLANQKIKDLYWHSFGPTY SLKWAYVNEF023-3 (SEQ ID NO:87)GGCAACGGGA AACTCGGCTG ATAGTAACAA AGCAGCGGAACAAAAAATTG CAATTACTTC TGAAGCGGCT ATTTCGACAA TGGAACCACA CACAGCCGGGGATACGACCT CGACTTTAGT CATGAATCAA GTTTATGAAG GACTCTATGT TTTACGTAAAGAAGATGAAT TAGAGTTGGG GGTCGCTGCC GAAGAACCAG CGATTTCTGA ACATGAAACCGTTTATACAT TTAAGATTAG AGAAGATGCC AAATGGTCGA ATGATGATCC AGTAACAGCAAACGACTTTG TTTATGCATG GCAACAAGTT GCTTCCCCTA AATCAGGATC GATTCATCAAGCTTTATTTT TTGATGTCAT TAAAAATGCT AAGGAAATTG CTTTAGAAGG CGCAGATGTGAATACTCTTG GCCTTAAGGC GCTAGATGAT AAAACGTTAG AAATAACTTT AGAACCGCCCACCCCTTATT TGAAATCATT ACTTTCGTTT CCTGTTTTGT TTCCACAAAA TGAAAAATATATCAAAGAAC AAGGGGATAA ATATGCTACT GATGCAGAAC ATTTGATTTA TAATGGTCCTTTTAAATTGA AAGAATGGGA TAATGCCTCT TCTGATGACT GGACCTACGA AAAAAATGATACGTATTGGG ATGCTGAAAA AGTTAAATTA ACAGAAGCGA AAGTTTCAGT AATTAAGACCCCAACGACAG CGGTGAATTT GTTTGACTCG AATGAATTGG ATGTAGTGAA TAAGCTAAGTGGTGAATTTA TTCCTCGTTA TGTTGATAAT CCAGCCTTTC TTTCAATTCC TCAATTCGTCACATACTTTT TAAAAATGAA CAGCGTTCGT GATGGAAAAG AAAATCCGGC TTTAGCGAACAACAATATTC GTAAAGCGTT GGCACAAGCT TTTGATAAAG AAAGTTTTGT AAAAGAAGTCTTGCAAGATC AATCAACGGC TACAGATCAA GTAATTCCGC CGGGACAAAC CATTGCGCCAGATGGAACAG ATTTCACAAA ACTAGCTGCT AAGAAAAATA ACTACTTAAC CTACGATACAGCGAAAGCAA AAGAATTCTG GGAAAAAGGG AAAAAAGAAA TTGGGCTGGA TAAAATCAAATTAGAATTTT TAACAGATGA TACAGACAGC GCCAAAAAAG CTGCTGAGTT TTTCCAATTTCAATTCGAAG AAAATCTAGA TGGATTAGAA GTGAATGTTA CTCAAGTTCC TTTTACTATTCGTGTTGATC GTGATCAAAC GAGAGACTAT GATTTAGAAT TATCTGGTTG GGGAACCGATTATCGTGATC CATTAACAGT TATGCGCATC TTTACTTCGG ATAGTACCTT GGGCGGCGTAACGTTCAAGA GTGATACGTA TGATCAATTA ATTCAAGAAA CTAGAACAAC ACATGCGGCTGATCAAGAGG CTCGTTTAAA TGACTTTGCT CAAGCACAAG ATATTTTGGT GAATCAGGAAACGGTTTTAG CACCAATCTA CAATCGAAGC ATTTCTGTAT TAGCTAATCA AAAAATCAAGGATCTGTATT GGCATTCATT TGGACCCACG TACAGTTTAA AATGGGCTTA TGTTAACEF023-4 (SEQ ID NO:88)GTGN SADSNKAAEQ KIAISSEAAI STMEPHTAGDTTSTLVMNQV YEGLYVLGKE DELELGVAAE EPATSEDETV YTFKIREDAK WSNDDPVTANDFVYAWQQVA SPKSGSIHQA LFFDVIKNAK EIALEGADVN TLGVKALDDK TLEITLERFTPYLKSLLSFP VLFPQNEKYT KEQGDKYATD AEHLIYNGPF KLKEWDNASS DDWTYEKNDTYWDAEKVKLT EAKVSVIKSP TTAVNLFDSN ELDVVNKLSG EFIPGYVDNP AFLSIPQFVTYFLKNNSVRD GKENPALANN NIRKALAQAF DKESFVKEVL QDQSTATDQV IPPGQTIAPDGTDFTKLAAK KNNYLTYDTA KAKEEWEKOK KEIGLDKTKL EFLTDDTDSA KKAAEFFQFQLEENLDGLEV NVTQVPFTIR VDRDQTRDYD LELSGWGTDY RDPLTVMRIF TSDSTLGGVTFKSDTYDQLI QETRTTHAAD QEARLNDFAQ AQDILVNQET VLAPIYNRSI SVLANQKIKDLYWHSFGPTY SLKWAYVNEF024-1 (SEQ ID NO:89)TAATGGCCGT TTCGTCTACT AATAAAGAGG ATGAAGCTAC TCAAATGGCG TTGGCAATGGAACAAGGATC ATAAAAAAGG AGAAGTGAGC ATGAAAAAAG TACTACCTTT TATTGCCTTAGTCGGCTTGT TATTGTTGTC AGGTTGTGGA ACAGATATGA AAAAGATATT GACTGCCGATGGTGGTAAAT GGAAAGTGGA AGAAACACGT GCAACTTACA CTTTTTTTGA TGACGGTAAATTTTCAGCTA ATGACTCAGA GGATACTGTT AGTGGGACAT ACACTTATGA TGAAAAAAATAAAAAAATAA CCTTTGACNT TACTAGCAGN AACTCTTTCA TTATGGAAAA AGTNGANTNCAANGNTANCA AGATTACAGG GGAAATTGGC GAAAAACAAA GAACACTTAT AAAACAAAAAACAGAATAA5F024-2 (SEQ ID NO:90)M KKVLPFIALV GLLLLSGCGT DMKKILTADGGKWKVEETRA TYTFFDDGKF SANDSEDSVS GTYTYDEKNK KITFDXTSXN SFIMEKVXXXXXKITGEIGE KQRTLIKQKT EEF024-3 (SEQ ID NO:91)ATT GACTGCCGATGGTGGTAAAT GGAAAGTGGA AGAAACACGT GCAACTTACA CTTTTTTTGA TGACGGTAAATTTTCAGCTA ATGACTCAGA GGATAGTGTT AGTGGGACAT ACACTTATGA TGAAAAAAATAAAAAAATAA CCTTTGACNT TACTAGCAGN AACTCTTTCA TTATGGAAAA AGTNGANTNCAANGNTANCA AGATTACAGO GGAAATTGGC GAAAAACAAA GAACACTTAT AAAACAAAAAACAGAAEF024-4 (SEQ lED NO:92)LTADGGKWKVEETRA TYTFFDDGKF SANDSEDSVS GTYTYDEKNK KITFDXTSXN SFIMEKVXXXXXKIETGEIGE KQRTLIKQKT ESF025-1 (SEQ ID NO:93)TGAATGAAAC ATATTAAAGG AATGTTGGTT TTTATCGGAT TATTTATTTT GGTTGGTTGTGCGCCAGATC AAGAGCCAAC GAAACAAACA ACAAGTGGTC CGCAAGAGAC AAAGCAAGTGAAGCAAGTTA CCGTCACCAA TCAAACGACT TCTGCGGTGG AAAAACAAGC GCCGACTAAAAATGACGAAC TGATTGCTAA TCAATTGACT TTTGATTCTC ATGAATACAC GTACGAAGTGGTTACAGGGG CCACACAAAC GACATTTGGA ACAACCCCAC CAGCAAAATA TACACCGGAAGAAAAAAAGA AAAAAATGTT TTGGTCCAAT CAACCGCCTT TGGGATTAAT GACGGGTAACTATTATAAAA ATGAAGGTGT ATTTACTGGC GGAAATTACG GCATTGTAGA GATTATTACGGAACCTGAAA CGCAAAGGAT TCTGAATGTT GAGTTTACAG AGTTTGCTAG TGATCCTTATTATGATACAC GCTATTCGGG TGTCAACAAA CGCCTGTCGG ATTATCCTGA ATTTCAAGCAAGCAACACGC GTACAGACGA TACGTTAGTC ACCGTTGTTA ATGGTATTAC TTATGTAGAAAAACAAATGC GTGACGAAAA TCGTGTTACA GGTAATTTTT ATACGGTACG CGGTTCATCAACTTCTGCGC GTGAAGGATT AATCCCTTTA GCAGCAGAGA TGGACACTTG GCTAAAAGAGCCATCGAAAG AAACCTATAT CGGTTACGCA GAAGATTTAG GCAATGGCCT AATCGCTCGACTTCAAGTGA TAACAGAAGA CCAGAAAATA AAACATGTCA GCTATGATGA ATACTTTTCAGATGAACAGG AAAAAATCAC AGAAACAGCC TGCGGCCTTT TTATCGTCAA TCGAAATATTATTCACCAGG ATACAATAAA CAAACCAACA ATTCTTTTAT TCATTTTGTA GEF025-2 (SEQ ID NO:94)MKHIKGMLVF IGLFILVGCA PDQEPTKQTT SGPQETKQVK QVTVTNQTTS AVEKQAPTKNDELIANQLTF DSHEYTYEVV TGATQTTFGT TPPAKYTPEE KKKKMFWSNQ PPLGLMTGNYYKNEGVFTGG NYGIVEIITE PETQRTLNVE FTEFASDPYY DTRYSGVNKR LSDYPEFQASNTRTDDTLVT VVNGITYVEK QMRDENRVTG NFYTVRGSST SAREGLMPLA AEMDTWLKEPSKETYIGYAE DLGNGLIARL QVITEEQKIK HVSYDEYFSD EQEKITETAC GLFIVNRNIIHQDTINKPTT LLFILEF025-3 (SEQ ID NO:95)AAC GAAACAAACA ACAAGTGGTC CGCAAGAGAC AAAGCAAGTGAAGCAAGTTA CCGTCACCAA TCAAACGACT TCTGCGGTGG AAAAACAAGC GCCGACTAAAAATGACGAAC TGATTGCTAA TCAATTGACT TTTGATTCTC ATGAATACAC GTACGAAGTCGTTACAGGGG CCACACAAAC GACATTTGGA ACAACCCCAC CAGCAAAATA TACACCGGAAGAAAAAAAGA AAAAAATGTT TTGGTCCAAT CAACCGCCTT TGGGATTAAT GACGGGTAACTATTATAAAA ATGAAGGTGT ATTTACTGGC GGAAATTACG GCATTGTAGA GATTATTACGGAACCTGAAA CGCAAAGGAT TCTGAATGTT GAGTTTACAG ACTTTGCTAG TGATCCTTATTATGATACAC GCTATTCCCG TGTCAACAAA CGCCTGTCGG ATTATCCTGA ATTTCAAGCAACCAACACGC GTACAGACGA TACGTTAGTC ACCGTTGTTA ATGGTATTAC TTATGTAGAAAAACAAATGC GTGACGAAAA TCGTGTTACA GGTAATTTTT ATACGGTACG CGGTTCATCAACTTCTGCGC GTGAAGGATT AATGCCTTTA GCAGCAGAGA TGGACACTTG GCTAAAAGAGCCATCGAAAG AAACGTATAT CGGTTACGCA GAAGATTTAG GCAATGGCCT AATCGCTCGACTTCAAGTGA TAACAGAAGA GCAGAAAATA AAACATGTCA GCTATGATGA ATACTTTTCAGATGAACAGG AAAAAATCAC AGAAACAGCC TGCGGCCTTT TTATCGTCAA TCGAAATATTATTCACCAGG ATACAATAAA CAAACCAACA ATTCTTTTAT TCATTTTGEF025-4 (SEQ ID NO:96)TKQTT SGPQETKQVK QVTVTNQTTS AVEKQAPTKNDELIANQLTF DSHEYTYEVV TGATQTTFGT TPPAKYTPEE KKKKNFWSNQ PPLGLMTGNYYKNEGVFTGG NYGIVEITTE PETQRILNVE FTEFASDPYY DTRYSGVNKP LSDYPEFQASNTRTDDTLVT VVNGITYVEK QMRDENRVTG NFYTVRGSST SAREGLMPLA AEMDTWLKEPSKETYTGYAE DLGNGLIARL QVITEEQKIK HVSYDEYFSD EQEKITETAC GLFTVNRNIIHQDTINKPTI LLFILEF026-1 (SEQ ID NO:97)TGAGTGTATG ATTACTCATT TCCCTTTGAA TCAGTTATGA TAAAGGAAGA AATAAATAAATTTTTTGGAG GGATTTTCAT GAAAATGTCT AAAGTACTCA CCACTGTTTT GACGGCAACTGCTGCTCTTG TGTTGCTTAG TGCTTGTTCA TCTGATAAAA AAACAGATAG TAGTTCTAGTAGCAAAGAAA CAGCTAATTC AAGTACAGAA GTAGTCTCTG CTCCTTCAAT TAGTGCCAAGCCTGAAGAGC TCGAAATGGC GTTAAGTGAT AAAGGAAATT GGATTGTCGC AGCTACTGACAATGTCACTT TTGATAAAGA GGTAACAGTT GCTGGTACTT TCCATGATAA GGGGAAAGATTCCAACGATG TCTATCGTAA ATTAGCACTT TATTCCCAAG ATGATAATAA AAAAGTAACTGCTGAATATG AAATCACGGT TCCTAAGCTA ATCGTTTCTT CTGAAAATTT CAACATCGTTCACGGGACTG TCAAAGGTGA TATTGAGGTG AAAGCAAATG GCTTTACTTT AAATGGTACCAAAGTTAATG GCAATATTAC TTTTGATAAA CAAGAATACA AAGATTCTGC TGACTTAGAAAAAGATGGTG CCACTGTTAC TGGTGAAGTC ACCGTAGCCA ATAATTAAEF026-2 (SEQ ID NO:98)MKMSK VLTTVLTATA ALVLLSACSS DKKTDSSSSSKETANSSTEV VSGASISAKP EELEMALSDK GNWIVAATDN VTFDKEVTVA GTFHDKGKDSNDVYRKLALY SQDDNKKVTA EYEITVPKLI VSSENFNIVH GTVKGDIEVK ANGFTLNGTKVNGNITFDKQ EYKDSADLEK DGATVTGEVT VANNEF026-3 (SEQ ID NO:99)AACAGATAG TAGTTCTAGTAGCAAAGAAA CAGCTAATTC AAGTACAGAA GTAGTCTCTG GTGCTTCAAT TAGTGCCAAGCCTGAAGAGC TCGAAATGGC GTTAAGTGAT AAAGGAAATT GGATTGTCGC AGCTACTGACAATGTCACTT TTGATAAAGA GGTAACAGTT GCTGGTACTT TCCATGATAA GGGGAAAGATTCCAACGATG TCTATCGTAA ATTAGCACTT TATTCCCAAG ATGATAATAA AAAAGTAACTGCTGAATATG AAATCACGGT TCCTAAGCTA ATCGTTTCTT CTGAAAATTT CAACATCGTTCACGGGACTG TCAAAGGTGA TATTGAGGTG AAAGCAAATG GCTTTACTTT AAATGGTACCAAAGTTAATG GCAATATTAC TTTTGATAAA CAAGAATACA AAGATTCTGC TGACTTAGAAAAAGATGGTG CCACTGTTAC TGGTGAAGTC ACCGTAGCCA ATAATEF026-4 (SEQ ID NO:100)TDSSSSSKETANSSTEV VSGASISAKP EELEMALSDK GNWIVAATDN VTFDKEVTVA GTFHDKGKDSNDVYRKLALY SQDDNKKVTA EYEITVPKLI VSSENFNIVH GTVKGDIEVK ANGFTLNGTKVNGNITFDKQ EYKDSADLEK DGATVTCEVT VANNEF027-1 (SEQ ID NO:101)TTTGGTATGA AACAGAAAAA GTGGTTAATC GGACTTGTTG CACTGGGCTT GGTTTTAGCAGCATGTGGAA GTGGCGGTTC GAAAACGACC TCAAACGAAC CAGCTACACA GAAAATTAACGTCGCATCTG GTGGTGAACT CTCGACATTA GACAGCGCTC ATTATACAGA TGTCTATAGTTCCGATATGA TTGGTCAAGT AGTTGAAGGC TTGTATCGAC AAGATAAAAA CGGAGATCCTGAGCTAGCTA TGGCGAAAGC AGAGCCACAA GTTAGTGAAG ACGGGTTAGT CTATACATTCAAGTTACGAG AAGCAAAATG GACAAACGGG GATCCAGTTA AAGCAGGGGA TTTTGTAGTTGCGTTTAGAA ACGTGGTCGA TCCAGCATAC GGTTCAAGTA GCAGTAATCA AATGGATATTTTTAAAAATG GGCGTGCGGT GCGGGAAGGA CAAGCCACGA TGGAAGAATT TGGTGTCAAAGCAATCGATG ACCAGACACT AGAACTAACA TTGGAAAATC CAATTCCTTA TTTAGCCCAAGTCTTGGTTG GGACACCTTT TATGCCTAAA AATGAAGCCT TTGCCAAAGA AAAAGGTACTGCCTATGGGA CTTCTGCAGA TAATTTTGTT GGCAATGGGC CGTTTGTAAT TTCAGGTTGGGATGGCAATT CCGAAACTTG GAAATTGAAG AAGAATGATC ATTATTGGGA TAAAGAACACGTAAAATTGA ATGAAATTGA TGTTCAAGTA GTGAAAGAAA TTGGCACAGG AGCCAATCTTTTTGATAATG GCGACTTAGA TTACACTGTT TTAGCAGATA CTTATGCACT TCAGTATAAAGAGTCAAAAC AAGCGCATTT TGTACCTAAA GCCATGGTGG GTTATTTAAG CCCCAATCATCGCCGTGAAA TTACCGGCAA CGAACATGTT CGAAAAGCTT TTTTACAAGC GATTGACAAAGAAACTTTTG CAAAAGAAAT TTTAGGAGAT GGCTCGACAG CTTTAAATGG NTTTGTACCAGCTAATTTTG CAAAAATCCA GATACAGGTG AAGATTTCCG CAAAGAAAAT GGTGATTTATTGCCATATAA TATTAAAGAA GCCCAAGCTA ACTGGAACAA TTEF027-2 (SEQ ID NO:102)MKQKKWLI GLVALGLVLA ACGSGGSKTT SNEPATQKIN VASGGELSTL DSAHYTDVYSSDMIGQVVEG LYRQDKNGDP ELAMAKAEPQ VSEDGLVYTF KLREAKWTNG DPVKAGDFVVAFRNVVDPAY GSSSSNQMDI FKNGRAVREG QATMEEFGVK AIDDQTLELT LENPIPYLAQVLVGTPFMPK NEAFAKEKGT AYGTSADNFV GNGPFVISGW DGNSETWKLK KNDHYWDKEHVKLNEIDVQV VKEIGTGANL FDNGDLDYTV LADTYALQYK ESKQAHFVPK AMVGYLSPNHRREITGNEHV RKAFLQAIDK ETFAKEILGD GSTALNGFVP ANFAKIQIQV KISAKKNVIYCHIILKKPKL TCTIEF027-3 (SEQ ID NO:103)AACGACC TCAAACGAAC CAGCTACACA GAAAATTAACGTCGCATCTG GTGGTGAACT CTCGACATTA GACAGCGCTC ATTATACAGA TGTCTATAGTTCCGATATGA TTGGTCAAGT AGTTGAAGGC TTGTATCGAC AAGATAAAAA CGGAGATCCTGAGCTAGCTA TGGCGAAAGC AGAGCCACAA GTTAGTGAAG ACGGGTTAGT CTATACATTCAAGTTACGAG AACCAAAATG GACAAACGGG GATCCAGTTA AAGCAGGGGA TTTTGTAGTTGCGTTTAGAA ACGTGGTCGA TCCAGCATAC GGTTCAAGTA GCAGTAATCA AATGGATATTTTTAAAAATG GGCGTGCGGT GCGGGAAGGA CAAGCCACGA TGGAAGAATT TGGTGTCAAAGCAATCGATG ACCAGACACT AGAACTAACA TTGGAAAATC CAATTCCTTA TTTAGCCCAAGTCTTGGTTG GGACACCTTT TATGCCTAAA AATGAAGCCT TTGCCAAAGA AAAAGGTACTGCCTATGGGA CTTCTGCAGA TAATTTTGTT GGCAATGGGC CGTTTCTAAT TTCAGGTTGGGATGGCAATT CCGAAACTTG GAAATTGAAG AAGAATGATC ATTATTGGGA TAAAGAACACGTAAAATTGA ATGAAATTGA TGTTCAAGTA GTGAAAGAAA TTGGCACAGG AGCCAATCTTTTTGATAATG GCGACTTAGA TTACACTGTT TTAGCAGATA CTTATGCACT TCAGTATAAAGAGTCAAAAC AAGCGCATTT TGTACCTAAA GCCATGGTGG GTTATTTAAG CCCCAATCATCGCCGTGAAA TTACCGGCAA CGAACATGTT CGAAAAGCTT TTTTACAAGC GATTGACAAAGAAACTTTTG CAAAAGAAAT TTTAGGAGAT GGCTCGACAG CTTTAAATGG NTTTGTACCAGCTAATTTTG CAAAAATCCA GATACAGGTG AAGATTTCCG CAAAGAAAAT GGTGATTTATTGCCATATAA TATTAAAGAA GCCCAAGCTA AEF027-4 (SEQ ID NO:104)TT SNEPATQKIN VASGGELSTL DSAHYTDVYSSDMIGQVVEG LYRQDKNGDP ELANAKAEPQ VSEDGLVYTF KLREAKWTNG DPVKAGDFVVAFRNVVDPAY GSSSSNQMDI FKNGRAVREG QATMEEFGVK AIDDQTLELT LENPIPYLAQVLVGTPFMPK NEAFAKEKGT AYGTSADNFV GNGPFVISGW DGNSETWKLK KNDHYWDKEHVKLNEIDVQV VKEIGTGANL FDNGDLDYTV LADTYALQYK ESKQAHFVPK AMVGYLSPNHRREITGNEHV RKAFLQAIDK ETFAKEILGD GSTALNGFVP ANFAKIQTQV KISAKKMVIYCHIILKKPKLEF028-1 (SEQ ID NO:105)TAACAGAAGC AATACAACAA CTTAACACTT TGTTTACTTG TTATTTATCA GAAATCAACTAAGACTTGTT ATAGTCAATG TATGGGTAGA TATGAAGGAG GAAACAAGGA AATGAAGAAAAGAGCTTTGC TAGGGGTTAC CTTATTAACA TTCACAACAT TAGCGGGTTG TACAAATTTATCTGAACAGA AAAGCGGCGA AAAACAAACA GAGGTTGCTG AAGCGAAGGC AACTGAATCTGAAAAAGCAT CAGTAAAAAA TGTTATTTTT ATGATTGGAG ATGCCATGGG GAATCCGTATACAACGGGCT ATCGCTATTT CAAAGCCAAT CACTCAGACA AGCGTGTTCC CCAAACAGCTTTTGATACCT ATTTGGTCGG ACAGCAAGCC ACTTATCCAG AAGATGAAGA AGAGAATGTCACCGATTCAG CTTCCGCAGC GACAGCGATG GCTGCCGGAG TGAAAACCTA TAATAATGCTATTGCACTCG ATAATGACAA GTCCAAAACA GAAACAGTGC TCGAACGTGC GAAAAAAGTGGGGAAATCAA CGGGTCTTGT AGCAACATCT GAAATAACAC ATGCAACCCC TGCTGCATATGGCGCACATA ATGTTTCACG CAAAAATATG GCAGAAATCG CCGATGACTA TTTTGATGATCAAATCGACG CACAACACAA AGTCGATGTG TTACTTGGCG GCGGCTCCGA ATTATTTGCCCGGAAAGATC GTGATTTAGT CAAAGAATTT TCCCAAGCGG GTTATGGTCA TGTCACAGACAAAAACTCGT TAAATGAGAA CCAAGACGAC AAAATTTTAG GCTTGTTTGC ACCAGGCGGGCTACCTAAAA TGATTGACCG AACGGAAGAA GTCCCTTCAT TAGCTGATAT GACAGAAGCGGCTCTTCAAC GGTTAGATAA AAATGAAAAA GGTTTCTTTT TAATGGTTGA AGGTAGTCAAATTGATTGGG CCGGGCATAG CAATGATATT GTTGGCGCGA TGAGCGAAAT GCAAGACTTCGAAGCGGCGT TTCAAAAGGC CATCGATTTT GCCAAAAAAG ATGGTGAACA TTGGTGGTTACAACTGCAGA TCATTCAACA GGGGGCTTGT CTTTAGEF028-2 (SEQ ID NO:106)MKKR ALLGVTLLTF TTLAGCTNLSEQKSGEKQTE VAEAKATESE KASVKNVIFM IGDGMGNPYT TGYRYFKANH SDKRVPQTAFDTYLVCQQAT YPEDEEENVT DSASAATAMA AGVKTYNNAI ALDNDKSKTE TVLERAKKVGKSTGLVATSE ITHATPAAYG AHNVSRKNNA EIADDYFDDQ IDGQHKVDVL LGGGSELFARKDRDLVKEFS QAGYGHVTDK KSLNENQDDK ILGLFAPGGL PKNIDRTEEV PSLADMTEAALQRLDKNEKG FFLMVEGSQI DWAGHSNDIV GAMSEMQDFE AAFEKAIDFA KKDGEHWWLQLQTTQQGACLEF028-3 (SEQ ID NO:107)ACAGA AAAGCGGCGA AAAACAAACA GAGGTTGCTG AAGCGAAGGC AACTGAATCTGAAAAAGCAT CAGTAAAAAA TGTTATTTTT ATGATTGGAG ATGGCATGGG GAATCCGTATACAACGGGCT ATCGCTATTT CAAAGCCAAT CACTCAGACA AGCGTGTTCC CCAAACAGCTTTTGATACCT ATTTGGTCGG ACAGCAAGCC ACTTATCCAG AAGATGAAGA AGAGAATGTCACCGATTCAG CTTCCGCAGC GACAGCGATG GCTGCCGGAG TGAAAACCTA TAATAATGCTATTGCACTCG ATAATGACAA GTCCAAAACA GAAACAGTGC TCGAACGTGC GAAAAAAGTGGGGAAATCAA CGGGTCTTGT AGCAACATCT GAAATAACAC ATGCAACCCC TGCTGCATATGGCGCACATA ATGTTTCACG CAAAAATATG GCAGAAATCG CCGATGACTA TTTTGATGATCAAATCGACG GACAACACAA AGTCGATGTG TTACTTGGCG GCGGCTCCGA ATTATTTGCCCGGAAAGATC GTGATTTAGT CAAAGAATTT TCCCAAGCGG GTTATGGTCA TGTCACAGACAAAAAGTCGT TAAATGAGAA CCAAGACGAC AAAATTTTAG GCTTGTTTGC ACCAGGCGGGCTACCTAAAA TGATTGACCG AACGGAAGAA GTCCCTTCAT TAGCTGATAT GACAGAAGCGGCTCTTCAAC GGTTAGATAA AAATGAAAAA GGTTTCTTTT TAATGGTTGA AGGTAGTCAAATTGATTGGG CCGGGCATAG CAATGATATT GTTGGCGCGA TGAGCGAAAT GCAAGACTTCGAAGCGGCGT TTGAAAAGGC CATCGATTTT GCCAAAAAAG ATGGTGAACA TTGGTGGTTACAACTGCAGA TCATTCAACA GGGGGCTTGT CTTEF028-4 (SEQ ID NO:108)QKSGEKQTE VAEAKATESE KASVKNVIFM IGDGMGNPYT TGYRYFKANH SDKRVPQTAFDTYLVGQQAT YPEDEEENVT DSASAATAMA AGVKTYNNAT ALDNDKSKTE TVLERAKKVGKSTGLVATSE ITHATPAAYG AHNVSRKNMA EIADDYFDDQ IDGQHKVDVL LGGGSELFARKDRDLVKEFS QAGYGHVTDK KSLNENQDDK ILGLFAPGGL PKMIDRTEEV PSLADMTEAALQRLDKNEKG FFLMVEGSQI DWAGHSNDIV GAMSEMQDPE AAFEKAIDFA KKDGEHWWLQLQI IQQGACLEF029-1 (SEQ ID NO:109)TGAAGGAGGG AGAAAATGAA AAAGTTAATC GGTAAAAAGT GGCTGCTGCT TACAGCAGTAGCCACTTTTT TATTATCAGG ATGCGCAAGT CTTGAACAAA AAGCACAGGA TAGTGTAAAAGAAGTTACTG AAAATGTTAC TCAAACTATT TCAAACGATC AACGTATACC AGCTGATTTTGTTAGGCACG TGGATGGCGA TACCACAGTA TTAAAAATTG ACGGAAAAGA ACAAAAACTTCGGTTTTTAT TAATTGACAC ACCCGAGACT GTGAAACCGA AAACAAAAGT TCAGCCGTTCGGATTGGAAG CTAGCAAACG CACAAAAGAG CTTTTGTCTA CTGCTTCAGA AATTACGTTTGAATATGATA AGGGCGATAA AACAGATCGT TACGGACGAG CGTTGGGCTA CATATTCGTAGATGGAACAT TACTACAAAA AACGCTTGTA AGTCAAGGAT TAGCTCGTGT TGCCTATGTAAAAGACCCTA CAACTAAGTA TTTGGCAGAA CTAGAGCAAG CCCAAGAACA GGCTAAAAATGAGTCACTCG GAATCTGGAG CATACCAGGT TATGTGACAC AACGGGGGTT TAGTAAATAAEF029-2 (SEQ ID NO:110)MKKLIG KKWLLLTAVA TFLLSGCASL EQKAQDSVKE VTENVTQTIS NDQRIPADFVRHVDGDTTVL KIDGKEQKVR FLLIDTPETV KPKTKVQPFG LEASKRTKEL LSTASEITFEYDKGDKTDRY GRALGYIFVD GTLLQKTLVS EGLARVAYVK EPTTKYLAEL EQAQEQAKNESLGIWSIPGY VTQRGFSKEF029-3 (SEQ ID NO:111)AAATGTTAC TCAAACTATT TCAAACGATC AACGTATACC AGCTGATTTTGTTAGGCACG TGGATGGCGA TACCACAGTA TTAAAAATTG ACGGAAAAGA ACAAAAAGTTCGGTTTTTAT TAATTGACAC ACCCGAGACT GTCAAACCGA AAACAAAAGT TCAGCCGTTCGGATTGGAAG CTAGCAAACG CACAAAAGAG CTTTTGTCTA CTGCTTCAGA AATTACGTTTGAATATGATA AGGGCGATAA AACAGATCGT TACGGACGAG CGTTGGGCTA CATATTCGTAGATGGAACAT TACTACAAAA AACGCTTGTA AGTGAACGAT TAGCTCGTCT TGCCTATGTAAAAGAGCCTA CAACTAAGTA TTTGGCAGAA CTAGAGCAAG CCCAAGAACA GGCTAAAAATGAGTCACTCG GAATCTGGAG CATACCAGGT TATGTGACAC AACGCGGGTT TAGTAAAEF029-4 (SEQ ID NO:112)NVTQTIS NDQRIPADFVRHVDGDTTVL KIDGKEQKVR FLLTDTPETV KPKTKVQPFG LEASKRTKEL LSTASEITFEYDKGDKTDRY GRALGYIFVD GTLLQKTLVS EGLARVAYVK EPTTKYLAEL EQAQEQAKNESLGIWSIPGY VTQRGFSKEF030-1 (SEQ ID NO:113)TGATTGACAC ATAGGGGGAA TAGTATGAAA AAGTTAAAAA TGATGGGGAT TATGTTATTTGTTAGTACGG TCTTGGTAGG TTGTGGCACA ACAGCAGANA CAAAAATAGA CGAGAAAGCAACTGAGAAAA CCAGTGTCTC GAAAAAAGTT TTAAATTTAA TGGAGAACTC GGAAATCGGTTCAATGGATT CTATTTTTAC ACAAGATGAA GCCAGTATTA ACGCACAGTC CAATGTCTTTGAAGGGTTAT ATCAATTGGA TGAAAAAGAT CAACTAATAC CTGCTGCTGC TAAAGAGATGCCAGAAATTT CTGAGGATGG CAAACGATAT ACCATTAAAC TAAGAGAAGA TCGCAAGTGGTCCAATGGTG ATGCTGTAAC AGCCAATGAT TTCGTTTTTG CTTGGCGTAA ATTAGCGAATCCCAAAAACC AAGCCAATTA CTTTTTCTTG TTAGAAGGAA CGATTCTGAA CGGAACAGCTATTACAAAAG AGGAAAAAGC ACCAGAGGAA TTGGGTGTCA AAGCGCTTGA TGATTATACTTTGGAGGTTA CTTTAGAAAA GCCTGTACCA TATTTTACGT CGTTATTGGC ATTTTCTCCATTTTTCCCAC AAAACGAAGC ATTCGTGAAA GAAAAAGGAC AAGCCTATGG CACTTCTAGTGAAATGATTG TATCTAATGG TCCGTTTTTA ATGAAAAATT GGGATCAGTC AGCGATGTCGTGGGATTTTG TGCGTAATCC CTACTATTAC GATAAACAAA AAGTAAAATC AGAAACGATTCATTTTGAAG TTCTTAAAGA AACCAATACC GTTTATAATT TGTACGAATC AGGTGAATTAGATGTGGCTG TCTTAACAGG AGATTTTGCT AAACAAAATC GAGACAACCC AGACTATGAAGCAATCGAAC GGTCAAAAGT CTATTCCTTA CGTTTAAACC AAAAAAGAAA CGAAAAACCATCCATTTTTG CAAATGAGAA TGTCCGCAAA GCTTTAGCTT ATGCTTTGGA TAAAAAAAGTTTAGTCGATA ATATTTTAGC AGATGGCTCA AAAGAAATTT ATGGGTACAT TCCAGAAAAATTTGTATATA ACCCAGAAAC GAATGAAGAT TTTCGTCAAG AAGCAGGCGC TCTTGTCAAAACAGACGCCA AAAAAGCCAA AGAGTATTTA GATAAAGCAA AAGCAGAGCT AAACGGAGATGTAGCCATTG AACTTCTTTC AAGAGATGGT GATAGTGACC GAEF030-2 (SEQ ID NO:114)MKK LKMMGIMLFV STVLVGCGTT AXTKIDEKAT EKTSVSKKVL NLMENSEIGSMDSIFTQDEA SINAQSNVFE GLYQLDEKDQ LIPAAAKEMP EISEDGKRYT IKLREDGKWSNGDAVTANDF VFAWRKLANP KNQANYFFLL EGTILNGTAI TKEEKAPEEL GVKALDDYTLEVTLEKPVPY FTSLLAFSPF FPQNEAFVKE KGQAYGTSSE MIVSNGPFLM KNWDQSAMSWDFVRNPYYYD KEKVKSETIH FEVLKETNTV YNLYESGELD VAVLTGDFAK QNRDNPDYEAIERSKVYSLR LNQKRNEKPS IFANENVRKA LAYALDKKSL VDNILADGSK EIYGYIPEKFVYNPETNEDF RQEAGALVKT DAKKAKEYLD KAKAELNGDV AIELLSRDGD SDREF030-3 (SEQ ID NO:115)GAGAAAGCAACTGAGAAAA CCAGTGTCTC GAAAAAAGTT TTAAATTTAA TGGAGAACTC GGAAATCGGTTCAATGGATT CTATTTTTAC ACAAGATCAA GCCAGTATTA ACGCACAGTC CAATGTCTTTGAAGGGTTAT ATCAATTGGA TGAAAAAGAT CAACTAATAC CTGCTGCTGC TAAAGAGATGCCACAAATTT CTGAGGATGG CAAACGATAT ACCATTAAAC TAAGAGAAGA TCCCAAGTGGTCCAATGGTG ATGCTGTAAC AGCCAATGAT TTCGTTTTTG CTTGGCGTAA ATTAGCGAATCCCAAAAACC AAGCCAATTA CTTTTTCTTG TTAGAAGGAA CGATTCTGAA CGGAACACCTATTACAAAAC AGGAAAAAGC ACCACACGAA TTGGGTGTCA AAGCGCTTGA TOATTATACTTTGGAGGTTA CTTTAGAAAA GCCTGTACCA TATTTTACGT CGTTATTGGC ATTTTCTCCATTTTTCCCAC AAAACGAAGC ATTCGTGAAA GAAAAAGGAC AACCCTATGG CACTTCTAGTGAAATCATTG TATCTAATGG TCCCTTTTTA ATGAAAAATT GGGATCAGTC AGCGATGTCGTGGGATTTTC TCCGTAATCC CTACTATTAC CATAAAGAAA AACTAAAATC AGAAACGATTCATTTTGAAG TTCTTAAAGA AACCAATACC GTTTATAATT TGTACGAATC AGGTGAATTAGATGTGGCTG TCTTAACAGG AGATTTTGCT AAACAAAATC GAGACAACCC AGACTATGAAGCAATCCAAC CGTCAAAAGT CTATTCCTTA CGTTTAAACC AAAAAAGAAA CGAAAAACCATCCATTTTTG CAAATGAGAA TGTCCGCAAA CCTTTAGCTT ATGCTTTGGA TAAAAAAACTTTACTCGATA ATATTTTACC AGATGGCTCA AAAGAAATTT ATOGOTACAT TCCAGAAAAATTTGTATATA ACCCAGAAAC GAATGAAGAT TTTCGTCAAG AAGCAGGCGC TCTTGTCAAAACAGACGCCA AAAAAGCCAA AGAGTATTTA GATAAAGCAA AAGCAGAGCT AAACGGAGATGTAGCCATTG AACTTCTTTC AAGAGATGGTEF030-4 (SEQ ID NO:116)EKAT EKTSVSKKVL NLMENSETGSMDSIFTQDEA SINAQSNVFE GLYQLDEKDQ LIPAAAKEMP EISEDGKRYT IKLREDGKWSNGDAVTANDF VFAWRKLANP KNQANYFFLL EGTILNGTAI TKEEKAPEEL GVKALDDYTLEVTLEKPVPY FTSLLAFSPF FPQNEAFVKE KGQAYGTSSE MIVSNGPFLM KNWDQSAMSWDFVRNPYYYD KEKVKSETTH FEVLKETNTV YNLYESGELD VAVLTGDFAK QNRDNPDYEAIERSKVYSLR LNQKRNEKPS IFANENVRKA LAYALDKKSL VDNILADCSK EIYGYIPEKFVYNPETNEDE RQEAGALVKT DAKKAKEYLD KAKAELNGDV AIELLSRDGEF031-1 (SEQ ID NO:117)TGAGAAATTA GTTATTTTAG AAAAATAAAA ACCATTTTGG ACGAAGATTT AAAAATGAAAAAACGCGTAA TTTTAGGGAC ATTAGTCGCT GCAACGTTAT TAATCACTGC TTGTGGAAACAGCGAAGCAA CTACGAAAAG CGAGAGCAAA GGTGGAAGTA ATGCTTTAGT CGTTTCAACTTTCGGATTAA GTGAAGATAT TGTCAAAAAA GACATTATCG CTCCATTTGA AAAAGAGAATGAAGCGAAAG TTACCTTAGA AGTAGGCAAT ACCCCAGACC GCTTTACGAA ATTAAAAAATAATCCCAATG CGGGAATTGA TGTCATTGAA TTAGCACAAG CAAATGCAGC ACAAGGTGGAAAAGATCCGT TATTTGAAAA AATTACAGAA AAAGAAGTAC CTAATTTAAG TCAGTTAACCCCGGGAGCAA AAGAGGTTTT TGAAAGTGGT GCTGGCGTAC CAATCGCTGT AAACAGTATCGGGATTGTTT ACAACAAAGA AAAATTAGGC AAACAAATTA AAAACTGGGA TGACTTATGGTCAGCTGATT TGAAAGGTAA AATTTCTGTT CCACACGTTG CCACGACGGC AGGTCCTTTAATCTTATACG TTGCTAGTGA ACATGCTGGT CAAGATATTA CAAAAGATAA CGGGAAGGCCGCTTTTGAAC CCATGAAAGA ATTAAAACCA AACGTTGTTA AAACGTATTC AAAATCGTCAGACTTAGCNA ATATGTTCCA ATCTGGTGAA ATTGAAGCAG CTGTGGTTGC TGATTTTGCGGTTGATATTA TTCAAGGCGC ACAGAAAACG TGAEF0031-2 (SEQ ID NO:118)MKK RVTLGTLVAA TLLMTACGNS EATTKSESKG GSNALVVSTFGLSEDIVKKD IIAPFEKENE AKVTLEVGNS ADRFTKLKNN PNAGIDVIEL AQANAAQGCKDGLFEKITEK EVPNLSQLTP GAKEVFESGA GVPTAVNSIG IVYNKEKLCK ETKNWDDLWSADLKGKISVP DVATTACPLM LYVASEHACQ DITKDNCKAA FEAMKELKPN VVKTYSKSSDLANMFQSGEI EAAVVADFAV DIIQGAQKTEF031-3 (SEQ ID NO:119)AA CTACGAAAAG CGAGAGCAAA GGTC-GAAGTA ATGCTTTAGT CGTTTCAACTTTCGGATTAA GTGAAGATAT TGTCAAAAAA GACATTATCG CTCCATTTGA AAAAGAGAATGAAGCGAAAG TTACCTTAGA AGTAGGCAAT AGCGCAGACC GCTTTACGAA ATTAAAAAATAATCCCAATG CGGGAATTGA TGTCATTGAA TTAGCACAAG CAAATGCAGC ACAAGGTGGAAAAGATGGGT TATTTGAAAA AATTACACAA AAAGAAGTAC CTAATTTAAG TCAGTTAACGCCGGGAGCAA AAGAGGTTTT TGAAAGTGGT GCTGGCGTAC CAATCGCTGT AAACAGTATCGGGATTGTTT ACAACAAAGA AAAATTAGGC AAAGAAATTA AAAACTGGGA TGACTTATGGTCAGCTGATT TGAAAGGTAA AATTTCTGTT CCAGACGTTG CCACGACGGC AGGTCCTTTAATGTTATACG TTGCTAGTGA ACATGCTGGT CAAGATATTA CAAAAGATAA CGGGAAGGCCCCTTTTGAAG CGATGAAAGA ATTAAAACCA AACGTTGTTA AAACGTATTC AAAATCGTCAGACTTAGCNA ATATGTTCCA ATCTGGTGAA ATTGAAGCAG CTGTGGTTGC TGATTTTGCCGTTGATATTA TTCAAGGCGC ACAGAAAAEF031-4 (SEQ ID NO:120)TTKSESKG GSNALVVSTFGLSEDIVKKD IIAPFEKENE AKVTLEVGNS ADRFTKLKNN PNAGIDVIEL AQANAAQGCKDGLFEKTTEK EVPNLSQLTP GAKEVFESGA GVPIAVNSIG IVYNKEKLGK EIKNWDDLWSADLKGKISVP DVATTAGPLM LYVASEHAGQ DITKDNGKAA FEAMKELKPN VVKTYSKSSDLANMFQSGEI EAAVVADFAV DIIQGAQKEF032-1 (SEQ ID NO:121)TGAATAAATT ATTTAGGAGG AATTATGATG AAAAAATTAA TTAGTTTAGG ATTGGTTTGTGTTTGTGGTA TTTCACTACT TACTGCTTGT NCGGGAAATA ATGATAATAA AGATACTGAAAAGTCAACCA GTCAATCTAG CAGCACAGTT AAACAACCGA ATTCAAAAGA CTTTGTTGCGTCAGGGGAAT ATTCAGTTGG AAAAGATATT GATCCTGGAG ATTACTATGC TGTATTAACTCAACTAGATG ATAAATCGAG CATAGTTCTT ATTACCGTCA AATCAGGCGG AGAAAATAGTAACCATGACT TATACGGAGT GGGAAACAAG AAAAAAGTAT CTCTTAAAAA GGGAGATACTCTCACATTCG AAACTGCCGA CAAAGATTTT GTTGTTAGAT TTTTAAATGA AAAAGATTTTCAAGAATATA TGAAAAATCC AGTATCNAGT ACTGAAACTA GCAAACANAA AACAGTAAACTCTGATGTTT CTAAAAGTAG TAGCCAAGAT AATAAACAAT CTGATGTATC TGAAAAAAAAGAAGTAAGTA CTGAAGCGAA GTCTGATGTA GCTACTAATA CTTTACCGAG CGAAGATAAAAATACTAATC ACATTACTAA GCTAGCACAT GAGCCAACCT TAGAACAACA AACCGTCTTAGATACTTTAG CTAAGCATCA ATTTAATGAT ATGTATCCTT ATAAAGGAAG CAAAATGCATTCAATTATCG GCGTCATCCC AACCATGGAC GCAAAAAGAT GGTAAEF032-2 (SEQ ID NO:122)MK KLISLGLVCV CGISLLTACX GNNDNKDTEK STSQSSSTVK QPNSKDFVASGEYSVGKDID PGDYYAVLTQ LDDKSSIVLI TVKSGGENSN HDLYGVGNKK KVSLKKGDTLTFETADKDFV VRFLNEKDFQ EYMKNPVSST ETSKXKTVNS DVSKSSSQDN KQSDVSEKKEVSTEAKSDVA TNTLPSEDKN TNDITKLADE PTLEQQTVLD TLAKHQFNDM YPYKGSKMHSIIGVIPTMDA KRWEF032-3 (SEQ ID NO:123)TA ATGATAATAA AGATACTGAAAAGTCAACCA GTCAATCTAG CAGCACAGTT AAACAACCGA ATTCAAAAGA CTTTGTTGCGTCAGGGGAAT ATTCAGTTGG AAAAGATATT GATCCTGGAG ATTACTATGC TGTATTAACTCAACTAGATG ATAAATCGAG CATAGTTCTT ATTACCGTCA AATCAGGCGG AGAAAATAGTAACCATGACT TATACGGAGT GGGAAACAAG AAAAAAGTAT CTCTTAAAAA GGGAGATACTCTCACATTCG AAACTGCCGA CAAAGATTTT GTTGTTAGAT TTTTAAATGA AAAAGATTTTCAAGAATATA TGAAAAATCC AGTATCNAGT ACTGAAACTA GCAAACANAA AACAGTAAACTCTGATGTTT CTAAAAGTAG TAGCCAAGAT AATAAACAAT CTGATGTATC TGAAAAAAAACAAGTAAGTA CTGAAGCGAA GTCTGATGTA GCTACTAATA CTTTACCGAG CGAAGATAAAAATACTAATG ACATTACTAA GCTAGCAGAT GAGCCAACCT TAGAACAACA AACCGTCTTAGATACTTTAG CTAAGCATCA ATTTAATGAT ATGTATCCTT ATAAAGGAAG CAAAATGCATTCAATTATCG CCGTCATCCC AACCATGGAC GCAAAAAGAT GGEF032-4 (SEQ ID NO:124)NDNKDTEK STSQSSSTVK QPNSKDFVASGEYSVCKDID PGDYYAVLTQ LDDKSSIVLI TVKSGGENSN HDLYGVGNKK KVSLKKGDTLTFETADKDFV VRFLNEKDFQ EYMKNPVSST ETSKXKTVNS DVSKSSSQDN KQSDVSEKKEVSTEAKSDVA TNTLPSEDKN TNDITKLADE PTLEQQTVLD TLAKHQFNDM YPYKGSKMHSIIGVIPTMDA KRWEF033-1 (SEQ ID NO:125)TCACTGCTTT TTTTCTATTG GAGAAAAAAG TGGTTTTTTT GTATTGTTTT GACGTTGAGACAAAGGAGGT TCATTTCAGA AAATTTTCCC CAAAATAAAA TAGACGAATG CGAGGATGAAAAAATGAAAA AATTTACTTT AACAATGATC ACTTTAGGTT TAGTAGCAAC ACTTGGCTTAGCAGGATGTG GTAAACAGGA AAAGAAAGCA ACTACCTCTT CTGAAAAAAC AGAAGTAACGTTACCAACCA AAGACCGTAG CGGCAAAGAA ATTACTTTAC CCAAAGAACC AACCAAAATTATTTCCCTAG TGCCATCAAC AACAGAAGTG ATTGAAGACT TAGGTAAAAC CGACCAATTAATCGCAGTTG ATACTCAAAG TAGTACAATG ATGACTGATT TAAAAAAATT ACCACAAATGGATATGATGG CTGTCGATGC CGAAAAATTG ATTGCCTTGA AACCACAAAT TGTTTATGTGAATGACATCA ATTTAGCTAG CTCAGAAAGT GTTTGGAAGC AAGTGGAAGA TGCTGGAATTACAGTCCTTA ATATCCCCAC TAGTACAAGC ATCAAAGCAA TCAAAGAACA CGTCCAATTCATCGCTGATA GCTTATCTGA ACATGAAAAA GGACAAAAGT TAATCAAAAC AATGGATCAAGAAATCGACG AGTAGEF033-2 (SEQ ID NO:126)MKKFTLTMMT LGLVATLGLAGCGKQEKKAT TSSEKTEVTL PTKDRSGKEI TLPKEATKII SLVPSTTEVI EDLGKTDQLIAVDTQSSTMM TDLKKLPQMD MMAVDAEKLI ALKPQIVYVN DINLASSESV WKQVEDAGITVVNIPTSTSI KAIKEDVQFI ADSLSEHEKG QKLIKTHDQE IDEEF033-3 (SEQ ID NO:127)CTCTT CTCAAAAAAC AGAAGTAACCTTACCAACCA AAGACCGTAG CGGCAAAGAA ATTACTTTAC CCAAAGAAGC AACCAAAATTATTTCCCTAG TGCCATCAAC AACAGAAGTC ATTGAAGACT TAGGTAAAAC CGACCAATTAATCGCAGTTG ATACTCAAAG TAGTACAATG ATGACTGATT TAAAAAAATT ACCACAAATGGATATGATGG CTGTCGATGC CCAAAAATTG ATTGCCTTGA AACCACAAAT TGTTTATGTGAATGACATCA ATTTAGCTAG CTCAGAAAGT GTTTGGAAGC AAGTGGAAGA TGCTGGAATTACAGTCGTTA ATATCCCCAC TAGTACAAGC ATCAAAGCAA TCAAAGAAGA CGTCCAATTCATCGCTGATA GCTTATCTGA ACATGAAAAA GGACAAAAGT TAATCAAAAC AATGGATCAAGAAATCGACG AGTAGEF033-4 (SEQ ID NO:128)SSEKTEVTL PTKDRSGKEI TLPKEATKII SLVPSTTEVI EDLGKTDQLTAVDTQSSTMM TDLKKLPQMD MMAVDAEKLI ALKPQIVYVN DINLASSESV WKQVEDAGITVVNIPTSTSI KAIKEDVQFI ADSLSEHEKG QKLIKTMDQE IDEEF034-1 (SEQ ID NO:129)TACGAGGGAG TAATCATGAA AAAAATCGGG TATTTTAGTT GTATTATTTT TTTCATGTTTTTGGTAGGTT GTAGTAATAA CAAAAAAGAA AACGGCAATC TTTTGAATGC CAGTTCCTTTCCTTTAATAC TCACCACGAT TATTCAAAAA GAACAAGACC TAACGAAAGG TTCAATTTTTTTCAACAAGG ATAAAACCAT GACGCTTGAA AAAGAATATT TAGTTAATCC CAATAATGAAGACACAAAAA AAACAAGTAG AACAGAAAAA AACGTATATA AAAATATTAA AATACAAGAAAATAAAGAGA GCTATGAAAT TATAGGTCAA TTGGACAAAA AAACGAAAAA AATAGAGTTTAAAAAAGTTG ATGAAGGTAA ACGTATATCT GATGCAGAAG GTAATGTGTA TGGTGATTTTGGTGGTAAAT AGEF034-2 (SEQ ID NO:130)MKKIGY FSCIIFFMFL VGCSNNKKEN GNLLNASSFP LILTTIIEKE EDLTKGSIFFNKDKTMTLEK EYLVNPNNED TKKTSRTEKK VYKNIKIQEN KESYEIIGQL DKKTKKIEFKKXTDEGKRISD AEGNVYGDFG GKEF034-3 (SEQ ID NO:131)AGAA AACGGCAATC TTTTGAATGC CAGTTCGTTTCCTTTAATAC TCACCACGAT TATTCAAAAA GAAGAAGACC TAACGAAAGG TTCAATTTTTTTCAACAAGG ATAAAACCAT GACGCTTGAA AAAGAATATT TAGTTAATCC CAATAATGAAGACACAAAAA AAACAAGTAC AACAGAAAAA AAGGTATATA AAAATATTAA AATACAAGAAAATAAAGAGA CCTATGAAAT TATAGGTCAA TTGGACAAAA AAACGAAAAA AATAGAGTTTAAAAAAGTTG ATGAAGGTAA ACGTATATCT GATGCAGAAG GTAATGTGTA TGCTGATTTTGGTGGTAAAT ACEF034-4 (SEQ ID NO:132)KEN GNLLNASSFP LILTTIIEKE EDLTKGSIFFNKDKTNTLEK EYLVNPNNED TKKTSRTEKK VYKNIKIQEN KESYEIIGQL DKKTKKIEFKKVDECKRISD AEGNVYGDFG GKEF035-1 (SEQ ID NO:133)TAAACGAGAG GTGAGTTTAT GAAAACAAAA ATCCGAAAAA CAGTTATCTT GTCAGCATTTTTATTCACAA GTTTCCTTTT ACTGAGTGGT TGTACCTCGG CTGGCGAAGA GATGGAAAAAACAATTGATC GACAGAAAGA AAAAGTCGAT AAAACGGTCG ATAAGCAGAA ACATAAAAATGAAAATTCCA TGGAAAGTTA CGACGAAAAA GTTGACCGTT CTTTAGATAG TCAAGAAGACAAAATCC-ATA CTACTGAGTA AEF035-2 (SEQ ID NO:134)NKTKI GKTVILSAFL FTSFLLLSGC TSAGEEMEKT IDRQKEKVDK TVDKQKHKNENSMESYDEKV DRSLDSQEDK IDTTEEF035-3 (SEQ ID NO:135)GATGGAAAAAACAATTGATC GACAGAAAGA AAAAGTCGAT AAAACGGTCG ATAAGCAGAA ACATAAAAATGAAAATTCCA TGGAAAGTTA CGACGAAAAA GTTGACCGTT CTTTAGATAG TCAAGAAGACAAAATCGATA CTACTGAGEF035-4 (SEQ ID NO:136)MEKT IDRQKEKVDK TVDKQKHKNENSMESYDEKV DRSLDSQEDK IDTTEEF036-1 (SEQ ID NO:137)TAATTTTCAA GTCCTACATA TAATGGTAAA ATAGAATGGA TTGAAATTAA TTGGAGGAATAATGAATCGA TGAAAAAAAG ATTGCTATTA TTTATTGGTT TGGCAAGTAT ACTTACTTTGACAGGATGTG CAAAATGGAT TGATCGTGGT GAATCCATCA CAGCGGTAGG CTCATCAGCTTTACAACCAT TAGTAGAGAC AGCGAGTGAG GAATATCAAA GCCAAAATCC GGGAAGATTTATTAATGTCC AAGGTGGCGG AAGCGGAACA GGTCTGAGTC AAGTCCAATC TGGCGCGGTAGACATTGGTA ATTCTGATTT ATTTGCAGAA GAGAAAAAGG GCATCAAAGC GGAAGACTTAATTGATCATA AAGTTGCTGT CGTTGGGATT ACACCAATCG TTAACAAAAA TGTCGCTGTCAAAGATATCT CAATGGAAAA TTTAAAGAAA ATCTTTTTAG GTGAAGTAAC AAACTGGAAAGAACTTCGCG GGAAAGACCA AAAAATTGTT ATTTTGAATA GAGCCGCCGG TAGTCGTACGCGTGCGACTT TTGAAAAGTG GGTCTTGGGA GATAAAACAG CCATTCGTGC GCAAGAACAAGATTCCAGCG GCATGGTTCG TTCCATTGTT TCTGATACAC CAGGAGCGAT TAGTTATACCGCATTTTCAT ATGTTACTGA TGAAGTAGCT ACGTTAAGTA TTGATGGTGT TCAGCCAACAGATGAAAATG TAATGAACAA TAAATGGATT ATTTGGTCTT ATGAACACAT GTACACTCGTAAAAATCCAA GTGATTTAAC CAAAGAGTTT TTAGACTTTA TGTTGTCAGA TGATATCCAAGAACGTGTGA TTGGTCAATT AGGGTATATT CCTGTTTCGA AAATGGAAAT TGAACGGGATTGGCAAGGAA ATGTCATTAA ATAAEF-36-2 (SEQ ID NO:138)MKKRLLLF IGLASILTLT GCAKWIDRGE SITAVGSSALQPLVETASEE YQSQNPGRFI NVQGGGSGTG LSQVQSGAVD IGNSDLFAEE KKGIKAEDLIDHKVAVVGIT PTVNKNVGVK DISMENLKKI FLGEVTNWKE LGGKDQKTVT LNRAAGSGTRATFEKWVLGD KTAIRAQEQD SSGMVRSIVS DTPGAISYTA FSYVTDEVAT LSIDGVQPTDENVMNNKWII WSYEHMYTRK NPSDLTKEFL DFMLSDDIQE RVIGQLGYIP VSKNEIERDWQGNVIKEF036-3 (SEQ ID NO:139)GAT TGATCGTGGT GAATCCATCA CAGCGGTAGG CTCATCAGCTTTACAACCAT TACTAGAGAC AGCGAGTGAG GAATATCAAA GCCAAAATCC GGGAAGATTTATTAATGTCC AAGGTGGCGG AAGCGGAACA GGTCTGAGTC AAGTCCAATC TGGCGCGGTAGACATTGGTA ATTCTGATTT ATTTGCAGAA GAGAAAAAGG GCATCAAAGC GGAAGACTTAATTGATCATA AAGTTGCTGT CGTTGGGATT ACACCAATCG TTAACAAAAA TGTCGGTGTCAAAGATATCT CAATGGAAAA TTTAAAGAAA ATCTTTTTAG GTGAAGTAAC AAACTGGAAAGAACTTGGCG GGAAAGACCA AAAAATTGTT ATTTTGAATA GAGCGGCCGG TAGTGGTACGCGTGCGACTT TTGAAAAGTG GGTCTTGGGA GATAAAACAG CCATTCGTGC GCAAGAACAAGATTCCAGCG GCATGGTTCG TTCCATTGTT TCTGATACAC CAGGAGCGAT TAGTTATACCGCATTTTCAT ATCTTACTGA TGAAGTAGCT ACGTTAAGTA TTGATCGTGT TCAGCCAACAGATGAAAATG TAATGAACAA TAAATGGATT ATTTGGTCTT ATGAACACAT GTACACTCGTAAAAATCCAA GTGATTTAAC CAAAGAGTTT TTAGACTTTA TGTTGTCAGA TGATATCCAAGAACGTGTGA TTGGTCAATT AGGGTATATT CCTGTTTCGA AAATGGAAAT TGAACGGGATTGGCAAGGAA ATGTCATTAA AEF036-4 (SEQ ID NO:140)IDEGE SITAVGSSALQPLVETASEE YQSQNPGRFT NVQGGGSGTG LSQVQSGAVD IGNSDLFAEE KKGIKAEDLIDHKVAVVGIT PTVNKNVGVK DISMENLKKI FLGEVTNWKE LGGKDQKTVI LNRAACSGTRATFEKWVLGD KTATEAQEQD SSGMVRSIVS DTPGAISYTA FSYVTDEVAT LSIDGVQPTDENVHNNKWTI WSYEHMYTRK NPSDLTKEFL DFMLSDDIQE RVIGQLGYIP VSKMEIERDWQGNVIKEF037-1 (SEQ ID NO:141)TGAGTGTATG ATTACTCATT TCCCTTTGAA TCAGTTATGA TAAAGGAAGA AATAAATAAATTTTTTGGAG GGATTTTCAT GAAAATGTCT AAAGTACTCA CCACTGTTTT GACGGCAACTGCTGCTCTTG TGTTGCTTAG TGCTTGTTCA TCTGATAAAA AAACAGATAG TAGTTCTAGTACCAAAGAAA CAGCTAATTC AAGTACAGAA GTAGTCTCTG GTGCTTCAAT TAGTGCCAAGCCTGAAGAGC TCCAAATGGC GTTAAGTGAT AAAGGAAATT GGATTGTCGC AGCTACTGACAATGTCACTT TTGATAAAGA GGTAACAGTT GCTGGTACTT TCCATCATAA GGGGAAAGATTCCAACGATG TCTATCGTAA ATTAGCACTT TATTCCCAAG ATGATAATAA AAAAGTAACTGCTGAATATG AAATCACGGT TCCTAAGCTA ATCGTTTCTT CTGAAAATTT CAACATCGTTCACGGGACTG TCAAAGGTGA TATTGAGGTG AAAGCAAATG GCTTTACTTT AAATGGTACCAAAGTTAATG GCAATATTAC TTTTCATAAA CAAGAATACA AAGATTCTGC TGACTTAGAAAAAGATGGTG CCACTGTTAC TGGTCAAGTC ACCGTAGCCA ATAAEF037-2 (SEQ ID NO:142)MKMSK VLTTVLTATA ALVLLSACSS DKKTDSSSSSKETANSSTEV VSGASISAKP EELEMALSDK CNWIVAATDN VTFDKEVTVA GTFHDKGKDSNDVYRKLALY SQDDNKKVTA EYEITVPKLI VSSENFNTVH GTVKGDIEVK ANGFTLNGTKVNGNITFDKQ EYKDSADLEK DGATVTGEVT VANNEF037-3 (SEQ ID NO:143)AACAGATAG TAGTTCTAGTAGCAAAGAAA CAGCTAATTC AAGTACAGAA GTAGTCTCTG CTGCTTCAAT TAGTCCCAAGCCTGAAGAGC TCGAAATGGC GTTAAGTGAT AAAGGAAATT GGATTGTCGC AGCTACTGACAATGTCACTT TTGATAAAGA GCTAACAGTT GCTGGTACTT TCCATGATAA GGGGAAAGATTCCAACGATG TCTATCGTAA ATTAGCACTT TATTCCCAAG ATGATAATAA AAAAGTAACTGCTGAATATG AAATCACGGT TCCTAAGCTA ATCGTTTCTT CTGAAAATTT CAACATCGTTCACGGGACTG TCAAAGGTGA TATTGAGGTG AAAGCAAATG GCTTTACTTT AAATGGTACCAAACTTAATC CCAATATTAC TTTTCATAAA CAAGAATACA AAGATTCTCC TGACTTAGAAAAAGATGGTG CCACTGTTAC TGGTGAAGTC ACCGTAGCCA AEF037-4 (SEQ ID NO:144)TDSSSSSKETANSSTEV VSGASISAKP EELEMALSDK GNWIVAATDN VTFDKEVTVA GTFHDKGKDSNDVYRKLALY SQDDNKKVTA EYEITVPKLI VSSENFNIVH GTVKGDIEVK ANGFTLNGTKVNGNITFDKQ EYKDSADLEK DGAPVTGEVT VANNEF038-1 (SEQ ID NO:145)TAATGGCCAT TTCGTCTACT AATAAAGAGG ATGAAGCTAC TCAAATGGCG TTGGCAATGGAACAAGGATC ATAAAAAAGG AGAAGTGAGC ATGAAAAAAG TACTACCTTT TATTGCCTTAGTCGGCTTGT TATTGTTGTC AGGTTGTGGA ACAGATATGA AAAAGATATT GACTGCCGATGGTGGTAAAT GGGAACTAGA AAATAAAAGT CCAACTACTA CTTACACTTT TTTTGATGATGAAACTTTTT CGAGGTATAA TTCAAAAATT AGTGATAGTG GAACCTACTC TTACGATGAAAATAATAAAA AACTCACTTT GGATATAAAA AATAAAGAAC AATTAATAAT GGAAAATGTTGAATATAAAG ACGGTAAATT AAAAGGTGAA ATTGGACCCG AGAAGGACTC TGATAAAAAATNGAATAAGA GGTGTCTTTG AEF038-2 (SEQ ID NO:146)M KLLKWRWQWN KDHKKGEVSM KKVLPFIALV GLLLLSGCGT DMKKILTADGGKWELENKSP TTTYTFFDDE TFSRYNSKIS DSGTYSYDEN NKKLTLDIKN KEQLTMENVEYKDGKLKGEI GGEKDSDKKX NKRCLEF038-3 (SEQ ID NO:147)TTGTGGA ACAGATATGA AAAAGATATT GACTGCCGATGGTGGTAAAT GGGAACTAGA AAATAAAAGT CCAACTACTA CTTACACTTT TTTTGATGATGAAACTTTTT CGAGGTATAA TTCAAAAATT AGTGATAGTG GAACGTACTC TTACGATGAAAATAATAAAA AACTCACTTT GGATATAAAA AATAAAGAAC AATTAATAAT GGAAAATGTTCAATATAAAG ACGGTAAATT AAAAGGTGAA ATTGGAGGCG AGAAGGACTC TGATAAAAAATNGAATAAGA GGTGTCTTTG AEF038-4 (SEQ ID NO:148)CGT DMKKILTADGGKWELENKSP TTTYTFFDDE TFSRYNSKIS DSGTYSYDEN NKKLTLDIKN KEQLIMENVEYKDGKLKGEI GGEKDSDKKX NKRCLEF039-l (SEQ ID NO:149)TAAATATATC AAAAAGAAAA AAGGGGATTA CCAACCATGA AAAAGAAAAA AGTTTTTAGTCCGCTTACCT TATTAACCTT TAGTACGTTG TTCATTGCAG GCTGTGCTGG CGGAGCCAACTCTGCAACAG ATAAATCAAG TGCAGCTAGC TCAAGCACTG CAGTCTCTAG TTCAGCAGAAGCACCTAAAG AGCAATCAAA AGGACAAGAA TTAACAGAAA TTTTATCCAG TACTGATTGGCAAGGCACAA AAGTTTACGA CAAAAATNAT AATAATTTAA CAGCAGAAAA TGCTAATTTTATTCGTTTAG CAAAATATGA TGGTGAAACA GGTTTTTATG AATTTTTCGA CAAAGAAACAGGTGAAACCC GTGGCGATGA AGGCACATTC TTTGTGACAG ACGATGGCGA AAAGCGTATCTTAATTTCGC ATACACAAAA CTATCAAGCG GTGGTCGATT TAACGGAAGT GACGAAAGATAAATTTACCT ATAAGCGAAT GGGTAAAGAT AAACACGGGA AAGATGTAGA AGTCTTTGTAGAACATATCC CTTATTCTGA CGAGAAATTA ACCTTTACGA ACGGCCGTAA AGATTTAGAAACAGAAACTG GCAAGATTGT TACCAATGAA CCTGGGGATG ACATTTTAGG GGCCACATTATGGAATGGCA CGAAAGTTTT AGATGAAGAC GGTAACGATG TTACTGAAGC AAATAAAATGTTTATTAGTT TAGCGAAATT TGATAATAAA ACAAGTAAAT ATGAATTCTT TGATTTAGAAACGGGTAAAA CACGTGGAGA TTTTGGTTAC TTCCAAGTAA TTGATAATAA CAAAATCCGTGCTCACGTTT CAATTGGTGA CAATAAATAT GGAGCTGCAT TAGAATTAAC AGAATTAAATGATAAACGTT TTACGTATAC ACGAATGCGT AAAGACAACA ATGGCAAAGA AATTAAAGTCTTTGTAGAAC ATGAACCATA TGAAGGAGAC TTTACGCCAG ACTTCACGTT CTAAEF039-2 (SEQ ID NO:150)MKKKKVFSA LTLLTFSTLL IAGCAGGANS ATDKSSAASS STAVSSSAEAAKEQSKGQEL TEILSSTDWQ GTKVYDKNXN NLTAENANFI GLAKYDGETG FYEFFDKETGETRGDEGTFF VTDDGEKRIL ISDTQNYQAV VDLTEVTKDK FTYKRMGKDK DGKDVEVPVEHIPYSDEKLT FTNGRKDLET ETGKIVTNEP GDDILGATLW NGTKVLDEDG NDVTEANKMFISLAKFDNKT SKYEFFDLET GKTRGDFGYF QVIDNNKIRA HVSIGDNKYG AALELTELNDKRFTYTRMGK DNNGKEIKVF VEHEPYEGDF TPDFTFEF039-3 (SEQ ID NO:151)TGCAACAG ATAAATCAAG TGCAGCTAGC TCAAGCACTG CAGTCTCTAG TTCAGCAGAAGCAGCTAAAG AGCAATCAAA AGGACAAGAA TTAACAGAAA TTTTATCCAG TACTGATTGGCAAGGCACAA AAGTTTACGA CAAAAATNAT AATAATTTAA CAGCAGAAAA TGCTAATTTTATTGGTTTAG CAAAATATGA TGGTGAAACA GGTTTTTATG AATTTTTCGA CAAAGAAACAGCTGAAACCC GTGGCGATGA AGGCACATTC TTTGTGACAG ACGATGGCGA AAAGCGTATCTTAATTTCGG ATACACAAAA CTATCAAGCG GTGGTCGATT TAACGGAAGT GACGAAAGATAAATTTACCT ATAAGCGAAT GGGTAAAGAT AAAGACGGGA AAGATGTAGA AGTCTTTGTAGAACATATCC CTTATTCTGA CGAGAAATTA ACCTTTACGA ACGGCCGTAA AGATTTAGAAACAGAAACTG GCAAGATTGT TACCAATGAA CCTGGGGATG ACATTTTAGG GGCCACATTATGGAATGGCA CGAAAGTTTT AGATGAAGAC GGTAACGATG TTACTGAAGC AAATAAAATGTTTATTAGTT TAGCGAAATT TGATAATAAA ACAAGTAAAT ATGAATTCTT TGATTTAGAAACGGGTAAAA CACGTGGAGA TTTTGGTTAC TTCCAAGTAA TTGATAATAA CAAAATCCGTGCTCACGTTT CAATTGGTGA CAATAAATAT GGAGCTGCAT TAGAATTAAC AGAATTAAATGATAAACGTT TTACGTATAC ACGAATGGGT AAAGACAACA ATGGCAAAGA AATTAAAGTCTTTGTACAAC ATGAACCATA TGAAGGAGAC TTTACGCCAG ACTTCACGTT CTAAEF039-4 (SEQ ID NO:152)ATDKSSAASS STAVSSSAEAAKEQSKGQEL TEILSSTDWQ GTKVYDKNXN NLTAENANFI GLAKYDGETG FYEFFDKETGETRGDEGTFF VTDDGEKRIL ISDTQNYQAV VDLTEVTKDK FTYKRMGKDK DGKDVEVFVEHIPYSDEKLT FTNGRKDLET ETGKIVTNEP GDDILGATLW NGTKVLDEDG NDVTEANKMFISLAKFDNKT SKYEFFDLET GKTRGDFGYF QVIDNNKIRA HVSIGDNKYG AALELTELNDKRFTYTRMGK DNNGKEIKVF VEHEPYEGDF TPDFTFEF040-1 (SEQ ID NO:153)TAGATTAGAA CCACTGGAGA AAAATCTCAT ATTTCTCTCG AGGAAAGGAA GTTGAGCACAATGAACAAAA AAATTTTAAT GGGGCTATTA AGTGTCGTGA CCATTCCATT ACTTGCTGCGTGTCAAGGAG GAGAAACACC TTCCGCAGCG TCAAAAAATA GTCAAACGGT GACTACTCAAAGTAGTGCAA AAACTGAAAG CACCAGTACA ACCCGTTCGG TAGCTCAAAC AACATCAAAAGAGGAAGTGA AAGAACCGAT GAAGACCTAT GAAGTGGGTG CGCTTTTAGA AGCAGCCAATCAACGAGATA CGAAGAAGGT CAAGGAAATT TTACAAGATA CTACTTATCA AGTGGATGAAGTCGACACAG AAGGCAACAC ACCGCTCAAT ATCGCTGTTC ACAATAATGA CATTGAGATTGCAAAAGCGT TGATTGATCG GGGTGCCGAT ATTAATCTGC AAAACAGCAT TAGTGATAGTCCCTATCTTT ATGCGGGAGC GCAAGGACGT ACGGAGATTT TAGCGTATAT GTTAAAACATGCGACCCCAG ATTTAAATAA CCATAACCGT TACGGTGGCA ATGCGTTAAT TCCGGCAGCTGAAAAAGGAC ATATTGACAA TGTGAAGCTC TTGTTAGAAG ATGGACGAGA AGACATAGATTTCCAAAATG ACTTTGGCTA TACAGCATTG ATTGAGGCAG TGGGGTTACG TGAAGGGAACCAACTTTACC AAGATATTGT AAAATTGTTA ATGGAAAATG GTGCGGATCA ATCCATTAAAGACAATTCTG GTCGAACAGC AATGGACTAT GCCAATCAAA AAGGTTATAC GGAAATTAGTAAAATTTTAG CACAGTACAA CTAAEF040-2 (SEQ ID NO:154)M NKKILMGLLS VVTIPLLAAC QGGETPSAAS KNSQTVTTQSSAKTESTSTT RSVAQTTSKE EVKEPMKTYE VGALLEAANQ RDTKKVKEIL QDTTYQVDEVDTEGNTPLNI AVHNNDIEIA KALTDRGADI NLQNSISDSP YLYAGAQGRT EILAYMLKHATPDLNKHNRY GGNALIPAAE KGHIDNVKLL LEDGREDIDF QNDFGYTALI EAVGLREGNQLYQDIVKLLM ENGADQSIKD NSGRTAMDYA NQKGYTEISK ILAQYNEF040-3 (SEQ ID NO:155)AGCG TCAAAAAATA GTCAAACGGT GACTACTCAAAGTAGTGCAA AAACTGAAAG CACCAGTACA ACCCGTTCGG TAGCTCAAAC AACATCAAAAGAGGAAGTGA AAGAACCGAT GAAGACCTAT GAAGTGGGTG CGCTTTTAGA AGCAGCCAATCAACGAGATA CGAAGAAGGT CAAGGAAATT TTACAAGATA CTACTTATCA AGTGGATGAAGTCGACACAG AAGGCAACAC ACCGCTCAAT ATCGCTGTTC ACAATAATGA CATTGAGATTGCAAAAGCGT TGATTGATCG GGGTGCCGAT ATTAATCTGC AAAACAGCAT TAGTGATAGTCCCTATCTTT ATGCGGGAGC GCAAGGACGT ACGGAGATTT TAGCGTATAT GTTAAAACATGCGACCCCAG ATTTAAATAA GCATAACCGT TACGGTGGCA ATGCGTTAAT TCCGGCAGCTGAAAAAGGAC ATATTGACAA TGTGAAGCTC TTGTTAGAAG ATGGACGAGA AGACATAGATTTCCAAAATG ACTTTGGCTA TACAGCATTG ATTGAGGCAG TGGGGTTACG TGAAGGGAACCAACTTTACC AAGATATTGT AAAATTGTTA ATGGAAAATG GTGCGGATCA ATCCATTAAAGACAATTCTG GTCGAACAGC AATGGACTAT GCCAATCAAA AAGGTTATAC GGAAATTAGTAAAATTTTAG CACAGTACAA CEF040-4 (SEQ ID NO:156)AS KNSQTVTTQSSAKTESTSTT RSVAQTTSKE EVKEPMKTYE VGALLEAANQ RDTKKVKEIL QDTTYQVDEVDTEGNTPLNT AVHNIWIEIA KALTDRGADI NLQNSISDSP YLYAGAQGRT ETLAYMLKHATPDLNKHNRY GGNALIPAAE KGHIDNVKLL LEDGREDIDF QNDFGYTALI EAVGLREGNQLYQDIVKLLM ENGADQSIKD NSGRTAMDYA NQKGYTEISK ILAQYNEF041-1 (SEQ ID NO:157)TAATTATTAA NTTCTGATTT TTCAGAAAAT ACAGATTGCA TTATTTTAGG AGGCAACACTATGAAATTGA AAAAGTCATT AACATTCGGT GTGATTACAT TATTTAGCGT AACAACTTTAGCCGCTTGTG GAGGCGGCGG AACGTCAGAT AGCTCAAGCG CGTCTGGTGG CGGTAAGGCAAGTGGCGAAC AAGTTTTACG TGTCACAGAA CAACAAGAAA TGCCAACAGC TGATTTATCACTAGCAACAG NCAGAATTAG TTTTATTGCA TTAAATAATG TATATGAAGG AATTTATCGTTTAGACAAAG ATAACAAAGT CCAACCTGCA GGTGCAGCGG AAAAAGCAGA AGTTTCTGAAGATGGACTAA CATACAAAAT TAAATTAAAT AAAGATGCAA AATGGTCAGA CGGTAAACCAGTGACTGCTA ATGACTATGT TTACGGATGG CAACGAACAG TTGATCCAGC GACAGCTTCTGAATATGCTT ATCTGTATGC CTCTGTAAAA AATGGTGATG CCATTGCTAA AGGGGAAAAAGATAAATCAG AATTAGGAAT TAAAGCAGTC AGTGATACAG AATTAGAAAT CACTTTAGAAAAAGCAACAC CATACTTTGA TTACTTATTA GCTTTCCCAT CATTCTTCCC GCAACGTCAAGACATTGTGG AAAAATATGG TAAAAATTAT GCATCAAACA GCGAAAGTGC TGTCTACAATGGTCCATTCG TCTTAGACGG CTTTGATGGT CCTGGTACAG ATACAAAATG GTCATTCAAGAAAAACGATC AATATTGGGA TAAAGATACT GTGAAACTGG ACTCAGTAGA TGTGAATGTCGTGAAAGAAT CACCAACCGC GTTGAACTTG TTCCAAGATG GACAAACAGA CGATGTCGTTCTTTCTGGTG AATTAGCCCA ACAAATGGCC AATGACCCAG CTTTTGTTAG TCAAAAAGAAGCATCAACAC AATATATGGA ACTAAATCAA CGTGATGAAA AATCACCATT TAGAAATGCGAACTTACGTA AAGCAATTTC TTACTCAATC GACCGTAAAG CGTTAGTTGA ATCAATCCTTAGGCGATGGEF041-2 (SEQ ID NO:158)M KLKKSLTFGV ITLFSVTTLA ACGGGGTSDS SSASGGGKASGEQVLRVTEQ QEMPTADLSL ATXRISFIAL NNVYEGIYRL DKDNKVQPAG AAEKAEVSEDGLTYKIKLNK DAKWSDGKPV TANDYVYGWQ RTVDPATASE YAYLYASVKN GDAIAKGEKDKSELGIKAVS DTELEITLEK ATPYFDYLLA FPSFFPQRQD IVEKYGKNYA ENSESAVYNGPFVLDGFDGP GTDTKWSFKK NDQYWDKDTV KLDSVDVNVV KESPTALNLF QDGQTDDVVLSGELAQQMAN DPAFVSQKEA STQYMELNQR DEKSPFRNAN LRKAISYSID RKALVESILRGWEF041-3 (SEQ ID NO:159)TTGTG GAGGCGGCGG AACCTCAGAT AGCTCAAGCG CGTCTGGTGG CGGTAAGGCAAGTGGCGAAC AAGTTTTACG TGTCACAGAA CAACAAGAAA TGCCAACAGC TGATTTATCACTAGCAACAG NCAGAATTAG TTTTATTGCA TTAAATAATG TATATGAAGG AATTTATCGTTTAGACAAAG ATAACAAAGT CCAACCTGCA GGTGCAGCGG AAAAAGCAGA AGTTTCTGAAGATGGACTAA CATACAAAAT TAAATTAAAT AAAGATGCAA AATGGTCAGA CGGTAAACCAGTGACTGCTA ATGACTATGT TTACGGATGG CAACGAACAG TTGATCCAGC GACAGCTTCTGAATATGCTT ATCTGTATGC CTCTGTAAAA AATGGTGATG CCATTGCTAA AGGGGAAAAAGATAAATCAG AATTAGGAAT TAAAGCAGTC AGTCATACAG AATTAGAAAT CACTTTAGAAAAAGCAACAC CATACTTTGA TTACTTATTA GCTTTCCCAT CATTCTTCCC GCAACGTCAAGACATTGTGG AAAAATATGG TAAAAATTAT GCATCAAACA GCGAAAGTGC TGTCTACAATGGTCCATTCG TCTTAGACGG CTTTGATGGT CCTGGTACAG ATACAAAATG GTCATTCAAGAAAAACCATC AATATTGGGA TAAAGATACT GTGAAACTGG ACTCAGTAGA TGTGAATGTCGTGAAAGAAT CACCAACCGC GTTGAACTTG TTCCAAGATG GACAAACAGA CGATGTCGTTCTTTCTGGTG AATTAGCCCA ACAAATGGCC AATGACCCAG CTTTTGTTAG TCAAAAAGAAGCATCAACAC AATATATGGA ACTAAATCAA CGTGATGAAA AATCACCATT TAGAAATGCGAACTTACGTA AAGCAATTTC TTACTCAATC GACCGTAAAG CGTTAGTTGA ATCAATCCTTAGGGGATGGEF041-4 (SEQ ID NO:160)CGCGGTSDS SSASGGGKASGEQVLRVTEQ QEMPTADLSL ATXRISFIAL NNVYEGIYRL DKDNKVQPAG AAEKAEVSEDGLTYKTKLNK DAKWSDGKPV TANDYVYGWQ RTVDPATASE YAYLYASVKN GDAIAKGEKDKSELGIKAVS DTELEITLEK ATPYFDYLLA FPSFFPQRQD IVEKYGKNYA SNSESAVYNGPFVLDGFDGP GTDTKWSFKK NDQYWDKDTV KLDSVDVNVV KESPTALNLF QDGQTDDVVLSGELAQQMAN DPAFVSQKEA STQYMELNQR DEKSPFRNAN LRKAISYSTD RKALVESILROWEF044-1 (SEQ ID NO:161)TAAGATAAAA TTAGTTATAG CGTCTATAGG AGGAATAGTA TGAAAAAATT AGTTTGTGTTATTTTAGTTA TTTTTTTAAC AGGTTGTAGT TCTCAAAAAG CGAATGAACC TAAAAAACAAGAAAATTCTA CCAATCATAC AACATCAATA AAAAGCAGTA CTAATCATTA CAGTTCTAGCATAGAAACAA GCTCTAATAA TAAACTAAAA GAAACTTCAG AAAGTGCCAG CACCACTCAAACTTCGTCAA AGTCGAAAAA TGAAGTATCT ACAAATGTCG AAGAAGCAAA TTCTTTAGAAGCAACACCTT ATGCTGTCGA TCTTAGTAGC TTAAACAATC CACTCGTATT TAATTTTAAAGGAATGAATG TGCCAACTTC AATTACGTTA GAGAACTTAA ATTCAACACC AACTGCTACCTTCCGAACTA AATTGTTTGG GGCTGAAAAT GGTCAAGTGA AAGAAGCCAT TAATAAATATGAGCTATCTA TAAATACAAT TCCTACAAAA GAGATTAGAA TATTTTCAGC GGCCGATAACAGTATTCGCA CCGTTAAAGT AAATACAGAA TTAATTTTAG GAACTAATAT TTCTTCAAACGATGAACAAA ATAGATCGGG CACTTTATAC TTATTCAACA ATAAAAATGG TTCGATATCTTTAATCACTC CTAACTACGC TGGCAATGTT ACGGATGATC AAAAAGACGT TATGCTAGAAGTAATTCAAT AAEF044-2 (SEQ ID NO:162)MKKLVCVI LVIFLTGCSS QKANEPKKQE NSTNHTTSIK SSTNHYSSSIETSSNNKLKE TSESASTTQT SSKSKNEVST NVEEANSLEA TPYAVDLSSL NNPLVFNFKGMNVPTSITLE NLNSTPTATF RTKLFGAENG QVKEAINKYE LSTNTIPTKE IRIFSAADNSIRTVKVNTEL ILGTNTSSND EQNRSGTLYL FNNKNGSISL ITPNYAGNVT DDQKDVMLEVIQEF044-3 (SEQ ID NO:163)TTGTAGT TCTCAAAAAC CGAATGAACC TAAAAAACAAGAAAATTCTA CCAATCATAC AACATCAATA AAAAGCAGTA CTAATCATTA CAGTTCTAGCATAGAAACAA GCTCTAATAA TAAACTAAAA GAAACTTCAG AAAGTGCCAG CACCACTCAAACTTCGTCAA AGTCGAAAAA TGAAGTATCT ACAAATGTCG AAGAAGCAAA TTCTTTAGAAGCAACACCTT ATGCTGTCGA TCTTAGTAGC TTAAACAATC CACTCGTATT TAATTTTAAAGGAATGAATG TGCCAACTTC AATTACGTTA GAGAACTTAA ATTCAACACC AACTGCTACCTTCCGAACTA AATTGTTTGG GGCTGAAAAT GGTCAAGTGA AAGAAGCCAT TAATAAATATGAGCTATCTA TAAATACAAT TCCTACAAAA GAGATTAGAA TATTTTCAGC GGCCGATAACAGTATTCGCA CCGTTAAAGT AAATACAGAA TTAATTTTAG GAACTAATAT TTCTTCAAACGATGAACAAA ATAGATCGGG CACTTTATAC TTATTCAACA ATAAAAATGG TTCGATATCTTTAATCACTC CTAACTACGC TGGCAATGTT ACGGATGATC AAAAAGACGT TATGCTAGAAGTAATTCAAEF044-4 (SEQ ID NO:164)CSS QKANEPKKQE NSTNHTTSIK SSTNHYSSSIETSSNNKLKE TSESASTTQT SSKSKNEVST NVEEANSLEA TPYAVDLSSL NNPLVFNFKGMNVPTSITLE NLNSTPTATF RTKLFGAENG QVKEAINKYE LSINTIPTKE IRIFSAADNSTRTVKVNTEL ILGTNISSND EQNRSGTLYL FNNKNGSISL ITPNYAGNVT DDQKDVMLEVIQEF045-1 (SEQ ID NO:165)TAGCCAAAAA ATGAGGCAGG AAAAGAGATG AACAAGAAAC GGATTTTAGG TGCAATCACGTTAGCTTCTG TGTTAGTATT CGGGTTAGCT GCATGTGGTG GCGGCAATAA AGGCGGGGGCAATAAAGCAA CGGAAACAGA AGACATTTCA AAAATGCCAA TCGCTGTTAA AAATGATAAAAAAGCAATTG ATGGCGGTAC ATTAGATGTC GCTGTAGTTA TGGATACACA ATTCCAAGGACTTTTCCAGC AACAATTTTA TCAAGACAAC TATGATGCAC AATACATGCT TCCAACGGTACAGCCATTAT TTAACAATGA TGCAGACTTT AAGATTGTCG ATGGGGGTCC TGCGGATCTGAAATTAGATG AAGATCCCAA TACAGCAACC ATTAAATTAC GTGACAATTT GAAATGGTCTGACGGTAAAG ATGTGACAGC CGATGACCTG ATTTTCTCTT ATGAAGTCAT TGGTCATAAAGACTATACAG GGATTCGTTA TGATGATAAC TTTACGAATA TTGTTGGCAT GGAAGACTACCATGATGGTA AATCGCCAAC CATTTCTGGC ATAGAAAAAG TCAATGATAA AGAAGTTAAAATCACTTATA AAGAAGTTCA CCCAGGAATG CAACAATTAG GTGGCGGTGT TTGGGGCTCAGTTTTACCAA AACATGCCTT TCAAGGAATT GCTGTTAAAG ACATGGAATC AAGCGATGCAGTTCGTAAAA ACCCTGTGAC TATTGGACCA TACTACATGA GTAATATTGT GACAGGTGAATCTGTTGAAT ACCTACCAAA TGAGCATTAC TACGGTGGTA AACCTAAATT AGATAAATTAGTGTTCAAAT CTGTTCCTTC TGCGAGCATT GTAGAAGCGA TGAAACCGAA ACAATACGATATTGCATTAT CAATGCCAAC AGATACGTAT CCAACATACA AAGATACTGA AGGGTATCAAATCTTAGGAC GTCCCGAACA AGCCTACACG TATATTGGCT TTAAAATGGG TACGTTTGACAAAGAAACAA ATACAGTGAA ATACAATCCA AAAGCTAAAA TGGCAGATAA AAGCTTACGTCAAGCCATGG GCTATGCAAT TGACAATGAT GCAGTCGGCC AAAAATTCTA CAACGGCTTACGAACAGGGG CAACAACGTT AATCCCACCA GTCTTCAAGA GCTTGCATGA TAGCGAAGCGAAAGGCTATA CGCTTGATTT AGACAAAGCG AAAAAATTAT TAGACCATOC TGGTTATAAAGACGTAGACG GCGATGGCAT TCGCGAAGAC AAAGAAGGCA AACCACTACA AATCAAGTTTCCTTCAATGT CAGGCGCCGA AACTGCACAA CCACTTGCTC ATTACTATGT CCAACAATGGAAAGAAATTG GCTTAAACCT AACGTATACA ACAGGACGCT TAATTGATTT CCAAGCATTCTATGATAAAT TCAAAAATGA TGACCCAGAA GTACATATCT ATCAAGGCGC CTGGGGCACAGGTTCAGATC CTTCACCAAC CGGCTTATAT GGTCCAAACT CACCCTTTAA CTATACACGTTTTGACTCAG AAGAAAATAC TAAATTACTT GATGCGATTG ATTCAAAAGC ATCATTTGATGAACAAAAAC GTAAAAAAGC CTTCTACGAT TGGCAAGAGT ATGCCATTGA TGAAGCGTTTGTAATCCCAA CGCTTTACAG AAATGAAGTC TTGCCTGTCA ACGACCGTGT AGTTGACTTTACTTGGCCAG TTGATACGAA AGATAATCCA TCCGCAACGG TGCGTGTCAC AGCAGACTCACGGAAATAAEF045-2 (SEQ ID NO:166)MN KKRILCAITL ASVLVFGLAA CGGGNKGGGN KATETEDISK MPIAVKNDKKATDGGTLDVA VVMDTQFQGL FQQEFYQDNY DAQYNLPTVQ PLFNNDADFK IVDGGPADLKLDEDANTATI KLRDNLKWSD GKDVTADDVI FSYEVIGHKD YTGIRYDDNF TNIVGMEDYHDGKSPTTSGI EKVNDKEVKI TYKEVHPGMQ QLGGGVWGSV LPKHAFEGIA VKDMESSDAVRKNPVTIGPY YMSNTVTGES VEYLPNEHYY GGKPKLDKLV FKSVPSASIV EAMKAKQYDIALSMPTDTYP TYKDTEGYQT LGRPEQAYTY IGFKNGTFDK ETNTVKYNPK AKMADKSLRQAMGYAIDNDA VCQKFYNGLR TGATTLIPPV FKSLHDSEAK GYTLDLDKAK KLLDDAGYKDVDGDGIREDK EGKPLEIKFA SMSGGETAQP LADYYVQQWK EIGLNVTYTT GRLIDFQAFYDKLKNDDPEV DIYQCAWGTG SDPSPTGLYC PNSAFNYTRF ESEENTKLLD ATDSKASFDEEKRKKAFYDW QEYAIDEAFV IPTLYRNEVL PVNDRVVDFT WAVDTKDNPW ATVGVTADSRKEF045-3 (SEQ ID NO:167)ATGTGGTG CCGCCAATAA AGGCGGCCGCAATAAAGCAA CGGAAACAGA AGACATTTCA AAAATGCCAA TCGCTGTTAA AAATGATAAAAAAGCAATTG ATGGCCGTAC ATTAGATGTC GCTGTAGTTA TGGATACACA ATTCCAAGGACTTTTCCAGC AAGAATTTTA TCAACACAAC TATGATCCAC AATACATGCT TCCAACGGTACAGCCATTAT TTAACAATGA TGCAGACTTT AAGATTGTCG ATGGGGGTCC TGCGGATCTGAAATTACATC AAGATCCCAA TACAGCAACC ATTAAATTAC CTGACAATTT GAAATGGTCTGACCGTAAAG ATGTGACAGC CGATGACGTG ATTTTCTCTT ATGAAGTCAT TGCTCATAAAGACTATACAG GGATTCGTTA TGATGATAAC TTTACGAATA TTGTTGGCAT GGAAGACTACCATGATGGTA AATCGCCAAC CATTTCTGGC ATAGAAAAAG TCAATGATAA AGAAGTTAAAATCACTTATA AAGAAGTTCA CCCAGGAATC CAACAATTAG GTGGCGGTGT TTGGGGCTCAGTTTTACCAA AACATGCCTT TGAAGGAATT GCTGTTAAAG ACATGCAATC AAGCGATGCAGTTCGTAAAA ACCCTGTGAC TATTGGACCA TACTACATGA CTAATATTGT GACAGGTGAATCTGTTGAAT ACCTACCAAA TGAGCATTAC TACGGTGGTA AACCTAAATT AGATAAATTAGTGTTCAAAT CTGTTCCTTC TGCGACCATT GTAGAAGCGA TGAAAGCGAA ACAATACGATATTGCATTAT CAATGCCAAC AGATACGTAT CCAACATACA AAGATACTGA AGGGTATCAAATCTTAGGAC GTCCCGAACA AGCCTACACG TATATTGGCT TTAAAATGGG TACGTTTCACAAAGAAACAA ATACAGTGAA ATACAATCCA AAACCTAAAA TGGCAGATAA AAGCTTACGTCAAGCCATGG GCTATGCAAT TGACAATGAT GCAGTCGGCC AAAAATTCTA CAACGGCTTACGAACAGGGG CAACAACGTT AATCCCACCA GTCTTCAAGA GCTTGCATGA TAGCGAAGCGAAAGGCTATA CGCTTGATTT AGACAAAGCG AAAAAATTAT TAGACGATGC TGGTTATAAAGACGTAGACG GCGATGGCAT TCGCGAAGAC AAAGAAGGCA AACCACTAGA AATCAAGTTTGCTTCAATGT CACGCGGCGA AACTGCACAA CCACTTGCTG ATTACTATGT CCAACAATGGAAAGAAATTG GCTTAAACGT AACGTATACA ACAGGACGCT TAATTGATTT CCAAGCATTCTATGATAAAT TGAAAAATGA TGACCCAGAA GTAGATATCT ATCAAGGCGC GTGOCGCACAGGTTCAGATC CTTCACCAAC CGGCTTATAT GGTCCAAACT CAGCCTTTAA CTATACACGTTTTGAGTCAC AAGAAAATAC TAAATTACTT GATGCGATTG ATTCAAAAGC ATCATTTGATGAAGAAAAAC GTAAAAAAGC CTTCTACGAT TGGCAAGAGT ATGCCATTGA TGAAGCGTTTGTAATCCCAA CGCTTTACAG AAATGAAGTC TTGCCTGTCA ACGACCGTGT AGTTGACTTTACTTGGGCAG TTGATACGAA AGATAATCCA TGGGCAACGG TGGGTGTCAC AGCAGACTCACGGAAAEF045-4 (SEQ ID NO:168)CGGGNKCGGN KATETEDISK MPTAVKNDKKAIDGGTLDVA VVMDTQFQGL FQQEFYQDNY DAQYMLPTVQ PLFNNDADFK IVDGGPADLKLDEDANTATT KLRDNLKWSD GKDVTADDVT FSYEVIGHKD YTGIRYDDNF TNIVGMEDYHDGKSPTISGI EKVNDKEVKI TYKEVHPGMQ QLGGGVWGSV LPKHAFEGIA VKDMESSDAVRKNPVTIGPY YMSNIVTGES VEYLPNEHYY GGKPKLDKLV FKSVPSASIV EANKAKQYDIALSMPTDTYP TYKDTEGYQI LGRPEQAYTY IGFKMGTFDK ETNTVKYNPK AKMADKSLRQAMGYAIDNDA VGQKFYNGLR TGATTLTPPV FKSLHDSEAK GYTLDLDKAK KLLDDAGYKDVDGDGIREDK EGKPLEIKFA SMSGGETAQP LADYYVQQWK EIGLNVTYTT GRLIDFQAFYDKLKNDDPEV DIYQGAWGTG SDPSPTGLYG PNSAFNYTRF ESEENTKLLD AIDSKASFDEEKRKKAFYDW QEYAIDEAFV IPTLYRNEVL PVNDRVVDFT WAVDTKDNPW ATVGVTADSRKEF046-1 (SEQ ID NO:169)TAGGAGGATA TAATGAAAAA AAAACTTATT GTACTATTGT TAGCCTTATT TTTAACGGCATGTAGTAATA ATACTGGGGG AAAAAATAGC GACGCTTCAT CTACTGAAGT ATCAACTAAGCAGCAAACTA CCCAGTCTTC TAAAAAAGAT AGTAGTAATC CGGACACAAC ACCAACTTCTACATCATCTA TAACAATTGA AACAACCGAG AATTTAAAGA ATAGAGAATT GAATCCAACAGATGATGTTT CAAAAACTAG ACGACAATTG TATGAACAAG GAATTAACAG TTCAACAATTACGGATAAAG AACTAAAGGA ATATATATCA GAGGCTAAAG AACAAAAGAA AGATGTCATTAATTATATTA AGCAAAAAEF046-2 (SEQ ID NO:170)MKKKLTV LLLALFLTAC SNNTGGKNSD ASSTEVSTKQ QTTQSSKKDS SNPDTTPTSTSSITIETTEN LKNRELNPTD DVSKTRRQLY EQGINSSTIT DKELKEYISE AKEQKKDVINYIKQKEF046-3 (SEQ ID NO:171)ATGTAGTAATA ATACTGGGGG AAAAAATAGC GACGCTTCAT CTACTGAAGT ATCAACTAAGCAGCAAACTA CCCAGTCTTC TAAAAAAGAT AGTAGTAATC CGGACACAAC ACCAACTTCTACATCATCTA TAACAATTGA AACAACCGAG AATTTAAAGA ATAGAGAATT GAATCCAACAGATGATGTTT CAAAAACTAG ACGACAATTG TATGAACAAG GAATTAACAG TTCAACAATTACGGATAAAG AACTAAAGGA ATATATATCA GAGGCTAAAG AACAAAAGAA AGATGTCATTAATTATATTA AGCAAAAAEF046-4 (SEQ ID NO:172)C SNNTGGKNSD ASSTEVSTKQ QTTQSSKKDS SNPDTTPTSTSSITIETTEN LKNRELNPTD DVSKTRRQLY EQGINSSTIT DKELKEYISE AKEQKKDVINYIKQKEF047-1 (SEQ ID NO:173)TAGGGAAAAC AAGGAGGAAT TCTTATGAAA AAGATAGGGC TTATTTCTAG TGCTTTTCTTTTAACCCTTG CTTTAGCAGC ATGCGGCGGC GGAAAAAGTA CAGAAAATAC GGATAGTCGTTCCAGTGCTG CGGAAAGTAC CACAGTCGAG AGTACAAAAG CATCTGCTAC AAAAGAATCAAGTAGCAAAG CAACAACAAA ATCTAGTGAT GCGAAACCGT CAGGAACAAC AACAGCTGATTCGAAAGCAA CAGCTTCTTC TACGAAGGAA GCGGCAAATA ATGGCTCAGC AGAGAAGCAATCACCAGCGA AAAATGCGAA TCCAGATGAC CAAGCCAACC AAGTGCTTAA CCAGCTAGCAAACATGTTTC CTGGTCAAGG CTTACCGCAG GCAATTTTAA CGAGTCAAAC GAATAACTTTTTAACTGCAG CGACAACTTC ACAAGCGGAT CAAAACAATT TCCGTGTTTT ATATTATGCAGAAAAAGAAG CGATTCCACT GAATGATGCA CGTGTCAATC AGTTAACGCC AATTAGTTCTTTTGAGAAAA AAACATATGG CTCTGATGCC GAACCAAAAA ATGCAGTGAA CCAAATCATTGACAATGGCG GTCAACCAGT AGATTTAGGT TACAATATTA CTGGGTATAA ACAAGGGGCGGCAGGTTCTA GTTACTTATC TTGGCAAGAA GGCAATTGGA GTTTAGTCGT ACGGGCCTCAAATATCAATG GTGAATCGCC TGATGATTTA GCGAAAAATG TTGTCAACAT TTTGGAACAACAAACATTAC CAGCACCGAA TACCGTTGGT CAAATCACAC TGAACGTGGC AGGAACCACTGACTATAATC GAAACTCAGT AGTTTGGCAA GCCGGTACAG TCGTTTACTC TGTCCATCATTTTGACCCAA TTCAAGCAGT GAAGATGGCA ACATCAATGT AAEF047-2 (SEQ ID NO:174)MKK IGLISSAFLL TLALAACGGG KSTENTDSRS SAAESTTVES TKASATKESSSKATTKSSDA KPSGTTTADS KATASSTKEA ANNGSAEKQS PAKNANPDDQ ANQVLNQLANMFPGQGLPQA ILTSQTNNFL TAATTSQADQ NNFRVLYYAE KEAIPVNDAR VNQLTPISSFEKKTYGSDAE AKNAVNQIID NGGQPVDLGY NITGYKQGAA GSSYLSWQEG NWSLVVRASNINGESPDDLA KNVVNILEQE TLPAPNTVGQ ITLNVAGTTD YNRNSVVWQA GTVVYSVHHFDPIQAVKMAT SMEF047-3 (SEQ ID NO:175)ATGCGGCGGC GGAAAAAGTA CACAAAATAC GGATAGTCGTTCCAGTGCTG CGGAAAGTAC CACAGTCGAG AGTACAAAAG CATCTGCTAC AAAAGAATCAAGTAGCAAAG CAACAACAAA ATCTACTGAT GCGAAACCGT CAGGAACAAC AACAGCTGATTCGAAAGCAA CAGCTTCTTC TACGAAGGAA GCGGCAAATA ATGGCTCAGC AGAGAAGCAATCACCAGCGA AAAATGCGAA TCCAGATGAC CAAGCCAACC AAGTGCTTAA CCAGCTAGCAAACATGTTTC CTGGTCAAGG CTTACCGCAG GCAATTTTAA CGAGTCAAAC GAATAACTTTTTAACTGCAG CGACAACTTC ACAAGCGGAT CAAAACAATT TCCGTGTTTT ATATTATGCAGAAAAAGAAG CGATTCCAGT GAATGATGCA CGTGTCAATC AGTTAACGCC AATTAGTTCTTTTGAGAAAA AAACATATGG CTCTGATGCC GAAGCAAAAA ATGCAGTGAA CCAAATCATTGACAATGGCG GTCAACCAGT AGATTTAGGT TACAATATTA CTGGGTATAA ACAAGGGGCGGCAGGTTCTA GTTACTTATC TTGGCAAGAA GGCAATTGGA GTTTAGTCGT ACGGGCCTCAAATATCAATG GTGAATCGCC TGATGATTTA GCGAAAAATG TTGTCAACAT TTTGGAACAAGAAACATTAC CAGCACCGAA TACCGTTGGT CAAATCACAC TGAACGTGGC AGGAACCACTGACTATAATC GAAACTCAGT AGTTTGGCAA GCCGGTACAG TCGTTTACTC TGTCCATCATTTTGACCCAA TTCAACCAGT GAAGATGGCA ACATCAATGT AAEF047-4 (SEQ ID NO:176)CGGG KSTENTDSRS SAAESTTVES TKASATKESSSKATTKSSDA KPSGTTTADS KATASSTKEA ANNGSAEKQS PAKNANPDDQ ANQVLNQLANMFPGQGLPQA ILTSQTNNFL TAATTSQADQ NNFRVLYYAE KEATPVNDAR VNQLTPTSSFEKKTYGSDAE AKNAVNQIID NGGQPVDLCY NITGYKQGAA GSSYLSWQEG NWSLVVRASNINGESPDDLA KNVVNILEQE TLPAPNTVGQ ITLNVAGTTD YNRNSVVWQA GTVVYSVHHFDPIQAVKMAT SMEF048-1 (SEQ ID NO:177)TAAGGAGAAA AGTTCATGAA AAAAAGAAAG GTTTTATTTA CAGCAGTTAT GGTATTGGCAGGATTACAGT TGCTAAGTGG TTGCGGCAAA ACAGAAGCTT CGGCAAATGA TACGGTAGTCTTGCGCTATG CGTATGCTAG TAATAGCCAA CCAGTTATCG ATTCTATGAA GAAATTCGGTGAATTAGTAG AGGAAAAAAC AGATGGTAAA GTTCAAATTG AATATTTTCC AGATGGTCAATTAGGAGGAC AAACAGAACT AATTGAATTA ACACAAACAG GTGCAATTCA TTTTGCAAAGGTCAGTGGAT CAGCATTAGA AAGTTTTTCT AAAGATTATT CTGTATTTGC CATTCCGTATATTTTTGATA ATGAAAAACA TTTTTTTAAA GTAATGCATA ATCAAGCGCT AATGCAACCAGTGTATGATT CTACAAAAAA ATTAGGATTT GTTGCTTTAA CTTATTATGA CTCTGGTCAACGAAGTTTTT ATATGAGCAA AGGGCCTGTT ACATCTCCAG ATGATTTGAA AGGTAAAAAAATTCGGCTCA TGCAAACTGA AACCGCCATC AAAATGGTAG AACTTTTAGG GGCTTCGCCAGTACCTATGG GTAGTTCGGA AGTATATACT TCTCTACAAT CTAATCTAAT CAACGGTGCAGAGAATAATC AGTTCGTTTT ATATACACCT GGTCATGCTG GTGTGGCTAA GTATTATTCTTATGATCAGC ATACTCGAGT GCCAGATATT GTGATTATGA ACGAGGGAAC AAAAGAACGTTTGACAGCGA AACAAGAACA ACCGATTGAA GAAGCAGCAA AACAATCGAC CGCTTTTGAAAAAACGGTCT TTAAAGAAGC GGTTGAAGAA GAAAAGAAAA AAGCACAAGC AGAATATGGCGTTGTGTTCA ATCAAGTAGA CAGTGAACCA TTCCAAAAAC TTGTTCAACC CTTGCATCAATCATTCAAAA ATAGCTCAGA ACATGGCGAA CTGTATCAGG CTATTCGCCA GTTGGCGGACTAAEF048-2 (SEQ ID NO:178)MKKRKV LFTAVMVLAG LQLLSGCGKT EASANDTVVL RYAYASNSQP VIDSMKKFGELVEEKTDGKV QIEYFPDGQL GOETELTELT QTGATDFAKV SGSALESFSK DYSVFAIPYIFDNEKHFFKV MDNQALMQPV YDSTKKLGEV GLTYYDSGQR SFYMSKGPVT SPDDLKGKKIRVMQSETAIK MVELLGGSPV PMGSSEVYTS LQSNLINGAE NNEFVLYTAG HGGVAKYYSYDEHTRVPDIV IMNEGTKERL TAKQEQATEE AAKESTAFEK TVFKEAVEEE KKKAQAEYGVVFNQVDSEPF QKLVQPLHES FKNSSEHGEL YQAIRQLADEF04S-3 (SEQ ID NO:179)TTGCGGCAAA ACAGAAGCTT CGGCAAATGA TACGGTAGTCTTGCGCTATG CGTATGCTAG TAATAGCCAA CCAGTTATCG ATTCTATGAA GAAATTCGGTGAATTAGTAG AGGAAAAAAC AGATGGTAAA GTTCAAATTG AATATTTTCC AGATGGTCAATTAGGACGAC AAACAGAACT AATTGAATTA ACACAAACAG GTGCAATTGA TTTTGCAAAGGTCAGTGGAT CACCATTAGA AAGTTTTTCT AAAGATTATT CTGTATTTGC CATTCCGTATATTTTTCATA ATGAAAAACA TTTTTTTAAA GTAATGGATA ATCAAGCGCT AATGCAACCAGTGTATGATT CTACAAAAAA ATTAGGATTT GTTGGTTTAA CTTATTATGA CTCTGGTCAACGAAGTTTTT ATATGAGCAA AGGGCCTGTT ACATCTCCAG ATGATTTGAA AGGTAAAAAAATTCGGGTCA TGCAAAGTGA AACCGCCATC AAAATGGTAG AACTTTTAGG GGGTTCGCCAGTACCTATGG GTAGTTCCGA ACTATATACT TCTCTACAAT CTAATCTAAT CAACGGTGCAGAGAATAATG AGTTCGTTTT ATATACAGCT GGTCATGGTG GTGTGGCTAA GTATTATTCTTATGATGAGC ATACTCGAGT GCCAGATATT GTGATTATGA ACGAGGGAAC AAAAGAACGTTTGACAGCGA AACAAGAACA AGCGATTGAA GAAGCAGCAA AAGAATCGAC CGCTTTTGAAAAAACGGTCT TTAAAGAAGC GGTTGAAGAA GAAAAGAAAA AAGCACAAGC AGAATATGGCGTTCTGTTCA ATCAAGTAGA CAGTOAACCA TTCCAAAAAC TTGTTCAACC GTTGCATGAATCATTCAAAA ATAGCTCAGA ACATGGCGAA CTGTATCAGG CTATTCGCCA GTTGGCGCACTAAEF048-4 (SEQ ID NO:180)CGKT EASANDTVVL RYAYASNSQP VIDSMKKFGELVEEKTDGKV QIEYFPDGQL OGETELIELT QTGAIDFAKV SCSALESFSK DYSVFAIPYIFDNEKHFFKV MDNQALMQPV YDSTKKLGFV GLTYYDSGQR SFYMSKGPVT SPDDLKGKKIRVMQSETAIK MVELLGGSPV PMGSSEVYTS LQSNLINGAE NNEFVLYTAG HCGVAKYYSYDEHTRVPDIV IMNEGTKERL TAKQEQATEE AAKESTAFEK TVFKEAVEEE KKKAQAEYGVVFNQVDSEPF QKLVQPLHES FKNSSEHGEL YQAIRQLADFF049-1 (SEQ ID NO:181)TGAGACTCTT TCTTTTTCAA AATGAGGTAT GGTATAGTTA TAACAGANAT AAAACTANAAAAAACAGGAG TGCATAAGAG AATGAAGAAA AAACTAATCT TAGCTGCAGC GGGCGCAATGGCCGTTTTTA GTTTAGCACC GTGTTCAAGC GCTTCAAAAC ATATCCCAAC AATGAAAGGTTCAACAATTA CTGTTGATGA TTTTTATAAC CAAATTAAAG AACAAAGCAC TAGCCAACAAGCGTTTAGCC AAATGGTTAT TTATAAAGTC TTTGAAGAAA AATATGGCGA CAAAGTAACTGACAAAGANA TTCAAAAAAA CTTTGACGAA GCCAAAGAAC AAGTAGAAGC ACAAGGCGGAAAGTTCTCTG ATGCATTAAA ACAAGCTCGT TTAACTGAAA AAACATTCAA GAAACAGTTAAAACAAAGAG CAGCCTATGA TGCAGGTCTA AAAGCCCACT TAAAAATTAC AGATGAAGACTTAAAAACAG CTTGGGCAAG TTTCCATCCA CAAGTAGAAG CACAAATTAT CCAAGTTGCTTCAGAAGATG ATGCCAAAGC TGTCAAGAAA GAAATCACTG ACGGCGGCGA TTTCACAAAAATTCCTAAAG AAAAATCAAC AGATACTGCT ACGAAAAAAG ATGGCGGTAA AATTAAATTTGATTCACAAG CAACAACTGT TCCTCCCGAA GTTAAAGAAG CTGCCTTCAA ATTAAAAGATGGCGAAGTGT CAGAACCAAT TGCTGCAACA AATATGCAAA CCTACCAAAC AACCTACTATGTAGTCAAAA TGACGAAAAA CAAAGCAAAA GGCAATCACA TGAAACCTTA TGAAAAAGACATCAAGAAAA TTGCTGAAGA AACAAAATTA GCCGATCAAA CATTTGTTTC GAAAGTCATTAGTGACGAAT TAAAAGCGGC CAATGTGAAA ATTAAAGATG ATGCCTTCAA GAACGCTTTAGCAGGCTACA TGCAAACTGA ATCTTCAAGC GCTTCTTCAG AGAAAAAAGA ATCAAAATCAAGTGATTCTA AAACAAGCGA TACCAAAACA AGCGACTCTG AAAAAGCAAC AGATTCTTCAAGCAAAACAA CAGAATCTTC TTCTAAATAAEF049-2 (SEQ ID NO:182)MKKK LILAAAGAIMA VFSLAACSSG SKDIATMKGSTITVDDFYNQ IKEQSTSQQA FSQMVIYKVF EEKYGDKVTD KXTQKNFDEA KEQVEAQGGKFSDALKQAGL TEKTFKKQLK QEAAYDAGLK AHLKITDEDL KTAWASFHPE VEAQIIQVASEDDAKAVKKE ITDGGDFTKI AKEKSTDTAT KKDGGKIKFD SQATTVPAEV KEAAFKLKDGEVSEPTAATN MQTYQTTYYV VKNTKNKAKG NDMKPYEKEI KKTAEETKLA DQTFVSKVTSDELKAANVKI KDDAFKNALA GYMQTESSSA SSEKKESKSS DSKTSDTKTS DSEKATDSSSKTTES SSKEF049-3 (SEQ ID NO:183)GTGTTCAAGC GGTTCAAAAG ATATCGCAAC AATGAAAGGTTCAACAATTA CTGTTGATGA TTTTTATAAC CAAATTAAAG AACAAAGCAC TAGCCAACAAGCGTTTAGCC AAATGGTTAT TTATAAAGTC TTTGAAGAAA AATATGGCGA CAAAGTAACTGACAAAGANA TTCAAAAAAA CTTTGACGAA GCCAAAGAAC AAGTAGAAGC ACAAGGCGGAAAGTTCTCTG ATGCATTAAA ACAAGCTGGT TTAACTGAAA AAACATTCAA GAAACACTTAAAACAAAGAG CAGCCTATGA TGCAGGTCTA AAAGCCCACT TAAAAATTAC AGATGAAGACTTAAAAACAG CTTGGGCAAG TTTCCATCCA GAAGTAGAAG CACAAATTAT CCAAGTTGCTTCAGAAGATG ATGCCAAAGC TGTCAAGAAA GAAATCACTG ACGGCGGCGA TTTCACAAAAATTGCTAAAG AAAAATCAAC AGATACTGCT ACGAAAAAAG ATGGCGGTAA AATTAAATTTGATTCACAAG CAACAACTGT TCCTGCCGAA GTTAAAGAAG CTGCCTTCAA ATTAAAAGATGGCGAAGTGT CAGAACCAAT TGCTGCAACA AATATGCAAA CCTACCAAAC AACCTACTATGTAGTGAAAA TGACGAAAAA CAAAGCAAAA GGCAATGACA TGAAACCTTA TGAAAAAGAGATCAAGAAAA TTGCTGAAGA AACAAAATTA GCCGATCAAA CATTTGTTTC GAAAGTCATTAGTGACGAAT TAAAAGCGGC CAATGTGAAA ATTAAAGATG ATGCCTTCAA GAACGCTTTAGCAGGCTACA TGCAAACTGA ATCTTCAAGC GCTTCTTCAG AGAAAAAAGA ATCAAAATCAAGTGATTCTA AAACAAGCGA TACCAAAACA AGCGACTCTG AAAAAGCAAC AGATTCTTCAAGCAAAACAA CAGAATCTTC TTCTAAATAAEF049-4 (SEQ lED NO:184)CSSG SKDIATMKGSTITVDDFYNQ IKEQSTSQQA FSQMVIYKVF EEKYGDKVTD KXIQKNFDEA KEQVEAQGGKFSDALKQAGL TEKTFKKQLK QRAAYDAGLK AHLKITDEDL KTAWASFHPE VEAQIIQVASEDDAKAVKKE ITDGGDFTKI AKEKSTDTAT KKDGGKIKFD SQATTVPAEV KEAAFKLKDGEVSEPIAATN MQTYQTTYYV VKNTKNKAKG NDMKPYEKEI KKIAEETKLA DQTFVSKVISDELKAANVKI KDDAFKNALA GYMQTESSSA SSEKKESKSS DSKTSDTKTS DSEKATDSSSKTTESSSKEF050-1 (SEQ ID NO:185)TAGGGTCTGG AAAAGCAGTC AACTGACTTC TTTTCCAAGC CCTTTTTTAG TTCATCGCAGAAAGGATGNA AAAAAATGAA CATGCCCAAA AATATCNGTT ATTTTTCTTT GCTAATGGGTCTTGTTCTAT TATTAAGTGC TTGCCAAATT GGGGCAACTA CGAAGGATGA CAACCAAGCCGCCACAAAAG AAGCAACTGT TGAGTTAAAC CGCACAACAA CACCAACGCT TTTTTTTCATGGTTACGCAG GAACTAAAAA TTCGTTTGGC TCCTTACTGC ATCGCTTGGA GAAACAAGGTGCCACAACTC AAGAATTAGT GCTACTCGTT AAACCTGATG GGACCGTGGT TAAAGAGCGAGGAGCTTTAA GTGGCAAAGC GACGAATCCC AGTGTTCAAG TTCTATTTGA AGATAATAAAAACAATGAAT GGAATCAAAC AGAATGGATA AAAAACACAT TACTCTATTT ACAAAAAAATTATCAAGTGA ACAAAGCCAA TATTGTCGGG CACTCTATGG GTGGTGTTAG TGGTTTACGTTATTTAGGAA CCTATGGGCA AGATACATCG TTACCTAAAA TTGAAAAATT CGTCAGCATTGGAGCACCTT TCAATGATTT TATTGATACG AGTCAACAGC AAACCATCGA AACGGAACTAGAAAACGGCC CCACAGAAAA AAGTAGCCGC TATTTGGATT ATCAAGAGAT GATTAATGTTGTTCCAGAAA AACTGCCCAT TTTATTAATT GGTGGTCAAT TAAGTCCAAC AGATTTAAGTGATGGAACGG TGCCGTTATC TAGTGCCTTA GCAGTCAACG CCTTGCTAAG ACAGCGAGGAACTCAAGTCA CTAGCCAGAT TATTAAAGGA GAAAATGCAC AACATAGTCA ATTACATGAAAATCCTGAAG TAGATCAATT GCTAATCGAA TTTCTATGGC CGAGTAAAAA ATAGEF050-2 (SEQ ID NO:186)HNMPKN IXYFSLLMGL VLLLSACQIG ATTKDDNQAATKEATVELNR TTTPTLFFHG YAGTKNSFGS LLHRLEKQGA TTQELVLLVK PDGTVVKERGALSGKATNPS VQVLFEDNKN NEWNQTEWIK NTLLYLQKNY QVNKANIVGH SMGGVSGLRYLGTYGQDTSL PKIEKFVSIG APFNDFIDTS QQQTIETELE NGPTEKSSRY LDYQEMINVVPEKLPILLIG GQLSPTDLSD GTVPLSSALA VNALLRQRGT QVTSQIIKGE NAQHSQLHENPEVDQLLIEF LWPSKKEF050-3 (SEQ ID NO:187)TTGCCAAATT GGGGCAACTA CGAAGGATGA CAACCAAGCCGCCACAAAAG AAGCAACTGT TCAGTTAAAC CGCACAACAA CACCAACGCT TTTTTTTCATGGTTACGCAG GAACTAAAAA TTCGTTTGGC TCGTTACTCC ATCGCTTGGA GAAACAAGGTGCCACAACTC AAGAATTAGT GCTACTCGTT AAACCTGATG GGACCGTCGT TAAAGAGCGAGGAGCTTTAA GTGGCAAAGC GACGAATCCC AGTGTTCAAG TTCTATTTGA AGATAATAAAAACAATGAAT GGAATCAAAC AGAATGGATA AAAAACACAT TACTCTATTT ACAAAAAAATTATCAAGTGA ACAAAGCCAA TATTGTCGGG CACTCTATGG GTGGTGTTAG TCGTTTACGTTATTTAGGAA CCTATGGGCA AGATACATCG TTACCTAAAA TTGAAAAATT CGTCAGCATTGGAGCACCTT TCAATGATTT TATTGATACG AGTCAACAGC AAACCATCGA AACGGAACTAGAAAACGGCC CCACAGAAAA AAGTAGCCGC TATTTGGATT ATCAAGAGAT GATTAATGTTGTTCCAGAAA AACTGCCCAT TTTATTAATT GGTGGTCAAT TAAGTCCAAC AGATTTAAGTGATGGAACGG TGCCGTTATC TAGTGCCTTA GCAGTCAACG CCTTGCTAAG ACAGCGAGGAACTCAAGTCA CTAGCCAGAT TATTAAAGGA GAAAATGCAC AACATAGTCA ATTACATGAAAATCCTGAAG TAGATCAATT GCTAATCGAA TTTCTATGCC CGAGTAAAAA ATAGEF050-4 (SEQ ID NO:188)CQIG ATTKDDNQAATKEATVELNR TTTPTLFFHG YAGTKNSFGS LLHRLEKQGA TTQELVLLVK PDGTVVKERGALSGKATNPS VQVLFEDNKN NEWNQTEWIK NTLLYLQKNY QVNKANIVGH SMGGVSGLRYLGTYGQDTSL PKIEKFVSIG APFNDFIDTS QQQTIETELE NGPTEKSSRY LDYQEMINVVPEKLPILLIG GQLSPTDLSD GTVPLSSALA VNALLRQRGT QVTSQIIKGE NAQHSQLHENPEVDQLLIEF LWPSKKEF051-1 (SEQ ID NO:189)TAAAAGAAAA GAGGCGTTCA AATGTCTAAA CAAAAAAAGG CTGTGTTCCT GCTTAGTTTATTCAGTTTAG TTGCCCTAAT TGCTGCATGT ACAAATCAGC CGCAAAAAGA AACAGTTTCAACAAAAAAAG AAGAAATAAC CCTTGCGGCA GCAGCTAGCT TAGAATCAGT CATGGAGAAGAAAATTATTC CAGCCTTTGA AAAAGAGCAT CCAGATATTC AGGTAACTGG AACCTATGATAGTTCTGGAA AATTACAGAT GCAAATTGAA AAAGGCCTAA AAGCCGATGT ATTTTTCTCAGCTTCGACAA AACAAATGAA TGCATTGGTT GCAGAAAAAC TAATTAATAA AAAAAGTGTCGTTCCTTTAT TGGAAAACCA GCTCGTTCTT ATTGTGCCTA ACCAAGATCA AGCAAAGTGGCATGATTTTT CTGATTTAAA AAAAGCCCAA ATGATAGCAA TTGGTGATCC TGCAAGTGTTCCAGCTGGTC AATATGCCGA AGAAGGCTTA AAAGCTTTAG GCGCTTGGTC TTATGTAGAAAAACACGCAA GCTTTGGCAC GAATGTAACA GAAGTCCTTG AATGGGTAGC TAATGCAAGTGCAGAAGCTG GCTTAGTTTA TGCGACAGAT GCAGCAACCA ATTCAAAAGT AGCGATTGTTGCGGCCATGC CTGAAGCTGT TTTGAAAAAG CCAATTATCT ATCCAGTTGG TAAAGTTGCCGCCTCTAAGA AACAAAAATC AGCAGATGCT TTTTTAAATT TTTTACAGAG TCAACAATGCAGAAAATATT TTGANAATAT TGGCTTTAAG TTAACAAAGT AGEF051-2 (SEQ ID NO:190)MSKQ KKAVFLLSLF SLVALIAACT NQPQKETVST KKEEITLAAA ASLESVMEKKIIPAFEKEHP DIQVTGTYDS SGKLQMQIEK GLKADVFFSA STKQMNALVA EKLINKKSVVPLLENQLVLI VPNQDQAKWH DFSDLKKAQM IAIGDPASVP AGQYAEEGLK ALGAWSYVEKHASFGTNVTE VLEWVANASA EAGLVYATDA ATNSKVAIVA AMPEAVLKKP IIYPVGKVAASKKQKSADAF LNFLQSQQCR KYFXNIGFKL TKEF051-3 (SEQ ID NO:191)ATGT ACAAATCAGC CGCAAAAAGA AACAGTTTCAACAAAAAAAG AAGAAATAAC CCTTGCGGCA GCAGCTAGCT TAGAATCAGT CATGGAGAAGAAAATTATTC CAGCCTTTGA AAAAGAGCAT CCAGATATTC AGGTAACTGG AACCTATGATAGTTCTGGAA AATTACAGAT GCAAATTGAA AAAGGCCTAA AAGCCGATGT ATTTTTCTCAGCTTCGACAA AACAAATGAA TGCATTGGTT GCAGAAAAAC TAATTAATAA AAAAAGTGTCGTTCCTTTAT TGGAAAACCA GCTCGTTCTT ATTGTGCCTA ACCAAGATCA AGCAAAGTGGCATGATTTTT CTGATTTAAA AAAAGCCCAA ATGATAGCAA TTGGTGATCC TGCAAGTGTTCCAGCTGGTC AATATGCCGA AGAAGGCTTA AAAGCTTTAG GCGCTTGGTC TTATGTAGAAAAACACGCAA GCTTTGGCAC GAATGTAACA GAAGTCCTTG AATGGGTAGC TAATGCAAGTGCAGAAGCTG GCTTAGTTTA TGCGACAGAT GCAGCAACCA ATTCAAAAGT AGCGATTGTTGCGGCCATGC CTGAAGCTGT TTTGAAAAAG CCAATTATCT ATCCAGTTGG TAAAGTTGCCGCCTCTAAGA AACAAAAATC AGCAGATGCT TTTTTAAATT TTTTACAGAG TCAACAATGCAGAAAATATT TTGANAATAT TGGCTTTAAG TTAACAAAGT AGEF051-4 (SEQ ID NO:192)CT NQPQKETVST KKEEITLAAA ASLESVMEKKIIPAFEKEHP DIQVTGTYDS SGKLQMQIEK GLKADVFFSA STKQMNALVA EKLINKKSVVPLLENQLVLI VPNQDQAKWH DFSDLKKAQM IAIGDPASVP AGQYAEEGLK ALGAWSYVEKHASFGTNVTE VLEWVANASA EAGLVYATDA ATNSKVAIVA AMPEAVLKKP IIYPVGKVAASKKQKSADAF LNFLQSQQCR KYFXNIGFKL TKEF052-1 (SEQ ID NO:193)TAAAGTAGGA GAAGCGCAAG CGAAAAAAGT GAATCAATCG GCAGCGTATC AAGTAGTGATCCCACAATGG GTACCATGGG TAGCATTATC TTTGACAGTA GCACTTGCTG GATTGATTGCTTACTTAGTT CGTCGTGGAG AGAAGTGGAA AAACGAAGGG GAAGTGACAT AATGAGANGANGAAATCTTC NGTTTTTATT ATTGTTGGTT CTATTAATTT ATATTCCTCA AACAACTTATGCAGAAAATA GGGAGACCAC AGAAGTCGGA ATCGGGTTTA CAAAAACTTC AGACATACCATCAAAAAAAA ATCCAGTTGT GAATGTATTG CCGCAAACAA CCATTCAATC GCTATCAATCGTTCGTAGCA GAACGCAAAT AAAAAGATTA CCTAAAACTG GTGACAATCG AATAACTTGGCTAAGCTGGT TTGGCATATT GTTTTTAATA AGTAGTTTTT GGCTGTTTCT ATTTAGACAATTATGTAGAA AAGGAGAATA AEF052-2 (SEQ ID NO:194)MRXXNLXFLLLLVL LIYIPQTTYA ENRETTEVOT GFTKTSDIPS KKNPVVNVLP QTTIQSLSIVRSRTQIKRLP KTGDNRITWL SWFGILFLIS SFWLFLFRQL CRKGEEF052-3 (SEQ ID NO:195)AGAAAATA GGGAGACCAC AGAAGTCGGA ATCGGGTTTA CAAAAACTTC AGACATACCATCAAAAAAAA ATCCAGTTGT GAATGTATTG CCGCAAACAA CCATTCAATC GCTATCAATCGTTCGTAGCA GAACGCAAAT AAAAAGATEF052-4 (SEQ ID NO:196)ENRETTEVGI GFTKTSDIPS KKNPVVNVLP QTTIQSLSIVRSRTQIKREF053-1 (SEQ ID NO:197)TAGTCATGGC ACCATAACAA GGAGGAGAGA AGTGAGATGA AAAAATACCT TTTGCTTAGTTGTTTTTTAG GTCTTTTCAG CTTCTGTCAT TCACACACTG CGTTTGGAGA AGCAGCTTATGAAAATAGTG GTGTTGTCTC CTTTTATGGA ACGTATGAAT ATCCCACAGA AGAGTCGACAACAGCGACTA GTAATTCTTC CACAACGACC GAACCCACCA AGCCAGCTGA CCGAGGCGCTTCATCCGTCC TTTCTTCTGG CGTATATGGA TCGCGACAAG GAAGATTACC AGCGACAGGTACCACCAATC AAGCACCATT TATTTATTTG GGAATCAGCC TTATCACTAT ACGCATATTATTTATTAAAA GGAGAAGAGA AGATGAAAAA AACAGTATTA GCAGTAGTAG GGATTGTAGGATTTAGEF053-2 (SEQ ID NO:198)MKKYLLLSC FLGLFSFCHS DTAFGEAAYE NSGVVSFYGT YEYPTEESTTATSNSSTTTE PTKPADGGAS SVLSSGVYGS RQGRLPATGT TNQAPFIYLG ISLITIGILFIKRRREDEKN SISSSRDCRIEF053-3 (SEQ lED NO:199)TTTGGACA AGCAGCTTATGAAAATAGTG GTGTTGTCTC CTTTTATGGA ACGTATGAAT ATCCCACAGA AGAGTCGACAACAGCGACTA GTAATTCTTC CACAACGACC GAACCCACCA AGCCAGCTGA CGGAGGCGCTTCATCCGTCC TTTCTTCTGG CGTATATCGA TCGCGACAAG GAAGAEF053-4 (SEQ ID NO:200)FGEAAYE NSGVVSFYGT YEYPTEESTTATSNSSTTTE PTKPADGGAS SVLSSGVYGS RQGREF054-1 (SEQ ID NO:201)TAAATAAAAA ATTATTTGGA GGAAATTACA ATGAAAAAAA TTATTTTATC AAGCTTGTTTAGTGCAGTAC TAGTATTCGG TGGCGGAAGT ATAACAGCAT TCGCTGACGA TTTAGGACCAACAGATCCAG CAACTCCACC AATTACCGAA CCAACTGATT CTAGTGAACC TACGAATCCTACTGACCCGG TGGATCCTGC AGAACCGCCA GTAATACCAA CTGATCCAAC AGAACCAAGCAAGCCAACCG AGCCTACAAC ACCGAGTGAG CCAGAAAAGC CAACAGAACC AACAACGCCAATTGATCCTG GAACGCCGGT TGAACCGACT GAACCAAGCG AGCCAACAGA ACCTAGTCAACCAACCGAGC CTACAACACC AAGCGAACCA GAAAAACCTG TTACTCCAGA ACAACCGAAAGAACCAACTC AACCAGTGAT TCCAGAAAAA CCAGCAGAAC CAGAAACACC AAAAACTCCTGAACAGCCCA CTAAACCAAT AGACGTAGTC GTTACACCTA GTGGAGAAAT TGATAAAACGAATCAATCGG CAGGAACACA ACCAAGTATT CCTATTGAAA CAAGCAACTT AGCGGAGGTAACACATGTAC CAAGTGAAAC TACTCCAATT ACAACAGAAG CTGGGGAAGA AATTGTAGCAGTAGATAAAG GTGTTCCGTT AACCAAAACA CCAGAAGGAT TAAAACCAAT TAGCAGCTCGTATAAGGTTT TACCTAGCGG AAACGTTGAG GTAAAAGCAA GTGATGGAAA AATGAAAGTATTGCCACATA CAGGAGAGAA ATTCACACTC CTTTTCTCTG TATTGGGAAG CTTCTTTGTATTAATTTCAG GATTCTTTTT CTTTAAAAAG AATAAGAAAA AAGCTTAAEF054-2 (SEQ ID NO:202)M KKIILSSLFS AVLVFGGGSI TAFADDLGPT DPATPPITEP TDSSEPTNPTEPVDPAEPPV IPTDPTEPSK PTEPTTPSEP EKPTEPTTPI DPGTPVEPTE PSEPTEPSQPTEPTTPSEPE KPVTPEQPKE PTQPVIPEKP AEPETPKTPE QPTKPIDVVV TPSGEIDKTNQSAGTQPSIP IETSNLAEVT HVPSETTPIT TEAGEEIVAV DKGVPLTKTP EGLKPISSSYKVLPSGNVEV KASDGKMKVL PHTGEKFTLL FSVLGSFFVL ISGFFFFKKN KKKAEF054-3 (SEQ ID NO:203)AACAGATCCAG CAACTCCACC AATTACCGAA CCAACTGATT CTAGTGAACC TACGAATCCTACTGAGCCGG TGGATCCTGC AGAACCGCCA GTAATACCAA CTGATCCAAC AGAACCAAGCAAGCCAACCG AGCCTACAAC ACCGAGTGAC CCAGAAAAGC CAACAGAACC AACAACGCCAATTGATCCTG GAACGCCGGT TGAACCGACT GAACCAAGCG AGCCAACAGA ACCTAGTCAACCAACCGAGC CTACAACACC AAGCGAACCA GAAAAACCTG TTACTCCAGA ACAACCGAAACAACCAACTC AACCAGTGAT TCCAGAAAAA CCAGCAGAAC CAGAAACACC AAAAACTCCTGAACAGCCCA CTAAACCAAT AGACGTAGTC GTTACACCTA GTGGAGAkAT TGATAAAACGAATCAATCGG CAGGAACACA ACCAAGTATT CCTATTGAAA CAAGCAACTT AGCGGAGGTAACACATGTAC CAAGTGAAAC TACTCCAATT ACAACAGAAG CTGGGGAAGA AATTGTAGCAGTAGATAAAG GTGTTCCGTT AACCAAAACA CCAGAAGGAT TAAAACCAAT TAGCAGCTCGTATAAGGTTT TACCTAGCGG AAACGTTGAG GTAAAAGCAA GTGATGGAAA AATGAAAGTATEF054-4 (SEQ ID NO:204)DDLGPT DPATPPITEP TDSSEPTNPTEPVDPAEPPV IPTDPTEPSK PTEPTTPSEP EKPTEPTTPI DPGTPVEPTE PSEPTEPSQPTEPTTPSEPE KPVTPEQPKE PTQPVIPEKP AEPETPKTPE QPTKPIDVVV TPSGEIDKTNQSAGTQPSTP IETSNLAEVT HVPSETTPIT TEAGEEIVAV DKGVPLTKTP EGLKPISSSYKVLPSGNVEV KASDGKMKVEF055-1 (SEQ ID NO:205)TAACAAAAGG TTGTTTTGTC TTTCTTGTGT AAAAGGGCAA GAAAGGCTAG CGAGTTAAAAGGAGGTTTTT CAATGAAAAA AAAGCGTTAT TTAATGATTG TGTGTCTACT ATCTTCTCCTAGTTTTTTTA TAAATGTTGA AGCGTCTGAT GGTCGTTCTA GTTCGGTGGG GATTGAATTTTACCAAAATC CGAGAACACC CGCTCCTAAA GATCCCCCAC CGAAAACAGA TGCGCCAGCTGCTGATCCCA AGGAACCAGC TGGTCCTCCG CAAGGAGATC AACGAAGTGG TGGTTCGACACAGACCACCA CAACTGGCTC AACGCTCCCT CGTACAGGGA GCAAGAGTCA GGCAAATTTGAGCATTCTCN GNTTCGCCTT AATCGGTTTG GCGGGAATCG TACATAGAAA GAAGGGACGACATGAAGCAA ACTAAEF055-2 (SEQ ID NO:206)MKKKRYL MIVCLLSSPS FFINVEASDG GSSSVGIEFYQNPRTPAPKD PPPKTDAPAA DPKEPAGPPQ GDQRSGGSTQ TTTTGSTLPR TGSKSQANLSILXFALIGLA GIVHRKKGRH EANEF055-3 (SEQ ID NO:207)AGCGTCTGAT GGTGGTTCTA GTTCGGTGGG CATTGAATTTTACCAAAATC CGAGAACACC CGCTCCTAAA GATCCCCCAC CCAAAACAGA TGCGCCAGCTGCTGATCCCA AGGAACCAGC TGGTCCTCCG CAAGGAGATC AACGAAGTGG TGGTTCGACACAGACCACCA CAACTCGCTC AACGEE055-4 (SEQ ID NO:208)SDG GSSSVGIEEYQNPRTPAPKD PPPKTDAPAA DPKEPAGPPQ GDQRSGGSTQ TTTTGSTEF056-1 (SEQ ID NO:209)TAAATGAAAA AAAAGCGTTA TTTAATAATT GCGTGTTTAC TATTTTCCCC TAGTTTTTTTATAAATGTTG AAGCATCTGA GGGTGGTTCT AGTTCGCTGG GAATTGAATT TTACCAAAATCCGGCAACAC CCGCTCCTAA AGATGCCCCA CCGAAAACAG ATGAGCCAGC TGCGGATCCCAAGGAACCAG CTGGTCCTCT GCAAGGAGAT CAACGAAGTG GTGGTTCGAC ACAGACCACCACAGCTGGCT CGCAGCTCCC TCGTACAGGA AGCAAGAGTC AGGCAAACCT GAGCATTCTTGGTCTTGTCT TGATTGGTCT TGTCGGAATG GTCCAGAGAA AGAAGGGACG ACATGAAGCAAACTAAEF056-2 (SEQ ID NO:210)MKKKRYLIIA CLLFSPSFFI NVEASEGGSS SVGIEFYQNP ATPAPKDAPP KTDEPAADPKEPAGPLQGDQ RSGGSTQTTT AGSQLPRTGS KSQANLSTLG LVLLGLVGMV QRKKGRHEANEF056-3 (SEQ ID NO:211)ATCTGA GGGTC-GTTCT AGTTCGGTGG GAATTGAATT TTACCAAAATCCGGCAACAC CCGCTCCTAA AGATGCCCCA CCGAAAACAG ATGAGCCAGC TGCGGATCCCAAGGAACCAG CTGGTCCTCT GCAAGGAGAT CAACGAAGTG GTGGTTCGAC ACAGACCACCACAGCTGGCT CGCAGEF056-4 (SEQ ID NO:212)SEGGSS SVGIEFYQNP ATPAPKDAPP KTDEPAADPKEPAGPLQGDQ RSGGSTQTTT AGSQEF057-1 (SEQ ID NO:213)TAATGTTTAT TGGCTGGCCC AGTCAATGTT GAAAATGGGG AAGCAGGAAT TCAGATGAAAATCATAAAAA GGTTTAGTTT GGTATGTTTA GGGCTATTGA TCATTGGGTT GCNAACAAAAAGCGNTATGG CTGAAGAAAA TAATTATGAA TCAAATGGTC AAGCGAGCTT CTATGGTACCTACGTTTATG AGAATGAAAA AGAGTCAAAT GACGTAGCGT ATACCCAACA ATCAGAAGAACAGGGAAGAA ACAATTTAGC TGCTTCTGGA CAAGCAGTTT TACCTAAAAC AGCCGAGTCTGAAAATCCGC TGTATTCCTT GATAGGAGTT AGTTTGTTGG GGATAGTCAT TTATTTAATTAATAAAATGA AACGAGAGAA GGAGTTTATT TAAEF057-2 (SEQ ID NO:214)MKI IKRFSLVCLG LLIIGLXTKS XMAEENNYES NGQASFYGTYVYENEKESND VAYTQQSEEQ GRNNLAASGQ AVLPKTGESE NPLYSLIGVS LLGIVIYLINKMKREKEFIEF057-3 (SEQ ID NO:215)AAA TAATTATGAA TCAAATGGTC AAGCGAGCTT CTATGGTACCTACGTTTATG AGAATGAAAA AGAGTCAAAT GACGTAGCGT ATACCCAACA ATCAGAAGAACAGGGAAGAA ACAATTTAGC TGCTTCTGGA CAAGCAGTTTEF057-4 (SEQ ID NO:216)EENNYES NGQASFYGTYVYENEKESND VAYTQQSEEQ GRNNLAASGQ AVEF058-1 (SEQ ID NO:217)TGAAGAACGT TCTATTTGGT TGACGATTGC AGGCCTGCTA ATCATTGGGA TGCTAGTCATTTGGCTATTT TATCAAAAAC AAAAAAGAGG AGAGAGAAAA TGAAGCAATT AAAAAAAGTTTGGTACACCG TTAGTACCTT GTTACTAATT TTGCCACTTT TCACAAGTGT ATTAGGGACAACAACTGCAT TTGCAGAAGA AAATGGGGAG AGCGCACAGC TCGTGATTCA CAAAAACAAAATGACGGATT TACCAGATCC GCTTATTCAA AATAGCGGGA AAGAAATGAG CGAGTTTGATAAATATCAAC GACTGGCAGA TGTGACGTTT AGTATTTATA ACGTGACGAA CGAATTTTACGAGCAACGAG CGGCAGGCGC AAGCGTTGAT GCAGCTAAAC AAGCTGTCCA AAGTTTAACTCCTGGGAAAC CTGTTGCTCA AGOAACCACC GATGCAAATG GGAATGTCAC TGTTCAGTTACCTAAAAAAC AAAATGGTAA AGATGCAGTG TATACCATTA AAGAAGAACC AAAAGAGGGTGTAGTTGCTG CTACGAATAT GGTGGTGGCG TTCCCAGTTT ACGAAATGAT CAAGCAAACAGATGGTTCCT ATAAATATGG AACAGAAGAA TTAGCGGTTG TTCATATTTA TCCTAAAAATGTGGTAGCCA ATGATGGTAG TTTACATGTG AAAAAAGTAG GAACTGCTGA AAATGAAGGATTAAATGGCG CAGAATTTGT TATTTCTAAA AGCGAAGGCT CACCAGGCAC AGTAAAATATATCCAAGGAG TCAAAGATGG ATTATATACA TGGACAACGG ATAAAGAACA AGCAAAACGCTTTATTACTG GGAAAAGTTA TGAAATTGGC GAAAATGATT TCACAGAAGC AGAGAATGGAACGGGAGAAT TAACAGTTAA AAATCTTGAG GTTGGTTCGT ATATTTTAGA AGAAGTAAAAGCTCCAAATA ATGCAGAATT AATTGAAAAT CAAACAAAAA CACCATTTAC AATTGAAGCAAACAATCAAA CACCTGTTGA AAAAACAGTC AAAAATGATA CCTCTAAAGT TGATAAAACAACACCAAGCT TAGATGGTAA AGATGTGGCA ATTGGCGAAA AAATTAAATA TCAAATTTCTGTAAATATTC CATTGGGGAT TGCAGACAAA GAAGGCGACG CTAATAAATA CGTCAAATTCAATTTAGTTG ATAAACATGA TGCAGCCTTA ACTTTTGATA ACGTGACTTC TGGAGAGTATGCTTATGCGT TATATGATGG GGATACAGTG ATTGCTCCTG AAAATTATCA AGTGACTGAACAAGCAAATG GCTTCACTGT CGCCGTTAAT CCAGCGTATA TTCCTACGCT AACACCAGGCGGCACACTAA AATTCGTTTA CTTTATGCAT TTAAATGAAA AAGCAGATCC TACGAAAGGCTTTAAAAATG AGGCGAATGT TGATAACGGT CATACCGACG ACCAAACACC ACCAACTGTTGAAGTTGTCA CAGGTGGGAA ACGTTTCATT AAAGTCGATG GCGATGTGAC AGCGACACAAGCCTTGGCGG GAGCTTCCTT TGTCGTCCGT GATCAAAACA GCGACACAGC AAATTATTTGAAAATCGATG AAACAACGAA AGCAGCAACT TGGGTCAAAA CAAAAGCTGA AGCAACTACTTTTACAACAA CGGCTGATGG ATTAGTTGAT ATCACAGGGC TTAAATACGG TACCTATTATTTAGAAGAAA CTGTAGCTCC TGATGATTAT GTCTTGTTAA CAAATCGGAT TGAATTTGTGGTCAATGAAC AATCATATGG CACAACAGAA AACCTAGTTT CACCAGAAAA AGTACCAAACAAACACAAAG GTACCTTACC TTCAACAGGT GGCAAAGGAA TCTACGTTTA CTTAGGAAGTGGCGCAGTCT TGCTACTTAT TGCAGGAGTC TACTTTGCTA GACGTAGAAA AGAAAATGCTTAAEF058-2 (SEQ ID NO:218)MKQLKKVW YTVSTLLLIL PLFTSVLGTTTAFASENGES AQLVIHKKKM TDLPDPLIQN SGKEMSEFDK YQGLADVTFS IYNVTNEFYEQRAAGASVDA AKQAVQSLTP GKPVAQGTTD ANGNVTVQLP KKQNGKDAVY TIKEEPKEGVVAATNNVVAF PVYEMIKQTD GSYKYGTEEL AVVHIYPKNV VANDGSLHVK KVGTAENEGLNGAEFVISKS EGSPGTVKYI QGVKDGLYTW TTDKEQAKRF ITGKSYEIGE NDFTEAENGTGELTVKNLEV GSYILEEVKA PNNAELIENQ TKTPFTIEAN NQTPVEKTVK NDTSKVDKTTPSLDGKDVAI GEKIKYQISV NIPLGIADKE GDANKYVKFN LVDKHDAALT FDNVTSGEYAYALYDGDTVI APENYQVTEQ ANGFTVAVNP AYIPTLTPGG TLKFVYFMHL NEKADPTKGFKNEANVDNGH TDDQTPPTVE VVTGGKRFIK VDGDVTATQA LAGASFVVRD QNSDTANYLKIDETTKAATW VKTKAEATTF TTTADGLVDI TGLKYGTYYL EETVAPDDYV LLTNRIEFVVNEQSYGTTEN LVSPEKVPNK HKGTLPSTGG KGIYVYLGSG AVLLLIAGVY FARRRKENAEF058-3 (SEQ ID NO:219)AGAAGA AAATGGGGAG AGCGCACAGC TCGTGATTCA CAAAAAGAAAATGACGGATT TACCAGATCC GCTTATTCAA AATAGCGGGA AAGAAATGAG CGAGTTTCATAAATATCAAG GACTGGCAGA TGTGACGTTT AGTATTTATA ACGTGACGAA CGAATTTTACGAGCAACGAG CGGCAGGCGC AAGCGTTCAT GCACCTAAAC AAGCTGTCCA AAGTTTAACTCCTGGGAAAC CTGTTGCTCA AGGAACCACC GATGCAAATG GGAATGTCAC TGTTCAGTTACCTAAAAAAC AAAATGGTAA AGATGCAGTG TATACCATTA AAGAAGAACC AAAAGAGGGTGTAGTTGCTG CTACGAATAT GGTGGTGGCG TTCCCAGTTT ACGAAATGAT CAAGCAAACAGATOOTTOCT ATAAATATGG AACAGAAGAA TTAGCGGTTG TTCATATTTA TCCTAAAAATOTOCTAGOCA ATGATGGTAG TTTACATGTG AAAAAAGTAG GAACTGCTGA AAATGAAGGATTAAATGGCG CAGAATTTGT TATTTCTAAA ACCGAAGGCT CACCAGGCAC AGTAAAATATATCCAAGGAG TCAAAGATGG ATTATATACA TGGACAACGG ATAAAGAACA AGCAAAACGCTTTATTACTG GGAAAAGTTA TGAAATTGGC GAAAATGATT TCACAGAAGC AGAGAATGGAACGGGAGAAT TAACAGTTAA AAATCTTGAG GTTGGTTCGT ATATTTTAGA AGAAGTAAAAGCTCCAAATA ATGCAGAATT AATTGAAAAT CAAACAAAAA CACCATTTAC AATTGAAGCAAACAATCAAA CACCTGTTGA AAAAACAGTC AAAAATGATA CCTCTAAAGT TGATAAAACAACACCAAGCT TAGATGGTAA AGATGTGGCA ATTGGCGAAA AAATTAAATA TCAAATTTCTGTAAATATTC CATTGGGGAT TGCAGACAAA GAAGGCGACG CTAATAAATA CGTCAAATTCAATTTAGTTG ATAAACATGA TGCAGCCTTA ACTTTTGATA ACGTGACTTC TGGAGAGTATGCTTATGCGT TATATGATGG GGATACAGTG ATTGCTCCTG AAAATTATCA AGTGACTGAACAAGCAAATG GCTTCACTGT CGCCGTTAAT CCAGCGTATA TTCCTACGCT AACACCAGGCGGCACACTAA AATTCGTTTA CTTTATGCAT TTAAATGAAA AAGCAGATCC TACGAAAGGCTTTAAAAATG AGGCGAATGT TGATAACGGT CATACCGACG ACCAAACACC ACCAACTGTTGAAGTTGTGA CAGGTGGGAA ACGTTTCATT AAAGTCGATG GCGATGTGAC AGCGACACAAGCCTTGGCGG GAGCTTCCTT TCTCGTCCCT GATCAAAACA GCGACACAGC AAATTATTTGAAAATCGATG AAACAACCAA AGCAGCAACT TGGGTGAAAA CAAAAGCTGA AGCAACTACTTTTACAACAA CGGCTGATGG ATTAGTTGAT ATCACAGGGC TTAAATACGG TACCTATTATTTAGAAGAAA CTGTAGCTCC TGATGATTAT GTCTTGTTAA CAAATCGGAT TGAATTTGTGGTCAATGAAC AATCATATGG CACAACAGAA AACCTAGTTT CACCAGAAAA AGTACCAAACAAACACAAAG GTACCTTACC TEF058-4 (SEQ ID NO:220)FENGES AQLVIHKKKM TDLPDPLJIQN SGKENSEFDK YQGLADVTFS IYNVTNEFYEQEAAGASVDA AKQAVQSLTF GKPVAQGTTD ANGNVTVQLP KKQNGKDAVY TIKEEPKEGVVAATNMVVAF PVYEMIKQTD GSYKYGTEEL AVVHIYPKNV VANDGSLHVK KVGTAENEGLNGAEFVISKS EGSPGTVKYI QGVKDGLYTW TTDKEQAKRF ITGKSYEIGE NDFTEAENGTGELTVKNLEV GSYILEEVKA PNNAELIENQ TKTPFTIEAN NQTPVEKTVK NDTSKVDKTTPSLDGKDVAI GEKIKYQISV NTPLGIADKE GDANKYVKFN LVDKHDAALT FDNVTSGEYAYALYDGDTVI APENYQVTEQ ANGFTVAVNP AYIPTLTFGG TLKFVYFMHL NEKADPTKGFKNEANVDNGH TDDQTPPTVE VVTGGKRFIK VDGDVTATQA LAGASFVVRD QNSDTANYLKIDETTKAATW VKTKAEATTF TTTADGLVDT TGLKYGTYYL EETVAPDDYV LLTNRTEFVVNEQSYGTTEN LVSPEKVPNK HKGTFF059-1 (SEQ ID NO:221)TAGATTGGAA GAATGAAAAT GAAAAAAATG ATTATTATTG CCTTATTCAG TACAAGCCTTTTAGCAGGGG GAAGCAGTGT TTCTGCTTAT GCGCAAGAAT CAGAAGGAAA TCTTGGTGAAACAACAGGGA GTGTTTTACC AGATGAACCG AATGTACCAA CTGACCCAAT AACGCCAAGTGAGCCAGAGC AACCAACAGA GCCAAGTACA CCAGAGCAAC CATCGGAACC GTCAACACCAACCGAACCTA GTGAGCCTTC AAAACCGACG GATCCTTCGT TACCAGACGA ACCGAGCGTACCAACAGAGC CAACAACGCC AAGTAAGCCA GAGCAACCAA CAGAGCCAAC AACGCCAAGTGTACCAGAGC AACCAACAGA GCCAAGTGTA CCAGAAAAAC CAGTAGAACC AAATAAACCAACCGAGCCAG AAAAGCCTGT GCCAGTTGTT CCTGAAAAAC CAGTTGTACC ACAACAACCAGAGCAACCAA CAGATGTGGT GGTAAAGCCA AATGGAGAAA TTGCAACAGG AGAATCTACACAACAGCCAA CTGTTCCAAT TGAAACGAAT AACCTTTCAG AAGTAACACA TGTCCCAACTGTGACGACAC CGATTGAAAC AGCAAGCGGA GAAGCAATTG TCGCAGTGGA TAAGGGCGTTCCTTTAACAC AAACGGCTGA TGGATTAAAA CCGATTAAAA GTGAATATAA AGTATTACCAAGTGGCAATG TACAAGTGAA AAGTGCTGAC GGAAAAATGA AAGTACTTCC TTACACTGGTGAAAAAATGG GCATAATTGG GTCAATCCCT GGTGTATGTT TGACTGTTTT ATCAGGAATCTTAATTTATA AAAAACGTAA AGTGTAGEF059-2 (SEQ ID NO:222)MKKMI IIALFSTSLL AGGSSVSAYA QESEGNLGET TGSVLPDEPN VPTDPITPSEPEQPTEPSTP EQPSEPSTPT EPSEPSKPTD PSLPDEPSVP TEPTTPSKPE QPTEPTTPSVPEQPTEPSVP EKPVEPNKPT EPEKPVPVVP EKPVVPQQPE QPTDVVVKPN GEIATGESTQQPTVPIETNN LSEVTHVPTV TTPIETASGE AIVAVDKGVP LTQTADGLKP IKSEYKVLPSGNVQVKSADC KMKVLPYTGE KMGIIGSIAG VCLTVLSGIL IYKKRKVEF059-3 (SEQ ID NO:223)AGAAGGAAA TCTTGGTGAAACAACAGGGA GTGTTTTACC AGATGAACCG AATGTACCAA CTGACCCAAT AACGCCAAGTGAGCCAGAGC AACCAACAGA GCCAAGTACA CCAGAGCAAC CATCGGAACC GTCAACACCAACCGAACCTA GTGAGCCTTC AAAACCGACG GATCCTTCGT TACCAGACGA ACCGAGCGTACCAACAGACC CAACAACGCC AAGTAAGCCA GAGCAACCAA CAGAGCCAAC AACGCCAAGTGTACCAGAGC AACCAACAGA GCCAACTGTA CCAGAAAAAC CACTAGAACC AAATAAACCAACCGAGCCAG AAAAGCCTGT GCCAGTTGTT CCTGAAAAAC CAGTTGTACC ACAACAACCAGAGCAACCAA CAGATGTGGT CGTAAAGCCA AATGGAGAAA TTGCAACAGG AGAATCTACACAACAGCCAA CTGTTCCAAT TGAAACGAAT AACCTTTCAG AAGTAACACA TGTCCCAACTGTGACGACAC CGATTGAAAC AGCAAGCGGA GAAGCAATTG TCGCAGTGGA TAAGGGCGTTCCTTTAACAC AAACGGCTGA TGGATTAAAA CCGATTAAAA GTGAATATAA AGTATTACCAAGTGGCAATG TACAAGTGAA AAGTGCTGAC GGAAAAATGA AAGTACEF059-4 (SEQ ID NO:224)EGNLGET TGSVLPDEPN VPTDPITPSEPEQPTEPSTP EQPSEPSTPT EPSEPSKPTD PSLPDEPSVP TEPTTPSKPE QPTEPTTPSVPEQPTEPSVP EKPVEPNKPT EPEKPVPVVP EKPVVPQQPE QPTDVVVKPN GEIATGESTQQPTVPIETNN LSEVTHVPTV TTPIETASGE AIVAVDKGVP LTQTADGLKP IKSEYKVLPSGNVQVKSADG KNKVEF060-1 (SEQ ID NO:225)TGAAAAATAG ACAAGGAGCA CGCGATGATG ACAATGAAAA GTAAAGGGTC ACTTCTGGTGACGTTGGGAA TACTTTTAAC CGTTGGCATT GCGAGTCTAA TTGTTTCTTC TGAGAGTTTTGCAGAAGAAG TAGGGCAAAC GAATATCGGT GTAACGTTCT ATGGAGGAAA AGAGCCACTAAAAACGGAAG CTGTCATTAA GCCAATAGAG CAACCAGTCA CTC-ATAAAGA TAAAAAAACGTCACAACAAC AAGACAAAGT GAGCAGAAAA ACCACTGCTA AAACGAATCC GACTAATGCACAGACGTCAT TACCAAGGAC AGGTGAACGA AATAGCACGT GGCTTTACAG CCTTGGTATTGCCTGTTTAC TCGTAGTACT AACAAGTTTC TATTATTTGA ATAAAAAAAG GAAAAAGGAAAAATAAEF060-2 (SEQ ID NO:226)MMT MKSKGSLLVT LGILLTVGIA SLIVSSESFA EEVGQTNIGV TFYGGKEPLKTEGVIKPIEQ PVTDKDKKTS QQQDKVSRKT TAKTNPTNAQ TSLPRTGERN STWLYSLGIACLLVVLTSFY YLNKKRKKEKEF060-3 (SEQ ID NO:227)AGAAGAAG TAGCGCAAAC CAATATCGGT GTAACGTTCT ATGGAGCAAA AGAGCCACTAAAAACGGAAG GTGTCATTAA GCCAATAGAG CAACCAGTCA CTGATAAAGA TAAAAAAACGTCACAACAAC AAGACAAAGT GAGCAGAAAA ACCACTGCTA AAACGAATCC GACTAATGCACAGACCTCATEE060-4 (SEQ ID NO:228)EEVGQTNIGV TFYGGKEPLKTEGVIKPIEQ PVTDKDKKTS QQQDKVSRKT TAKTNPTNAQ TSEF061-1 (SEQ ID NO:229)TAATGGAACG ACCCACAGAA GAAGATTTTG AACTTACAAA TTAAAATTAA AATGGAGGAAATAATGATGA AAAAAATTCT TTTTGCTAGT TTATTTAGTG CCACACTACT ATTTGGGGGAAGTGAAATTT CTGCTTTTGC ACAAGAAATT ATCCCTGATG ATACTACGAC ACCGCCCATTGAAGTACCAA CACAACCAAG TACACCAGAA AAGCCAACAG ATCCAACACC GCCAATTGAGCCACCTGTAG ACCCTGTAGA GCCACCTATT ACACCAACGG AGCCAACAGA ACCGACAGAGCCGACAACAC CAACAGAACC TACAACTCCT ACAGAGCCAA GTGAACCAGA ACAACCAACGGAGCCAAGTA AACCAGTAGA ACCTGAAAAA CCAGTTACAC CAAGCAAACC AGCAGAACCCGAAAAAACTG TGACACCAAC TAAACCAACA GAATCTGAAA AACCAGTACA ACCAGCAGAACCAAGCAAGC CAATCGACGT TGTTGTAACG CCAACAGGGG AATTAAATCA CGCTGGAAATGGTACACAAC AGCCAACAGT CCCTATTGAA ACAAGTAATT TGGCAGAAAT CACGCACGTGCCTAGTGTAA CAACACCTAT TACAACTACA GACGGAGAAA ACATTGTAGC TGTAGAAAAAGGTCTTCCAC TTACACAAAC AGCAGAAGGG TTAAAACCTA TTCAATCNAG TTACAAAGTATTGCCTAGCG GAAATGTAGA AGTAAAAGGT AAGGACGGTA AAATGAAGGT TTTACCATACACAGGTGAAC AAATGAATAT CTTTTTATCT GCCGTAGCGG TATCTTGTCT GTAGEF061-2 (SEQ ID 140:230)MKKKTLFASL FSATLLFGGS EISAFAQEII PDDTTTPPIEVPTEPSTPEK PTDPTPPIEP PVDPVEPPIT PTEPTEPTEP TTPTEPTTPT EPSEPEQPTEPSKPVEPEKP VTPSKPAEPE KTVTPTKPTE SEKPVQPAEP SKPIDVVVTP TGELNHAGNGTQQPTVPIET SNLAEITHVP SVTTPITTTD GENIVAVEKO VPLTQTAEGL KPIQSSYKVLPSGNVEVKGK DGKNKVLPYT GEEMNIELSA VAVSCLEF061-3 (SEQ ID 140:231)GAAATTT CTGCTTTTGC ACAAGAAATT ATCCCTGATG ATACTAGGAC ACCGCCCATTGAAGTACCAA CAGAACCAAG TACACCAGAA AAGCCAACAG ATCCAACACC GCCAATTGAGCCACCTGTAG ACCCTGTAGA GCCACCTATT ACACCAACGG AGCCAACAGA ACOGACACAGCCGACAACAC CAACAGAACC TACAACTCCT ACAGAGCCAA GTGAACCAGA ACAACCAACGGAGCCAAGTA AACCAGTAGA ACCTGAAAAA CCAGTTACAC CAAGCAAACC AGCAGAACCCGAAAAAACTG TGACACCAAC TAAACCAACA GAATCTGAAA AACCAGTACA ACCAGCAGAACCAAGCAAGC CAATCGACGT TGTTGTAACG CCAACAGGGG AATTAAATCA CGCTGGAAATGGTACACAAC AGCCAACAGT CCCTATTGAA ACAAGTAATT TGGCAGAAAT CACGCACGTGCCTAGTGTAA CAACACCTAT TACAACTACA GACGGAGAAA ACATTGTAGC TGTAGAAAAAGGTGTTCCAC TTACACAAAC AGCAGAAGGG TTAAAACCTA TTCAATCNAG TTACAAAGTATTGCCTAGCG GAAATGTAGA AGTAAAAGGT AAGGACGGTA AAATGAAGGT TTEF061-4 (SEQ ID NO:232)QEII PDDTTTPPIEVPTEPSTPEK PTDPTPPIEP PVDPVEPPIT PTEPTEPTEP TTPTEPTTPT EPSEPEQPTEPSKPVEPEKP VTPSKPAEPE KTVTPTKPTE SEKPVQPAEP SKPIDVVVTP TGELNHAGNGTQQPTVPIET SNLAEITHVP SVTTPTTTTD GENIVAVEKG VPLTQTAEGL KPIQSSYKVLPSGNVEVKGK DGKMKVEF062-1 (SEQ ID NO:233)TGATTCTTGA AGCAACAAAT GAAAGCAAAA AAACAATATA AGACATATAA AGCTAAGAATCACTGGGTAA CTGTCCCTAT TCTTTTTCTA AGTGTGTTAG GAGCCGTAGG ATTAGCTACTGATAATGTAC AAGCCGCGGA ATTAGATACG CAACCAGAAA CAACGACGGT TCAACCCAATAACCCCGACC TGCAGTCAGA AAAGGAAACA CCTAAAACGG CAGTATCTGA AGAAGCAACAGTACAAAAAG ACACTACTTC TCAACCGACC AAAGTAGAAG AAGTAGCGCC AGAAAATAAAGGTACTGAAC AAAGTTCAGC TACCCCAAAT GATACCACAA ACGCGCAACA ACCAACAGTAGGACCTGAAA AATCAGCACA AGAACAACCA GTAGTAAGCC CTGAAACAAC CAATGAACCTCTAGGGCACC CAACAGAAGT TGCACCAGCT GAAAATGAAG TGAATAAATC AACGTCCATTCCTAAAGAAT TTGAAACACC AGACGTTGAT AAAGCAGTTG ATGAAGTAAA AAAAGATCCAAACATTACCG TTGTTGAAAA ACCAGCAGAA GACTTAGGCA ACGTTTCTTC TAAAGATTTAGCTGCAAAAG AAAAAGAAGT AGACCAACTA CAAAAAGAAC AAGCGAAAAA GATTCCCCAACAAGCAGCTG AATTAAAAGC CAAAAATGAA AAAATTGCCA AAGAAAATGC AGAAATTGCGGCAAAAAACA AAGCNGAAAA AGAGCGNTAN GANAAAGAAG TCGCNGAATA CAACAAGCATAAGAACGAAA ACAGCTATGT CAATGAAGCG ATTAGTAAAA ACCTAGTGTT CGATCAATCTGTCGTGACGA AAGACACTAA AATTTCGTCG ATTAAAGGCG GAAAATTTAT CAAAGCAACTGATTTTAATA AAGTAAATGC AGGGGATTCA AAAGATATCT TTACAAAATT ACGGAAAGATATGGGNGGGA AAGNTACTGG CAACTTCCAG AATTCCTTTG TAAAAGAGGC AAATCTTGGGTCTAATGGTG GGTATGCGGT TCTTTTAGAA AAAAATAAAC CAGTGACACT GACCTATACAGGACTAAACG CTAGTTATTT AGGACGTAAA ATTACAAAAG CAGAATTTGT TTATGAACTACAATCCTCAC CAAGCCAAAG TGGAACGTTA AATGCAGTAT TTTCAAACGA TCCGATTATCACNGCTTTTA TTGGTACAAA CAGAGTCAAT GGTAAGGATG TTAAAACACG CTTAACGATTAAGTTCTTTG ATGCGTCAGG TAAAGAAGTA CTACCAGATA AAGATAGTCC ATTTGCGTATGCGCTGTCTT CTTTAAATTC AAGTTTAACG AATAAAGGTG GCCATGCGGA ATTTGTTTCTGATTTTGGGG CNAACAATGC GTTCAAATAC ATTAATGGNT CNTATGTGAA AAAACAAGCGGATGGAAAAT TTTACTCACC GGAAGATATT GACTATGGCA CAGGACCTTC TGGATTGAAAAATAGTGATT GGGACGCTGT AGGTCACAAG AATGCCTACT TTGGTTCAGG TGTAGGTCTAGCNAATGGNC GTATTTCCTT TTCTTTTGGT ATGACAACAA AAGGAAAAAG TAATGTGCCTGTATCTAGTG CGCAATGGTT TGCCTTTAGN ACTAACTTAA ATGCGCAATC AGTGAAGCCTATTTTCAATT ATGGGAATCC AAAAGAACCA GAAAAAGCAA CGATTGAATT CAATNGATACAAAGCCAATG TCGTTCCTGT NCTTGTGCCN AATAAAGAAG TCACTCATGG NCAGAAAAATNTCAATGATT TAAATGTGAA NCGTGGCGAT TCTTTACAAT ACATTGTGAC AGGGGATACGACAGAACTTG CCAAAGTAGA TCCAAAAACA GTAACNAAAC AAGGGATTCG AGATACNTTTGATGCAGAAA AACTGACGAT TGATTTATCC AAAGTGAAAG TTTATCAAGC AGACGCAAGTCTNAACGANA AAGACTNAAA AGCTGTTGCT GCAGCNATTA ATTCAGGAAN AGCTAAAGACGTGACTGCTT CTTATGANCT CAATTTAGAT CAAAACACCG TCACAGCAAT GATGAAAACCAACGCNGACG GNTCNGTTGT TTTAGCAATG GGGTATAAAT ATTTACTTGT CTTGCCGTTTGTAGTGAAAA ATGTAGAAGG CGATTTTGAA AATACAGCTG TTCAGCTGAC AAANGATGGNGAAACGGTAA CAAATACAGT GATTAACCAT GTGCCAGGTA GTAATCCTTC CAAAGATGTAAAAGCAGATA AAAACGGTAC AGTTGGCAGT GTTTCTCTAC ATGATAAAGA TATTCCGTTACAAACAAAAA TTTATTATGA AGTGAAATCT TCCGAACGTC CAGCNAACTA TGGCGGAATNACNGAAGAAT GGGGCATGAA TGATGTCTTG GACACGACCC ATGATCGTTT CACAGGNAAATGGCACGCTA TTACNAANTA TGACCTTAAA GTAGGGGANA AAACGTTAAA AGCAGGAACAGATATTTCTG CCTACATTCT TTTAGAAAAC AAAGACAATA AAGACTTGAC GTTTACNATGAATCAAGCAT TATTGGCNGC NTTAAATGAA GGAAGCAATA AAGTAGGCAA ACAAGCTTGGTCTGTGTATC TGCAACTCGA ACGGATNAAA ACAGOTOACO TAGAAAACAC GCAAACAGAAAACTACAACA AAGAGCTTGT NCGTTCTAAT ACNGTCCTCA CGCATACNCC TGATGATCCAAAACCAACCA AAGCCGTTCA TAACAAGAAA CGGGAACANA TTAANCATGG AAAAGTNGCTCGTGGTGATG TTCTTTCTTA TGAAATGACN TGGGACTTAA AAGGGTACGA TAAAGACTTTGCCTTTGATA CACTOGATOT TOCCACAGOC GTTTCTTTCT TCGATGATTA CGATGAAACGAANGTGACAC CAATCAAAGA CTTACTTCGT GTCAAAGATT CTAAAGGGGN AGACATTACOAACCAGTTCA CGATCTCNTG GGACGATGCC AAAGGCACGG TGACNATNTC TGCCAAAGACCCACAAGCCT TTATTCTAGC GNATGGTGGG CAAGAATTGC GTGTAACNCT CCCTACAAAAGTCAAAGCCG ATGTTTCTGG NGATGTTTAT AATTCAGCGG AACAAAATAC ATTTGGNCAACGAATTAAAA CCAATACNGT TGTCAACCAT ATTCCAAAAG TGAANCCTAA AAAAGACGTGGTTATTAAAG TNGGTGACAA ACAAAGTCAA AATGGNGCCA CAATCAAATT AGGGGAGAANTTCTTCTATG AATTTACAAG TAGTGACATT CCTCCAGAAT ACGCTGGNGT TGTGGAAGAATGGTCGATTA GCGATAAACT AGACGTCAAA CATGACAAAT TTAGTGGCCA ATGGTCTGTGTTTGCCAATT CTAATTTTGT TTTAGCAGAC GGAACCAAAG TGAATAAAGG GGACGACATTTCGAAACTAT TCACGATGAC CTTTGAACAA GGGGTAGTGA AAATCACGGC CAGTCAAGCCTTTTTNGATG CGATGAATCT AAAAGAAAAC AAAAACGTTC CACACTCATG GAAAGCGTTCATTGGTGTAG AACGAATTGC GGCAGGAGAC GTTTACAACA CAATCGAAGA ATCTTTCAACAATGAGAAGA TTAAAACNAA TACGGTAGTG ACNCATACGC CAGAAAAACC ACAAACNCCACCAGAAAAAA CAGTCATTGT ACCACCAACA CCAAAAACAC CGCAAGCACC ACTAGAGOCATTAGTGGTAG AAAAGGCAAG TGTNGTGCCA GAATTGCCGC AAACAGGCGA AAAACAAAATGTCTTATTAA CGGTAGCTGG TAGTTTAGCC GCAATGCTTG GCTTAGCAGG CTTAGGCTTTAAACGTAGAA AAGAAACAAA ATAAEF062-2 (SEQ ID NO:234)MKAKK QYKTYKAKNH WVTVPILFLS VLCAVGLATD NVQAAELDTQ PETTTVQPNNPDLQSEKETP KTAVSEEATV QKDTTSQPTK VEEVAPENKG TEQSSATPND TTNAQQPTVGAEKSAQEQPV VSPETTNEPL GQPTEVAPAE NEVNKSTSIP KEFETPDVDK AVDEVKKDPNITVVEKPAED LGNVSSKDLA AKEKEVDQLQ KEQAKKIAQQ AAELKAKNEK IAKENAEILAAKNKAEKERXX KEVAEYNKHK NENSYVNEAI SKNLVFDQSV VTKDTKISSI KGGKFIKATDFNKVNAGDSK DIFTKLRKDM GGKXTGNFQN SFVKEANLGS NGGYAVLLEK NKPVTVTYTGLNASYLGRKI TKAEFVYELQ SSPSQSGTLN AVFSNDPIIT AFIGTNRVNG KDVKTRLTIKFFDASGKEVL PDKDSPFAYA LSSLNSSLTN KGGHAEFVSD FGANNAFKYI NGSYVKKQADGKFYSPEDTD YGTGPSGLKN SDWDAVGHKN AYFGSGVGLA NGRISFSFGM TTKGKSNVPVSSAQWFAFXT NLNAQSVKPI FNYGNPKEPE KATIEFNXYK ANVVPVLVPN KEVTDGQKNXNDLNVXRGDS LQYIVTGDTT ELAKVDPKTV TKQGIRDTFD AEKVTIDLSK TKVYQADASLNXKDXKAVAA AINSGXAKDV TASYXLNLDQ NTVTAMMKTN ADGSVVLANG YKYLLVLPFVVKNVEGDFEN TAVQLTXDGE TVTNTVINHV PGSNPSKDVK ADKNGTVGSV SLHDKDIPLQTKIYYEVKSS ERPANYGGXT EEWGMNDVLD TTHDRFTGKW HATTXYDLKV GXKTLKAGTDISAYILLENK DNKDLTFTNN QALLAALNEG SNKVGKQAWS VYLEVERXKT GDVENTQTENYNKELVRSNT VVTHTPDDPK PTKAVHNKKG EXIXHGKVAR GDVLSYEMTW DLKGYDKDFAFDTVDLATGV SFFDDYDETX VTPIKDLLRV KDSKGXDTTN QFTISWDDAK GTVTXSAKDPQAFILAXGGQ ELRVTLPTKV KADVSGDVYN SAEQNTFGQR IKTNTVVNHI PKVXPKKDVVIKVGDKQSQN GATIKLGEXF FYEFTSSDTP AEYAGVVEEW SISDKLDVYH DKFSGQWSVFANSNFVLADG TKVNKGDDIS KLFTMTFEQG VVKITASQAF XDAMNLKENK NVAHSWKAFIGVERIAAGDV YNTIEESFNN EKIKTNTVVT HTPEKPQTPP EKTVIVPPTP KTPQAPVEPLVVEKASVVPE LPQTGEKQNV LLTVAGSLAA MLGLAGLGFK RRKETKEF062-3 (SEQ ID NO:235)TGATTCTTGA AGCAACAAAT GAAAGCAAAA AAACAATATA AGACATATAA AGCTAAGAATCACTGGGTAA CTGTCCCTAT TCTTTTTCTA AGTGTGTTAG GAGCCGTAGG ATTAGCTACTGATAATGTAC AAGCCGCGCA ATTAGATACG CAACCAGAAA CAACGACGGT TCAACCCAATAACCCCGACC TGCAGTCAGA AAAGGAAACA CCTAAAACGG CAGTATCTGA AGAAGCAACAGTACAAAAAG ACACTACTTC TCAACCGACC AAAGTAGAAG AAGTAGCGCC AGAAAATAAAGGTACTGAAC AAAGTTCAGC TACCCCAAAT GATACCACAA ACGCGCAACA ACCAACAGTAGGAGCTGAAA AATCAGCACA AGAACAACCA GTAGTAAGCC CTGAAACAAC CAATGAACCTCTAGGGCAGC CAACAGAAGT TGCACCAGCT GAAAATGAAG TGAATAAATC AACGTCCATTCCTAAAGAAT TTGAAACACC AGACGTTGAT AAAGCAGTTG ATCAAGTAAA AAAAGATCCAAACATTACCG TTGTTGAAAA ACCAGCAGAA GACTTAGGCA ACGTTTCTTC TAAAGATTTAGCTGCAAAAG AAAAAGAAGT AGACCAACTA CAAAAAGAAC AAGCGAAAAA CATTGCCCAACAAGCAGCTG AATTAAAAGC CAAAAATGAA AAAATTGCCA AAGAAAATGC AGAAATTGCGGCAAAAAACA AAGCNGAAAA AGAGCGNTAN CANAAAGAAG TCGCNGAATA CAACAAGCATAAGAACGAAA ACAGCTATCT CAATGAAGCG ATTAGTAAAA ACCTAGTGTT CGATCAATCTGTCGTGACGA AAGACACTAA AATTTCGTCG ATTAAACGCG GAAAATTTAT CAAAGCAACTGATTTTAATA AAGTAAATGC AGGGGATTCA AAAGATATCT TTACAAAATT ACGGAAAGATATGGGNGGGA AAGNTACTGG CAACTTCCAG AATTCCTTTG TAAAAGAGGC AAATCTTGGGTCTAATGGTG GGTATGCGGT TCTTTTAGAA AAAAATAAAC CAGTGACAGT GACCTATACAGGACTAAACG CTAGTTATTT AGGACGTAAA ATTACAAAAG CAGAATTTGT TTATGAACTACAATCCTCAC CAAGCCAAAG TGGAACGTTA AATGCAGTAT TTTCAAACGA TCCGATTATCACNGCTTTTA TTGGTACAAA CAGAGTCAAT GGTAAGGATG TTAAAACACG CTTAACGATTAAGTTCTTTG ATGCGTCAGG TAAAGAAGTA CTACCAGATA AAGATAGTCC ATTTGCGTATGCGCTGTCTT CTTTAAATTC AAGTTTAACG AATAAAGGTG GCCATGCGGA ATTTGTTTCTGATTTTGGGG CNAACAATGC GTTCAAATAC ATTAATGGNT CNTATGTGAA AAAACAAGCGGATGGAAAAT TTTACTCACC GGAAGATATT GACTATGCCA CACGACCTTC TGGATTGAAAAATAGTGATT GGGACGCTGT AGGTCACAAG AATGCCTACT TTGGTTCAGG TGTAGGTCTAGCNAATGGNC GTATTTCCTT TTCTTTTGGT ATGACAACAA AAGGAAAAAG TAATGTCCCTGTATCTAGTG CGCAATGGTT TGCCTTTAGN ACTAACTTAA ATGCGCAATC AGTGAAGCCTATTTTCAATT ATGGGAATCC AAAAGAACCA GAAAAAGCAA CGATTGAATT CAATNGATACAAAGCCAATG TCGTTCCTGT NCTTGTGCCN AATAAAGAAG TCACTGATGG NCAGAAAAATNTCAATGATT TAAATGTGAA NCGTGGCGAT TCTTTACAAT ACATTGTGAC AGGGGATACGACAGAACTTC CCAAAGTAGA TCCAAAAACA GTAACNAAAC AAGGGATTCG AGATACNTTTGATGCAGAAA AAGTGACGAT TGATTTATCC AAAGTGAAAG TTTATCAAGC AGACGCAAGTCTNAACGANA AAGACTNAAA ACCTGTTGCT GCAGCNATTA ATTCAGGAAN AGCTAAAGACGTGACTGCTT CTTATGANCT CAATTTAGAT CAAAACACCG TCACAGCAAT GATGAAAACCAACGCNGACG GNTCNGTTGT TTTAGCAATG GGGTATAAAT ATTTACTTGT CTTGCCGTTTGTAGTGAAAA ATGTAGAAGG CGATTTTGAA AATACAGCTG TTCAGCTGAC AAANGATGGNGAAACGGTAA CAAATACAGT GATTAACCAT GTGCCAGGTA GTAATCCTTC CAAAGATGTAAAAGCAGATA AAAACGGTAC AGTTGGCAGT GTTTCTCTAC ATGATAAAGA TATTCCGTTACAAACAAAAA TTTATTATGA AGTGAAATCT TCCGAACGTC CAGCNAACTA TGGCGGAATNACNGAAGAAT GGGGCATGAA TGATGTCTTG GACACGACCC ATGATCGTTT CACAGGNAAATGGCACGCTA TTACNAANTA TGACCTTAAA GTAGGGGANA AAACGTTAAA AGCAGGAACAGATATTTCTG CCTACATTCT TTTAGAAAAC AAAGACAATA AAGACTTGAC GTTTACNATGAATCAAGCAT TATTGGCNGC NTTAAATGAA GGAAGCAATA AAGTAGGCAA ACAAGCTTGGTCTGTGTATC TGGAAGTCGA ACGGATNAAA ACAGGTGACG TAGAAAACAC GCAAACAGAAAACTACAACA AAGAGCTTGT NCGTTCTAAT ACNGTGGTGA CGCATACNCC TGATGATCCAAAACCAACCA AAGCCGTTCA TAACAAGAAA GGGGAAGANA TTAANCATCG AAAAGTNGCTCGTGGTGATG TTCTTTCTTA TGAAATGACN TGGGACTTAA AAGGGTACGA TAAAGACTTTGCCTTTGATA CAGTCGATCT TGCGACAGGC GTTTCTTTCT TCGATGATTA CGATGAAACGAANGTGACAC CAATCAAAGA CTTACTTCGT GTCAAAGATT CTAAAGGGGN AGACATTACGAACCAGTTCA CGATCTCNTG GGACGATGCC AAAGGCACCG TGACNATNTC TGCCAAAGACCCACAAGCCT TTATTCTAGC GNATGGTGGG CAAGAATTGC GTGTAACNCT CCCTACAAAAGTCAAAGCCG ATGTTTCTGG NGATGTTTAT AATTCAGCGG AACAAAATAC ATTTGGNCAACGAATTAAAA CCAATACNGT TGTCAACCAT ATTCCAAAAG TGAANCCTAA AAAAGACGTGGTTATTAAAG TNGGTGACAA ACAAAGTCAA AATGGNGCCA CAATCAAATT AGGGGAGAANTTCTTCTATG AATTTACAAG TAGTGACATT CCTGCAGAAT ACGCTGGNGT TGTGGAAGAATCGTCGATTA GCGATAAACT AGACGTCAAA CATGACAAAT TTAGTGGCCA ATGGTCTGTGTTTGCCAATT CTAATTTTGT TTTAGCAGAC GGAACCAAAG TGAATAAAGC GGACCACATTTCGAAACTAT TCACGATGAC CTTTGAACAA GGGGTAGTGA AAATCACGGC CAGTCAAGCCTTTTTNGATG CGATGAATCT AAAAGAAAAC AAAAACGTTG CACACTCATG GAAAGCGTTCATTGGTGTAC AACGAATTGC GOCAGGAGAC GTTTACAACA CAATCGAAGA ATCTTTCAACAATGAGAAGA TTAAAACNAA TACGGTAGTG ACNCATACCC CAGAAAAACC ACAAACNCCACCAGAAAAAA CAGTGATTGT ACCACCAACA CCAAAAACAC CGCAAGCACC AGTAGAGCCATTAGTGGTAG AAAAGGCAAC TGEF062-4 (SEQ ID NO:236)AELDTQ PETTTPVQPNNPDLQSEKETP KTAVSEEATV QKDTTSQPTK VEEVAPENKC TEQSSATPND TTNAQQPTVGAEKSAQEQPV VSPETTNEPL GQPTEVAPAE NEVNKSTSIP KEFETPDVDK AVDEVKKDPNITVVEKPAED LGNVSSKDLA AKEKEVDQLQ KEQAKKIAQQ AAELKAKNEK IAKENAEIAAKNKAEKERXX KEVAEYNKHK NENSYVNEAI SKNLVFDQSV VTKDTKISSI KGGKFIKATDENKVNAGDSK DIFTKLRKDM GGKXTGNFQN SFVKEANLGS NGGYAVLLEK NKPVTVTYTGLNASYLGRKI TKAEFVYELQ SSPSQSGTLN AVFSNDPIIT AFIGTNRVNG KDVKTRLTIKFFDASGKEVL PDKDSPEAYA LSSLNSSLTN KGGHAEEVSD FGANNAFKYI NGSYVKKQADGKFYSPEDID YGTGPSGLKN SDWDAVGHKN AYFGSGVGLA NGRISFSFGM TTKGKSNVPVSSAQWFAFXT NLNAQSVKPI FNYGNPKEPE KATIEFNXYK ANVVPVLVPN KEVTDGQKNXNDLNVXRGDS LQYIVTGDTT ELAKVDPKTV TKQGTRDTFD AEKVTIDLSK VKVYQADASLNXKDXKAVAA AINSGXAKDV TASYXLNLDQ NTVTAMMKTN ADGSVVLANG YKYLLVLPFVVKNVEGDFEN TAVQLTXDGE TVTNTVINHV PGSNPSKDVK ADKNGTVGSV SLHDKDIPLQTKIYYEVKSS ERPANYGGXT EEWGMNDVLD TTHDRETGKW HAITXYDLKV GXKTLKAGTDISAYILLENK DNKDLTFTMN QALLAALNEG SNKVGKQAWS VYLEVERXKT CDVENTQTENYNKELVRSNT VVTHTPDDPK PTKAVHNKKG EXIXHGKVAR GDVLSYEMTW DLKGYDKDFAFDTVDLATGV SEFDDYDETX VTPIKDLLRV KDSKGXDITN QFTISWDDAK GTVTXSAKDPQAFILAXGGQ ELRVTLPTKV KADVSGDVYN SAEQNTFGQR IKTNTVVNHI PKVXPKKDVVIKVGDKQSQN GATTKLGEXF FYEFTSSDIP AEYAGVVEEW SISDKLDVKH DKFSGQWSVFANSNFVLADG TKVNKGDDIS KLFTMTFEQG VVKITASQAF XDAMNLKENK NVAHSWKAFTGVERIAAGDV YNTTEESFNN EKIKTNTVVT HTPEKPQTPP EKTVIVPPTP KTPQAPVEPLVVEKASVSF063-1 (SEQ ID NO:237)TGATTCTTGA AGCAACAAAT GAAAGCAAAA AAACAATATA AGACATATAA AGCTAAGAATCACTGGGTAA CTGTCCCTAT TCTTTTTCTA AGTGTGTTAG GAGCCGTACG ATTAGCTACTGATAATGTAC AAGCCGCGGA ATTAGATACO CAACCAGAAA CAACGACGGT TCAACCCAATAACCCCGACC TGCAGTCAGA AAAGGAAACA CCTAAAACGG CAGTATCTGA AGAAGCAACAGTACAAAAAG ACACTACTTC TCAACCGACC AAAGTAGAAG AAGTAGCGCC AGAAAATAAAGGTACTGAAC AAAGTTCAGC TACCCCAAAT GATACCACAA ACGCGCAACA ACCAACAGTAGGAGCTGAAA AATCAGCACA AGAACAACCA GTAGTAAGCC CTGAAACAAC CAATGAACCTCTAGGGCAGC CAACAGAAGT TGCACCAGCT GAAAATGAAG TGAATAAATC AACGTCCATTCCTAAAGAAT TTGAAACACC AGACGTTGAT AAAGCAGTTG ATGAAGTAAA AAAAGATCCAAACATTACCG TTGTTGAAAA ACCAGCAGAA GACTTAGGCA ACGTTTCTTC TAAAGATTTAGCTGCAAAAG AAAAAGAAGT AGACCAACTA CAAAAAGAAC AAGCGAAAAA GATTGCCCAACAAGCAGCTG AATTAAAAGC CAAAAATGAA AAAATTGCCA AAGAAAATGC AGAAATTGCGGCAAAAAACA AAGCNGAAAA AGAGCGNTAN GANAAAGAAG TCGCNGAATA CAACAAGCATAAGAACGAAA ACAGCTATGT CAATGAAGCG ATTAGTAAAA ACCTAGTGTT CGATCAATCTGTCGTGACGA AAGACACTAA AATTTCGTCG ATTAAAGGCG GAAAATTTAT CAAAGCAACTGATTTTAATA AAGTAAATGC AGGGGATTCA AAAGATATCT TTACAAAATT ACGGAAAGATATGGGNGGGA AAGNTACTGG CAACTTCCAG AATTCCTTTG TAAAAGAGGC AAATCTTGGGTCTAATGGTG GGTATGCGGT TCTTTTAGAA AAAAATAAAC CAGTGACAGT GACCTATACAGGACTAAACG CTAGTTATTT AGGACGTAAA ATTACAAAAG CAGAATTTGT TTATGAACTACAATCCTCAC CAAGCCAAAG TGGAACGTTA AATGCAGTAT TTTCAAACGA TCCGATTATCACNGCTTTTA TTGGTACAAA CAGAGTCAAT GGTAAGGATG TTAAAACACG CTTAACGATTAAGTTCTTTG ATGCGTCAGG TAAAGAAGTA CTACCAGATA AAGATAGTCC ATTTGCGTATGCGCTGTCTT CTTTAAATTC AAGTTTAACG AATAAAGGTG GCCATGCGGA ATTTGTTTCTGATTTTGGGG CNAACAATGC GTTCAAATAC ATTAATGGNT CNTATGTGAA AAAACAAGCGGATGGAAAAT TTTACTCACC GGAAGATATT GACTATGGCA CAGGACCTTC TGGATTGAAAAATAGTGATT GGGACGCTGT ACGTCACAAG AATGCCTACT TTCGTTCAGG TGTAGGTCTAGCNAATGGNC GTATTTCCTT TTCTTTTGGT ATGACAACAA AAGGAAAAAG TAATGTGCCTGTATCTAGTG CGCAATCGTT TCCCTTTAGN ACTAACTTAA ATGCGCAATC AGTGAAGCCTATTTTCAATT ATGGGAATCC AAAAGAACCA GAAAAAGCAA CGATTGAATT CAATNGATACAAAGCCAATG TCGTTCCTGT NCTTGTGCCN AATAAAGAAG TCACTGATGG NCAGAAAAATNTCAATGATT TAAATGTCAA NCGTGGCGAT TCTTTACAAT ACATTGTGAC AGGGGATACGACAGAACTTG CCAAAGTAGA TCCAAAAACA GTAACNAAAC AAGGGATTCG AGATACNTTTGATGCAGAAA AAGTGACCAT TGATTTATCC AAAGTGAAAG TTTATCAAGC AGACGCAAGTCTNAACGANA AAGACTNAAA AGCTGTTGCT GCAGCNATTA ATTCAGGAAN AGCTAAAGACGTGACTGCTT CTTATGANCT CAATTTAGAT CAAAACACCG TCACAGCAAT GATGAAAACCAACGCNCACG GNTCNGTTGT TTTAGCAATG GGGTATAAAT ATTTACTTGT CTTGCCGTTTGTAGTGAAAA ATGTAGAAGG CCATTTTGAA AATACAGCTG TTCAGCTGAC AAANGATGGNGAAACGGTAA CAAATACAGT GATTAACCAT GTGCCAGGTA GTAATCCTTC CAAAGATGTAAAAGCAGATA AAAACGGTAC AGTTGGCAGT GTTTCTCTAC ATGATAAAGA TATTCCGTTACAAACAAAAA TTTATTATGA AGTGAAATCT TCCGAACGTC CAGCNAACTA TGGCGGAATNACNGAAGAAT GGGGCATGAA TGATGTCTTG GACACGACCC ATGATCGTTT CACAGGNAAATGGCACGCTA TTACNAANTA TGACCTTAAA GTAGGGGANA AAACGTTAAA AGCAGGAACAGATATTTCTG CCTACATTCT TTTAGAAAAC AAAGACAATA AAGACTTGAC GTTTACNATGAATCAAGCAT TATTGGCNGC NTTAAATGAA GGAAGCAATA AAGTAGGCAA ACAAGCTTGGTCTGTGTATC TGGAAGTCGA ACGGATNAAA ACAGGTGACG TAGAAAACAC GCAAACAGAAAACTACAACA AAGAGCTTGT NCGTTCTAAT ACNGTGGTGA CGCATACNCC TGATGATCCAAAACCAACCA AAGCCGTTCA TAACAAGAAA GGGGAAGANA TTAANCATGG AAAAGTNGCTCGTGCTGATG TTCTTTCTTA TGAAATGACN TGGGACTTAA AAGGGTACGA TAAAGACTTTGCCTTTGATA CAGTCGATCT TGCGACAGGC GTTTCTTTCT TCGATGATTA CGATGAAACGAANGTGACAC CAATCAAAGA CTTACTTCGT GTCAAAGATT CTAAAGGGGN AGACATTACGAACCAGTTCA CGATCTCNTG GGACGATGCC AAAGGCACGG TGACNATNTC TGCCAAAGACCCACAAGCCT TTATTCTAGC GNATGGTGGG CAAGAATTGC GTGTAACNCT CCCTACAAAAGTCAAAGCCG ATGTTTCTGG NGATGTTTAT AATTCAGCGG AACAAAATAC ATTTGGNCAACCAATTAAAA CCAATACNGT TGTCAACCAT ATTCCAAAAG TGAANCCTAA AAAAGACGTGGTTATTAAAG TNGGTGACAA ACAAAGTCAA AATGGNGCCA CAATCAAATT ACGGGACAANTTCTTCTATG AATTTACAAG TAGTGACATT CCTGCACAAT ACGCTGGNGT TGTGGAAGAATGGTCGATTA GCGATAAACT AGACGTCAAA CATGACAAAT TTAGTGGCCA ATGGTCTGTGTTTGCCAATT CTAATTTTGT TTTAGCAGAC GGAACCAAAG TGAATAAAGG GGACGACATTTCGAAACTAT TCACGATCAC CTTTGAACAA GGGGTAGTGA AAATCACGGC CAGTCAAGCCTTTTTNGATG CGATGAATCT AAAAGAAAAC AAAAACGTTG CACACTCATG GAAAGCGTTCATTGGTGTAG AACGAATTGC GGCAGGAGAC GTTTACAACA CAATCGAAGA ATCTTTCAACAATGAGAAGA TTAAAACNAA TACGGTAGTG ACNCATACGC CAGAAAAACC ACAAACNCCACCAGAAAAAA CAGTGATTGT ACCACCAACA CCAAAAACAC CGCAAGCACC AGTAGAGCCATTAGTGGTAG AAAAGGCAAG TGTNGTGCCA GAATTGCCGC AAACAGGCGA AAAACAAAATGTCTTATTAA CGGTAGCTGG TAGTTTAGCC GCAATGCTTG GCTTAGCAGG CTTAGGCTTTAAACGTAGAA AAGAAACAAA ATAAEF063-2 (SEQ ID NO:238)MKAKK QYKTYKAKNH WVTVPILFLS VLGAVGLATD NVQAAELDTQ PETTTVQPNNPDLQSEKETP KTAVSEEATV QKDTTSQPTK VEEVAPENKG TEQSSATPND TTNAQQPTVGAEKSAQEQPV VSPETTNEPL GQPTEVAPAE NEVNKSTSIP KEFETPDVDK AVDEVKKDPNITVVEKPAED LGNVSSKDLA AKEKEVDQLQ KEQAKKIAQQ AAELKAKNEK IAKENAEIAAKNKAEKERXX KEVAEYNKHK NENSYVNEAT SKNLVFDQSV VTKDTKISSI KGGKFTKATDFNKVNAGDSK DIFTKLRKDM GGKXTGNFQN SFVKEANLGS NGGYAVLLEK NKPVTVTYTGLNASYLGRKI TKAEFVYELQ SSPSQSGTLN AVFSNDPTIT AFIGTNRVNG KDVKTRLTIKFFDASGKEVL PDKDSPFAYA LSSLNSSLTN KGGHAEFVSD FGANNAFKYI NGSYVKKQADOKEYSPEDID YGTGPSGLKN SDWDAVGHKN AYFGSGVGLA NGRISFSFGM TTKGKSNVPVSSAQWFAFXT NLNAQSVKPI FNYGNPKEPE KATIEFNXYK ANVVPVLVPN KEVTDGQKNXNDLNVXRGDS LQYIVTGDTT ELAKVDPKTV TKQGIRDTFD AEKVTIDLSK VKVYQADASLNXKDXKAVAA AINSGXAKDV TASYXLNLDQ NTVTANMKTN ADGSVVLAMG YKYLLVLPFVVKNVEGDFEN TAVQLTXDGE TVTNTVINHV PGSNPSKDVK ADKNGTVGSV SLHDKDIPLQTKIYYEVKSS ERPANYGGXT EEWGMNDVLD TTHDRFTGKW HAITXYDLKV GXKTLKAGTDISAYILLENK DNKDLTFTMN QALLAALNEG SNKVGKQAWS VYLEVERXKT GDVENTQTENYNKELVRSNT VVTHTPDDPK PTKAVHNKKG EXTXHGKVAR GDVLSYEMTW DLKGYDKDFAFDTVDLATGV SFFDDYDETX VTPIKDLLRV KDSKGXDITN QFTISWDDAK GTVTXSAKDPQAFILAXGGQ ELRVTLPTKV KADVSGDVYN SAEQNTFGQR IKTNTVVNHI PKVXPKKDVVIKVGDKQSQN GATIKLGEXF FYEFTSSDIP AEYAGVVEEW SISDKLDVKH DKFSGQWSVFANSNFVLADG TKVNKGDDIS KLFTMTFEQC VVKITASQAF XDAMNLKENK NVAHSWKAFTGVERIAAGDV YNTIEESFNN EKIKTNTVVT HTPEKPQTPP EKTVIVPPTP KTPQAPVEPLVVEKASVVPE LPQTGEKQNV LLTVAGSLAA MLGLAGLGFK RRKETKEF063-3 (SEQ ID NO:239)GGA ATTACATACG CAACCAGAAA CAACGACGGT TCAACCCAATAACCCCGACC TGCAGTCAGA AAAGGAAACA CCTAAAACGG CAGTATCTGA AGAAGCAACAGTACAAAAAG ACACTACTTC TCAACCGACC AAAGTAGAAC AAGTAGCGCC AGAAAATAAAGGTACTGAAC AAAGTTCAGC TACCCCAAAT GATACCACAA ACGCGCAACA ACCAACAGTAGGAGCTGAAA AATCAGCACA AGAACAACCA GTAGTAAGCC CTGAAACAAC CAATGAACCTCTAGGGCAGC CAACAGAAGT TGCACCAGCT GAAAATGAAG TGAATAAATC AACGTCCATTCCTAAAGAAT TTGAAACACC AGACGTTGAT AAAGCAGTTG ATGAACTAAA AAAAGATCCAAACATTACCG TTGTTGAAAA ACCAGCAGAA GACTTAGGCA ACGTTTCTTC TAAAGATTTAGCTGCAAAAG AAAAAGAAGT AGACCAACTA CAAAAAGAAC AAGCGAAAAA GATTGCCCAACAAGCAGCTG AATTAAAAGC CAAAAATGAA AAAATTGCCA AAGAAAATCC AGAAATTGCGGCAAAAAACA AAGCNGAAAA AGAGCGNTAN GANAAAGAAG TCGCNGAATA CAACAAGCATAAGAACGAAA ACAGCTATGT CAATGAAGCG ATTAGTAAAA ACCTAGTGTT CGATCAATCTGTCGTGACGA AAGACACTAA AATTTCGTCG ATTAAAGGCG GAAAATTTAT CAAAGCAACTGATTTTAATA AAGTAAATGC AGGGGATTCA AAAGATATCT TTACAAAATT ACGGAAAGATATGGGNGGGA AAGNTACTGG CAACTTCCAG AATTCCTTTG TAAAAGAGGC AAATCTTGGGTCTAATGGTG GGTATGCGGT TCTTTTAGAA AAAAATAAAC CAGTGACAGT GACCTATACAGGACTAAACG CTAGTTATTT AGGACGTAAA ATTACAAAAG CAGAATTTGT TTATGAACTACAATCCTCAC CAAGCCAAAG TGGAACGTTA AATGCAGTAT TTTCAAACGA TCCGATTATCACNGCTTTTA TTGGTACAAA CAGAGTCAAT GGTAAGGATG TTAAAACACG CTTAACGATTAAGTTCTTTG ATGCGTCAGG TAAAGAAGTA CTACCAGATA AAGATAGTCC ATTTGCGTATGCGCTGTCTT CTTTAAATTC AAGTTTAACG AATAAAGCTG GCCATGCGGA ATTTGTTTCTGATTTTGGGG CNAACAATGC GTTCAAATAC ATTAATGGNT CNTATGTGAA AAAACAAGCGGATGCAAAAT TTTACTCACC GGAAGATATT GACTATGGCA CAGGACCTTC TGGATTGAAAAATAGTGATT GGGACGCTGT AGGTCACAAG AATGCCTACT TTGGTTCAGG TGTAGGTCTAGCNAATGGNC GTATTTCCTT TTCTTTTGGT ATGACAACAA AAGGAAAAAG TAATGTGCCTGTATCTAGTG CGCAATGGTT TGCCTTTAGN ACTAACTTAA ATGCGCAATC AGTGAAGCCTATTTTCAATT ATGGGAATCC AAAAGAACCA GAAAAAGCAA CGATTGAATT CAATNCATACAAAGCCAATG TCGTTCCTGT NCTTGTGCCN AATAAAGAAG TCACTGATGG NCAGAAAAATNTCAATGATT TAAATGTGAA NCGTGGCGAT TCTTTACAAT ACATTGTGAC AGGGGATACGACAGAACTTG CCAAAGTAGA TCCAAAAACA GTAACNAAAC AAGGGATTCG AGATACNTTTGATGCAGAAA AAGTGACGAT TGATTTATCC AAAGTGEF063-4 (SEQ ID NO:240)ELDTQ PETTTVQPNNPDLQSEKETP KTAVSEEATV QKDTTSQPTK VEEVAPENKG TEQSSATPND TTNAQQPTVGAEKSAQEQPV VSPETTNEPL GQPTEVAPAE NEVNKSTSIP KEFETPDVDK AVDEVKKDPNITVVEKPAED LGNVSSKDLA AKEKEVDQLQ KEQAKKIAQQ AAELKAKNEK IAKENAEIAAKNKAEKERXX KEVAEYNKHK NENSYVNEAT SKNLVFDQSV VTKDTKISSI KGGKFIKATDFNKVNAGDSK DIFTKLRKDM GGKXTGNFQN SFVKEANLGS NGCYAVLLEK NKPVTVTYTGLNASYLGRKI TKAEFVYELQ SSPSQSGTLN AVFSNDPIIT AFIGTNRVNG KDVKTRLTIKFFDASGKEVL PDKDSPFAYA LSSLNSSLTN KGGHAEFVSD FGANNAFKYI NGSYVKKQADGKFYSPEDID YGTGPSGLKN SDWDAVGHKN AYFGSGVGLA NGRISFSFGM TTKGKSNVPVSSAQWFAFXT NLNAQSVKPI FNYGNPKEPE KATIEFNXYK ANVVPVLVPN KEVTDGQKNXNDLNVXRGDS LQYIVTGDTT ELAKVDPKTV TKQGIRDTFD AEKVTIDLSK VEF064-1 (SEQ ID NO:241)TCATTCTTGA ACCAACAAAT GAAAGCAAAA AAACAATATA AGACATATAA AGCTAAGAATCACTGGGTAA CTGTCCCTAT TCTTTTTCTA AGTGTGTTAG GAGCCGTAGG ATTAGCTACTGATAATCTAC AAGCCGCGGA ATTAGATACG CAACCAGAAA CAACGACGGT TCAACCCAATAACCCCGACC TGCAGTCAGA AAAGGAAACA CCTAAAACGG CAGTATCTGA AGAAGCAACAGTACAAAAAG ACACTACTTC TCAACCGACC AAAGTAGAAG AAGTAGCGCC AGAAAATAAAGGTACTGAAC AAAGTTCAGC TACCCCAAAT GATACCACAA ACGCGCAACA ACCAACAGTAGGAGCTGAAA AATCAGCACA AGAACAACCA GTAGTAACCC CTGAAACAAC CAATGAACCTCTAGGGCAGC CAACAGAAGT TGCACCAGCT GAAAATGAAG TGAATAAATC AACGTCCATTCCTAAAGAAT TTGAAACACC AGACGTTGAT AAAGCAGTTG ATGAAGTAAA AAAAGATCCAAACATTACCG TTCTTGAAAA ACCAGCAGAA GACTTAGGCA ACGTTTCTTC TAAAGATTTAGCTGCAAAAG AAAAAGAAGT AGACCAACTA CAAAAAGAAC AAGCGAAAAA GATTGCCCAACAAGCAGCTG AATTAAAAGC CAAAAATGAA AAAATTGCCA AAGAAAATGC AGAAATTGCGGCAAAAAACA AAGCNGAAAA AGAGCGNTAN GANAAAGAAG TCGCNGAATA CAACAAGCATAAGAACGAAA ACACCTATGT CAATGAAGCG ATTAGTAAAA ACCTAGTGTT CGATCAATCTGTCGTGACGA AAGACACTAA AATTTCGTCG ATTAAAGGCG GAAAATTTAT CAAAGCAACTGATTTTAATA AAGTAAATGC AGGGGATTCA AAAGATATCT TTACAAAATT ACGGAAAGATATGGGNGGGA AAGNTACTGG CAACTTCCAG AATTCCTTTG TAAAAGACGC AAATCTTGCGTCTAATGGTG GGTATGCGGT TCTTTTAGAA AAAAATAAAC CAGTGACAGT GACCTATACAGGACTAAACG CTAGTTATTT AGGACGTAAA ATTACAAAAG CAGAATTTGT TTATGAACTACAATCCTCAC CAAGCCAAAG TGGAACGTTA AATGCAGTAT TTTCAAACGA TCCGATTATCACNGCTTTTA TTGGTACAAA CAGAGTCAAT GGTAAGGATG TTAAAACACG CTTAACGATTAAGTTCTTTG ATGCGTCAGG TAAAGAAGTA OTACCAGATA AAGATAGTCC ATTTGCGTATGCGCTGTCTT CTTTAAATTC AAGTTTAACG AATAAAGGTG GCCATGCGGA ATTTGTTTCTGATTTTGGGG CNAACAATGC GTTCAAATAC ATTAATGGNT CNTATGTGAA AAAACAAGCGGATGGAAAAT TTTACTCACC GGAAGATATT GACTATGGCA CAGGACCTTC TGGATTGAAAAATAGTGATT GGGACGCTGT AGGTCACAAG AATGCCTACT TTGGTTCAGG TGTAGGTCTAGCNAATGGNC GTATTTCCTT TTCTTTTGGT ATGACAACAA AAGGAAAAAG TAATGTGCCTGTATCTAGTG CGCAATGGTT TGCCTTTAGN ACTAACTTAA ATGCGCAATC AGTGAAGCCTATTTTCAATT ATCGGAATCC AAAAGAACCA GAAAAAGCAA CGATTGAATT CAATNGATACAAAGCCAATG TCGTTCCTGT NCTTGTGCCN AATAAAGAAG TCACTGATGG NCAGAAAAATNTCAATGATT TAAATGTGAA NCGTGGCGAT TCTTTACAAT ACATTGTGAC AGGGGATACGACAGAACTTG CCAAAGTAGA TCCAAAAACA GTAACNAAAC AAGGGATTCG AGATACNTTTGATGCAGAAA AAGTGACGAT TGATTTATCC AAAGTGAAAG TTTATCAAGC AGACGCAAGTCTNAACGANA AAGACTNAAA AGCTGTTGCT GCAGCNATTA ATTCAGGAAN AGCTAAAGACGTGACTGCTT CTTATGANCT CAATTTAGAT CAAAACACCG TCACAGCAAT GATGAAAACCAACGCNGACG GNTCNGTTGT TTTAGCAATG GGGTATAAAT ATTTACTTGT CTTGCCGTTTGTAGTGAAAA ATGTAGAAGG CGATTTTGAA AATACAGCTG TTCAGCTGAC AAANGATGGNCAAACGGTAA CAAATACAGT GATTAACCAT GTGCCAGGTA GTAATCCTTC CAAAGATGTAAAAGCAGATA AAAACGGTAC AGTTGGCAGT GTTTCTCTAC ATGATAAAGA TATTCCGTTACAAACAAAAA TTTATTATGA AGTGAAATCT TCCGAACGTC CAGCNAACTA TGGCGGAATNACNGAAGAAT GGGGCATGAA TGATGTCTTG CACACGACCC ATGATCGTTT CACAGGNAAATGCCACGCTA TTACNAANTA TGACCTTAAA GTAGGGGANA AAACGTTAAA AGCAGGAACAGATATTTCTG CCTACATTCT TTTAGAAAAC AAAGACAATA AAGACTTGAC GTTTACNATCAATCAAGCAT TATTGGCNGC NTTAAATGAA GGAAGCAATA AAGTAGGCAA ACAAGCTTGGTCTGTGTATC TGGAACTCGA ACGGATNAAA ACAGGTGACG TAGAAAACAC GCAAACAGAAAACTACAACA AAGAGCTTGT NCGTTCTAAT ACNGTGGTGA CGCATACNCC TGATGATCCAAAACCAACCA AAGCCGTTCA TAACAAGAAA GGGGAAGANA TTAANCATGG AAAAGTNGCTCGTGGTGATG TTCTTTCTTA TGAAATGACN TGGGACTTAA AAGGGTACGA TAAAGACTTTGCCTTTGATA CAGTCGATCT TGCGACAGGC GTTTCTTTCT TCGATGATTA CGATGAAACGAANGTGACAC CAATCAAAGA CTTACTTCGT GTCAAAGATT CTAAAGGGCN AGACATTACGAACCAGTTCA CGATCTCNTG GGACGATGCC AAAGGCACGG TGACNATNTC TGCCAAAGACCCACAAGCCT TTATTCTAGC GNATGGTGGG CAAGAATTGC GTCTAACNCT CCCTACAAAAGTCAAAGCCG ATGTTTCTGG NGATGTTTAT AATTCAGCGG AACAAAATAC ATTTGGNCAACGAATTAAAA CCAATACNGT TGTCAACCAT ATTCCAAAAG TGAANCCTAA AAAAGACGTGGTTATTAAAG TNGGTGACAA ACAAAGTCAA AATGGNGCCA CAATCAAATT AGGGGAGAANTTCTTCTATG AATTTACAAG TAGTGACATT CCTGCAGAAT ACGCTGGNGT TGTGGAAGAATGGTCGATTA GCGATAAACT AGACGTCAAA CATGACAAAT TTAGTGGCCA ATGGTCTGTGTTTGCCAATT CTAATTTTGT TTTAGCAGAC GGAACCAAAG TGAATAAAGG GGACGACATTTCGAAACTAT TCACGATGAC CTTTGAACAA GGGGTAGTGA AAATCACGGC CAGTCAAGCCTTTTTNGATG CGATGAATCT AAAAGAAAAC AAAAACGTTG CACACTCATG GAAAGCGTTCATTGGTGTAG AACCAATTGC GOCAGGAGAC GTTTACAACA CAATCGAAGA ATCTTTCAACAATGAGAAGA TTAAAACNAA TACGGTAGTG ACNCATACGC CAGAAAAACC ACAAACNCCACCAGAAAAAA CAGTGATTGT ACCACCAACA CCAAAAACAC CGCAAGCACC AGTAGAGCCATTAGTGGTAG AAAAGGCAAG TGTNGTGCCA GAATTGCCGC AAACAGGCGA AAAACAAAATGTCTTATTAA CGGTAGCTGG TAGTTTAGCC GCAATGCTTG GCTTAGCAGG CTTAGGCTTTAAACGTAGAA AAGAAACAAA ATAAEF064-2 (SEQ ID NO:242)MKAKK QYKTYKAKNH WVTVPILFLS VLGAVGLATD NVQAAELDTQ PETTTVQPNNPDLQSEKETP KTAVSEEATV QKDTTSQPTK VEEVAPENKG TEQSSATPND TTNAQQPTVGAEKSAQEQPV VSPETTNEPL GQPTEVAPAE NEVNKSTSIP KEFETPDVDK AVDEVKKDPNITVVEKPAED LGNVSSKDLA AKEKEVDQLQ KEQAKKIAQQ AAELKAKNEK IAKENAEIAAKNKAEKERXX KEVAEYNKHK NENSYVNEAI SKNLVFDQSV VTKDTKISSI KGGKFIKATDFNKVNAGDSK DIFTKLRKDM GGKXTGNFQN SFVKEANLGS NGGYAVLLEK NKPVTVTYTGLNASYLGRKI TKAEFVYELQ SSPSQSGTLN AVFSNDPITT AFIGTNRVNG KDVKTRLTIKFFDASGKEVL PDKDSPFAYA LSSLNSSLTN KGGHAEFVSD FGANNAFKYI NGSYVKKQADGKFYSPEDID YGTGPSGLKN SDWDAVGHKN AYFGSGVGLA NGRISFSFGM TTKGKSNVPVSSAQWFAFXT NLNAQSVKPI FNYGNPKEPE KATIEFNXYK ANVVPVLVPN KEVTDGQKNXNDLNVXRGDS LQYIVTGDTT ELAKVDPKTV TKQGIRDTFD AEKVTIDLSK VKVYQADASLNXKDXKAVAA AINSGXAKDV TASYXLNLDQ NTVTAMMKTN ADGSVVLAMG YKYLLVLPFVVKNVEGDFEN TAVQLTXDGE TVTNTVINHV PGSNPSKDVK ADKNGTVGSV SLHDKDIPLQTKIYYEVKSS ERPANYGGXT EEWGHNDVLD TTHDRFTGKW HAITXYDLKV GXKTLKAGTDISAYILLENK DNKDLTFTMN QALLAALNEG SNKVGKQAWS VYLEVERXKT GDVENTQTENYNKELVRSNT VVTHTPDDPK PTKAVHNKKG EXIXHGKVAR GDVLSYEMTW DLKGYDKDFAFDTVDLATGV SFFDDYDETX VTPIKDLLRV KDSKGXDITN QFTISWDDAK GTVTXSAKDPQAFILAXGGQ ELRVTLPTKV KADVSGDVYN SAEQNTFGQR IKTNTVVNHI PKVXPKKDVVIKVGDKQSQN GATIKLGEXF FYEFTSSDIP AEYAGVVEEW SISDKLDVKH DKFSGQWSVFANSNFVLADG TKVNKGDDIS KLFTMTFEQG VVKITASQAF XDANNLKENK NVAHSWKAFTGVERIAAGDV YNTLEESFNN EKIKTNTVVT HTPEKPQTPP EKTVIVPPTP KTPQAPVEPLVVEKASVVPE LPQTGEKQNV LLTVAGSLAA MLGLAGLGFK RRKETKEF064-3 (SEQ ID NO:243)AGTGACGAT TGATTTATCC AAAGTGAAAG TTTATCAAGC AGACGCAAGTCTNAACGANA AAGACTNAAA AGCTGTTGCT CCAGCNATTA ATTCAGGAAN AGCTAAAGACGTGACTGCTT CTTATGANCT CAATTTAGAT CAAAACACCC TCACAGCAAT GATGAAAACCAACGCNGACG GNTCNGTTGT TTTAGCAATG GGGTATAAAT ATTTACTTGT CTTGCCGTTTGTAGTGAAAA ATGTAGAAGG CGATTTTGAA AATACAGCTG TTCAGCTGAC AAANGATGGNGAAACGGTAA CAAATACAGT GATTAACCAT CTGCCAGGTA GTAATCCTTC CAAAGATGTAAAAGCAGATA AAAACGGTAC AGTTGGCAGT GTTTCTCTAC ATGATAAAGA TATTCCGTTACAAACAAAAA TTTATTATGA AGTGAAATCT TCCGAACGTC CAGCNAACTA TGGCGGAATNACNGAAGAAT GGGGCATGAA TGATGTCTTG GACACGACCC ATGATCGTTT CACAGGNAAATGGCACGCTA TTACNAANTA TGACCTTAAA GTAGGGGANA AAACGTTAAA AGCAGGAACAGATATTTCTG CCTACATTCT TTTAGAAAAC AAAGACAATA AAGACTTGAC GTTTACNATGAATCAAGCAT TATTGGCNGC NTTAAATGAA GGAAGCAATA AAGTAGGCAA ACAAGCTTGGTCTGTGTATC TGGAAGTCGA ACGGATNAAA ACAGGTGACG TACAAAACAC GCAAACAGAAAACTACAACA AAGAGCTTGT NCGTTCTAAT ACNGTGGTGA CGCATACNCC TGATGATCCAAAACCAACCA AAGCCGTTCA TAACAAGAAA GGGGAAGANA TTAANCATGG AAAAGTNGCTCGTGGTGATG TTCTTTCTTA TGAAATGACN TCGGACTTAA AAGGGTACGA TAAAGACTTTGCCTTTGATA CAGTCGATCT TGCGACAGGC GTTTCTTTCT TCGATGATTA CGATGAAACGAANGTGACAC CAATCAAAGA CTTACTTCGT GTCAAAGATT CTAAAGGGGN AGACATTACGAACCAGTTCA CGATCTCNTG GGACGATGCC AAAGGCACGG TGACNATNTC TGCCAAAGACCCACAAGCCT TTATTCTAGC GNATGGTGGG CAAGAATTGC GTGTAACNCT CCCTACAAAAGTCAAAGCCG ATGTTTCTGG NGATGTTTAT AATTCAGCGG AACAAAATAC ATTTGGNCAACGAATTAAAA CCAATACNGT TGTCAACCAT ATTCCAAAAG TGAANCCTAA AAAAGACGTGGTTATTAAAG TNGGTGACAA ACAAAGTCAA AATGGNGCCA CAATCAAATT AGGGGAGAANTTCTTCTATG AATTTACAAG TAGTGACATT CCTGCAGAAT ACGCTGGNGT TGTGGAAGAATGGTCGATTA GCGATAAACT AGACGTCAAA CATGACAAAT TTAGTGGCCA ATGGTCTGTGTTTGCCAATT CTAATTTTGT TTTAGCAGAC CGAACCAAAG TGAATAAAGG GGACGACATTTCGAAACTAT TCACGATGAC CTTTGAACAA GGGGTAGTGA AAATCACGGC CAGTCAAGCCTTTTTNGATG CGATGAATCT AAAACAAAAC AAAAACGTTG CACACTCATG GAAAGCGTTCATTGGTGTAG AACGAATTGC GGCAGGAGAC GTTTACAACA CAATCGAAGA ATCTTTCAACAATGAGAAGA TTAAAACNAA TACCGTAGTG ACNCATACGC CAGAAAAACC ACAAACNCCACCAGAAAAAA CAGTGATTGT ACCACCAACA CCAAAAACAC CGCAAGCACC AGTAGAGCCATTAGTGGTAG AAAAGGCAAG TGTNGTGCCA GAATTGCCGC AAACAGGCGA AAAACAAAATGTCTTATTAA CGGTAGCTCG TAGTTTAGCC CCAATGCTTG GCTTAC-CAGG CTTAGGCTTTAAACGTAGAA AAGAAACAAA ATAAEF064-4 (SEQ ID NO:244)VTIDLSK VKVYQADASLNXKDXKAVAA AINSGXAKDV TASYXLNLDQ NTVTANMKTN ADGSVVLAMG YKYLLVLPFVVKNVEGDFEN TAVQLTXDGE TVTNTVINHV PGSNPSKDVK ADKNGTVGSV SLHDKDIPLQTKIYYEVKSS ERPANYGGXT EEWGMNDVLD TTHDRFTGKW HATTXYDLKV GXKTLKAGTDISAYILLENK DNKDLTFTMN QALLAALNEG SNKVGKQAWS VYLEVERXKT GDVENTQTENYNKELVRSNT VVTHTPDDPK PTKAVHNKKG EXIXHGKVAR GDVLSYEMTW DLKGYDKDFAFDTVDLATGV SFFDDYDETX VTPIKDLLRV KDSKGXDITN QFTISWDDAK GTVTXSAKDPQAFILAXGGQ ELRVTLPTKV KADVSGDVYN SAEQNTFGQR IKTNTVVNHI PKVXPKKDVVIKVGDKQSQN GATIKLGEXF FYEFTSSDIP AEYAGVVEEW SISDKLDVKH DKFSGQWSVFANSNFVLADG TKVNKGDDTS KLFTMTFEQG VVKITASQAF XDAMNLKENK NVAHSWKAFIGVERIAAGDV YNTTEESFNN EKIKTNTVVT HTPEKPQTPP EKTVIVPPTP KTPQAPVEPLVVEKASVEF065-1 (SEQ ID NO:245)TAGCGAAAGA AAATAGGGAG GATTAAAATG TTTAAGAAAG CAACGAAATT ATTATCGACAATGGTGATTG TCGCTGGAAC AGTTGTCGGA AATTTCAGTC CCACATTGGC TTTAGCTGAAGAAGCGGTTA AAGCAGGAGA TACAGAAGGA ATGACCAATA CGGTGAAAGT GAAAGACGACAGTCTGGCTG ATTGTAAACG GATATTGGAA GGACAAGCTA CTTTCCCAGT TCAAGCGGGTGAAACGGAAC CAGTCGATTT AGTAGTTGTT GAAGATGCTA GTGGTAGTTT TTCAGATAATTTTCCACATG TAAGACAAGC GATTGATGAA GTGGTTCAAG GCTTATCTGA TCAAGACCGCGTGATGCTGG CTTCATATCG CGGCGGAAAA CAATTTATGT TTCCTGATGG AAAGACAAAAATTAATTCAG CTGATTATGA TATGAATGTG CGCGTCAATA CGCAATTGAC TTATGATAAAAGCCAATTTG TCTCTGGTTT TGGAGACGTT CGGACCTATG GTGGTACGCC AACCGCCCCACGATTGAAAC TCGCTTTAGA TACGTACAAT CAAACACACG GAGATTTAAC GAATCGAAAAACGTATTTCC TATTAGTGAC AGATGGGGTC GCTAATACAC GTTTAGATGG TTACTTGCATAAGACCAATA CCAATGATTC AATCAATGAA TATCCAGATC CAAGACATCC TCTTCAAGTCTCAGTGGAAT ATAGTAATCA CTACCAAGGT GCAGCAGCAG AAGTTTTAGC GTTAAACCAAGAAATTACTA ACCAAGGCTA TGAAATGATT AATGCGTATT GGGAAAGTGT TGAATCTTTAAGTTCAGTGA ATTCATACTT TCATAAATAT AAAACAGAAC TGGCTCCTTT TGTAAAACAAGAGTTGCAAC AAGGGTCTAG CACACCAGAA GATTTTATTA CAAGCCAATC TATTGATGATTTTACAACCC AATTAAAACA AATTGTCAAA CATCGTCTGG CGCAATCGAC ACCAGCAACAGCTTCATTAA CGATTGCCAA TCAATTTGAT ATTCAATCTG CGACCGCTAC GGACGATGCTGGAAATGATG TGCCTGTTCA AATTAACGGA CAAACCATTT CAGCAACTAG TACAGAAGGTTACGTAGGAA ACATCACGAT TCACTACGAA GTCAAAGAAA ATACAGCGAT TGATGCAGCAACCCTTGTAA GTAGTGGGAC AATGAATCAA GGAACAATTG CTAAGGAATT TCCAGAAGCGACGATTCCTA AAAATGACAA TGCGCATGCG TGTGACGTGA CGCCAGAAGA TCCAACGATTACAAAAGATA TCGAAAATCA AGAACACTTA GATTTAACCA ATCGTGAAGA TAGTTTCGATTGGCATGTCA AAACAGCCTT TGOCAACGAA ACCAGTACTT GGACCCAAGC CAGCATGGTGGATGACATTA ATAAAGTGCT AGATATCATT GATGTGAAAG TCACCGACGA AAATGGTAAAGATGTTACAG CTAACCGCAC AGTAACACAA GAAAATAACA AAGTAACTTT TGAAATGAACAAACAAGCAG ACAGCTATGA CTATTTAAGT GGTCATACGT ATACAATGAC TATOACCACTAAAATTAAAA CTGACGCAAC GGACGAACAA TTAGCGCCTT ACATTGAACA AGGCGGGATTCCCAACCAAG CCGACTTAAA CTTTGGCAAT GAAGGTGACG TGTTACATTC CAACAAACCAACCGTAACAC CACCGCCAGT TGATCCAAAT ATTGCTAAAG ACGTAGAAGG ACAAGAACATTTAGATTTAA CCAACCGCGA TCAAGAATTT AAATGCAACG TCAAAACAGC TTTCGGTAACGAAACAAGCA CTTGGACCCA AGCCAGCATG GTAGATGACA TTAATAAAGT GTTAGACATCACTGATGTAA AAGTCACAGA TGAAAATGGT AAAGATGTTA CAGCTAACGG CAAAGTAACACAAGAAAATA ACAAAGTAAC TTTTGAAATG AACAANCAAG CNGACAGCTA TGACTATTTAAGTGGTCATA CGTACACAAT GACCATTACT ACTAAAATCA AAGCTAGCGC AACGCACGAAGAATTAGCAC CTTATATTGA ACAAGGTGGC ATTCCCAACC AAGCCGACTT GAACTTTGGCAACGAAGGTG ACGTGTTGCA TTCCAACAAA CCAACCGTAA CACCACCTCC ACCAACGCCAGAAGATCCAA CGATTACAAA AGATATCGAA GGCCAAGAAC ATTTAGATTT AACCAACCGTGACCAAGAAT TTAAATGGAA CGTCAAAACA GCTTTCCGTA ACGAAACAAG CACATGGACCCAAGCCAGCA TGGTGGATGA CATTAATAAA GTGTTAGACA TCACAGACGT GAAAGTTNCTGANGAAAATG GCAAAGATGT TACAGATAAT GGCATAGTAA CACAAGAAAA TAACAAAGTAACTTTTACTA TCAACAAAAA AGATGACAGC TACTCTTACT TAGCTGGTCA TACATACACAATGACTATTA CCACTAAAAT TAAAACTGAC GCAACGGATG AAGAATTAGC GCCTTATATTGAACAAGGCG GGATTCCCAA CCAAGCCGAC TTAAACTTTG GCAACGAAGG TGACGTGTTGCATTCCAACA AGCCAACCGT AACACCGCCT GCACCAACGC CAGAAGACCC AAAAAAACCTGAACCTAAAC AACCGCTAAA ACCGAAAAAA CCGTTGACGC CTACAAATCA TCAAGCACCAACGAACCCAG TCAATTTTGG AAAATCAGCA AGTAAAGGAA TTCATTTACC AATGACTAATACAACAGTAA ATCCACTTTA CATGATCGCA GGTTTAATTG TCCTTATAGT GGCTATTAGCTTTGGCATAA CAAAAAATAA AAAAAGAAAA AATTAGEF065-2 (SEQ ID NO:246)ME KKATKLLSTM VIVAGTVVGN FSPTLALAEE AVKAGDTEGM TNTVKVKDDSLADCKRILEG QATFPVQAGE TEPVDLVVVE DASGSFSDNF PHVRQAIDEV VQGLSDQDRVMLASYRGGKQ FMFPDGKTKI NSADYDMNVR VNTQLTYDKS QFVSGFGDVR TYGGTPTAPGLKLALDTYNQ THGDLTNRKT YFLLVTDGVA NTRLDGYLHK TNTNDSINEY PDPRHPLQVSVEYSNDYQGA AAEVLALNQE ITNQGYEMIN AYWESVESLS SVNSYFDKYK TEVGPFVKQELQQGSSTPED FITSQSIDDF TTQLKQIVKD RLAQSTPATA SLTIANQFDI QSATATDDAGNDVPVQINGQ TISATSTEGY VGNITTHYEV KENTAIDAAT LVSSGTMNQG TIAKEEPEATIPKNDNAHAC DVTPEDPTIT KDIENQEHLD LTNREDSFDW HVKTAFGNET STWTQASMVDDINKVLDIID VKVTDENGKD VTANGTVTQE NNKVTFEMNK QADSYDYLSG HTYTMTITTKTKTDATDEEL APYTEQGGIP NQADLNFGNE GDVLHSNKPT VTPPPVDPNI AKDVEGQEHLDLTNRDQEFK WNVKTAFGNE TSTWTQASMV DDINKVLDIT DVKVTDENGK DVTANGKVTQENNKVTFEHN XQADSYDYLS GHTYTMTITT KIKASATDEE LAPYIEQGGI PNQADLNFGNEGDVLHSNKP TVTPPAPTPE DPTITKDIEG QEHLDLTNRD QEFKWNVKTA FGNETSTWTQASMVDDINKV LDITDVKVXX ENGKDVTDNG IVTQENNKVT FTMNKKDDSY SYLAGHTYTMTITTKIKTDA TDEELAPYIE QGGIPNQADL NFGNEGDVLH SNKPTVTPPA PTPEDPKKPEPKQPLKPKKP LTPTNHQAPT NPVNFGKSAS KGTHLPMTNT TVNPLYMIAG LIVLIVAISFGITKNKKRKNEF065-3 (SEQ ID NO:247)GGTTA AAGCAGGAGA TACAGAAGGA ATGACCAATA CGGTGAAAGT GAAAGACGACAGTCTGGCTG ATTGTAAACG GATATTGGAA GGACAAGCTA CTTTCCCAGT TCAAGCGGGTGAAACGGAAC CAGTCGATTT AGTAGTTGTT GAAGATGCTA GTGGTAGTTT TTCAGATAATTTTCCACATG TAAGACAAGC GATTGATGAA GTGGTTCAAG GCTTATCTGA TCAAGACCGCGTGATGCTGG CTTCATATCG CGGCGGAAAA CAATTTATGT TTCCTGATGG AAAGACAAAAATTAATTCAG CTGATTATGA TATGAATGTG CGCGTCAATA CGCAATTGAC TTATGATAAAAGCCAATTTG TCTCTGGTTT TGGAGACGTT CGGACGTATG GTGGTACGCC AACCGCCCCAGGATTGAAAC TCGCTTTAGA TACCTACAAT CAAACACACG GAGATTTAAC GAATCGAAAAACGTATTTCC TATTAGTGAC AGATGGGGTC GCTAATACAC GTTTAGATGG TTACTTGCATAAGACCAATA CCAATGATTC AATCAATGAA TATCCAGATC CAAGACATCC TCTTCAAGTCTCAGTGGAAT ATAGTAATGA CTACCAAGGT GCAGCAGCAC AAGTTTTAGC GTTAAACCAAGAAATTACTA ACCAAGGCTA TGAAATGATT AATGCGTATT GGGAAAGTGT TGAATCTTTAAGTTCACTGA ATTCATACTT TGATAAATAT AAAACAGAAC TGGGTCCTTT TGTAAAACAAGAGTTGCAAC AAGGCTCTAG CACACCAGAA GATTTTATTA CAAGCCAATC TATTGATGATTTTACAACCC AATTAAAACA AATTGTCAAA GATCGTCTGG CGCAATCGAC ACCAGCAACAGCTTCATTAA CGATTGCCAA TCAATTTGAT ATTCAATCTG CGACCGCTAC GGACGATGCTGGAAATGATG TGCCTGTTCA AATTAACGGA CAAACCATTT CAGCAACTAG TACAGAAGGTTACGTAGGAA ACATCACGAT TCACTACGAA GTCAAAGAAA ATACAGCGAT TGATCCAGCAACCCTTGTAA GTAGTGGGAC AATGAATCAA GGAACAATTG CTAAGGAATT TCCAGAAGCGACGATTCCTA AAAATGACAA TGCGCATGCG TGTGACGTGA CGCCAGAAGA TCCAACGATTACAAAAGATA TCGAAAATCA AGAACACTTA GATTTAACCA ATCGTGAAGA TAGTTTCGATTGGCATGTCA AAACACCCTT TGCCAACGAA ACCAGTACTT GGACCCAAGC CAGCATGGTGGATGACATTA ATAAAGTGCT ACATATCATT GATGTGAAAG TCACCGACGA AAATGGTAAAGATGTTACAG CTAACGGCAC AGTAACACAA GAAAATAACA AAGTAACTTT TGAAATGAACAAACAAGCAG ACAGCTATGA CTATTTAAGT GGTCATACGT ATACAATGAC TATCACCACTAAAATTAAAA CTGACGCAAC GGACGAAGAA TTAGCGCCTT ACATTGAACA AGGCGGGATTCCCAACCAAG CCGACTTAAA CTTTGGCAAT GAAGGTGACG TGTTACATTC CAACAAACCAACCGTAACAC CACCGCCAGT TGATCCAAAT ATTGCTAAAG ACGTAGAAGG ACAAGAACATTTAGATTTAA CCAACCGCGA TCAAGAATTT AAATGGAACG TCAAAACAGC TTTCGGTAACGAAACAAGCA CTTGGACCCA AGCCAGCATG GTAGATGACA TTAATAAAGT GTTAGACATCACTGATCTAA AAGTCACAGA TGAAAATGGT AAAGATCTTA CAGCTAACGG CAAAGTAACACAAGAAAATA ACAAAGTAAC TTTTGAAATG AACAANCAAG CNGACAGCTA TGACTATTTAAGTGGTCATA CGTACACAAT GACCATTACT ACTAAAATCA AAGCTAGCGC AACGGACGAAGAATTAGCAC CTTATATTGA ACAAGGTGGC ATTCCCAACC AAGCCGACTT GAACTTTGGCAACGAAGGTG ACGTGTTGCA TTCCAACAAA CCAACCGTAA CACCACCTGC ACCAACGCCAGAAGATCCAA CGATTACAAA AGATATCGAA GGCCAAGAAC ATTTAGATTT AACCAACCGTGACCAAGAAT TTAAATGGAA CGTCAAAACA GCTTTCGGTA ACGAAACAAG CACATGGACCCAAGCCAGCA TGGTGCATGA CATTAATAAA GTGTTAGACA TCACAGACGT GAAAGTTNCTGANGAAAATG GCAAAGATGT TACAGATAAT GGCATAGTAA CACAAGAAAA TAACAAAGTAACTTTTACTA TGAACAAAAA AGATGACAGC TACTCTTACT TAGCTGGTCA TACATACACAATGACTATTA CCACTAAAAT TAAAACTGAC GCAACGGATG AAGAATTAGC GCCTTATATTGAACAAGGCG GGATTCCCAA CCAAGCCGAC TTAAACTTTG GCAACGAAGG TGACGTGTTGCATTCCAACA AGCCAACCGT AACACCGCCT GCACCAACGC CAGAAGACCC AAAAAAACCTGAACCTAAAC AACCGCTAAA ACCGAAAAAA CCGTTGACGC CTACAAATCA TCAAGCACCAACGAACCCAG TCAATTTTGG AAAATCAGCA AGTAAAGGAA TTEF065-4 (SEQ ID NO:248)AVKAGDTEGM TNTVKVKDDSLADCKRILEG QATFPVQAGE TEPVDLVVVE DASGSFSDNF PHVRQAIDEV VQGLSDQDRVMLASYRGGKQ FMFPDGKTKI NSADYDMNVR VNTQLTYDKS QFVSGFGDVR TYGGTPTAPGLKLALDTYNQ THGDLTNRKT YFLLVTDGVA NTRLDGYLHK TNTNDSINEY PDPRHPLQVSVEYSNDYQGA AAEVLALNQE ITNQGYEMTN AYWESVESLS SVNSYFDKYK TEVGPFVKQELQQGSSTPED FITSQSIDDF TTQLKQIVKD RLAQSTPATA SLTIANQFDT QSATATDDAGNDVPVQINGQ TISATSTEGY VGNITIHYEV KENTAIDAAT LVSSGTMNQG TTAKEFPEATIPKNDNAHAC DVTPEDPTIT KDIENQEHLD LTNREDSFDW HVKTAFGNET STWTQASMVDDINKVLDIID VKVTDENGKD VTANGTVTQE NNKVTFEMNK QADSYDYLSG HTYTMTITTKIKTDATDEEL APYIEQGGIP NQADLNFGNE GDVLHSNKPT VTPPPVDPNI AKDVEGQEHLDLTNRDQEFK WNVKTAFGNE TSTWTQASMV DDINKVLDIT DVKVTDENGK DVTANGKVTQENNKVTFEMN XQADSYDYLS GHTYTMTITT KIKASATDEE LAPYIEQGGI PNQADLNFGNEGDVLHSNKP TVTPPAPTPE DPTITKDIEG QEHLDLTNRD QEFKWNVKTA FGNETSTWTQASMVDDINKV LDITDVKVXX ENGKDVTDNG IVTQENNKVT FTMNKKDDSY SYLAGHTYTMTITTKIKTDA TDEELAPYIE QGGIPNQADL NFGNEGDVLH SNKPTVTPPA PTPEDPKKPEPKQPLKPKKP LTPTNHQAPT NPVNFGKSAS KGIHEF066-1 (SEQ ID NO:249)TAGCGAAAGA AAATAGGGAG GATTAAAATG TTTAAGAAAG CAACGAAATT ATTATCGACAATGGTGATTG TCGCTGGAAC AGTTGTGGGA AATTTCAGTC CCACATTGGC TTTAGCTGAAGAAGCGGTTA AAGCAGGAGA TACAGAAGGA ATGACCAATA CGGTGAAAGT GAAAGACGACAGTCTGGCTG ATTGTAAACG GATATTGGAA GGACAAGCTA CTTTCCCAGT TCAAGCGGGTGAAACGCAAC CAGTCGATTT AGTAGTTGTT GAAGATGCTA GTGGTAGTTT TTCAGATAATTTTCCACATG TAAGACAAGC GATTGATGAA GTGGTTCAAG GCTTATCTCA TCAAGACCGCGTGATGCTGG CTTCATATCG CGGCGGAAAA CAATTTATGT TTCCTGATGG AAAGACAAAAATTAATTCAG CTGATTATGA TATGAATGTG CGCGTCAATA CGCAATTCAC TTATGATAAAAGCCAATTTG TCTCTGGTTT TGGAGACGTT CGGACGTATG GTGGTACGCC AACCGCCCCAGGATTGAAAC TCGCTTTAGA TACGTACAAT CAAACACACG GAGATTTAAC GAATCGAAAAACGTATTTCC TATTAGTGAC AGATGGGGTC GCTAATACAC GTTTAGATGG TTACTTGCATAAGACCAATA CCAATGATTC AATCAATGAA TATCCAGATC CAAGACATCC TCTTCAAGTCTCAGTGGAAT ATAGTAATGA CTACCAAGGT GCAGCAGCAG AAGTTTTAGC GTTAAACCAAGAAATTACTA ACCAAGGCTA TGAAATGATT AATGCGTATT GGGAAAGTGT TGAATCTTTAAGTTCAGTGA ATTCATACTT TGATAAATAT AAAACAGAAG TGGGTCCTTT TGTAAAACAACAGTTGCAAC AACGGTCTAG CACACCAGAA GATTTTATTA CAACCCAATC TATTGATGATTTTACAACCC AATTAAAACA AATTGTCAAA GATCGTCTGG CGCAATCGAC ACCAGCAACAGCTTCATTAA CGATTGCCAA TCAATTTGAT ATTCAATCTG CCACCGCTAC CCACGATGCTGGAAATGATG TGCCTGTTCA AATTAACGGA CAAACCATTT CAGCAACTAG TACAGAAGGTTACGTAGGAA ACATCACGAT TCACTACGAA GTCAAAGAAA ATACAGOGAT TGATGCAGCAACCCTTGTAA GTAGTGGGAC AATGAATCAA GGAACAATTG CTAAGCAATT TCCAGAAGCGACGATTCCTA AAAATGACAA TGCGCATGCG TGTGACGTGA CGCCAGAAGA TCCAACGATTACAAAAGATA TCGAAAATCA ACAACACTTA GATTTAACCA ATCGTGAAGA TAGTTTCGATTGGCATGTCA AAACAGCCTT TGGCAACGAA ACCAGTACTT GCACCCAAGC CAGCATGGTGGATGACATTA ATAAAGTGCT AGATATCATT GATGTGAAAG TCACCGACGA AAATGGTAAAGATGTTACAG CTAACGGCAC AGTAACACAA GAAAATAACA AAGTAACTTT TGAAATGAACAAACAAGCAG ACAGCTATGA CTATTTAAGT GGTCATACGT ATACAATGAC TATCACCACTAAAATTAAAA CTGACGCAAC GGACGAAGAA TTAGCGCCTT ACATTGAACA AGGCGGGATTCCCAACCAAG CCGACTTAAA CTTTGGCAAT GAAGGTGACG TGTTACATTC CAACAAACCAACCGTAACAC CACCGCCAGT TGATCCAAAT ATTGCTAAAG ACGTAGAAGG ACAAGAACATTTAGATTTAA CCAACCGCGA TCAAGAATTT AAATGGAACG TCAAAACAGC TTTCCGTAACGAAACAAGCA CTTGGACCCA AGCCAGCATG GTAGATGACA TTAATAAAGT GTTAGACATCACTGATGTAA AAGTCACAGA TGAAAATGGT AAAGATGTTA CAGCTAACGG CAAAGTAACACAAGAAAATA ACAAAGTAAC TTTTGAAATG AACAANCAAG CNGACAGCTA TGACTATTTAAGTGGTCATA CGTACACAAT GACCATTACT ACTAAAATCA AAGCTAGCGC AACGGACGAAGAATTAGCAC CTTATATTGA ACAAGGTGGC ATTCCCAACC AAGCCCACTT GAACTTTGGCAACGAAGGTG ACGTGTTGCA TTCCAACAAA CCAACCGTAA CACCACCTGC ACCAACGCCAGAAGATCCAA CGATTACAAA AGATATCGAA GGCCAAGAAC ATTTAGATTT AACCAACCGTGACCAAGAAT TTAAATGGAA CGTCAAAACA GCTTTCGGTA ACGAAACAAG CACATGGACCCAAGCCAGCA TGGTGGATGA CATTAATAAA GTGTTAGACA TCACAGACGT GAAAGTTNCTGANGAAAATC GCAAAGATCT TACAGATAAT GGCATAGTAA CACAAGAAAA TAACAAAGTAACTTTTACTA TGAACAAAAA AGATGACAGC TACTCTTACT TAGCTGGTCA TACATACACAATGACTATTA CCACTAAAAT TAAAACTGAC GCAACGGATG AAGAATTAGC GCCTTATATTGAACAAGGCG GGATTCCCAA CCAAGCCGAC TTAAACTTTG GCAACGAAGG TGACGTGTTGCATTCCAACA AGCCAACCCT AACACCGCCT GCACCAACGC CAGAAGACCC AAAAAAACCTGAACCTAAAC AACCGCTAAA ACCCAAAAAA CCGTTGACGC CTACAAATCA TCAAGCACCAACGAACCCAG TCAATTTTGG AAAATCAGCA AGTAAAGGAA TTCATTTACC AATGACTAATACAACAGTAA ATCCACTTTA CATGATCGCA GGTTTAATTG TCCTTATAGT GGCTATTAGCTTTGGCATAA CAAAAAATAA AAAAAGAAAA AATTAGEF066-2 (SEQ ID NO:250)MF KKATKLLSTM VIVAGTVVGN FSPTLALAEE AVKAGDTEGM TNTVKVKDDSLADCKRILEG QATFPVQAGE TEPXTDLVVVE DASGSFSDNF PHVRQAIDEV VQGLSDQDRVMLASYRGGKQ FMFPDGKTKI NSADYDMNVR VKTQLTYDKS QFVSGFGDVR TYGGTPTAPCLKLALDTYNQ THGDLTNRKT YFLLVTDGVA NTRLDGYLHK TNTNDSINEY PDPRHPLQVSVEYSNDYQGA AAEVLALNQE ITNQGYEMTN AYWESVESLS SVNSYFDKYK TEVGPFVKQELQQGSSTPED FITSQSIDDF TTQLKQIVKD RLAQSTPATA SLTIANQFDI QSATATDDAGNDVPVQTNGQ TISATSTEGY VGNITIHYEV KENTAIDAAT LVSSGTMNQG TIAKEFFEATIPKNDNAHAC DVTPEDPTIT KDIENQEHLD LTNREDSFDW HVKTAFGNET STWTQASMVDDINKVLDIID VKVTDENGKD VTANGTVTQE NNKVTFEHNK QADSYDYLSG HTYTMTTTTKIKTDATDEEL APYIEQGGIP NQADLNFGNE GDVLHSNKPT VTPPPVDPNI AKDVEGQEHLDLTNRDQEFK WNVKTAFGNE TSTWTQASMV DDTNKVLDTT DVKVTDENGK DVTANGKVTQENNKVTFEMN XQADSYDYLS GHTYTMTITT KIKASATDEE LAPYIEQGGI PNQADLNFGNEGDVLHSNKP TVTPPAPTPE DPTITKDIEG QEHLDLTNRD QEFKWNVKTA FGNETSTWTQASMVDDINKV LDITDVKVXX ENGKDVTDNG IVTQENNKVT FTMNKKDDSY SYLAGHTYTMTITTKIKTDA TDEELAPYTE QGGTPNQADL NFGNEGDVLH SNKPTVTPPA PTPEDPKKPEPKQPLKPKKP LTPTNHQAPT NPVNFGKSAS KGIHLPMTNT TVNPLYMIAG LIVLIVAISFGITKNKKRKNEF066-3 (SEQ ID NO:251)GGTTA AAGCAGGAGA TACAGAACGA ATGACCAATA CGGTGAAAGT GAAAGACGACAGTCTGGCTG ATTGTAAACG GATATTGGAA GGACAAGCTA CTTTCCCAGT TCAAGCGGGTGAAACGGAAC CAGTCGATTT AGTAGTTGTT GAAGATGCTA GTGGTAGTTT TTCAGATAATTTTCCACATC TAAGACAAGC GATTGATGAA GTGGTTCAAG GCTTATCTGA TCAAGACCGCGTGATGCTGG CTTCATATCG CGGCGGAAAA CAATTTATGT TTCCTGATGG AAAGACAAAAATTAATTCAG CTGATTATGA TATGAATGTG CCCGTCAATA CGCAATTGAC TTATGATAAAAGCCAATTTG TCTCTGGTTT TGGAGACGTT CGGACGTATG GTGGTACGCC AACCGCCCCAGGATTGAAAC TCGCTTTAGA TACGTACAAT CAAACACACG GAGATTTAAC GAATCGAAAAACGTATTTCC TATTAGTGAC AGATGGGGTC GCTAATACAC GTTTAGATGG TTACTTGCATAAGACCAATA CCAATGATTC AATCAATGAA TATCCAGATC CAAGACATCC TCTTCAAGTCTCAGTGGAAT ATAGTAATGA CTACCAAGGT GCAGCAGCAG AAGTTTTAGC GTTAAACCAAGAAATTACTA ACCAAGGCTA TGAAATGATT AATGCGTATT GGCAAAGTGT TGAATCTTTAAGTTCAGTGA ATTCATACTT TGATAAATAT AAAACAGAAG TGGGTCCTTT TGTAAAACAAGAGTTGCAAC AAGGGTCTAG CACACCAGAA GATTTTATTA CAAGCCAATC TATTGATGATTTTACAACCC AATTAAAACA AATTGTCAAA GATCGTCTGG CGCAATCGAC ACCAGCAACAGCTTCATTAA CGATTGCCAA TCAATTTGAT ATTCAATCTG CGACCGCTAC GGACGATGCTGGAAATGATG TGCCTGTTCA AATTAACGGA CAAACCATTT CAGCAACTAG TACAGAAGGTTACGTAGGAA ACATCACGAT TCACTACGAA GTCAAAGAAA ATACAGCGAT TGATGCAGCAACCCTTGTAA GTAGTGGGAC AATGAATCAA GGAACAATTG CTAAGGAATT TCCAGAAGCGACCATTCCTA AAAATGACAA TGCGCATGCC TGTGACGTGA CGCCAGAAGA TCCAACGATTACAAAAGATA TCGAAAATCA AGAACACTTA GATTTAACCA ATCGTGAAGA TAGTTTCGATTGGCATGTCA AAACAGCCTT TGGCAACGAA ACCAGTACTT GGACCCAAGC CAGCATGGTGGATGACATTA ATAAAGTGCT AGATATCATT GATGTGAAAG TCAEF066-4 (SEQ ID NO:252)AVKAGDTEGM TNTVKVKDDSLADCKRTLEG QATFPVQAGE TEPVDLVVVE DASGSFSDNF PHVRQAIDEV VQGLSDQDRVMLASYRGGKQ FMFPDGKTKI NSADYDMNVR VNTQLTYDKS QFVSGFGDVR TYGGTPTAPGLKLALDTYNQ THGDLTNRKT YFLLVTDGVA NTRLDGYLHK TNTNDSINEY PDPRHPLQVSVEYSNDYQGA AAEVLALNQE ITNQGYEMIN AYWESVESLS SVNSYFDKYK TEVGPFVKQELQQGSSTPED FITSQSIDDF TTQLKQIVKD RLAQSTPATA SLTIANQFDI QSATATDDAGNDVPVQINGQ TISATSTEGY VGNITIHYEV KENTAIDAAT LVSSGTMNQG TIAKEFPEATIPKNDNAHAC DVTPEDPTIT KDIENQEHLD LTNREDSFDW HVKTAFGNET STWTQASMVDDINKVLDIID VKVTEF067-1 (SEQ ID NO:253)TAGCGAAAGA AAATAGGGAG GATTAAAATG TTTAAGAAAG CAACGAAATT ATTATOGACAATGGTGATTG TCGCTGGAAC AGTTGTGGGA AATTTCAGTC CCACATTGGC TTTAGCTGAAGAAGCGGTTA AAGCAGGAGA TACAGAAGGA ATGACCAATA CGGTGAAAGT GAAAGACGACAGTCTGGCTG ATTGTAAACG GATATTGGAA GGACAAGCTA CTTTCCCAGT TCAAGCGGGTGAAACGGAAC CAGTCGATTT AGTAGTTGTT GAAGATGCTA GTGGTAGTTT TTCAGATAATTTTCCACATG TAAGACAAGC GATTGATGAA GTGGTTCAAG GCTTATCTGA TCAAGACCGCGTGATGCTGG CTTCATATCG CGGCGGAAAA CAATTTATGT TTCCTGATGG AAAGACAAAAATTAATTCAG CTGATTATGA TATGAATGTG CGCGTCAATA CGCAATTGAC TTATGATAAAAGCCAATTTG TCTCTGGTTT TGGAGACGTT CGGACGTATG GTGGTACGCC AACCGCCCCAGGATTGAAAC TCGCTTTAGA TACGTACAAT CAAACACACG GAGATTTAAC GAATCGAAAAACGTATTTCC TATTAGTCAC AGATGGGGTC GCTAATACAC GTTTAGATGG TTACTTGCATAAGACCAATA CCAATGATTC AATCAATGAA TATCCAGATC CAAGACATCC TCTTCAAGTCTCAGTGGAAT ATAGTAATGA CTACCAAGGT CCAGCAGCAG AAGTTTTAGC GTTAAACCAAGAAATTACTA ACCAAGGCTA TGAAATGATT AATGCGTATT GGGAAAGTGT TGAATCTTTAAGTTCAGTGA ATTCATACTT TGATAAATAT AAAACAGAAG TGGGTCCTTT TGTAAAACAAGAGTTGCAAC AAGGGTCTAG CACACCAGAA GATTTTATTA CAAGCCAATC TATTGATGATTTTACAACCC AATTAAAACA AATTGTCAAA GATCGTCTGG CCCAATCGAC ACCAGCAACAGCTTCATTAA CGATTGCCAA TCAATTTGAT ATTCAATCTG CGACCGCTAC GGACGATGCTGGAAATGATG TGCCTGTTCA AATTAACGGA CAAACCATTT CAGCAACTAG TACAGAAGGTTACCTAGGAA ACATCACGAT TCACTACCAA GTCAAACAAA ATACAGCGAT TGATCCAGCAACCCTTGTAA GTAGTGGGAC AATGAATCAA GGAACAATTG CTAACGAATT TCCAGAAGCGACGATTCCTA AAAATGACAA TGCOCATGCG TGTGACGTGA CGCCAGAAGA TCCAACGATTACAAAAGATA TCGAAAATCA AGAACACTTA GATTTAACCA ATCGTGAAGA TAGTTTCGATTGGCATGTCA AAACAGCCTT TGGCAACCAA ACCAGTACTT GGACCCAAGC CAGCATGGTGGATGACATTA ATAAAGTGCT AGATATCATT GATGTGAAAG TCACCGACGA AAATGGTAAAGATGTTACAG CTAACGGCAC AGTAACACAA GAAAATAACA AAGTAACTTT TGAAATGAACAAACAAGCAG ACACCTATGA CTATTTAAGT GGTCATACGT ATACAATGAC TATCACCACTAAAATTAAAA CTGACGCAAC GCACGAAGAA TTAGCGCCTT ACATTGAACA AGGCGGGATTCCCAACCAAG CCGACTTAAA CTTTGGCAAT GAAGGTGACG TGTTACATTC CAACAAACCAACCGTAACAC CACCGCCAGT TGATCCAAAT ATTGCTAAAG ACGTAGAAGG ACAAGAACATTTAGATTTAA CCAACCGCGA TCAAGAATTT AAATGGAACG TCAAAACAGC TTTCGGTAACGAAACAAGCA CTTGGACCCA ACCCAGCATC GTAGATGACA TTAATAAAGT GTTAGACATCACTGATGTAA AAGTCACAGA TGAAAATGGT AAAGATGTTA CAGCTAACGG CAAAGTAACACAAGAAAATA ACAAAGTAAC TTTTGAAATG AACAANCAAG CNGACACCTA TGACTATTTAAGTCGTCATA CGTACACAAT GACCATTACT ACTAAAATCA AAGCTAGCGC AACGGACGAAGAATTAGCAC CTTATATTGA ACAACGTGGC ATTCCCAACC AAGCCGACTT GAACTTTGGCAACGAAGGTG ACGTGTTGCA TTCCAACAAA CCAACCGTAA CACCACCTGC ACCAACCCCAGAAGATCCAA CCATTACAAA AGATATCGAA CCCCAAGAAC ATTTACATTT AACCAACCGTGACCAAGAAT TTAAATGGAA CGTCAAAACA GCTTTCGGTA ACGAAACAAG CACATGGACCCAACCCAGCA TGGTGGATGA CATTAATAAA GTCTTAGACA TCACAGACGT GAAAGTTNCTGANGAAAATG GCAAAGATGT TACAGATAAT GGCATAGTAA CACAAGAAAA TAACAAAGTAACTTTTACTA TGAACAAAAA AGATGACAGC TACTOTTACT TAGCTGGTCA TACATACACAATGACTATTA CCACTAAAAT TAAAACTGAC GCAACGGATG AAGAATTACC GCCTTATATTGAACAACGCG GGATTCCCAA CCAAGCCGAC TTAAACTTTG GCAACGAAGG TGACGTCTTGCATTCCAACA AGCCAACCGT AACACCGCCT GCACCAACGC CAGAAGACCC AAAAAAACCTGAACCTAAAC AACCGCTAAA ACCGAAAAAA CCGTTGACGC CTACAAATCA TCAAGCACCAACGAACCCAG TCAATTTTCG AAAATCAGCA AGTAAAGGAA TTCATTTACC AATGACTAATACAACAGTAA ATCCACTTTA CATGATCGCA GGTTTAATTG TCCTTATAGT GGCTATTAGCTTTGGCATAA CAAAAAATAA AAAAAGAAAA AATTACEF067-2 (SEQ ID NO:254)ME KKATKLLJSTM VTVAGTVVGN FSPTLALAEE AVKAGDTEGM TNTVKVKDDSLADCKRILEG QATFPVQAGE TEPVDLVVVE DASGSFSDNF PHVRQAIDEV VQCLSDQDRVMLASYRGGKQ FMFPDGKTKI NSADYDMNVR VNTQLTYDKS QFVSGFGDVR TYGGTPTAPGLKLALDTYNQ THGDLTNRKT YFLLVTDGVA NTRLDGYLHK TNTNDSTNEY PDPRHPLQVSVEYSNDYQGA AAEVLALNQE ITNQGYEMIN AYWESVESLS SVNSYFDKYK TEVGPFVKQELQQGSSTPED FITSQSIDDF TTQLKQIVKD RLAQSTPATA ELTIANQEDI QSATATDDAGNDVPVQTNGQ TISATETEGY VCNITIHYEV KENTAIDAAT LVSSCTMNQG TIAKEFPEATIPKNDNAHAC DVTPEDPTIT KUTENQEELD LTNREDSFDW HVKTAFGNET STWTQASMVDDINKVLDIID VKVTDENGKD VTANGTVTQE NNKVTFEMNK QADSYDYLSG HTYTMTITTKIKTDATDEEL APYTEQOGIP NQADLNFGNE GDVLHSNKPT VTPPPVDPNI AKDVEGQEHLDLTNRDQEFK WNVKTAFGNE TSTWTQASMV DDINKVLDIT DVKVTDENGK DVTANGKVTQENNKVTFEMN XQADSYDYLS GHTYTMTITT KIKASATDEE LAPYIEQGGI PNQADLNEGNECDVLHSNKP TVTPPAPTPE DPTITKDIEG QEHLDLTNRD QEFKWNVKTA FCNETSTWTQASMVDDTNKV LDITDVKVXX ENGKDVTDNG IVTQENNKVT FTMNKKDDSY SYLAGHTYTMTITTKIKTDA TDEELAPYIE QGGIPNQADL NFGNEGDVLH SNKPTVTPPA PTPEDPKKPEPKQPLKPKKP LTPTNHQAPT NPVNFGKSAS KGIHLPMTNT TVNPLYMIAG LIVLIVAISFGITKNKKRKNEF067-3 (SEQ ID NO:255)GOT AGATATCATT GATGTGAAAG TCACCGACGA AAATGGTAAAGATOTTACAG CTAACGGCAC AGTAACACAA GAAAATAACA AAGTAACTTT TGAAATGAACAAACAAGCAG ACAGCTATGA CTATTTAAGT GGTCATACGT ATACAATGAC TATOACCACTAAAATTAAAA CTGACGCAAC GGACGAAGAA TTAGCGCCTT ACATTGAACA AGGCGGGATTCCCAACCAAG CCGACTTAAA CTTTGGCAAT GAAGGTGACG TOTTACATTO CAACAAACCAACCGTAACAC CACCGCCAGT TGATCCAAAT ATTGCTAAAG ACGTAGAAGG ACAAGAACATTTAGATTTAA CCAACCGCGA TCAAGAATTT AAATGGAACG TCAAAACAGC TTTCGGTAACGAAACAAGCA OTTOGACOCA AGCCAGCATG GTAGATGACA TTAATAAAGT OTTAGACATOACTGATGTAA AAGTCACAGA TGAAAATGGT AAAGATGTTA CAGCTAACGG CAAAGTAACACAAGAAAATA ACAAAGTAAC TTTTGAAATG AACAANCAAG ONGACAGOTA TGACTATTTAAGTGGTCATA CGTACACAAT GACCATTACT ACTAAAATCA AAGCTAGCGC AACGGACGAAGAATTAGCAC CTTATATTGA ACAAGGTGGC ATTCCCAACC AAGCCGACTT GAACTTTGGCAACGAAGGTG ACGTGTTGCA TTCCAACAAA CCAACCGTAA CACCACCTGC ACCAACGCCAGAAGATCCAA CGATTACAAA AGATATCGAA GGCCAAGAAC ATTTAGATTT AACCAACCGTGACCAAGAAT TTAAATGGAA CGTCAAAACA GCTTTCGCTA ACGAAACAAG CACATGGACCCAAGCCAGCA TGGTGGATGA CATTAATAAA OTOTTAGACA TOACAGACOT GAAAGTTNCTGANGAAAATG GCAAAGATGT TACAGATAAT GGCATAGTAA CACAAGAAAA TAACAAAGTAACTTTTACTA TGAACAAAAA AGATOACAGO TACTCTTACT TAGCTGGTCA TACATACACAATGACTATTA CCACTAAAAT TAAAACTGAC GCAACGGATG AAGAATTAGC GCCTTATATTGAACAAGGCG GGATTCCCAA CCAAGCCGAC TTAAACTTTG GCAACGAAGG TGACGTGTTGCATTCCAACA AGCCAACCGT AACACCGCCT GCACCAACGC CAGAAGACCC AAAAAAACCTGAACCTAAAC AACCGCTAAA ACCGAAAAAA CCGTTGACGC CTACAAATCA TCAAGCACCAACGAACCCAG TCAATTTTGG AAAATCAGCA AGTAAAGGAA TTEF067-4 (SEQ ID NO:256)VLDIID VKVTDENGKD VTANGTVTQE NNKVTFEMNK QADSYDYLSG HTYTMTITTKIKTDATDEEL APYTEQGGIP NQADLNFGNE GDVLHSNKPT VTPPPVDPNI AKDVEGQEHLDLTNRDQEFK WNVKTAFGNE TSTWTQASMV DDTNKVLDTT DVKVTDENGK DVTANGKVTQENNKVTFEMN XQADSYDYLS GHTYTMTTTT KIKASATDEE LAPYTEQOGI PNQADLNFGNEGDVLHSNKP TVTPPAPTPE DPTITKDIEG QEHLDLTNRD QEFKWNVKTA FGNETSTWTQASMVDDINKV LDITDVKVXX ENGKDVTDNG IVTQENNKVT FTMNKKDDSY SYLAGHTYTMTITTKIKTDA TDEELAPYTE QGGIPNQADL NFGNEGDVLH SNKPTVTPPA PTPEDPKKPEPKQPLKPKKP LTPTNHQAPT NPVNFGKSAS KGIHEF068-1 (SEQ ID NO:257)TAGGGGAAGC TAATGATCTT GGTATTTATC GTTTATTTTA AAGAAAAGAG GGACGATCAGATGAAAAAGA AAATTGTTGA GGATTTTAAT CGGAAAAGTC AGCATAAAAA ATGGACAAAACGCAAGATGC TTAATTTAGC AATATCAAGT GGTTTATTAT TTACGTCATT AGCAATCCCTGTAAGTATAG CTGTTACCTC TGGCACAATC AGTGCATCAG CAGCGGTCTT GGATATCGAACTATTATCAA ATGTTACGTC AAATAATGAC AGTGGCACTT CAACGAGTAA TCGTTGGACAGCCGCAAACC AAAATCAACC AGTTAATTTC ACGGTTTCTG GTGGCGCTTT AGCAGATGCTTCCGCTGTGT TTAGTGGACA AAAACAAGCG GTGTTAGTGG TTCCTCCTGA GTTAAGAGGAAATGTAGCTG CAGOAGGOAG CGCAGCAATC AATACCAATG TCACGATTGA TCTTTCAAAAGTTACTTTTT TGACTGCCGT TTTGAATGCA GCCAATGATT TAACCAATGT GATTACTCAAATTACCAGTG GGGCGTTAGG GAATTTAACT GGTGTTGATA TTGATTTGAC GGAAGTGAATCGTCAATTGG AATTAGTTAA TAACATTGAA AACTTAGGTG CTGCTTCATT TACAGCTCCGGAAACGTTAG CAGCTGACGG CTCATACATT AGTGCACCGA TTAGTGATGG TTTAGGGTTAGTTTTAGCCC AAAATGTTTC AAACATCTTA CAAGATTTGA ATGCGGCAGT TCAAGCTTTGGAGGCAAAAG GTACCAGTAT CCCAAGTAAT CTTGTCGCCG CAGCTATAAA TGCAGCCTTGCTTCCTGTCA AAGGCACGGT AAACGTGGCT GTTTCAGGTG CTTTGCCTTT ATTAGCGGTTGGTGGTTCAG GCGTAAATGA GTTAGTGGAT GCTTCTTTAC TAGGCACAAC CACGGTTACTTTACCAACTA CCGTTTCAAC ACCTCAAAAT TTATCCAATA ATTTAGATGC TCGTTTTGTAGGAACAGTCG TTCAAACAGA TCTTTTAGAC GTTAATTTAT TAGCAACAGC AGACCGTGTATCCAACATTT ATTTTGCTGC AGGCACTACT AGTGAAGTAA CCGCACCAAC AATCACAGGAGTAACAGGTA ATTCAACAGC AGGTTACGAA GTTAAAGGAA CTGCCGATGC CAATGCCACGGTTGAAATCC GAAATGCAGG AGGCACCGTA ATAGGCACAG GTACCGCTGA TGGGACAGGAGCGTTTACAG TTACCGTTCC CGCAGGTGAA GCACGCGCCA ATGAAACGTT AACCGCCGTAGCGAAAAACG CCAGCGGNAC AGAAAGNACG CCAACAACGT TCCAAACNCC AGCGGATGAAGCAACCGTAA CCGCACCAAC AATCACAGGA GTGACAGGTA ATTCAACGGC AGGTTACGAAGTTAAAGGAA CTGCCGATGC CAATGCCACG GTTGAAATCC GAAATGCAGG AGGCACCGTAATAGOCACAG GTACCGCTGA TGGGACAGGA GCGTTTACAG TTACCGTTCC CGCAGGTGAAGCAGGTGCCA ATGAAACGTT AACCGCCGTA GCGAAAAACG CCAGCGGCAC ACAAAGTACGCCAACAACGT TCCAAACACC AGCGGATGAA GCAACCGTAA CCGCACCAAC AATCACAGGAGTGACAGGTA ATTCAACAGC AGGTTACGAA GTTAAAGGAA CTGCCGATGC CAATGCCACGGTTGAGATCC GAAATGCAGG AGGTGCCGTG ATAGGTACAG GTACTGCTGA TGGGACAGGGGCATTTACAG TTACCATTCC CGCAGGTGAA GCAGGTGCGA ATGAAACGTT AACCGCCGTAGCGAAAAACG CCAGCGGTAC AGAAAGTACG CCAACAACGT TCCAAACGCC AGCGGATCCTAATACGCCCG TGGCGACGCC AATTGTTGAG ACTGTAACAG GTAGTACAAC AAAAGGCTATGAGGTCAAAG GGACTGCTGA AGTTGGCACC ACCATTGAGG TTCGCGATGC AGCTGGCACGGTCCTTGGTA CTGCAACAAC TGGAACTGAC CGAAAATATA CAGTGACTTT AGATTCAGGAACAGCAACAG CAAATCAAAC GCTGAGCGTT GTAGCGAAAA ACGCTAGTGG CACGGAAAGTCAACCAGCAA CGGCGACAAC ACCAGCTGAT GTCACTGCAC CAACAGTTGA TAACATCACAGGCAACTCTG GTTCGGGTTA TGAAATTACA GGAACAGCAG ACCCTAACAC AACAATCGAAGTTCGTGATC CATCTCGGGC AGTCATTGCT ACAGGTACCT CTGATGCGAA TGGTGATTTTACTGTAACGC TACCAACGGG AACGACCAAT CCTGGGGATA CCTTAACAGT GATTGGAAAGGATAACGCGG GAAATGAAAG TCAACCGACT GAAGTCCTTG TTCCTGCTGA TGCCACGGTTACAGCACCAA CTGTAACAGG AGTAACAGGT AATTCAGTTG CTGGTTATCA GGTGACAGGCACCGCTGATC CGAATGCTAC CATCGAAATT CGTGATGCAG ATGGGAACGT GATTGCAACAGGGACTGCCG ATGGGACTGG TTCCTTTGCT GTGAACCTTC CAGCTGGGAC GGCAAATGCGAATCAAACAT TGACAGCGTT AGCCAAAGAT CCTGCTGGCA ATACAAGTAC ACCGACAACCTTCCAAACAC CAGCAGATGA AGTAGTGGCA CCGCCAAGTG TCGACAAAGT TACTGGGAATACAACACAAG GATATCAAGT GACAGGTACC GCTGAACTTG GCACCACCAT TGAAGTTCGTGCAACAGACG GAACAGTTTT AGGCACCGCA ACAACTGGAC CGACTGGCCA ATATACTGTGACGTTAGCTT CAGGAAAAGC AACAGCTAAA CAAACAGTGA ATGTAGTTGC TAAAAATGATACTGGACTTG AGAGTCAACC AACTACAGCT ATGACACCCG CTGATGTTAC CACACCAACAATTGGTGACA TTACTGGAGA TTCAACAACT GGTTATGAAA TCACTGGGAC CGCGGACCCTAATACCACCA TTGAAGTACG GAACCCAGAT GGAACAATTA TTGGTACAAC GACAACGGATGATCAAGGAA ACTTTACTGT GGACCTTCCA GCGGGAGCCG CTAATCCTGG TGATACATTAACAGTTGTTG GAAAAGACGG TGACGGCAAT CAAAGTCAAC CAACGGAAGT GACGGTCCCTGAAGATGCAA CCGTAGCAGC ACCAACTGTG ACGACTGTTA CAGGAACAAC TGCCACTGGGTATCAAGTAA CCGGCACGGC AGAGCCAAAT GTCACCATTG AGATTCACAA TGAAGCAGGTTTAGTTATTG CTACGGGAAC GACTGATGGT GCTGGCGCAT TTACAATCAC TCTTCCGACGGGCACAGCAA CAGCTAACGA AGCCTTAACT GCCATTGCGA AAGATGCTGC TGGGAAAGAAAGTAATCCGA CTGCTTTCAA AACACCTGCT GATCCAGATG CACCAGTCGC GACACCTACTGTTGACAAAA TCACTGGTAG CACGACAAAC GGCTATCAAG TAGTAGGAGC AGCAGAAGTTGGTACAACAG TTGAGGTGCG TGACGCCGAT GGCACAGTCC TTGGCATGGC AACTACTGGAACTGATGGCA AATACACAGT GACTTTAGAG CCAGGGAAGG CCTCAGCTAA CGAAACAATAACTGTCGTAG CGAAAAATGC AACAGGAAAA GAAAGTCAGC CAGCTACAGC AACTACACCAGTCGACTTAG CCACACCAAC CATTGATTCT ATTACCGGAA ATTCTAGTAA AGGTTACGAAATCACTGGAA CGGCGGAGCC AAAAACCACT ATTGATGTCC GTGACGCAGA CGGAACCATCATTGCTGCTA CAACTGCTAA CGAAACCGGC CAATATACGG TGACTCTACC AGCTGGCGTAGTGACACCAG GAGAAACGAT TACGATTATT AGCAAAGATG GCGCAGGTAA TGAAAGTCAACCAGCTACAC CCGTTATTCC AGCGGATGTT GTTTTAGCGG CGCCAACTAT TACGAAGGTTGAAGGAAACA AAGCCAATGG CTATACAGTC ACTGGAACTG CTGATCCAAA TGTCACGGTTCAATTTTACA ATAGCAGTGA ACAATTATTG GCAAGTGCCA ATACAACTAC TGGAGCTACCTTCTCCGTTC ATATTGCAGC AGGGTTAGCA ACAGAAAAAG AAACGTTAAC CGCACTAACCACAGATACAC AAGGAAATGT GAGTCCTAAA ACCACATTTA TGACGCCAGC CGATATTACGGGAGAACCAG AGATTAAAAT TGCGGCACCA ACTGTTTCTT CAGTTTTAGG AACGTCTAAAGCCGGCTACC TCATCAAAGG AACAGCTGAA CCAAACCGAA TCATTCAAAT TAGTAACCGACTATTAAGAA GTGTGATTGC TGTAGGTGCC ACCGATGCTG AAGGCAACTT CGCTATCCAATTAACAGCGG GACAAGCGAC TGCTCAACAA AGTTTACTTG CGACAGCTAC CGATGGCGCAGGACATTACA GTACGGCTAC AACCTTCATG ACGCCAGCCG ACCCAACGAA TCCTGGAGGAGGCAATGGTA ACACTGGCGG AAATAACGGC AATACAGGCG GCAATACAGG AAACAATGGCGCAACTGGCG GGAATAATGG GAATGGTTCA AACACAGGTT CAAATCCAAA TGGAGGTTCTGGTTTAGGCA CAACAGGTTC TGGCTTAGGT TCACTAGGCA ATGGCCTCGG TACAAATGGTAGTGGCTACC ACCCTAAACT AAGTACCATC ACTTATGGCA CTGGAAATCA CGGGAAAACAGGCTACTTAC CTAGCACAGG TGAAAAAGAG TCTTCAGCCG TGACAACAAG TTTGTTTCGCGCCTTTGTCG CACTCCTTGC GAGCATGGGA ATCATCAAAC GCAAACGTAA AAACTAGEF068-2 (SEQ ID NO:258)M KKKIVEDFNR KSQHKKWTKR KMLNLAISSG LLFTSLAIPVSIAVTSCTIS ASAAVLDIEL LSNVTSNNDS GTSTSNRWTA ANQNQPVNFT VSGGALADASAVFSGQKQAV LVVPPELRGN VAAAGSAAIN TNVTIDLSKV TFLTAVLNAA NDLTNVITQITSGALGNLTG VDIDLTEVNR QLELVNNIEN LGAASFTAPE TLAADGSYIS APISDGLGLVLAQNVSNILQ DLNAAVQALE AKGTSIPSNL VAAAINAALL PVKGTVNVAV SGALPLLAVGGSGVNELVDA SLLGTTTVTL PTTVSTPQNL SNNLDARFVG TVVQTDLLDV NLLATADGVSNIYFAAGTTS EVTAPTITGV TGNSTAGYEV KGTADANATV EIRNAGGTVI GTGTADGTGAFTVTVPAGEA GANETLTAVA KNASGTEXTP TTFQTPADEA TVTAPTITGV TGNSTAGYEVKGTADANATV EIRNAGGTVI GTGTADGTGA FTVTVPAGEA GANETLTAVA KNASGTESTPTTFQTPADEA TVTAPTITGV TGNSTAGYEV KGTADANATV EIRNAGGAVI GTGTADGTGAFTVTIPAGEA GANETLTAVA KNASGTESTP TTFQTPADPN TPVATPIVET VTCSTTKGYEVKGTAEVGTT IEVRDAAGTV LGTATTGTDG KYTVTLDSGT ATANQTLSVV AKNASGTESQPATATTPADV TAPTVDNITG NSGSGYEITG TADPNTTIEV RDPSGAVIGT GTSDANGDFTVTLPTGTTNP GDTLTVIGKD NAGNESQPTE VLVPADATVT APTVTGVTCN SVAGYQVTGTADPNATIEIR DADGNVIATG TADGTGSFAV NLPAGTANAN ETLTALAKDP AGNTSTPTTFQTPADEVVAP PSVDKVTGNT TQGYQVTGTA ELGTTIEVRA TDGTVLGTAT TGPTGQYTVTLASGKATAKQ TVNVVAKNDT GLESQPTTAM TPADVTTPTI GDITGDSTTG YEITGTADPNTTIEVRNPDG TIIGTTTTDD QGNFTVDLPA GAANPGDTLT VVGKDGDGNE SQPTEVTVPEDATVAAPTVT TVTGTTATGY QVTGTAEPNV TIEIHNEAGL VIATGTTDGA CAFTITLPTGTATANEALTA IAKDAAGKES NPTAFKTPAD PDAPVATPTV DKITGSTTNG YQVVGAAEVGTTVEVRDADG TVLGMATTGT DGKYTVTLEP GKASANETIT VVAKNATGKE SQPATATTPVDLATPTIDSI TGNSSKGYEI TGTAEPKTTI DVRDADGTII AATTANETGQ YTVTLPAGVVTPGETITIIS KDGAGNESQP ATAVIPADVV LAAPTITKVE GNKANGYTVT GTADPNVTVQFYNSSEQLLA SGNTTTGGTF SVHIAAGLAT EKETLTALTT DTQGNVSPKT TFMTPADITGEPEIKIAAPT VSSVLGTSKA GYLIKGTAEP NRIIQISNRL LRSVIAVGAT DAEGNFAIQLTAGQATAQQS LLATATDGAG HYSTATTFMT PADPTNPGGG NGNTGGNNGN TGGNTGNNGATGGNNCNGSN TGSNPNGGSG LGTTGSGLGS LGNGLGTNGS GYHPKLSTIS YGTGNHGKTGYLPSTGEKES SAVTTSLFGA EVALLASMGI IKRKRKNEF068-3 (SEQ ID NO:259)CTC TGGCACAATC AGTGCATCAG CAGCGGTCTT GGATATCGAACTATTATCAA ATGTTACGTC AAATAATGAC AGTGGCACTT CAACGAGTAA TCGTTGGACAGCCGCAAACC AAAATCAACC AGTTAATTTC ACGGTTTCTG GTGGCGCTTT AGCAGATGCTTCCGCTGTGT TTAGTGGACA AAAACAAGCG GTGTTAGTGG TTCCTCCTGA GTTAAGAGGAAATGTAGCTG CAGCAGGCAG CGCAGCAATC AATACCAATG TCACGATTGA TCTTTCAAAAGTTACTTTTT TGACTGCCGT TTTGAATGCA GCCAATGATT TAACCAATGT GATTACTCAAATTACCAGTG GGGCGTTAGG GAATTTAACT GGTGTTGATA TTGATTTGAC GGAAGTGAATCGTCAATTCG AATTAGTTAA TAACATTGAA AACTTAGGTG CTGCTTCATT TACAGCTCCGGAAACGTTAG CAGCTGACGG CTCATACATT AGTGCACCGA TTAGTGATGG TTTAGGGTTAGTTTTAGCCC AAAATGTTTC AAACATCTTA CAAGATTTGA ATGCGGCAGT TCAAGCTTTGGAGGCAAAAG GTACCAGTAT CCCAAGTAAT CTTGTCGCCG CAGCTATAAA TGCAGCCTTGCTTCCTGTCA AAGGCACGGT AAACGTGGCT GTTTCAGGTG CTTTGCCTTT ATTAGCGGTTGCTGGTTCAG GCGTAAATGA GTTAGTGGAT GCTTCTTTAC TAGGCACAAC CACGGTTACTTTACCAACTA CCGTTTCAAC ACCTCAAAAT TTATCCAATA ATTTAGATGC TCGTTTTGTAGGAACAGTCG TTCAAACAGA TCTTTTAGAC GTTAATTTAT TAGCAACAGC AGACGGTGTATCCAACATTT ATTTTGCTGC AGGCACTACT AGTGAACTAA CCGCACCAAC AATCACAGGAGTAACAGGTA ATTCAACAGC AGGTTACGAA GTTAAAGGAA CTGCCGATGC CAATGCCACGGTTGAAATCC GAAATGCAGG AGGCACCGTA ATAGGCACAG GTACCGCTGA TGGGACAGGAGCGTTTACAG TTACCGTTCC CGCAGGTGAA GCAGGCGCCA ATGAAACGTT AACCGCCGTAGCGAAAAACG CCAGCGGNAC AGAAAGNACG CCAACAACGT TCCAAACNCC AGCGGATGAAGCAACCGTAA CCGCACCAAC AATCACAGGA GTGACAGGTA ATTCAACCGC AGGTTACGAAGTTAAAGGAA CTGCCGATGC CAATGCCACG GTTGAAATCC GAAATGCAGG AGGCACCGTAATAGGCACAG GTACCGCTGA TGGGACAGGA GCGTTTACAG TTACCGTTCC CGCAGGTGAAGCAGGTGCCA ATGAAACGTT AACCGCCGTA GCGAAAAACG CCAGCGGCAC AGAAAGTACCCCAACAACGT TCCAAACACC AGCGGATGAA GCAACCGTAA CCGCACCAAC AATCACAGGAGTGACAGGTA ATTCAACAGC AGGTTACGAA GTTAAAGGAA CTGCCGATGC CAATGCCACGGTTGAGATCC GAAATGCAGG AGGTGCCGTG ATAGGTACAG GTACTGCTGA TGGGACAGGGGCATTTACAG TTACCATTCC CGCAGGTCAA GCAGGTGCGA ATGAAACGTT AACCGCCGTAGCGAAAAACG CCAGCGGTAC AGAAAGTACG CCAACAACGT TCCAAACGCCEF068-4 (SEQ ID NO:260)TSGTIS ASAAVLDIEL LSNVTSNNDS GTSTSNRWTA ANQNQPXTNFT VSGGALADASAVFSGQKQAV LVVPPELRGN VAAAGSAAIN TNVTIDLSKV TFLTAVLNAA NDLTNVITQITSGALGNLTG VDIDLTEVNR QLELVNNIEN LGAASFTAPE TLAADGSYIS APISDGLGLVLAQNVSNILQ DLNAAVQALE AKGTSIPSNL VAAAINAALL PVKGTVNVAV SGALPLLAVGGSGVNELVDA SLLGTTTVTL PTTVSTPQNL SNNLDARFVG TVVQTDLLDV NLLATADGVSNIYFAAGTTS EVTAPTITGV TGNSTAGYEV KGTADANATV EIRNAGGTVI GTGTADGTGAFTVTVPAGEA GANETLTAVA KNASGTEXTP TTFQTPEF069-1 (SEQ ID NO:261)TAGGGGAACC TAATGATCTT GGTATTTATC GTTTATTTTA AAGAAAAGAG GGACGATCAGATCAAAAAGA AAATTGTTGA GGATTTTAAT CGGAAAAGTC AGCATAAAAA ATGGACAAAACGCAAGATGC TTAATTTAGC AATATCAAGT GGTTTATTAT TTACGTCATT AGCAATCCCTGTAAGTATAG CTGTTACCTC TGGCACAATC AGTGCATCAG CAGCGGTCTT GGATATCGAACTATTATCAA ATGTTACGTC AAATAATGAC AGTGGCACTT CAACGAGTAA TCGTTGGACAGCCGCAAACC AAAATCAACC AGTTAATTTC ACGGTTTCTG GTGGCGCTTT AGCAGATGCTTCCGCTGTGT TTAGTGGACA AAAACAAGCG GTGTTAGTGG TTCCTCCTGA GTTAAGAGGAAATGTAGCTG CAGCAGGCAG CGCAGCAATC AATACCAATG TCACGATTGA TCTTTCAAAAGTTACTTTTT TGACTGCCGT TTTGAATGCA GCCAATGATT TAACCAATGT GATTACTCAAATTACCAGTG GGGCGTTAGG GAATTTAACT GGTGTTGATA TTGATTTGAC GGAAGTGAATCGTCAATTGG AATTAGTTAA TAACATTGAA AACTTAGGTG CTGCTTCATT TACAGCTCCGGAAACGTTAG CAGCTGACGG CTCATACATT AGTGCACCGA TTAGTGATGG TTTAGGGTTAGTTTTAGCCC AAAATGTTTC AAACATCTTA CAAGATTTGA ATGCGGCAGT TCAAGCTTTGGAGGCAAAAG GTACCAGTAT CCCAAGTAAT CTTGTCGCCG CAGCTATAAA TGCAGCCTTGCTTCCTGTCA AAGGCACGGT AAACGTGGCT GTTTCAGGTG CTTTGCCTTT ATTAGCGGTTGGTGGTTCAG GCGTAAATGA GTTAGTGGAT GCTTCTTTAC TAGGCACAAC CACGGTTACTTTACCAACTA CCGTTTCAAC ACCTCAAAAT TTATCCAATA ATTTAGATGC TCGTTTTGTAGGAACAGTCG TTCAAACAGA TCTTTTAGAC GTTAATTTAT TAGCAACAGC AGACGGTGTATCCAACATTT ATTTTGCTGC AGGOACTACT AGTGAAGTAA CCGCACCAAC AATCACAGGAGTAACAGGTA ATTCAACAGC AGGTTACGAA GTTAAAGGAA CTGCCGATGC CAATGCCACGGTTGAAATCC GAAATGCAGG AGGCACCGTA ATAGGCACAG GTACCGCTGA TGGGACAGGAGCGTTTACAG TTACCGTTCC CGCAGGTGAA GCAGGCGCCA ATGAAACGTT AACCGCCGTAGCGAAAAACG CCAGCGGNAC AGAAAGNACG CCAACAACGT TCCAAACNCC AGCGGATGAAGCAACCGTAA CCGCACCAAC AATCACAGGA GTGACAGGTA ATTCAACGGC AGGTTACGAAGTTAAAGGAA CTGCCGATGC CAATGCCACG GTTGAAATCC GAAATGCAGG AGGCACCGTAATAGGCACAG GTACCGCTGA TGGGACAGGA GCGTTTACAG TTACCGTTCC CGCAGGTGAAGCAGGTGCCA ATGAAACGTT AACCGCCGTA GCGAAAAACG CCAGCGGCAC AGAAAGTACGCCAACAACGT TCCAAACACC AGCGGATGAA GCAACCGTAA CCGCACCAAC AATCACAGGAGTGACAGGTA ATTCAACAGC AGGTTACGAA GTTAAAGGAA CTGCCGATGC CAATGCCACGGTTGAGATCC GAAATGCAGG AGGTGCCGTG ATAGGTACAG GTACTGCTGA TGGGACAGGGGCATTTACAG TTACCATTCC CGCAGGTGAA GCAGGTGCGA ATGAAACGTT AACCGCCGTAGCGAAAAACG CCAGCGGTAC AGAAAGTACG CCAACAACGT TCCAAACGCC AGCGGATCCTAATACGCCCG TGGCGACGCC AATTGTTGAG ACTGTAACAG GTAGTACAAC AAAAGGCTATGAGGTCAAAG GGACTCCTGA AGTTGGCACC ACCATTGAGG TTCGCGATGC AGCTGGCACGGTCCTTGGTA CTGCAACAAC TGGAACTGAC GGAAAATATA CAGTGACTTT AGATTCAGGAACAGCAACAG CAAATCAAAC GCTGAGCGTT GTAGCGAAAA ACGCTAGTGG CACGGAAAGTCAACCAGCAA CGGCGACAAC ACCAGCTGAT GTCACTGCAC CAACAGTTGA TAACATCACAGGCAACTCTG GTTCGGGTTA TGAAATTACA GGAACAGCAG ACCCTAACAC AACAATCGAAGTTCGTGATC CATCTGGGGC AGTCATTGGT ACAGGTACCT CTGATGCGAA TGGTGATTTTACTGTAACGC TACCAACGGG AACGACCAAT CCTGGGGATA CGTTAACAGT GATTGGAAAGGATAACGCGG GAAATGAAAG TCAACCGACT GAAGTCCTTG TTCCTGCTGA TGCCACGGTTACAGCACCAA CTGTAACAGG AGTAACAGGT AATTCAGTTG CTGGTTATCA GGTGACAGGCACCGCTGATC CGAATGCTAC CATCGAAATT CGTGATGCAG ATGGGAACGT GATTGCAACAGGGACTGCCG ATGGGACTGG TTCCTTTGCT GTGAACCTTC CAGCTGGGAC GGCAAATGCGAATCAAACAT TGACAGCGTT AGCCAAAGAT CCTGCTGGCA ATACAAGTAC ACCGACAACCTTCCAAACAC CAGCAGATGA AGTAGTGGCA CCGCCAAGTG TCGACAAAGT TACTGGGAATACAACACAAG GATATCAAGT GACAGGTACC GCTGAACTTG GCACCACCAT TGAAGTTCGTGCAACAGACG GAACAGTTTT AGGCACCGCA ACAACTGGAC CGACTGGCCA ATATACTGTGACGTTAGCTT CAGGAAAAGC AACAGCTAAA CAAACAGTGA ATGTAGTTGC TAAAAATGATACTGGACTTG AGAGTCAACC AACTACAGCT ATGACACCCG CTGATGTTAC CACACCAACAATTGGTGACA TTACTGGAGA TTCAACAACT GGTTATGAAA TCACTGGGAC GGCGGACCCTAATACCACCA TTGAAGTACG GAACCCAGAT GGAACAATTA TTGGTACAAC GACAACGGATGATCAAGGAA ACTTTACTGT GGACCTTCCA GCGGGAGCCG CTAATCCTGG TOATACATTAACAGTTGTTG GAAAAGACGG TGACGGCAAT GAAAGTCAAC CAACGGAAGT GACGGTCCCTGAAGATGCAA CCGTAGCAGC ACCAACTGTG ACGACTGTTA CAGGAACAAC TGCCACTGGGTATCAAGTAA CCGGCACGGC AGAGCCAAAT GTCACCATTG AGATTCACAA TGAAGCAGGTTTAGTTATTG CTACGGGAAC GACTGATGGT GCTGGCGCAT TTACAATCAC TCTTCCGACGGGCACAGCAA CAGCTAACGA AGCCTTAACT GCCATTGCGA AAGATGCTGC TGGGAAAGAAAGTAATCCGA CTGCTTTCAA AACACCTGCT GATCCAGATG CACCAGTCGC GACACCTACTGTTGACAAAA TCACTGGTAG CACGACAAAC GGCTATCAAG TAGTAGGAGC AGCAGAAGTTGGTACAACAG TTGAGGTGCG TGACGCCGAT GGCACAGTCC TTGGCATGGC AACTACTGGAACTGATGCCA AATACACAGT GACTTTAGAG CCAGGGAAGG CCTCAGCTAA CGAAACAATAACTGTCGTAG CGAAAAATGC AACAGGAAAA GAAAGTCAGC CAGCTACAGC AACTACACCAGTCGACTTAG CCACACCAAC CATTGATTCT ATTACCGGAA ATTCTAGTAA AGGTTACGAAATCACTGGAA CGGCGGAGCC AAAAACCACT ATTGATGTCC GTGACGCAGA CGGAACCATCATTGCTGCTA CAACTGCTAA CGAAACCGGC CAATATACGG TGACTCTACC AGCTGGCGTAGTGACACCAG GAGAAACGAT TACGATTATT AGCAAAGATG GCGCAGGTAA TGAAAGTCAACCAGCTACAG CCGTTATTCC AGCGGATGTT GTTTTAGCGG CGCCAACTAT TACGAAGGTTGAAGGAAACA AAGCCAATGG CTATACAGTC ACTGGAACTG CTGATCCAAA TGTCACGGTTCAATTTTACA ATAGCAGTGA ACAATTATTG GCAAGTGGCA ATACAACTAC TGGAGGTACCTTCTCCGTTC ATATTCCAGC AGGGTTAGCA ACAGAAAAAG AAACGTTAAC CGCACTAACCACAGATACAC AAGGAAATGT GAGTCCTAAA ACCACATTTA TGACGCCAGC CGATATTACGGGAGAACCAG AGATTAAAAT TGCGGCACCA ACTGTTTCTT CAGTTTTAGG AACGTCTAAAGCCGGCTACC TCATCAAAGG AACAGCTGAA CCAAACCGAA TCATTCAAAT TAGTAACCGACTATTAAGAA GTGTGATTGC TGTAGGTGCC ACCGATGCTG AAGGCAACTT CGCTATCCAATTAACAGCGG GACAAGCGAC TGCTCAACAA AGTTTACTTG CGACAGCTAC CGATGGCGCAGGACATTACA GTACGGCTAC AACCTTCATG ACGCCAGCCG ACCCAACGAA TCCTGGACGAGGCAATGGTA ACACTGGCGG AAATAACGGC AATACAGGCG GCAATACAGG AAACAATGGCGCAACTGGCG GGAATAATGG GAATGGTTCA AACACAGGTT CAAATCCAAA TGGAGGTTCTGGTTTAGGCA CAACAGGTTC TGGCTTAGGT TCACTAGGCA ATGGCCTCGG TACAAATGGTAGTGGCTACC ACCCTAAACT AAGTACCATC AGTTATGGCA CTGGAAATCA CGGGAAAACAGGCTACTTAC CTAGCACAGG TGAAAAAGAG TCTTCAGCCG TGACAACAAG TTTGTTTGGCGCCTTTGTCG CACTCCTTGC GAGCATGCGA ATCATCAAAC GCAAACGTAA AAACTAGEF069-2 (SEQ ID NO:262)M KKKIVEDFNR KSQHKKWTKR KMLNLAISSG LLFTSLAIPVSIAVTSGTIS ASAAVLDIEL LSNVTSNNDS GTSTSNRWTA ANQNQPVNFT VSGGALADASAVFSGQKQAV LVVPPELRGN VAAAGSAAIN TNVTIDLSKV TFLTAVLNAA NDLTNVITQITSGALGNLTG VDIDLTEVNR QLELVNNIEN LGAASFTAPE TLAADGSYIS APISDGLGLVLAQNVSNTLQ DLNAAVQALE AKGTSIPSNL VAAAINAALL PVKGTVNVAV SGALPLLAVGGSGVNELVDA SLLGTTTVTL PTTVSTPQNL SNNLDARFVG TVVQTDLLDV NLLATADGVSNIYFAAGTTS EVTAPTITGV TGNSTAGYEV KGTADANATV EIRNAGGTVI GTGTADGTGAPIWTVPAGEA GANETLTAVA KNASGTEXTP TTFQTPADEA TVTAPTITGV TGNSTAGYEVKGTADANATV EIRNAGGTVI GTGTADGTGA FTVTVPAGEA GANETLTAVA KNASGTESTPTTFQTPADEA TVTAPTITGV TGNSTAGYEV KGTADANATV ETENAGGAVI GTGTADGTGAFTVTIPAGEA GANETLTAVA KNASGTESTP TTFQTPADPN TPVATPIVET VTGSTTKGYEVKGTAEVGTT TEVRDAAGTV LGTATTGTDG KYTVTLDSGT ATANQTLSVV AKNASGTESQPATATTPADV TAPTVDNITG NSGSGYEITG TADPNTTIEV RDPSGAVIGT GTSDANGDFTVTLPTGTTNP GDTLTVIGKD NAGNESQPTE VLVPADATVT APTVTGVTGN SVAGYQVTGTADPNATIEIR DADGNVIATG TADGTGSFAV NLPAGTANAN ETLTALAKDP AGNTSTPTTFQTPADEVVAP PSVDKVTGNT TQGYQVTGTA ELGTTIEVRA TDGTVLGTAT TGPTGQYTVTLASGKATAKQ TVNVVAKNDT GLESQPTTAN TPADVTTPTI GDITGDSTTG YEITGTADPNTTIEVENPDG TIIGTTTTDD QGNFTVDLPA GAANPGDTLT VVGKDGDGNE SQPTEVTVPEDATVAAPTVT TVTGTTATGY QVTGTAEPNV TTETHNEAGL VIATGTTDGA GAFTITLPTGTATANEALTA IAKDAAGKES NPTAFKTPAD PDAPVATPTV DKITGSTTNG YQVVGAAEVGTTVEVRDADG TVLGMATTGT DGKYTVTLEP GKASANETIT VVAKNATGKE SQPATATTPVDLATPTTDSI TGNSSKGYEI TGTAEPKTTI DVRDADGTII AATTANETGQ YTVTLPAGVVTPGETITIIS KDGAGNESQP ATAVIPADVV LAAPTITKVE GNKANGYTVT GTADPNVTVQFYNSSEQLLA SGNTTTGGTF SVHTAAGLAT EKETLTALTT DTQGNVSPKT TFMTPADITGEPETKIAAPT VSSVLGTSKA GYLIKGTAEP NRIIQISNRL LRSVIAVGAT DAEGNFAIQLTAGQATAQQS LLATATDGAG HYSTATTFMT PADPTNPGGG NGNTGGNNGN TGGNTGNNGATGGNNGNGSN TGSNPNGGSG LGTTGSGLGS LGNGLGTNGS GYHPKLSTTS YGTGNHGKTGYLPSTGEKES SAVTTSLFGA FVALLASMGI IKRKRKNEF069-3 (SEQ ID NO:263)AGGTGAA GCAGGTGCGA ATGAAACGTT AACCGCCGTAGCGAAAAACG CCAGCGGTAC AGAAAGTACG CCAACAACGT TCCAAACGCC AGCGGATCCTAATACGCCCG TGGCGACGCC AATTGTTGAG ACTGTAACAG GTAGTACAAC AAAAGGCTATGAGGTCAAAG GGACTGCTGA AGTTGGCACC ACCATTGAGG TTCGCGATGC AGCTGGCACGGTCCTTGGTA CTGCAACAAC TGGAACTGAC GGAAAATATA CAGTGACTTT AGATTCAGGAACAGCAACAG CAAATCAAAC GCTGAGCGTT GTAGCGAAAA ACGCTAGTGG CACGGAAAGTCAACCAGCAA CGGCGACAAC ACCAGCTGAT GTCACTGCAC CAACAGTTGA TAACATCACACGCAACTCTG GTTCGGGTTA TGAAATTACA GGAACAGCAG ACCCTAACAC AACAATCGAAGTTCGTGATC CATCTGGGGC AGTCATTGGT ACAGGTACCT CTGATGCGAA TGGTGATTTTACTGTAACGC TACCAACGGG AACGACCAAT CCTGGGGATA CGTTAACAGT GATTGGAAAGGATAACGCGG GAAATGAAAG TCAACCGACT GAAGTCCTTG TTCCTCCTGA TGCCACGGTTACAGCACCAA CTGTAACAGC AGTAACAGGT AATTCAGTTG CTGCTTATCA GGTGACAGGCACCGCTGATC CGAATGCTAC CATCCAAATT CGTGATGCAG ATGGGAACCT GATTGCAACAGGGACTCCCG ATGCGACTGG TTCCTTTGCT GTGAACCTTC CAGCTGGGAC GGCAAATGCGAATGAAACAT TGACAGCGTT AGCCAAAGAT CCTGCTGGCA ATACAAGTAC ACCGACAACCTTCCAAACAC CAGCAGATGA AGTAGTGGCA CCGCCAAGTG TCGACAAAGT TACTGGGAATACAACACAAG GATATCAAGT GACAGGTACC GCTGAACTTG GOACCACCAT TGAAGTTCGTGCAACAGACG GAACAGTTTT AGGCACCGCA ACAACTGGAC CGACTGGCCA ATATACTGTGACGTTAGCTT CAGGAAAAGC AACAGCTAAA CAAACAGTGA ATGTAGTTGC TAAAAATGATACTGCACTTG AGAGTCAACC AACTACAGCT ATGACACCCG CTGATGTTAC CACACCAACAATTGGTGACA TTACTGGAGA TTCAACAACT GGTTATGAAA TCACTGGGAC GGCGGACCCTAATACCACCA TTGAACTACG GAACCCAGAT GGAACAATTA TTGGTACAAC GACAACGGATGATCAACGAA ACTTTACTGT GGACCTTCCA GCGGGAGCCG CTAATCCTGG TGATACATTAACAGTTGTTG GAAAAGACCG TGACGGCAAT GAAAGTCAAC CAACGGAAGT GACGGTCCCTCAAGATGCAA CCGTACCAGC ACCAACTGTC ACGACTGTTA CAGGAAEF069-4 (SEQ ID NO:264)AGEA GANETLTAVA KNASGTEXTP TTFQTPADEA TVTAPTTTGV TGNSTAGYEVKGTADANATV EIRNAGGTVI GTGTADGTGA FTVTVPAGEA GANETLTAVA KNASGTESTPTTFQTPADEA TVTAPTITGV TGNSTAGYEV KGTADANATV EIRNAGGAVI GTGTADGTGAFTVTIPAGEA GANETLTAVA KNASGTESTP TTFQTPADPN TPVATPIVET VTGSTTKGYEVKGTAEVGTT IEVRDAAGTV LGTATTGTDG KYTVTLDSGT ATANQTLSVV AKNASGTESQPATATTPADV TAPTVDNITG NSGSGYETTG TADPNTTIEV RDPSGAVIGT GTSDANGDFTVTLPTGTTNP GDTLTVIGKD NAGNESQPTE VLVPADATVT APTVTGVTGN SVAGYQVTGTADPNATIEIR DADGNVIATG TADGTGSFAV NLPAGTANAN ETLTALAKDP AGNTSTPTTFQTPADEVVAP PSVDKVTGNT TQGYQVTGTA ELGTTIEVRA TDCTVLGTAT TGPTGQYTVTLASGKATAKQ TVNVVAKNDT GLESQPTTAM TPADVTTPTI GDITGDSTTG YEITCTADPNTTIEVRNPDG TIIGTTTTDD QGNFTVDLPA GAANPGDTLT VVGKDGDGNE SQPTEVTVPEDAT VAAPTVT TVTGTEF070-1 (SEQ ID NO:265)TAGGGGAAGC TAATGATCTT GGTATTTATC GTTTATTTTA AAGAAAAGAG GGACGATCAGATGAAAAAGA AAATTGTTGA GGATTTTAAT CGGAAAAGTC AGCATAAAAA ATGGACAAAACGCAAGATCC TTAATTTAGC AATATCAAGT GGTTTATTAT TTACGTCATT AGCAATCCCTGTAAGTATAG CTGTTACCTC TGGCACAATC AGTGCATCAG CAGCGGTCTT GGATATCGAACTATTATCAA ATGTTACGTC AAATAATGAC AGTGGCACTT CAACGAGTAA TCGTTGGACAGCCGCAAACC AAAATCAACC AGTTAATTTC ACGGTTTCTG CTGGCGCTTT ACCAGATGCTTCCGCTGTGT TTAGTGGACA AAAACAAGCG GTGTTAGTGG TTCCTCCTGA GTTAAGAGGAAATGTAGCTG CAGCAGGCAG CGCAGCAATC AATACCAATG TCACGATTGA TCTTTCAAAAGTTACTTTTT TGACTGCCGT TTTGAATGCA GCCAATGATT TAACCAATGT GATTACTCAAATTACCAGTG GGGCGTTAGG GAATTTAACT GGTGTTGATA TTGATTTGAC GGAAGTGAATCCTCAATTGG AATTAGTTAA TAACATTGAA AACTTAGGTG CTGCTTCATT TACAGCTCCGGAAACGTTAG CAGCTGACGG CTCATACATT AGTGCACCGA TTAGTGATGG TTTAGGGTTAGTTTTAGCCC AAAATGTTTC AAACATCTTA CAAGATTTGA ATGCGCCAGT TCAAGCTTTGGAGGCAAAAG GTACCAGTAT CCCAAGTAAT CTTGTCGCCG CAGCTATAAA TGCAGCCTTGCTTCCTGTCA AAGGCACGGT AAACGTGGCT GTTTCAGGTG CTTTGCCTTT ATTAGCGGTTGGTGGTTCAG GCGTAAATGA GTTAGTGGAT GCTTCTTTAC TAGGCACAAC CACGGTTACTTTACCAACTA CCGTTTCAAC ACCTCAAAAT TTATCCAATA ATTTAGATGC TCGTTTTGTAGGAACAGTCG TTCAAACAGA TCTTTTAGAC GTTAATTTAT TAGCAACAGC AGACGGTGTATCCAACATTT ATTTTGCTGC AGGCACTACT ACTGAAGTAA CCGCACCAAC AATCACAGGAGTAACAGGTA ATTCAACAGC AGGTTACGAA GTTAAAGGAA CTGCCGATCC CAATGCCACGGTTGAAATCC GAAATCCAGG AGGCACCGTA ATAGGCACAG GTACCGCTGA TGGGACAGGAGCGTTTACAG TTACCGTTCC CGCAGGTGAA CCAGGCGCCA ATGAAACGTT AACCGCCGTAGCGAAAAACG CCAGCGGNAC AGAAAGNACG CCAACAACGT TCCAAACNCC AGCGGATGAAGCAACCGTAA CCGCACCAAC AATCACAGGA GTGACAGGTA ATTCAACGGC AGGTTACGAAGTTAAAGGAA CTGCCGATGC CAATGCCACG GTTGAAATCC GAAATGCAGG AGGCACCGTAATAGGCACAG GTACCGCTGA TGGGACAGGA GCGTTTACAG TTACCGTTCC CGCAGGTGAAGCAGGTGCCA ATGAAACGTT AACCGCCGTA GCGAAAAACG CCAGCGGCAC AGAAAGTACGCCAACAACGT TCCAAACACC AGCGGATGAA GCAACCGTAA CCGCACCAAC AATCACAGGAGTGACAGGTA ATTCAACAGC AGGTTACGAA GTTAAAGGAA CTGCCGATGC CAATGCCACGGTTGAGATCC GAAATGCAGG AGGTGCCGTG ATAGGTACAG GTACTGCTGA TGGGACAGGGGCATTTACAG TTACCATTCC CGCAGGTGAA GCAGGTGCGA ATGAAACGTT AACCGCCCTAGCGAAAAACG CCAGCGGTAC AGAAAGTACG CCAACAACGT TCCAAACGCC AGCGGATCCTAATACGCCCG TGGCCACGCC AATTGTTGAG ACTGTAACAG GTAGTACAAC AAAAGGCTATGAGGTCAAAG GGACTGCTGA AGTTGGCACC ACCATTGAGG TTCGCGATGC AGCTGGCACGGTCCTTGGTA CTGCAACAAC TGGAACTGAC GGAAAATATA CAGTGACTTT AGATTCAGGAACAGCAACAG CAAATCAAAC GCTGAGCGTT GTAGCGAAAA ACGCTAGTGG CACGGAAAGTCAACCAGCAA CGGCGACAAC ACCAGCTGAT GTCACTGCAC CAACAGTTGA TAACATCACAGGCAACTCTG GTTCGGGTTA TGAAATTACA GGAACAGCAG ACCCTAACAC AACAATCGAAGTTCGTGATC CATCTGGGGC AGTCATTGGT ACAGGTACCT CTGATGCGAA TGGTGATTTTACTGTAACGC TACCAACGGG AACGACCAAT CCTGGGGATA CGTTAACAGT GATTGGAAAGGATAACGCGG GAAATGAAAG TCAACCGACT GAAGTCCTTG TTCCTGCTGA TGCCACGGTTACAGCACCAA CTGTAACAGG AGTAACAGGT AATTCACTTG CTGCTTATCA GGTGACAGGCACCGCTGATC CGAATGCTAC CATCGAAATT CGTCATGCAG ATGGGAACGT GATTGCAACAGGGACTGCCG ATGGGACTGG TTCCTTTGCT GTGAACCTTC CAGCTGGGAC GGCAAATGCGAATGAAACAT TGACAGCGTT AGCCAAAGAT CCTGCTGGCA ATACAAGTAC ACCGACAACCTTCCAAACAC CAGCAGATGA AGTAGTGGCA CCGCCAAGTG TCGACAAAGT TACTGGGAATACAACACAAG GATATCAAGT GACAGGTACC GCTGAACTTG GCACCACCAT TGAAGTTCGTGCAACAGACG GAACACTTTT AGGCACCGCA ACAACTGGAC CGACTGGCCA ATATACTGTGACGTTAGCTT CAGGAAAAGC AACAGCTAAA CAAACAGTGA ATGTAGTTGC TAAAAATGATACTGGACTTG AGAGTCAACC AACTACAGCT ATGACACCCG CTGATGTTAC CACACCAACAATTGGTGACA TTACTGGAGA TTCAACAACT GGTTATGAAA TCACTGGGAC GGCGGACCCTAATACCACCA TTGAAGTACG GAACCCAGAT GGAACAATTA TTGGTACAAC GACAACGGATGATCAAGGAA ACTTTACTGT CGACCTTCCA GCGCGAGCCG CTAATCCTGG TGATACATTAACAGTTGTTG GAAAAGACGG TGACGGCAAT GAAAGTCAAC CAACGGAAGT GACGGTCCCTGAAGATGCAA CCGTAGCAGC ACCAACTGTG ACGACTGTTA CAGGAACAAC TGCCACTGGGTATCAAGTAA CCGGCACGGC AGAGCCAAAT GTCACCATTG ACATTCACAA TGAAGCAGGTTTAGTTATTG CTACGGGAAC GACTGATGGT GCTCGCGCAT TTACAATCAC TCTTCCGACGGGCACAGCAA CAGCTAACGA AGCCTTAACT GCCATTGCGA AAGATGCTGC TGGGAAAGAAAGTAATCCGA CTGCTTTCAA AACACCTGCT GATCCAGATG CACCAGTCGC GACACCTACTGTTGACAAAA TCACTGGTAG CACGACAAAC GGCTATCAAG TAGTAGGAGC AGCAGAAGTTGGTACAACAG TTGAGGTGCG TGACGCCGAT GGCACAGTCC TTGGCATGGC AACTACTGGAACTGATGGCA AATACACAGT GACTTTAGAG CCAGGCAAGG CCTCAGCTAA CGAAACAATAACTGTCGTAG CGAAAAATGC AACAGGAAAA GAAAGTCAGC CAGCTACAGC AACTACACCAGTCGACTTAG CCACACCAAC CATTGATTCT ATTACCGGAA ATTCTAGTAA AGGTTACGAAATCACTGGAA CGGCGGAGCC AAAAACCACT ATTGATGTCC GTGACGCAGA CGGAACCATCATTGCTGCTA CAACTGCTAA CGAAACCGGC CAATATACGG TGACTCTACC AGCTGGCGTAGTGACACCAG GAGAAACGAT TACGATTATT AGCAAAGATG GCGCAGGTAA TGAAAGTCAACCAGCTACAG CCGTTATTCC AGCGGATGTT GTTTTAGCGG CGCCAACTAT TACGAAGCTTGAAGGAAACA AAGCCAATGG CTATACAGTC ACTGGAACTG CTGATCCAAA TGTCACGGTTCAATTTTACA ATAGCAGTGA ACAATTATTG GCAAGTGGCA ATACAACTAC TGGAGGTACCTTCTCCGTTC ATATTGCAGC AGGGTTAGCA ACAGAAAAAG AAACGTTAAC CGCACTAACCACAGATACAC AAGGAAATGT GAGTCCTAAA ACCACATTTA TGACGCCAGC CGATATTACGGGAGAACCAG AGATTAAAAT TGCGGCACCA ACTGTTTCTT CAGTTTTAGG AACGTCTAAAGCCGGCTACC TCATCAAAGG AACAGCTGAA CCAAACCGAA TCATTCAAAT TAGTAACCGACTATTAAGAA GTGTGATTGC TGTAGGTGCC ACCGATGCTG AAGGCAACTT CGCTATCCAATTAACAGCGG GACAAGCGAC TGCTCAACAA AGTTTACTTG CGACAGCTAC CGATGGCGCAGGACATTACA GTACGGCTAC AACCTTCATG ACGCCAGCCG ACCCAACGAA TCCTGGAGGAGGCAATGGTA ACACTGGCGG AAATAACGGC AATACAGGCG GCAATACAGG AAACAATGGCGCAACTGGCG GGAATAATGG GAATGGTTCA AACACAGGTT CAAATCCAAA TGGAGGTTCTGGTTTAGGCA CAACAGGTTC TGGCTTAGGT TCACTAGGCA ATGGCCTCGG TACAAATGGTAGTGGCTACC ACCCTAAACT AAGTACCATC AGTTATGGCA CTGGAAATCA CGGGAAAACAGGCTACTTAC CTAGCACAGG TGAAAAAGAG TCTTCAGCCG TGACAACAAG TTTGTTTGGCGCCTTTGTCG CACTCCTTGC GAGCATGGGA ATCATCAAAC GCAAACGTAA AAACTAGEF070-2 (SEQ ID NO:266)M KKKIVEDFNR KSQHKKWTKR KMLNLAISSG LLFTSLAIPVSIAVTSGTIS ASAAVLDIEL LSNVTSNNDS GTSTSNRWTA ANQNQPVNFT VSGGALADASAVFSGQKQAV LVVPPELRGN VAAAGSAAIN TNVTIDLSKV TFLTAVLNAA NDLTNVITQITSGALGNLTG VDIDLTEVNR QLELVNNIEN LGAASFTAPE TLAADGSYIS APISDGLGLVLAQNVSNILQ DLNAAVQALE AKGTSIPSNL VAAAINAALL PVKGTVNVAV SGALPLLAVGGSGVNELVDA SLLGTTTVTL PTTVSTPQNL SNNLDARFVG TVVQTDLLDV NLLATADGVSNIYFAAGTTS EVTAPTITGV TGNSTAGYEV KGTADANATV EIRNAGGTVI GTGTADGTGAFTVTVPAGEA GANETLTAVA KNASGTEXTP TTFQTPADEA TVTAPTITGV TGNSTAGYEVKGTADANATV EIRNAGGTVI GTGTADGTGA FTVTVPAGEA GANETLTAVA KNASGTESTPTTFQTPADEA TVTAPTITGV TGNSTAGYEV KGTADANATV EIRNAGGAVI GTGTADGTGAFTVTIPAGEA GANETLTAVA KNASGTESTP TTFQTPADPN TPVATPIVET VTGSTTKGYEVKGTAEVGTT IEVRDAAGTV LGTATTGTDG KYTVTLDSGT ATANQTLSVV AKNASGTESQPATATTPADV TAPTVDNITG NSGSGYEITG TADPNTTIEV RDPSGAVIGT GTSDANGDFTVTLPTGTTNP GDTLTVTGKD NAGNESQPTE VLVPADATVT APTVTGVTGN SVAGYQVTGTADPNATIEIR DADGNVIATG TADGTGSFAV NLPAGTANAN ETLTALAKDP AGNTSTPTTFQTPADEVVAP PSVDKVTGNT TQGYQVTGTA ELGTTIEVRA TDGTVLGTAT TGPTGQYTVTLASGKATAKQ TVNVVAKNDT GLESQPTTAM TPADVTTPTI GDITGDSTTG YEITGTADPNTTIEVRNPDG TIIGTTTTDD QGNFTVDLPA GAANPGDTLT VVGKDGDCNE SQPTEVTVPEDATVAAPTVT TVTGTTATGY QVTGTAEPNV TIEIHNEAGL VIATGTTDGA GAFTITLPTGTATANEALTA IAKDAAGKES NPTAFKTPAD PDAPVATPTV DKITGSTTNG YQVVGAAEVGTTVEVRDADG TVLGMATTGT DGKYTVTLEP GKASANETIT VVAKNATGKE SQPATATTPVDLATPTTDSI TCNSSKGYEI TGTAEPKTTI DVRDADGTII AATTANETGQ YTVTLPAGVVTPGETITITS KDGAGNESQP ATAVIPADVV LAAPTITKVE GNKANGYTVT GTADPNVTVQFYNSSEQLLA SGNTTTGGTF SVHIAAGLAT EKETLTALTT DTQGNVSPKT TFMTPADTTGEPEIKTAAPT VSSVLGTSKA GYLIKGTAEP NRIIQISNRL LRSVIAVGAT DAEGNFAIQLTAGQATAQQS LLATATDGAG HYSTATTFMT PADPTNPGGG NGNTGGNNGN TGGNTGNNGATGGNNGNGSN TGSNPNGGSG LGTTGSGLGS LGNGLGTNGS GYHPKLSTIS YGTGNHGKTGYLPSTGEKES SAVTTSLFGA FVALLASMGI IKRKRKNEF070-3 (SEQ ID NO:267)CGG TGACGGCAAT GAAAGTCAAC CAACGGAAGT GACGGTCCCTGAAGATGCAA CCGTAGCAGC ACCAACTGTG ACGACTGTTA CAGGAACAAC TGCCACTGGGTATCAACTAA CCGGCACGGC AGAGCCAAAT GTCACCATTG AGATTCACAA TGAAGCAGGTTTAGTTATTG CTACGGGAAC GACTGATGGT GCTGGCGCAT TTACAATCAC TCTTCCGACCGGCACAGCAA CAGCTAACGA AGCCTTAACT GCCATTGCGA AAGATGCTGC TGGGAAAGAAAGTAATCCGA CTGCTTTCAA AACACCTGCT GATCCAGATG CACCAGTCGC GACACCTACTGTTGACAAAA TCACTGGTAG CACGACAAAC GGCTATCAAG TAGTAGGAGC AGCAGAAGTTGGTACAACAG TTGAGGTGCG TGACGCCGAT GGCACAGTCC TTGGCATGGC AACTACTGGAACTGATGGCA AATACACAGT GACTTTAGAG CCAGGGAAGG CCTCAGCTAA CGAAACAATAACTGTCGTAG CGAAAAATGC AACAGGAAAA GAAAGTCAGC CAGCTACAGC AACTACACCAGTCGACTTAG CCACACCAAC CATTGATTCT ATTACCGGAA ATTCTAGTAA AGGTTACGAAATCACTGGAA CGGCGGAGCC AAAAACCACT ATTGATGTCC GTGACGCAGA CGGAACCATCATTGCTGCTA CAACTGCTAA CGAAACCGGC CAATATACGG TGACTCTACC AGCTGGCGTAGTCACACCAG GAGAAACGAT TACGATTATT AGCAAAGATG GCGCAGGTAA TGAAAGTCAACCAGCTACAG CCGTTATTCC AGCGGATGTT GTTTTAGCGG CGCCAACTAT TACGAAGGTTGAAGGAAACA AAGCCAATGG CTATACAGTC ACTGGAACTG CTGATCCAAA TGTCACGGTTCAATTTTACA ATAGCAGTGA ACAATTATTG GCAAGTGGCA ATACAACTAC TGGAGGTACCTTCTCCGTTC ATATTGCAGC AGGGTTAGCA ACAGAAAAAG AAACGTTAAC CGCACTAACCACAGATACAC AAGGAAATGT GAGTCCTAAA ACCACATTTA TGACGCCAGC CGATATTACGGGAGAACCAG AGATTAAAAT TGCGGCACCA ACTGTTTCTT CAGTTTTAGG AACGTCTAAAGCCGGCTACC TCATCAAAGG AACAGCTGAA CCAAACCGAA TCATTCAAAT TAGTAACCGACTATTAAGAA GTGTGATTGC TGTAGGTGCC ACCGATGCTG AAGGCAACTT CGCTATCCAATTAACAGCGG GACAAGCGAC TGCTCAACAA AGTTTACTTG CGACAGCTAC CGATGGCGCAGGACATTACA GTACGGCTAC AACCTTCATG ACGCCAGCCG ACCCAACGAA TCCTGGAGGAGGCAATGGTA ACACTGGCGG AAATAACGGC AATACAGCCG GCAATACAGG AAACAATGGCGCAACTGGCG GGAATAATGG GAATGGTTCA AACACAGGTT CAAATCCAAA TGGAGGTTCTGGTTTAGGCA CAACAGGTTC TGGCTTAGGT TCACTACGCA ATGGCCTCGG TACAAATGGTACTGGCTACC ACCCTAAACT AAGTACCATC AGTTATGGCA CTGGAAATCA CGGGAAAACAGGCTACTEF70-4 (SEQ ID NO:268)DGDGNE SQPTEVTVPEDATVAAPTVT TVTGTTATGY QVTGTAEPNV TIEIHNEAGL VIATGTTDGA GAFTITLPTGTATANEALTA IAKDAAGKES NPTAFKTPAD PDAPVATPTV DKITGSTTNG YQVVGAAEVGTTVEVRDADG TVLGMATTGT DGKYTVTLEP GKASANETIT VVAKNATGKE SQPATATTPVDLATPTIDST TGNSSKGYEI TGTAEPKTTI DVRDADGTII AATTANETGQ YTVTLPAGVVTPGETITIIS KDGAGNESQP ATAVIPADVV LAAPTITKVE GNKANGYTVT GTADPNVTVQFYNSSEQLLA SGNTTTGGTF SVHIAAGLAT EKETLTALTT DTQGNVSPKT TFMTPADITGEPEIKIAAPT VSSVLGTSKA GYLIKGTAEP NRIIQISNRL LRSVIAVGAT DAEGNFAIQLTAGQATAQQS LLATATDGAG HYSTATTFMT PADPTNPGGG NGNTGGNNGN TGGNTGNNGATGGNNGNGSN TGSNPNGGSG LGTTGSGLGS LGNGLGTNGS GYHPKLSTIS YGTGNHGKTGYLEF071-1 (SEQ ID NO:269)TAAGTAGAAG TGGTCGGGAC AAACGTAGAA CTTTCGCTGA TTGCCGAAGA AATTACTTCTGTCCCGCCAT TTATCTGCAG GTTTAAGCCG TGGAAGGGAA GTTATTTTGA CTTTCCTTTCATCGCTTTTT TAAGAAAGGA GCATGCTATG TTTAAAAAAT TAATGATTCA ACTTGCTTTAGTGATTCGTT TAAGTTTAAC GATTCCGATG ACGGCTTNCG CTTACACCAT CGAAGCGGATCCAATCAACT TTACTTATTT TCCCGGCTCT GCAAGCAATG AATTAATTGT TTTACATGAATCTGGAAACG AGCGGAACCT AGGACCACAC AGTTTAGACA ATGAAGTGGC CTATATGAAACGAAATTGGT CAAATGCTTA TGTCTCATAT TTTGTCGGAT CTGGTGGACG AGTGAAACAATTAGCTCCTG CTGGCCAAAT TCAATATGGC GCAGGTTCTT TAGCTAATCA AAAAGCCTATGCGCAAATCG AATTGGCTCG AACGAATAAT GCGGCGACAT TTAAAAAAGA TTATGCTGCCTATGTTAATT TGGCCCGTGA TTTGGCTCAG AACATTGGTG CTGATTTTTC TCTGGACGATGGAACAGGTT ATGGCATAGT CACTCATGAT TGGATTACAA AAAATTGGTG GGGAGATCATACAGATCCTT ATCGTTATTT AGCGCGTGGG GGATTAGTAA AGCGCATTGG CACNAGATTTACAACGGGCG TTTCNGNAAC AGGTGAGACT GGTCATTATT CAGCCAGGTA AEF071-2 (SEQ ID NO:270)MF KKLMIQLALVIGLSLTIPMT AXAYTIEADP INFTYFPGSA SNELIVLHES GNERNLGPHS LDNEVAYMKRNWSNAYVSYF VGSGGRVKQL APAGQIQYGA GSLANQKAYA QIELARTNNA ATFKKDYAAYVNLARDLAQN IGADFSLDDG TGYGIVTHDW ITKNWWGDHT DPYGYLARGG LVKRIGTRFTTGVSXTGETG HYSAREF071-3 (SEQ ID NO:271)C TTTAAAAAAT TAATGATTCA ACTTGCTTTAGTGATTGGTT TAAGTTTAAC GATTCCGATG ACCGCTTNCG CTTACACCAT CGAAGCGGATCCAATCAACT TTACTTATTT TCCCGGCTCT GCAAGCAATG AATTAATTGT TTTACATGAATCTGGAAACG AGCGGAACCT AGGACCACAC AGTTTAGACA ATGAAGTGGC CTATATGAAACGAAATTGGT CAAATGCTTA TGTCTCATAT TTTGTCGGAT CTGGTGGACG AGTGAAACAATTAGCTCCTG CTGGCCAAAT TCAATATGGC GCAGGTTCTT TAGCTAATCA AAAAGCCTATGCGCAAATCG AATTGGCTCG AACGAATAAT GCGGCGACAT TTAAAAAAGA TTATGCTGCCTATGTTAATT TGGCCCGTGA TTTGGCTCAG AACATTGGTG CTGATTTTTC TCTGGACGATGGAACAGGTT ATGGCATAGT CACTCATGAT TGGATTACAA AAAATTGGTG GGGAGATCATACAGATCCTT ATGGTTATTT AGCGCGTGGG GGATTAGTAA AGCGCATTGG CACNAGATTTACAACGGGCG TTTCNGNAAC AGGTGACACT GGTCATTATT CAGCCAGGTEF071-4 (SEQ ID NO:272)F KKLMIQLALVIGLSLTIPMT AXAYTIEADP INFTYFPGSA SNELIVLHES GNERNLGPHS LDNEVAYMKRNWSNAYVSYF VGSGGRVKQL APAGQIQYCA GSLANQKAYA QIELARTNNA ATFKKDYAAYVNLARDLAQN IGADFSLDDG TGYGIVTHDW ITKNWWGDHT DPYGYLARGG LVKRIGTRFTTGVSXTGETG HYSAREF072-1 (SEQ ID NO:273)TAATCAATGA AAAACGCACG TTGGTTAAGT ATTTGCGTCA TGCTACTCGC TCTTTTCGGGTTTTCACAGC AAGCATTAGC AGAGGCATCG CAAGCAAGCG TTCAAGTTAC GTTGCACAAATTATTGTTCC CTGATGGTCA ATTACCAGAA CAGCAGCAAA ACACAGGGGA AGAGGGAACGCTGCTTCAAA ATTATCGGGG CTTAAATGAC GTCACTTATC AAGTCTATGA TGTGACGGATCCGTTTTATC AGCTTCGTTC TGAAGGAAAA ACGGTCCAAG AGGCACAGCG TCAATTAGCAGAAACCGGTG CAACAAATAG AAAACCGATC GCAGAAGATA AAACACAGAC AATAAATGGAGAAGATGGAG TGGTTTCTTT TTCATTAGCT AGCAAAGATT CGCAGCAACG AGATAAAGCCTATTTATTTG TTGAAGCGGA AGCACCAGAA GTGGTAAAGG AAAAAGCTAG CAACCTAGTAGTGATTTTGC CTGTTCAAGA TCCACAAGGG CAATCGTTAA CCCATATTCA TTTATATCCAAAAAATCAAG AAAATGCCTA TGACTTACCA CCACTTGAAA AAACGGTACT CGATAAGCAACAAGGCTTTA ATCAAGGAGA GCACATTAAC TATCAGTTAA CCACTCAGAT TCCAGCGAATATTTTAGGAT ATCAGCAATT CCGTTTGTCA GATAAGGCGG ATACAACGTT GACACTTTTACCAGAATCAA TTGAGGTAAA AGTGGCTGGA AAAACAGTTA CTACAGGTTA CACACTGACGACGCAAAAGC ATGGATTTAC GCTTGATTTT TCAATTAAAG ACTTACAAAA CTTTGCAAATCAAACAATGA CTGTGTCGTA TCAAATGCGT TTAGAAAAGA CCGCTGAACC TGACACTGCGATTAACAACG AAGGACAATT AGTCACGGAC AAACATACCT TGACTAAAAG AGCCACAGTTCGTACAGGCG GCAAGTCTTT TGTCAAAGTT GATAGTGAAA ATGCGAAAAT CACCTTGCCAGAGGCTGTTT TTATCGTCAA AAATCAAGCG GGGGAATACC TCAATGAAAC AGCAAACGGGTATCGTTGGC AAAAAGAAAA AGCATTAGCT AAAAAATTCA CGTCTAATCA AGCCGGTGAATTTTCAGTTA AAGGNNTTAA AAGATCGCCA GTACTTCTTG GAAGAAATCT CTCCACCAAAAGGTTATCTT CTGAATCAAA CAGAAATTCC TTTTACGGTG GGAAAAAATT CTTATGCAACGAACGGACAA CGAACAGCAC CGTTACATGT AATCAATAAEF072-2 (SEQ ID NO:274)MKNARWLSI CVMLLALFGF SQQALAEASQ ASVQVTLHKL LFPDGQLPEQ QQNTGEEGTLLQNYRGLNDV TYQVYDVTDP FYQLRSEGKT VQEAQRQLAE TGATNRKPIA EDKTQTINGEDGVVSFSLAS KDSQQRDKAY LFVEAEAPEV VKEKASNLVV ILPVQDPQGQ SLTHIHLYPKNEENAYDLPP LEKTVLDKQQ GFNQGEHINY QLTTQIPANI LGYQEFRLSD KADTTLTLLPESIEVKVAGK TVTTGYTLTT QKHGFTLDFS IKDLQNFANQ TMTVSYQMRL EKTAEPDTAINNEGQLVTDK HTLTKRATVR TGGKSFVKVD SENAKITLPE AVFIVKNQAG SYLNETANGYRWQKEKALAK KFTSNQAGEF SVKGXKRWPV LLGRNLCTKR LSSESNRNSF YGGKKFLCNERTTNSTVTCN QEF072-3 (SEQ ID NO:275)ATTACCAGAA CAGCAGCAAA ACACAGGGGA AGAGCGAACGCTGCTTCAAA ATTATCGGGG CTTAAATGAC GTCACTTATC AAGTCTATGA TGTGACGGATCCGTTTTATC AGCTTCGTTC TGAAGGAAAA ACGGTCCAAG AGGCACAGCG TCAATTAGCAGAAACCGGTG CAACAAATAG AAAACCGATC GCAGAAGATA AAACACAGAC AATAAATGGAGAAGATGGAG TGGTTTCTTT TTCATTAGCT AGCAAAGATT CGCAGCAACG AGATAAAGCCTATTTATTTG TTGAAGCGGA AGCACCAGAA GTGGTAAAGG AAAAAGCTAG CAACCTAGTAGTGATTTTGC CTGTTCAAGA TCCACAAGGG CAATCGTTAA CGCATATTCA TTTATATCCAAAAAATGAAG AAAATGCCTA TGACTTACCA CCACTTGAAA AAACGGTACT CGATAAGCAACAAGGCTTTA ATCAAGGAGA GCACATTAAC TATCAGTTAA CGACTCAGAT TCCAGCGAATATTTTAGGAT ATCAGGAATT CCGTTTGTCA GATAAGGCGG ATACAACGTT GACACTTTTACCAGAATCAA TTGAGGTAAA AGTGGCTGGA AAAACAGTTA CTACAGGTTA CACACTGACGACGCAAAAGC ATGGATTTAC GCTTGATTTT TCAATTAAAG ACTTACAAAA CTTTGCAAATCAAACAATGA CTGTGTCGTA TCAAATGCGT TTAGAAAAGA CCGCTGAACC TGACACTGCGATTAACAACG AAGGACAATT AGTCACGGAC AAACATACCT TGACTAAAAG AGCCACAGTTCGTACAGGCG GCAAGTCTTT TGTCAAAGTT GATAGTGAAA ATGCGAAAAT CACCTTGCCAGAGGCTCTTT TTATCGTCAA AAATCAAGCG GGGGAATACC TCAATGAAAC AGCAAACGGGTATCGTTGGC AAAAAGAAAA AGCATTAGCT AAAAAATTCA CGTCTAATCA AGCCGGTGAATTTTCAGTTA AAGGNNTTAA AAGATGGCCA GTACTTCTTG GAAGAAATCT CTGCACCAAAAGGTTATCTT CTGAATCAAA CAGAAATTCC TTTTACGGTG GGAAAAAATT CTTATGCAACGAACGGACAA CGAACAGCAC CGTTACATGT AEF072-4 (SEQ ID NO:276)QLPEQ QQNTGEEGTLLQNYRGLNDV TYQVYDVTDP FYQLRSEGKT VQEAQRQLAE TGATNRKPIA EDKTQTINGEDGVVSFSLAS KDSQQRDKAY LFVEAEAPEV VKEKASNLVV ILPVQDPQGQ SLTHIHLYPKNEENAYDLPP LEKTVLDKQQ GFNQGEHINY QLTTQIPANT LGYQEFRLSD KADTTLTLLPESIEVKVAGK TVTTGYTLTT QKHGFTLDFS IKDLQNFANQ TMTVSYQMRL EKTAEPDTAINNEGQLVTDK HTLTKRATVR TGGKSFVKVD SENAKITLPE AVFIVKNQAG EYLNETANGYRWQKEKALAK KFTSNQAGEF SVKGXKRWPV LLGRNLCTKR LSSESNRNSF YGGKKFLCNERTTNSTVTCEF073-1 (SEQ ID NO:277)TAAATGAACA AATTAAATAC AAAATTACTG ATTGGCTATA TTCTTTTAGG AGCCTTAATCATTGCTGTCG CTAGAGAATA TGGCTTCTTC GCTTTTGTGA TTCTGGTAGG CTTTTTAGTATTCGTTCTCT ATCGAAAAAA GAAAAATGCC GCCGACAAAA GCGATCAAAT GCCTTACTTAACGAAAGATA AAGAAGCCCA TTATCGTGAG TTGGGGTTAT CTCCACAAGA AATTGATTTTTTCAGAAGTA CAATGAGCAC ACCCAAAAAA CAAATCATAC AATTGCAAGA AAACATGAATCGTTCAACTA AATTACGGGC GATTGACTTA CGTAATGATA CTACGAAGGT TTCTAAAGCTCTGTTTAAAG AGTTAGTGAA AGAACCTAAA AAGTTACACT TAGCCAATCA CTTTCTCTATACACATTTAC CAAATATCGT TGACTTAACA AGTAAACATT TAGAAATCGA ACAACACGAAGTAAAAAACA AACAAACGTA TGAAAAATTA GAAGAAAGCG CACAAATCAT TGACCAATTGTCAAAATTAG TTAAAAATGA TTATGAGGAA ATCGTTTCCG ATGACTTAGA CGATTTAGATGTCGAAATGT CGATCGCTAA AAGCAGCTTG TCGCAAAAAG CTGCAACTGA GCAATCACCTCAAGTAAACG AAGACCAGCA ATAAEF073-2 (SEQ ID NO:278)MNKLNTKLLI GYILLOALTI AVAREYGFFA FVILVGFLVF VLYRKKKNAA DKSDQMPYLTKDKEAHYREL GLSPQEIDFF RSTMSTAKKQ IIQLQENHNR STKLRAIDLR NDTTKVSKALFKELVKEPKK LHLANHFLYT HLPNIVDLTS KHLEIEQHEV KNKQTYEKLE ESAQIIDQLSKLVKNDYEEI VSDDLDDLDV EMSIAKSSLS QKAATEESPQ VNEDQQEF073-3 (SEQ ID NO:279)CT ATCGAAAAAA GAAAAATGCC GCCGACAAAA GCGATCAAAT GCCTTACTTAACGAAAGATA AAGAAGCCCA TTATCGTGAG TTGGGGTTAT CTCCACAAGA AATTGATTTTTTCAGAAGTA CAATGAGCAC AGCCAAAAAA CAAATCATAC AATTGCAAGA AAACATGAATCGTTCAACTA AATTACGGGC GATTGACTTA CGTAATGATA CTACGAAGGT TTCTAAAGCTCTGTTTAAAG AGTTAGTGAA AGAACCTAAA AAGTTACACT TAGCCAATCA CTTTCTCTATACACATTTAC CAAATATCGT TGACTTAACA AGTAAACATT TAGAAATCGA ACAACACGAAGTAAAAAACA AACAAACGTA TGAAAAATTA GAAGAAAGCG CACAAATCAT TGACCAATTGTCAAAATTAG TTAAAAATGA TTATGAGGAA ATCGTTTCCG ATGACTTAGA CGATTTAGATGTCGAAATGT CGATCGCTAA AAGCAGCTTG TCGCAAAAAG CTGCAACTGA GGAATCACCTCAAGTAAACG AAGACCAGCA ATEF073-4 (SEQ ID NO:280)YRKKKNAA DKSDQMPYLTKUKEAHYREL GLSPQEIDFF RSTMSTAKKQ IIQLQENMNR STKLRAIDLR NDTTKVSKALFKELVKEPKK LHLANHFLYT HLPNIVDLTS KHLEIEQHEV KNKQTYEKLE ESAQIIDQLSKLVKNDYEEI VSDDLDDLDV EMSIAKSSLS QKAATEESPQ VNEDQQEF074-1 (SEQ ID NO:281)TAAAGGAGTT CTCAAAAAAT GAAGCTAAAA AAAATAATTC CTGCTTTTCC CCTTCTTTCAACCGTTGCAG TTGGCTTGTG GTTAACGCCT ACTCAAGCTT CTGCAGATGC TGCGGATACGATGGTAGATA TCTCTGGCAA AAAAGTGTTG GTTGGATATT GGCATAACTG GGCCTCAAAAGGACGCGATG GTTACAAACA AGGAACATCA GCATCACTAA ACCTTTCAGA AGTAAATCAAGCCTACAATG TCGTACCGGT TTCCTTCATG AAAAGCGATG GCACGACACG GATTCCTACGTTCAAGCCTT ATAACCAAAC GGACACTGCC TTCCGACAAG AAGTCGCACA ATTAAATAGTCAAGGTCGCG CAGTTTTATT GGCACTTGGT GGAGCAGATG CACATATTCA ATTAGTCAAAGGCGATGAAC AAGCCTTTGC GAATGAAATC ATTCGTCAAG TGGAAACATA CGGCTTTGATGGTTTAGACA TCGACTTACA GCAATTGGCG ATTACTGCTG GCGACAACCA AACCGTCATCCCTGCTACGT TGAAAATAGT CAAAGACCAT TATCGAGCAC AAGGAAAAAA TTTCATCATTACGATGGCAC CAGAATTCCC TTATTTAAAA CCTGGTGCCG CTTATGAAAC ATACATTACTTCCCTAAATG GTTATTATGA TTACATTGCC CCACAATTAT ATAACCAAGG CGGCGACGGTGTCTGGGTTG ATGAAGTTAT GACTTGGGTT GCTCAAAGCA ACGATGCTCT AAAATACGAGTTCCTCTATN ATATTEF074-2 (SEQ ID NO:282)MKLKK IIPAFPLLST VAVGLWLTPT QASADAADTM VDISGKKVLV GYWHNWASKGRDGYKQGTSA SLNLSEVNQA YNVVPVSFMK SDGTTRIPTF KPYNQTDTAF RQEVAQLNSQGRAVLLALGG ADAHIQLVKG DEQAFANEII RQVETYGFDG LDIDLEQLAI TAGDNQTVIPATLKIVKDHY FAQGKNFIIT MAPEFPYLKP GAAYETYITS LNGYYDYIAP QLYNQGGDGVWVDEVMTWVA QSNDALKYEF LYXIEF074-3 (SEQ ID NO:283)TGC TGCGGATACGATGGTAGATA TCTCTGGCAA AAAAGTGTTG GTTGGATATT GCCATAACTG GGCCTCAAAAGGACGCGATG GTTACAAACA AGGAACATCA GCATCACTAA ACCTTTCAGA AGTAAATCAAGCCTACAATG TCGTACCGCT TTCCTTCATG AAAAGCGATG GCACGACACG GATTCCTACGTTCAAGCCTT ATAACCAAAC GCACACTGCC TTCCGACAAG AAGTCGCACA ATTAAATAGTCAAGGTCGCG CAGTTTTATT GGCACTTGGT GGAGCAGATG CACATATTCA ATTAGTCAAAGGCGATGAAC AAGCCTTTGC GAATGAAATC ATTCGTCAAG TGGAAACATA CGGCTTTGATGGTTTAGACA TCGACTTAGA GCAATTGGCG ATTACTGCTG GCGACAACCA AACCGTCATCCCTGCTACGT TGAAAATAGT CAAAGACCAT TATCGAGCAC AAGGAAAAAA TTTCATCATTACGATGGCAC CAGAATTCCC TTATTTAAAA CCTGGTGCCG CTTATGAAAC ATACATTACTTCCCTAAATG GTTATTATCA TTACATTGCC CCACAATTAT ATAACCAAGG CGGCGACGGTGTCTGGGTTG ATGAAGTTAT GACTTGGGTT GCTCAAAGCA ACGATGCTCT AAAATACGAGTTCCTCTEF074-4 (SEQ ID NO:284)AADTM VDISGKKVLV CYWHNWASKGRDGYKQGTSA SLNLSEVNQA YNVVPVSFMK SDGTTRIPTF KPYNQTDTAF RQEVAQLNSQGRAVLLALGG ADAHIQLVKG DEQAFANEIT RQVETYGFDG LDIDLEQLAI TAGDNQTVIPATLKIVKDHY RAQGKNFIIT MAPEFPYLKP GAAYETYITS LNGYYDYIAP QLYNQGGDGVWVDEVMTWVA QSNDALKYEF LYEF075-1 (SEQ ID NO:285)TAACCTATAA GAAAAAAATC ACAACCTGTG ATAAATTATT GGAGGNAAAA TATGTCAAAAGGGAAGAAAA TTTTTGCCAT TATCNTTGGA ATTATCTTGG NTCTATTTCT TGCAGTTCTTGGAATGGGAG CAAAACTTTA TTGGGATGTT TCTAAATCAA TGGATAAAAC CTATGAAACAGTAGAACGAT CTAAAAAAAG TCAGGTCAAT TTAAACAATA AGGAGCCTTT TTCTGTTTTATTATTAGGGA TTGATACAGG CGATGATGGG CGTGTCGAGC AAGGTCGTTC GGATACAACAATTGTTGCAA CAGTTAATCC TCGTGACAAG CAAACAACCT TAGTCAGTCT TGCTCGCGATACCTATGTTG ATATTCCAGG TCAAGGAAAA CAAGATAAAT TGAATCACGC CTATGCTTTTGGTGGCGCAT CTTTACCAAT GGACACAGTT GAAAACTATT TAAACATACC TATTAATCATTATGTTTCAA TTAATATGGC TGGTTTAAAA GAATTAGTCA ACGCGGTTCC CGGAATCGAAGTGAACAATA ATCTGACTTT TTCTCAAGAC GGATATGATT TTACGATTGG TAAAATTTCATTCGATGGTG AACAAGCACT CTCCTATTCA AGAATGCGTT ACGAAGACCC TAATGGTGACTACGGCCGCC AAGAACGTCA AAGAAAAGTG ATTGAAGCCA TCGTCCAAAA AGTCTTAAGTCTTAACAGCG TAAGCAACTA TCAAGAAATT TTAACAGCTG TTTCTGATAA TATGAAGACAGATTTAAGTT TTGATGACAT GAAAAAAATT GCCTTAGATT ATCGCAGTGC CTTTGGTAAAGTGAAACAAG ACCAACTTCA AGGTACTGGT TTTATGCAAG ATGCTGTTTC CTATCAACGTGTGGATGAAC AAGAATTAAC TCGTGTCCAA CAAGAGTTGA AAAATCAATT GAATACAAAATAAEF075-2 (SEQ ID NO:286)MSKG KKIEFAIIXGI ILXLJFLAVVG MGAKLYWIJVS KSMDKTYETVERSKKSQVNL NNKEPFSVLL LGIDTGDDGR VEQGRSDTTI VATVNPRDKQ TTLVSLARDTYVDIPGQGKQ DKLNHAYAFG GASLANDTVE NYLNIPINHY VSINMAGLKE LVNAVGGIEVNNNLTFSQDG YDFTICKISL DGEQALSYSR MRYEDPNGDY GRQERQRKVT EGTVQKVLSLNSVSNYQEIL TAVSDNMKTD LSFDDMKKTA LDYRSAFGKV KQDQLQCTGF MQDCVSYQRVDEQELTRVQQ ELKNQLNTKEF075-3 (SEQ ID NO:287)ACTTTA TTGGGATGTT TCTAAATCAA TGCATAAAAC CTATGAAACAGTAGAACGAT CTAAAAAAAG TCAGGTCAAT TTAAACAATA AGGAGCCTTT TTCTGTTTTATTATTAGGGA TTGATACAGG CGATGATGGG CGTGTCGAGC AAGGTCGTTC GGATACAACAATTGTTGCAA CAGTTAATCC TCGTGACAAG CAAACAACCT TAGTCAGTCT TGCTCGCGATACCTATGTTG ATATTCCAGG TCAAGGAAAA CAACATAAAT TGAATCACGC CTATGCTTTTGGTCGCGCAT CTTTAGCAAT GGACACAGTT GAAAACTATT TAAACATACC TATTAATCATTATGTTTCAA TTAATATGGC TGGTTTAAAA GAATTAGTCA ACGCGGTTGG CGGAATCGAAGTGAACAATA ATCTGACTTT TTCTCAAGAC GGATATGATT TTACGATTGG TAAAATTTCATTGGATGCTG AACAAGCACT CTCCTATTCA AGAATGCGTT ACGAAGACCC TAATGGTGACTACGCCCGCC AAGAACGTCA AAGAAAAGTG ATTCAAGGCA TCGTCCAAAA ACTCTTAAGTCTTAACAGCG TAAGCAACTA TCAAGAAATT TTAACAGCTG TTTCTGATAA TATGAAGACAGATTTAAGTT TTGATGACAT GAAAAAAATT CCCTTAGATT ATCGCACTGC CTTTGGTAAAGTGAAACAAG ACCAACTTCA AGGTACTGGT TTTATGCAAG ATGGTGTTTC CTATCAACGTGTGGATGAAC AAGAATTAAC TCGTGTCCAA CAAGAGTTGA AAAATCAATT GAATACAAAAEF075-4 (SEQ ID NO:288)KLYWDVS KSMDKTYETVERSKKSQVNL NNKEPFSVLL LGIDTGDDGR VEQGRSDTTI VATVNPEDKQ TTLVSLARDTYVDIPCQGKQ DKLNHAYAFG GASLANDTVE NYLNIPINHY VSINNAGLKE LVNAVGGIEVNNNLTFSQDG YDFTIGKTSL DGEQALSYSR MRYEDPNGDY GRQERQRKVI EGIVQKVLSLNSVSNYQEIL TAVSDNNKTD LSEDDMKKIA LDYRSAFGKV KQDQLQGTGF MQDGVSYQRVDEQELTRVQQ ELKNQLNTKEF076-1 (SEQ ID NO:289)TAGAAAATAA CAGAGGAGCT GAAGGAAATG AAACCATCAA CAAAAATTCG TATCGGTTTAAGCATTGCTG CAGTTGCAAG TGTCTCTGTT GCAGTCATCG CTTCTGAAAA AATTATTAAGAAGGTATCTC ATGTTTCCAA TCGTTATAAA GTTAAAAAGT TTGTAGACGA TAAATTTGATCGAAACCAAA AATTATTATC GATTGTCGAT GATTTATCCG ATGATGAATT ACATTCTGTTTTAAATGTTG TGGATCGTGT GAAAGATGGC GGTTCAAAAT TAGCTGAATA TGGCGAAAAAGTTAAAGACA ATACAGATTC TTTAAAAGAA CGCTTTTTCA CATTTATTGA AGATGCAATGAACTTAAAAA AGTCGCCTAG GCCATCTTTT TTTTATAAAA ATAATTCTTT TGTTTCAACATAAEF076-2 (SEQ ID NO:290)MK ASTKIGIGLS IAAVASVSVA VIASEKIIKK VSHVSNRYKV KKFVDDKFDGNQKLLSIVDD LSDDELDSVL NVVDRVKDCG SKLAEYGEKV KDNTDSLKER FFTFIEDAMKLKKWPRPSFF YKNNSFVSTEF076-3 (SEQ D NO:291)CATCG CTTCTGAAAA AATTATTAAGAAGGTATCTC ATGTTTCCAA TCGTTATAAA GTTAAAAAGT TTGTAGACGA TAAATTTGATGGAAACCAAA AATTATTATC GATTGTCGAT GATTTATCCG ATGATGAATT AGATTCTGTTTTAAATGTTG TGGATCGTGT GAAAGATGGC GCTTCAAAAT TAGCTGAATA TGGCGAAAAAGTTAAAGACA ATACACATTC TTTAAAAGAA CGCTTTTTCA CATTTATTGA AGATGCAATGAAGTTAAAAA AGTGGCCTAG GCCATCTTTT TTTTATAAAA ATAATTCTTEF076-4 (SEQ ID NO:292)VIASEKIIKK VSHVSNRYKV KKFVDDKFDGNQKLLSIVDD LSDDELDSVL NVVDRVKDGG SKLAEYGEKV KDNTDSLKER FFTFIEDAMKLKKWPRPSFF YKNNSEF077-1 (SEQ ID NO:293)TAATGTAAAG TGAATGATCG GAGAGAAAAA GAGATGAAGC ATGTAACAAA ATTGGGGATTACAATTATAA CAGGAGTTTT GOCATTATTA TTTGAATTTA TTTTACATCA GCCGAATTGGGCGTATGGCA TTATTTTAAT AACAGGTTCT GTAATGGCGT TAATGATGTT CTCGGAAATGATTCAAACCT TACGTGAAGG AAAATATGGT GTCGATATTT TAGCGATTAC CGCTATCGTTGCAACCTTAG CTGTGGGAGA ATACTGGGCC AGTTTGATGA TTTTAATTAT GTTGACTGGTGGTGATTCAT TAGAAGACTA TGCCGCTGGA AAAGCTAACC AAGAGCTGAA GTCATTATTGGATAACTCGC CACAAAAAGC TCATCGCTTG AATGGCGAAA ATTTAGAAGA TGTTTCTGTTGAGGAAATCA ATGTTGGCGA TGAATTAGTA GTAAAACCAG GGGAACTAGT TCCAGTTGATGGCTTGGTAA AAACCGGGAC ATCAACAGTC GATGAATCTT CATTAACAGG AGAATCAAAACCAATTGAAA AAAATCCTGG GGATGAATTA ATGTCGGGTT CCGTGAATGG TGACGGCTCTTTGAAAATGG TTGCTGAAAA AACTGTAGCA GACAGTCAAT ATCAAACAAT TGTGAACTTAGTGAAAGAAT CTGCGGCGCG TCCAGCTCAT TTTGTACGTT TAGCAGATCG CTATGCGGTACCTTTTACAC TAGTTGCCTA CCTAATTGCA GGTGTTGCTT GGTTTGTTTC AAAAAGTCCGACACGTTTTG CGGAAGTCTT AGTTGTTGCT TCGCCGTGTC CTTTAATTCT ATCTGCCCCAATTGCTTTAG TGGCAGGGAT GGGTCGTTCA AGTCGTCATG GCGTCGTTAT TAAATCGGGAACGATGGTCG AAAAATTAGC TTCTGCAAAA ACGATTGCGT TTGATAAAAC AGGCACGATTACGCAAGGAC AACTTTCTGT TGATCAAGTC CAACCAATCA ATGCTGGAAT AACTGCTGCTGAATTAGTGG GATTGGCAGC AAGCGTGGAA CAAGAATCAA GTCATATTTT AGCTAGATCAATTGTTGCTT ATGCCAGAAA GCAAGATGTC CCATTAAAAA ATATTACAGA TCTAGCCGAAGTTTCTGGTG CTGGCGTGAA GGCATTTGTG GATGGTGCTG AGATACGGGT AGGTAAAAAGAATTTTGTGA CACAAGAGTC TCAAGAAACT GAAAAAATTG ATAAAACGAC TATTCATATTTCACGTAATG GCACATATTT AGGCCGAATT ACTTTTACAG ACACTGTACG CCCAGAAGCAAAAGAGACTA TGGAAAAATT ACACCAATTA CATCTTCAAC GAATTTTAAT GCTGACGGGGGATCAAGAAT CCGTTGCAGA AACGATTGCT GCAGAAGTAG GAATTACCGA AGTACATGGGGAATGTTTAC CACAAGATAA ATTAACTATT CTAAAAGAAT TGCCTAAAGA AAATCATCCAGTCATCATGG TAGGAGATGG TGTAAATGAT GCACCTTCGC TTCCTGCTGC AGACGTAGGTATTGCTATGG GTGCTCATGG AGCTACTGCG GCTAGTGAAA CTGCTGACGT TGTTATTTTAAAAGATGACT TAAGTAAAGT CAGCCAAGCG GTCGAAATTG CCCAAGATAC CATGAAAATTGCCAAACAAT CTGTATTAAT CGGAATTTTT ATCTGCGTTT TACTAATGTT AATTGCTAGTACCGGGATCA TTCCGGCGCT AATCGGGGCT ATGCTACAAG AAGTCGTGGA CACTGTGTCAATCTTATCTG CTTTGCGTGC TCGTCGAATT GGCCAGTAAEF077-2 (SEQ ID NO:294)MKHVThLGIT IITGVLALLF EFILHQPNWA YGIILITGSV MALMNFWEMIQTLREGKYGV DILAITAIVA TLAVGEYWAS LMILIMLTGG DSLEDYAAGK ANQELKSLLDNSPQKAHRLN GENLEDVSVE EINVGDELVV KPGELVPVDG LVKTGTSTVD ESSLTGESKPIEKNPGDELM SGSVNGDGSL KMVAEKTVAD SQYQTIVNLV KESAARPAHF VRLADRYAVPFTLVAYLIAG VAWFVSKSPT RFAEVLWAS PCPLILLSAPI ALVAGMGRSS RHGVVIKSGTMVEKLASAKT IAFDKTGTIT QGQLSVDQVQ PINAGITAAE LVGLAASVEQ ESSHILARSIVAYARKQDVP LKNITDLAEV SGAGVKAFVD CAEIRVGKKN FVTQESQETE KIDKTTIHISRNGTYLGRIT FTDTVRPEAK ETMEKLHQLH LQRILMLTGD QESVAETIAA EVGITEVHGECLPQDKLTIL KELPKENHPV IMVGDGVNDA PSLAAADVGI AMGAHGATAA SETADVVILKDDLSKVSQAV ETAQDTMKIA KQSVLIGIFI CVLLMLIAST GIIPALIGAN LQEVVDTVSILSALRARRTG QEF077-3 (SEQ ID NO:295)TCA GCCGAATTGGGCGTATGGCA TTATTTTAAT AACAGGTTCT GTAATGGCGT TAATGATGTT CTGGGAAATGATTCAAACCT TACGTGAAGG AAAATATGGT GTCGATATTT TAGCGATTAC CGCTATCGTTGCAACCTTAG CTGTGGGAGA ATACTGGGCC AGTTTGATGA TTTTAATTAT GTTGACTGGTGGTGATTCAT TAGAAGACTA TGCCGCTGGA AAAGCTAACC AAGAGCTGAA GTCATTATTGGATAACTCGC CACAAAAAGC TCATCGCTTG AATGGCGAAA ATTTAGAAGA TGTTTCTGTTGAGGAAATCA ATGTTGGCGA TGAATTAGTA GTAAAACCAG GGGAACTAGT TCCAGTTGATGGCTTGGTAA AAACCGGGAC ATCAACAGTC GATGAATCTT CATTAACAGG AGAATCAAAACCAATTGAAA AAAATCCTGG GGATGAATTA ATGTCGGGTT CCGTGAATGG TGACGGCTCTTTGAAAATGG TTGCTGAAAA AACTGTAGCA GACAGTCAAT ATCAAACAAT TGTGAACTTAGTGAAAGAAT CTGCGGCGCG TCCAGCTCAT TTTGTACGTT TAGCAGATCG CTATGCGGTACCTTTTACAC TAGTTGCCTA CCTAATTGCA GGTGTTGCTT GGTTTGTTTC AAAAAGTCCGACACGTTTTG CGGAAGTCTT AGTTGTTGCT TCGCCGTGTC CTTTAATTCT ATCTGCCCCAATTGCTTTAG TGGCAGGGAT GGGTCGTTCA AGTCGTCATG GGGTCGTTAT TAAATCGGGAACGATGGTCG AAAAATTAGC TTCTGCAAAA ACGATTGCGT TTGATAAAAC AGGCACGATTACGCAAGGAC AACTTTCTGT TGATCAAGTC CAACCAATCA ATGCTGGAAT AACTGCTGCTGAATTAGTGG GATTGGCAGC AAGCGTGGAA CAAGAATCAA CTCATATTTT AGCTAGATCAATTGTTGCTT ATGCCAGAAA GCAAGATGTC CCATTAAAAA ATATTACAGA TCTAGCGGAAGTTTCTGGTG CTGGCGTGAA GGCATTTGTG GATGGTGCTG AGATACGGGT AGGTAAAAAGAATTTTGTGA CACAAGAGTC TCAAGAAACT GAAAAAATTG ATAAAACGAC TATTCATATTTCACGTAATG GCACATATTT AGGCCGAATT ACTTTTACAG ACACTGTACG CCCAGAAGCAAAAGAGACTA TGGAAAAATT ACACCAATTA CATCTTCAAC GAATTTTAAT GCTGACGGGGGATCAAGAAT CCGTTGCAGA AACGATTGCT GCAGAAGTAG GAATTACCGA AGTACATGGGGAATGTTTAC CACAAGATAA ATTAACTATT CTAAAAGAAT TGCCTAAAGA AAATCATCCAGTCATCATGG TAGGAGATOG TGTAAATGAT GCACCTTCGC TTGCTGCTGC AGACGTAGGTATTGCTATGG GTGCTCATGG AGCTACTGCG GCTAGTGAAA CTGCTGACGT TGTTATTTTAAAAGATGACT TAAGTAAAGT CAGCCAAGCG GTCGAAATTG CCCAAGATAC CATGAAAATTGCCAAACAAT CTGTATTAAT CGGAATTTTT ATCTGCGTTT TACTAATGTT AATTGCTAGTACCGGGATCA TTCCGGCGCT AATCGGGGCT ATGCTACAAG AAGTCGTGGA CACTGTGTCAATCTTATCTG CTTTGCGTGC TCGTCGAATT GGCCEF077-4 (SEQ ID NO:296)QPNWA YGITLITGSV MALMMFWEMIQTLREGKYGV DILAITAIVA TLAVGEYWAS LMILIMLTGG DSLEDYAAGK ANQELKSLLDNSPQKAHRLN GENLEDVSVE ETNVGDELVV KPGELVPVDG LVKTGTSTVD ESSLTGESKPIEKNPGDELM SGSVNGDGSL KNVAEKTVAD SQYQTIVNLV KESAARPAHF VRLADRYAVPFTLVAYLIAG VAWFVSKSPT RFAEVLVVAS PCPLILSAPI ALVAGMGRSS RHGVVIKSGTMVEKLASAKT IAFDKTGTTT QGQLSVDQVQ PINAGTTAAE LVGLAASVEQ ESSHILARSIVAYARKQDVP LKNITDLAEV SGAGVKAFVD GAEIRVGKKN FVTQESQETE KIDKTTIHISRNGTYLGRTT FTDTVRPEAK ETMEKLHQLH LQRILMLTGD QESVAETIAA EVGTTEVHGECLPQDKLTIL KELPKENHPV IMVGDGVNDA PSLAAADVGI AMGAHGATAA SETADVVILKDDLSKVSQAV EIAQDTMKTA KQSVLIGIFI CVLLMLIAST GIIPALIGAM LQEVVDTVSTLSALRARRIGEF079-1 (SEQ ID NO:297)TAATTTCTAG CATCACCGAA GAAATTTTTA GAAAAACAAA GAGCCTGGGC CAATCACTGTCCCAGGCTCT CATGCTTTAT TTTTAAGGAG GAAGCAATGA AGTCAAAAAA GAAACGTCGTATCATTGATG GTTTTATGAT TCTTTTACTG ATTATTGGAA TAGGTGCATT TGCGTATCCTTTTGTTAGCG ATGCATTAAA TAACTATCTG GATCAACAAA TTATCGCTCA TTATCAAGCAAAAGCAAGCC AAGAAAACAC CAAAGAAATG GCTGAACTTC AAGAAAAAAT GGAAAAGAAAAACCAAGAAT TAGCGAAAAA AGGCAGCAAT CCTGGATTAG ATCCTTTTTC TGAAACGCAAAAAACAACGA AAAAACCAGA CAAATCCTAT TTTGAAAGTC ATACGATTGG TGTTTTAACCATTCCAAAAA TAAATGTCCG TTTACCAATT TTTGATAAAA CGAATGCATT GCTATTGGAAAAAGGAAGCT CCTTGTTAGA AGGAACCTCC TATCCTACAG GTGGTACGAA TACACATGCGGTCATTTCAG GCCATCGTGG TCTCCCTCAA GCCAAATTAT TTACAGATTT GCCAGAATTAAAAAAAGGCG ATGAATTTTA TATCGAAGTC AATGGGAAGA CGCTTGCTTA TCAAGTAGATCAAATAAAAA CCGTTGAACC AACTGATACA AAAGATTTAC ACATTGAGTC TGGCCAAGATCTCGTCACTT TATTAACTTG CACACCGTAT ATGATAAACA GTCATCGGTT ATTAGTTCGAGGACATCGTA TCCCATATCA ACCAGAAAAA GCAGCAGCGG GGATGAAAAA AGTGGCACAACAACAAAATT TACTATTATG GACATTACTT TTAATTGCCT GTGCGTTAAT TATTAGCGGCTTCATTATCT GGTACAAGCG ACGGAAAAAG ACGACCAGAA AACCAAAGTA GEF079-2 (SEQ ID NO:298)MKSKKKRRI IDGFMILLLI IGIGAFAYPEVSDALNNYLD QQIIAHYQAK ASQENTKEMA ELQEKMEKKN QELAKKGSNP GLDPFSETQKTTKKPDKSYF ESHTIGVLTI PKINVRLPIF DKTNALLLEK GSSLLEGTSY PTGGTNTHAVISGHRGLPQA KLFTDLPELK KGDEFYIEVN GKTLAYQVDQ IKTVEPTDTK DLHIESGQDLVTLLTCTPYM INSHRLLVRG HRIPYQPEKA AAGMKKVAQQ QNLLLWTLLL IACALIISGFIIWYKEPKKT TRKPKEF079-3 (SEQ ID NO:299)TCCTTTTGTTAGCG ATGCATTAAA TAACTATCTG GATCAACAAA TTATCGCTCA TTATCAAGCAAAAGCAAGCC AAGAAAACAC CAAAGAAATG GCTGAACTTC AAGAAAAAAT GGAAAAGAAAAACCAAGAAT TAGCGAAAAA AGGCAGCAAT CCTGGATTAG ATCCTTTTTC TGAAACGCAAAAAACAACGA AAAAACCAGA CAAATCCTAT TTTGAAAGTC ATACGATTGG TGTTTTAACCATTCCAAAAA TAAATGTCCG TTTACCAATT TTTGATAAAA CGAATGCATT GCTATTGGAAAAAGGAAGCT CCTTGTTAGA AGGAACCTCC TATCCTACAG GTGGTACGAA TACACATGCGGTCATTTCAG GCCATCGTGG TCTCCCTCAA GCCAAATTAT TTACAGATTT GCCAGAATTAAAAAAAGGCG ATGAATTTTA TATCGAAGTC AATGGGAAGA CGCTTGCTTA TCAAGTAGATCAAATAAAAA CCGTTGAACC AACTGATACA AAAGATTTAC ACATTGAGTC TGGCCAAGATCTCGTCACTT TATTAACTTG CACACCGTAT ATGATAAACA GTCATCGGTT ATTAGTTCGAGGACATCGTA TCCCATATCA ACCAGAAAAA GCAGCAGCGG GGATGAAAAA AGTGGCACAACAACAAAATT TACTATTATO GACATTACTT TTAATTGCCT GTGCGTTAAT TATTAGCGGCTTCATTATCT GGTACAAGCG ACGGAAAAAG ACGACCAGAA AACCAAEF079-4 (SEQ ID NO:300)PFVSDALNNYLD QQITAHYQAK ASQENTKEMA ELQEKNEKKN QELAKKGSNP GLDPFSETQKTTKKPDKSYF ESHTTGVLTT PKINVRLPIF DKTNALLLEK GSSLLEGTSY PTGGTNTHAVISGHRGLPQA KLFTDLPELK KGDEFYTEVN GKTLAYQVDQ IKTVEPTDTK DLHTESGQDLVTLLTCTPYM INSHRLLVRG HRIPYQPEKA AAGMKKVAQQ QNLLLWTLLL IACALILISGFIIWYKRRKKT TRKPEF080-1 (SEQ ID NO:301)TAGTTACACT CGTTTAGGGC TAGCAACGTT AGGCATTTTC GCTCGACTCT TAGCACTCTTTTTATTAGGA GGTTATTTCC TATGAAAAAA CGACTTTTAC CTATTTTTTT CCTAATACTTCTTACCTTTG GCCTTGCCCT ACCCGTTTCG GCGGCTGAAA ATTCAATTGA TGATGGCGCACAATTACTGA CACCTGATCA AATCAACCAA CTAAAGCAAG AGATACAACC TTTAGAAGAAAAAACAAAAG CCTCTGTCTT TATTGTAACC ACAAATAATA ATACCTATGG CGATGAACAAGAATATGCAG ATCATTATCT TTTAAATAAA GTTGGCAAGG ACCAAAATGC GATTCTTTTTCTCATTGATA TGGACTTACG GAAAATCTAC ATCTCTACTT CTGGAAACAT GATTGATTATATGACAGATG CACGAATTGA TGATACCTTA GATAAAATAT GGGATAATAT GAGTCAAGGAAATTATTTCG CGGCTGCTCA AACCTTTGTT CAGGAAACTC AAGCATTTGT TAATAAAGGGGTTCCTGGGG GGCACTATCG TGTGGACAGC GAAACAGGTA AAATCACTCG TTATAAAGTCATTACCCCGC TGGAAATGGT AATTGCTTTT GCTGCTGCGC TGATACTCAG TTTGGTCTTCTTAGGCATTA ATATTTCTAA ATATCAATTA AAATTTTCAA GTTATCAATA TCCCTTTAGGGAAAAAACAA CTTTAAACTT AACCTCCCGC ACAGATCAGT TAACCAACTC TTTCATCACTACGCGTCGTA TTCCTAAAAA CAATGGCGGC AGTGGCGGAA TGGGCGGTGG TGGTAGCACCACCCACTCAA CTGGCGGCGG CACATTCGGT GGCGGCGGTC GAAGTTTTTA GEF080-2 (SEQ ID NO:302)MKKR LLPTFFLILL TFGLALPVSA AENSIDDGAQLLTPDQINQL KQEIQPLEEK TKASVFIVTT NNNTYGDEQE YADHYLLNKV GKDQNAILFLIDMDLRKIYI STSGNMIDYM TDARIDDTLD KIWDNMSQGN YFAAAQTFVQ ETQAFVNKGVPGGHYRVDSE TGKITRYKVI TPLEMVIAFA AALILSLVFL GINISKYQLK FSSYQYPFREKTTLNLTSRT DQLTNSFITT RRTPKNNGGS GGMGGGGSTT HSTGGGTFGG GGRSFEF080-3 (SEQ ID NO:303)GGCTGAAA ATTCAATTGA TGATGGCGCACAATTACTGA CACCTGATCA AATCAACCAA CTAAAGCAAG AGATACAACC TTTAGAAGAAAAAACAAAAG CCTCTGTCTT TATTGTAACC ACAAATAATA ATACCTATGG CGATGAACAAGAATATGCAG ATCATTATCT TTTAAATAAA GTTGGCAAGG ACCAAAATGC GATTCTTTTTCTCATTGATA TGGACTTACG GAAAATCTAC ATCTCTACTT CTGGAAACAT GATTGATTATATGACAGATG CACGAATTGA TGATACCTTA GATAAAATAT GGGATAATAT GAGTCAAGGAAATTATTTCG CGGCTGCTCA AACCTTTGTT CAGGAAACTC AAGCATTTGT TAATAAAGGGGTTCCTGGGG GGCACTATCG TGTGGACAGC GAAACAGGTA AAATCACTCG TTATAAAGTCATTACCCCGC TGGAAATGGT AATTGCTTTT GCTGCTGCGC TGATACTCAG TTTGGTCTTCTTAGGCATTA ATATTTCTAA ATATCAATTA AAATTTTCAA GTTATCAATA TCCCTTTACGGAAAAAACAA CTTTAAACTT AACCTCCCGC ACAGATCAGT TAACCAACTC TTTCATCACTACGCGTCGTA TTCCTAAAAA CAATGGCGGC AGTGGCGGAA TGGGCGGTGG TGGTAGCACCACCCACTCAA CTGGCGGCGG CACATTCGGT GGCGGCGGTC GAAGTEF080-4 (SEQ ID NO:304)AENS I DDGAQLLTPDQINQL KQEIQPLEEK TKASVFIVTT NNNTYGDEQE YADHYLLNKV GKDQNAILFLIDMDLRKIYI STSGNNIDYM TDARIDDTLD KIWDNNSQGN YFAAAQTFVQ ETQAFVNKGVPGGHYRVDSE TGKITRYKVT TPLEMVIAFA AALILSLVFL GINISKYQLK FSSYQYPFREKTTLNLTSRT DQLTNSFITT RRTPKNNGGS GGMGGGGSTT HSTGGGTFGG GGRSEF081-1 (SEQ ID NO:305)TGAATGGAAC CAAGCAATCG TAATAAAAAA TCTTCAAAAA AACCACTTAT TCTTGGTGTTTCTGCCTTGG TTCTAATCGC TGCTGCCGGT GGCGGGTATT ATGCTTATAG TCAATGGCAAGCCAAACAAG AATTAGCCGA AGCGAAGAAA ACAGCTACTA CATTTTTAAA CGTATTGTCAAAACAGGAAT TTGATAAGTT ACCGTCCGTT GTTCAAGAAG CTAGCTTAAA GAAAAATGGCTATGATACTA AATCTGTTGT TGAAAAATAC CAAGCAATTT ATTCAGGGAT TCAAGCAGAAGGAGTCAAAG CTAGTGATGT TCAAGTCAAA AACGCGAAAG ACAATCAATA CACATTTACCTATAAATTAT CGATGAGCAC GCCTTTAGGC GAAATGAAAG ATTTGTCTTA TCAATCAAGTATCGCCAAAA AAGGCGATAC CTACCAAATC GCTTGGAAGC CATCTTTAAT TTTTCCAGATATGTCAGGAA ATGATAAAAT TTCGATTCAA GTAGATAATG CCAAACGTGG AGAAATTGTCGATCGTAATG GTAGTGGGCT AGCAATTAAC AAAGTGTTTG ACGAAGTGGG CGTAGTGCCTGGCAAACTCG GTTCTGCCGC AGAAAAAACA GCCAATATCA AAGCTTTTAG TGATAAATTCGGCGTTTCTG TTGATGAAAT CAATCAAAAG TTAAGCCAAG GATGGGTCCA AGCAGACTCCTTTGTACCAA TCACAGTCGC TTCTGAACCA GTGACAGAAT TACCAACAGG GGCTGCGACAAAAGATACAG AGTCACGTTA TTATCCGCTG GGGGAAGCAN TGCGCAATTA AEF081-2 (SEQ ID NO:306)MERSNRNKKS SKKPLILGVS ALVLIAAAGG GYYAYSQWQA KQELAEAKKT ATTFLNVLSKQEFDKLPSVV QEASLKKNGY DTKSVVEKYQ AIYSGIQAEG VKASDVQVKK AKDNQYTFTYKLSMSTPLGE MKDLSYQSSI AKKGDTYQTA WKPSLIFPDM SGNDKISIQV DNAKRGEIVDRNGSGLAINK VFDEVGVVPG KLGSGAEKTA NIKAFSDKFG VSVDETNQKL SQGWVQADSFVPITVASEPV TELPTGAATK DTESRYYPLG EAXRNEF081-3 (SEQ ID NO:307)T GGCGGGTATT ATOOTTATAG TCAATGGCAAGCCAAACAAG AATTAGCCGA AGCGAAGAAA ACAGCTACTA CATTTTTAAA CGTATTGTCAAAACAGGAAT TTGATAAGTT ACCGTCCGTT GTTCAAGAAG CTAGCTTAAA GAAAAATGGCTATGATACTA AATCTGTTGT TGAAAAATAC CAAGCAATTT ATTCAGGGAT TCAAGCAGAAGGAGTCAAAG CTAGTGATGT TCAAGTCAAA AAGGCGAAAG ACAATCAATA CACATTTACCTATAAATTAT CGATGAGCAC GCCTTTAGGC GAAATGAAAG ATTTGTCTTA TCAATCAAGTATCGCCAAAA AAGGCGATAC CTACCAAATC GCTTGGAAGC CATCTTTAAT TTTTCCAGATATGTCAGGAA ATGATAAAAT TTCGATTCAA GTAGATAATG CCAAACGTGG AGAAATTGTCGATCGTAATG GTAGTGGGCT AGCAATTAAC AAAGTGTTTG ACGAAGTGGG CGTAGTGCCTGGCAAACTCG GTTCTGGCGC AGAAAAAACA GCCAATATCA AAGCTTTTAG TGATAAATTCGGCGTTTCTG TTGATGAAAT CAATCAAAAG TTAAGCCAAG GATGGGTCCA AGCAGACTCCTTTGTACCAA TCACAGTCGC TTCTGAACCA GTGACAGAAT TACCAACAGG GGCTGCGACAAAAGATACAG AGTCACGTTA TTATCCGCTG GGGGEF081-4 (SEQ ID NO:308)G GYYAYSQWQA KQELAEAKKT ATTFLNVLSKQEFDKLPSVV QEASLKKNGY DTKSVVEKYQ AIYSGIQAEG VKASDVQVKK AKDNQYTFTYKLSMSTPLGE MKDLSYQSSI AKKGDTYQIA WKPSLIFPDM SGNDKISIQV DNAKRGETVDRNGSGLAINK VFDEVGVVPG KLGSGAEKTA NIKAFSDKFG VSVDEINQKL SQGWVQADSFVPITVASEPV TELPTGAATK DTESRYYPLGEF082-1 (SEQ ID NO:309)TAAAAAATGA AAAAGATCGT GCGCATTTCA AGCATTTTGT TCGTTGCTAC GCCTCTTATGCTTTTAAATA GTTCAAAAGT TGAAGCAGCT CAAGTCGCTT CTATTCAATC CAACGCTGATATTACGTTTG CTCTTGATAA TACTGTCACG CCACCTGTCA ACCCGACGAA CCCTTCTCAGCCTGTGACAC CTAATCCTGC TGATCCTCAT CAACCTGGTA CAGCCGGACC CCTTAGTATTGACTATGTTT CAAATATCCA TTTTGGATCA AAACAAATTC AAGCCGGAAC AGCGATCTATTCGGCACAAC TGGATCAAGT GCAAAATAGT ACTGGCGATT TAATTAGCGT GCCAAACTATGTTCAAGTAA CTGACAAACG TGGTCTAAAT CTTGGCTGGA AATTATCAGT TAAACAGAGTGCGCAATTTG CTACAAGTGA TTCAACACCC GCTGTTTTGG ATAATGCATC CTTGACCTTTTTAGCAGCAA CACCCAATTC AACACAGTTA CTTTCTTTGG CGCCATTAAC GGTCCCAGTAACCTTGGATC CAACTGGTGC CGCCACTTCT CCTGTGGCGA CTGCCGCTCT TTCAACAGGAATGGGCACTT GGACATTAGC TTTTGGTAGC GGANCGACCG CTGCTCAAGG CATTCAATTAACTGTTCCTG CGACAACGAA AAAAGTTGCA GCTAAACAAT ATAAAACAAC GCTTACTTGGATTTTGGATG ATACACCACT TTAAEF082-2 (SEQ ID NO:310)MKKIVRISS ILFVATPLNL LNSSKVEAAQ VASIQSNADI TFALDNTVTP PVNPTNPSQPVTPNPADPHQ PGTAGPLSID YVSNIHFGSK QIQAGTAIYS AQLDQVQNST GDLISVPNYVQVTDKRGLNL GWKLSVKQSA QFATSDSTPA VLDNASLTFL AATPNSTQLL SLAPLTVPVTLDPTGAATSP VATAALSTGM GTWTLAFGSG XTAAQGIQLT VPATTKKVAA KQYKTTLTWILDDTPLEF082-3 (SEQ ID NO:311)AGCT CAAGTCGCTT CTATTCAATC CAACGCTGATATTACGTTTG CTCTTGATAA TACTGTCACG CCACCTGTCA ACCCGACGAA CCCTTCTCAGCCTGTGACAC CTAATCCTGC TGATCCTCAT CAACCTGGTA CAGCCGGACC CCTTAGTATTGACTATGTTT CAAATATCCA TTTTGGATCA AAACAAATTC AAGCCCGAAC AGCGATCTATTCGGCACAAC TGGATCAAGT GCAAAATAGT ACTGGCGATT TAATTAGCGT GCCAAACTATGTTCAAGTAA CTGACAAACG TGGTCTAAAT CTTGGCTGGA AATTATCAGT TAAACAGAGTGCGCAATTTG CTACAAGTGA TTCAACACCC GCTGTTTTGG ATAATGCATC CTTGACCTTTTTAGCAGCAA CACCCAATTC AACACAGTTA CTTTCTTTGG CGCCATTAAC GGTCCCAGTAACCTTGGATC CAACTGGTGC CGCCACTTCT CCTGTCGCGA CTGCCGCTCT TTCAACAGGAATGGGCACTT GGACATTAGC TTTTGGTAGC GGANCGACCG CTGCTCAAGG CATTCAATTAACTGTTCCTG CGACAACGAA AAAAGTTGCA GCTAAACAAT ATAAAACAAC GCTTACTTGGATTTTGGATG ATACACCACTEF082-4 (SEQ ID NO:312)AQ VASIQSNADI TFALDNTVTP PVNPTNPSQPVTPNPADPHQ PGTAGPLSID YVSNIHFGSK QIQAGTAIYS AQLDQVQNST GDLISVPNYVQVTDKRGLNL GWKLSVKQSA QFATSDSTPA VLDNASLTFL AATPNSTQLL SLAPLIVPVTLDPTGAATSP VATAALSTGM GTWTLAFGSG XTAAQCIQLT VPATTKKVAA KQYKTTLTWILDDTPEF083-1 (SEQ ID NO:313)TAATTTAAAA GACAAGGAGA AATAAAAATG AAAAAGAAAA TTTTAGCAGG AGCGCTTGTCGCTCTGTTTT TTATGCCTAC AGCTATGTTT GCCGCAAAAG GAGACCAAGG TGTGGATTGGGCGATTTATC AAGGTGAACA AGGTCGCTTT GGCTATGCAC ATGATAAATT CGCTATTGCCCAGATTGGAG GCTACAATGC TAGCGGTATT TATGAACAAT ACACATATAA AACGCAAGTGGCAAGTGCTA TTGCCCAAGG TAAACGTGCG CATACCTATA TTTGGTATGA CACTTGGGGAAACATGGACA TTGCGAAAAC AACAATGGAT TACTTTTTGC CACGTATTCA AACGCCTAAAAATTCCATCG TTGCATTAGA TTTTGAACAT GGAGCGTTGG CTAGTGTTCC AGATGGATATGGAGGATATG TAAGTTCAGA TGCCGAAAAA GCAGCAAATA CAGAGACAAT TTTGTACGGTATGCGCAGAA TCAAACAGGC TGGCTATACT CCAATGTATT ACAGCTATAA GCCATTTACACTAAATCATG TAAACTATCA ACAAATCATC AAAGAGTTTC CTAACTCTTT ATGGATTGCTGCGTATCCTA TCGATGGTGT GTCACCATAT CCATTGTATG CTTATTTCCC AAGCATGGATGGTATTGGTA TTTGGCAATT CACATCCGCT TATATTGCAG GTGGTTTAGA TGGTAACGTAGATTTAACAG GAATTACGGA TAGTGGTTAT ACAGATACCA ATAAACCAGA AACGGATACGCCAGCAACAG ATGCAGGCGA AGAAATTGAA AAAATACCTA ATTCTGATGT TAAAGTTGGCGATACCGTCA AAGTGAAATT TAATGTAGAT GCTTGGGCAA CTGGGGAAGC TATTCCGCAATGGGTAAAAG GAAACAGCTA CAAAGTGCAA GAAGTAACTG GAAGCAGAGT ATTGCTTGAAGGTATCTTGT CATGGATTAG CAAAGGTGAT ATTGAATTAT TGCCAGACGC AACAGTCGTCCCTGATAAGC AACCAGAAGC GACTCATGTG GTACAATACG GAGAAACATT ATCAAGTATTGCTTATCAAT ATGGAACAGA CTATCAAACG TTGGCGGCAT TAAATGGATT GGCTAATCCAAATCTTATTT ATCCTGGTCA AGTTTTGAAA GTCAATGGAT CGGCAACAAG TAATGTCTACACGGTTAAAT ACGGCGATAA TTTATCTAGT ATTGCAGCAA AACTTGGCAC TACTTATCAAGCTTTAGCTG CATTAAACGG ATTAGCAAAT CCTAACTTGA TTTATCCAGG TCAAACATTGAATTATTAAEF083-2 (SEQ ID NO:314)MK KKILAGALVA LFFMPTAMFA AKGDQGVDWA IYQGEQGRFG YAHDKFAIAQIGGYNASGIY EQYTYKTQVA SAIAQGKRAH TYIWYDTWGN MDIAKTTMDY FLPRIQTPKNSIVALDFEHG ALASVPDGYG GYVSSDAEKA ANTETILYGM RRIKQAGYTP MYYSYKPFTLNHVNYQQIIK EFPNSLWIAA YPIDGVSPYP LYAYFPSMDG GIWQFTSAY IAGGLDGNVDLTGITDSGYT DTNKPETDTP ATDAGEEIEK IPNSDVKVGD TVKVKFNVDA WATGEAIPQWVKGNSYKVQE VTGSRVLLEG ILSWISKGDI ELLPDATVVP DKQPEATHVV QYGETLSSIAYQYGTDYQTL AALNGLANPN LIYPGQVLKV NGSATSNVYT VKYGDNLSSI AAKLGTTYQALAALNGLANP NLIYPGQTLN YEF083-3 (SEQ ID NO:315)AAAAG GAGACCAAGG TGTGGATTGGGCGATTTATC AAGGTCAACA AGGTCGCTTT GGCTATGCAC ATGATAAATT CGCTATTGCCCAGATTGGAG GCTACAATGC TAGCGGTATT TATGAACAAT ACACATATAA AACGCAAGTGGCAAGTGCTA TTGCCCAAGG TAAACGTGCG CATACCTATA TTTGGTATGA CACTTGGGGAAACATGGACA TTGCGAAAAC AACAATGGAT TACTTTTTGC CACGTATTCA AACGCCTAAAAATTCCATCG TTGCATTAGA TTTTGAACAT GGAGCGTTGG CTAGTGTTCC AGATGGATATGGACGATATG TAAGTTCAGA TGCCGAAAAA GCAGCAAATA CAGAGACAAT TTTGTACGGTATGCGCAGAA TCAAACAGGC TGGCTATACT CCAATGTATT ACAGCTATAA GCCATTTACACTAAATCATG TAAACTATCA ACAAATCATC AAAGAGTTTC CTAACTCTTT ATCGATTGCTGCGTATCCTA TCGATGGTGT GTCACCATAT CCATTGTATG CTTATTTCCC AAGCATGGATGGTATTGGTA TTTGGCAATT CACATCCGCT TATATTGCAG GTGGTTTAGA TGGTAACGTAGATTTAACAG GAATTACGGA TAGTGGTTAT ACAGATACCA ATAAACCAGA AACGGATACGCCAGCAACAG ATGCAGGCGA AGAAATTGAA AAAATACCTA ATTCTGATGT TAAAGTTGGCGATACCGTCA AAGTGAAATT TAATGTAGAT GCTTGGGCAA CTGGGGAAGC TATTCCGCAATGGGTAAAAG GAAACAGCTA CAAAGTGCAA GAAGTAACTG GAAGCAGAGT ATTGCTTGAAGGTATCTTGT CATGGATTAG CAAAGGTGAT ATTGAATTAT TGCCAGACGC AACAGTCGTCCCTGATAAGC AACCAGAAGC GACTCATGTG GTACAATACG GAGAAACATT ATCAAGTATTGCTTATCAAT ATGGAACAGA CTATCAAACG TTGGCGGCAT TAAATGGATT GGCTAATCCAAATCTTATTT ATCCTGGTCA AGTTTTGAAA GTCAATGGAT CGGCAACAAG TAATGTCTACACGGTTAAAT ACGGCGATAA TTTATCTAGT ATTGCACCAA AACTTGGCAC TACTTATCAAGCTTTAGCTG CATTAAACGG ATTAGCAAAT CCTAACTTGA TTTATCCAGG TCAAACATTGAATEF083-4 (SEQ ID NO:316)KGDQGVDWA IYQGEQGRFG YAHDKFAIAQIGGYNASGIY EQYTYKTQVA SAIAQGKRAH TYIWYDTWGN MDIAKTTMDY FLPRIQTPKNSIVALDFEHG ALASVPDGYG GYVSSDAEKA ANTETILYGM RRIKQAGYTP MYYSYKPFTLNHVNYQQIIK EFPNSLWTAA YPIDGVSPYP LYAYFPSMDG IGIWQFTSAY IAGCLDGNVDLTGITDSGYT DTNKPETDTP ATDAGEEIEK TPNSDVKVGD TVKVKFNVDA WATGEAIPQWVKGNSYKVQE VTGSRVLLEG ILSWISKGDI ELLPDATVVP DKQPEATHVV QYGETLSSIAYQYGTDYQTL AALNGLANPN LIYPGQVLKV NGSATSNVYT VKYGDNLSSI AAKLGTTYQALAALNGLANP NLIYPGQTLNEF084-1 (SEQ ID NO:317)TAGTCAAACG TTTATTTTTT CCTTAAATCC AGAAAAAATC CCGTAATTAT GGTACACTACCTATTGAATT GGACGAGAAC TATGAAGAAA TTTGATGTAA TTATTGTCGG TGCTGGGACGAGCGGTATGA TGGCCACGAT TGCGGCCGCC GAAGCAGGCG CTCAAGTATT ATTGATTGAAAAAAATCGCC GTGTTGGGAA AAAATTATTA ATGACTGGTG GCGGCCGCTG TAATGTAACCAATAATCGGC CCGCAGAAGA AATCATTTCA TTTATTCCTG GGAATGGAAA ATTTTTATACAGCGCATTTT CACAATTTGA TAACTATGAT ATCATGAACT TTTTTGAATC CAATGGTATTCACTTAAAAG AAGAAGATCA CGGACGCATG TTCCCTGTTA CAGATAAATC GAAGTCAATTGTTGATGCGC TATTTAACCG CATTAACGAA TTAGGAGTCA CTGTTTTTAC AAAAACACAGGTCACAAAAT TACTACGAAA AGACGATCAA ATAATTGGCG TTGAAACCGA ACTGGAAAAAATTTATGCAC CGTGTGTTGT ATTAACAACT GGCGGCCGCA CTTATCCTTC CACAGGAGCAACTGGTGATG GCTATAAACT AGCCAAAAAA ATGGGGCATA CCATCAGCCC GCTCTACCCTACCGAATCAC CTATTATTTC TGAAGAACCT TTTATCCTGG ATAAAACGTT GCAAGGTCTCTCTTTACAAG ATGTTAATTT AACTGTTTTG AACCAAAAAG GAAAACCTTT AGTTAATCATCAAATGGATA TGCTGTTTAC ACATTTTGGC ATTTCAGGAC CTGCCGCGCT CCGCTGTTCTAGTTTTATTA ACCAAGAATT AACTCGCAAC GGTAATCAAC CTGTCACGGT AGCCTTGGATGTGTTTCCGA CAAAATCTTT TGAAGAAGTG CCTGCCAAAC AACTAACAGA AAAGCAACCNCTTTCCTTTG TGGAACTACT GAAAGACTTT CAGTTCACTG TTACGAAAAC ATTGCCTTTGGAAAAATCTT TTGTCACAGG CGGTGGGATT TCCCTCAAAG AAGTGACCCC TAAAACAATGGAGAGCAAAT TAGTCAATGG TTTATTTTTT GCTGGTGAAC TTTTAGATAT TAATGGCTATACTGGAGGCT ACAATGTTAC AGCTGCATTT GTCACTGGAC ATGTTGCTGG CTCCCATGCCGCAGAAATTG CAGAATACAC CTATTTACCA ATTGAAGAAG TCTAAEF084-2 (SEQ ID NO:318)MKKF DVIIVGAGTS GHMATIAAAE AGAQVLLIEKNRRVGKKLLM TGGGRCNVTN NRPAEEIISF IPGNGKFLYS AFSQFDNYDI MNFFESNGIHLKEEDHGRMF PVTDKSKSIV DALFNRINEL GVTVFTKTQV TKLLRKDDQI IGVETELEKIYAPCVVLTTG GRTYPSTGAT GDGYKLAKKN GHTISPLYPT ESPIISEEPF ILDKTLQGLSLQDVNLTVLN QKGKPLVNHQ MDMLFTHFGI SGPAALRCSS FINQELTRNG NQPVTVALDVFPTKSFEEVP AKQLTEKQRL SFVELLKDFQ FTVTKTLPLE KSFVTGGGIS LKEVTPKTMESKLVNGLFFA GELLDINGYT GGYNVTAAFV TCHVAGSHAA EIAEYTYLPI EEVEF084-3 (SEQ ID NO:319)C GAAGCAGGCG CTCAAGTATT ATTGATTGAAAAAAATCGCC GTGTTGGGAA AAAATTATTA ATGACTGGTG GCGGCCGCTG TAATGTAACCAATAATCGGC CCGCAGAAGA AATCATTTCA TTTATTCCTG GGAATGGAAA ATTTTTATACAGCGCATTTT CACAATTTGA TAACTATGAT ATCATGAACT TTTTTGAATC CAATGGTATTCACTTAAAAG AAGAAGATCA CGGACGCATG TTCCCTGTTA CAGATAAATC GAAGTCAATTGTTGATGCGC TATTTAACCG CATTAACGAA TTAGGAGTCA CTGTTTTTAC AAAAACACAGGTCACAAAAT TACTACGAAA AGACGATCAA ATAATTGGCG TTGAAACCGA ACTGGAAAAAATTTATGCAC CGTGTGTTGT ATTAACAACT GGCGGCCGCA CTTATCCTTC CACAGGACCAACTGGTGATG GCTATAAACT AGCCAAAAAA ATGGGGCATA CCATCAGCCC GCTCTACCCTACCGAATCAC CTATTATTTC TGAAGAACCT TTTATCCTGG ATAAAACGTT GCAAGGTCTCTCTTTACAAG ATGTTAATTT AACTGTTTTG AACCAAAAAG GAAAACCTTT AGTTAATCATCAAATGGATA TGCTGTTTAC ACATTTTGGC ATTTCAGGAC CTGCCGCGCT CCGCTGTTCTAGTTTTATTA ACCAAGAATT AACTCGCAAC GGTAATCAAC CTGTCACGGT AGCCTTGGATGTGTTTCCGA CAAAATCTTT TGAAGAAGTG CCTGCCAAAC AACTAACAGA AAAGCAACGNCTTTCCTTTG TGGAACTACT GAAAGACTTT CAGTTCACTG TTACGAAAAC ATTGCCTTTGGAAAAATCTT TTGTCACAGG CGGTGGGATT TCCCTCAAAG AAGTGACCCC TAAAACAATGGAGAGCAAAT TAGTCAATGG TTTATTTTTT GCTGGTGAAC TTTTAGATAT TAATGGCTATACTGGAGGCT ACAATGTTAC AGCTGCATTT GTCACTGGAC ATGTTGCTGG CTCCCATGCCGCAGAAATTG CAGAATACAC CTATTTACCA ATTGAAGAAG TCEF084-4 (SEQ ID NO:320)E AGAQVLLIEKNRRVGKKLLM TGGGRCNVTN NRPAEEIISF IPGNGKFLYS AFSQEDNYDI MNEFESNGIHLKEEDHGRNF PVTDKSKSIV DALFNRINEL GVTVFTKTQV TKLLRKDDQI IGVETELEKIYAPCVVLTTG GRTYPSTGAT GDGYKLAKKM GHTISPLYPT ESPIISEEPF ILDKTLQGLSLQDVNLTVLN QKGKPLVNHQ HDMLFTHFGI SGPAALRCSS FINQELTRNG NQPVTVALDVFPTKSFEEVP AKQLTEKQRL SFVELLKDFQ FTVTKTLPLE KSFVTGGGIS LKEVTPKTMESKLVNGLFFA GELLDINGYT GGYNVTAAFV TGHVAGSHAA EIAEYTYLPI EEVEF085-1 (SEQ ID NO:321)TAACCCATGA AATCATTTTG TCCCGCATAT GGGGATATGA CTTTGACGGT GATGGCAGCACAGTCCACAC TCATATCAAA AATCTGCGGG CGAACTGCCG GAAAATATCA TCAAAACCATCCGCGGTGTA GGTTACCGAT TGGAGGAATC ATTATAATGG AAAGAAAAGG GATTTTCATTAAGGTTTTTT CCTATACGAT CATTGTCCTG TTACTGCTTG TCGGTGTAAC GGCAACACTGTTTGCACAGC AATTTGTGTC TTATTTCAGA GCGATGGAAG CACAGCAAAC AGTAAAATCCTATCAGCCAT TGGTGGAACT GATTCAGAAT AGCGATAGGC TTGATATGCA AGAGGTGGCAGGGCTGTTTC ACTACAATAA CCAATCCTTT GAGTTTTATA TTGAAGATAA AGAGGGAAGCGTACTCTATG CCACACCGAA TGCCGATACA TCAAATAGTG TTAGGCCCGA CTTTCTTTATGTGGTACATA GAGATGATAA TATTTCGATT GTTGCTCAAA GCAAGGCAGG TGTGGGATTGCTTTATCAAG GGCTGACAAT TCGGGGAATT GTTATGATTG CGATAATGGT TGTATTCAGCCTTTTATGCG CGTATATCTT TGCGCGGCAA ATGACAACGC CGATCAAAGC CTTAGCGGACAGTGCGAATA AAATGGCAAA CCTGAAAGAA GTACCGCCGC CGCTGGAGCG AAAGGATGAGCTTGGCGCAC TGGCTCACGA CATGCATTCC ATGTATATCA GGCTGAAAGA AACCATCGCAAGGCTGGAGG ATGAAATCGC AAGGGAACAT GAGTTGGAGG AAACACAGCG ATATTTCTTTGCGGCAGCCT CTCATGAGTT AAAAACGCCC ATCGCGGCTG TAAGCGTTCT GTTGGAGGGAATGCTTGAAA ATATCGGTGA CTACAAAGAC CATTCTAAGT ATCTGCGCGA ATGCATCAAAATGATGGACA GGCAGGGCAA AACCATTTCC GAAATACTGG AGCTTGTCAG CCTGAACGATGGGAGAATCG TACCCATAGC CGAACCGCTG GACATAGGGC GCACGGTTGC CGAGCTGCTACCCGATTTTC AAACCTTGGC AGAGGCAAAC AACCAGCGGT TCGTCACAGA TATTCCAGCCGGACAAATTG TCCTGTCCGA TCCGAAGCTG ATCCAAAAGG CGCTATCCAA TGTCATATTGAATGCGGTTC AGAACACGCC CCAGGGAGGT GAGGTACGGA TATGGAGTGA GCCTGGGGCTGAAAAATACC GTCTTTCCGT TTTGAACATG GGCGTTCACA TTGATGATAC TGCACTTTCAAAGCTGTTCA TCCCATTCTA TCGCATTGAT CAGGCGCGAA GCAGCAAAAA GTGGGCGAAGCGGTTTGGGG CTTGCCATCG TACAAAAAAC GCTGGATGCC ATGAGCCTCC AATATGCGCTGGAAAACACC TCAGATGGCG TTTTGTTCTG GCTGGATTTA CCGCCCACAT CAACACTATAAATATTTAAEF085-2 (SEQ ID NO:322)MERKGIFIKVESYTIIVEL LLVGVTATLF AQQFVSYFRA MEAQQTVKSY QPLVELIQNS DRLDMQEVAGLFHYNNQSFE FYIEDKEGSV LYATPNADTS NSVRPDFLYV VHRDDNISIV AQSKACVGLLYQGLTIRGIV MIAIMVVFSL LCAYIFARQM TTPIKALADS ANKMANLKEV PPPLERKDELGALAHDMHSM YIRLKETIAR LEDEIAREHE LEETQRYFFA AASHELKTPI AAVSVLLEGMLENIGDYKDH SKYLRECIKM MDRQGKTISE ILELVSLNDG RIVPIAEPLD IGRTVAELLPDEQTLAEANN QRFVTDIPAG QIVLSDPKLI QKALSNVILN AVQNTPQGGE VRIWSEPGAEKYRLSVLNMG VHIDDTALSK LFIPEYRIDQ ARSSKKWAKR FGACHRTKNA GCHEPPICAGKHLRWRFVLA GETAHINTIN IEF085-3 (SEQ ID NO:323)GC AATTTGTGTC TTATTTCAGA GCGATGGAAG CACAGCAAAC AGTAAAATCCTATCAGCCAT TGGTGGAACT GATTCAGAAT AGCGATAGGC TTGATATGCA AGAGGTGGCACGGCTGTTTC ACTACAATAA CCAATCCTTT GAGTTTTATA TTGAAGATAA AGAGGGAAGCGTACTCTATG CCACACCGAA TGCCGATACA TCAAATAGTG TTAGGCCCGA CTTTCTTTATGTGGTACATA GAGATGATAA TATTTCGATT GTTGCTCAAA GCAAGGCAGG TGTGGGATTGCTTTATCAAG GGCTGACAAT TCGGGGAATT GTTATGATTG CGATAATGGT TGTATTCAGCCTTTTATGCG CGTATATCTT TGCGCGGCAA ATGACAACGC CGATCAAAGC CTTAGCGGACAGTGCGAATA AAATGGCAAA CCTGAAAGAA GTACCGCCGC CGCTGGAGCG AAAGGATGAGCTTCGCGCAC TGGCTCACGA CATGCATTCC ATGTATATCA GGCTGAAACA AACCATCGCAAGGCTGGAGG ATGAAATCGC AAGGGAACAT GAGTTGGAGG AAACACAGCG ATATTTCTTTGCGGCAGCCT CTCATGAGTT AAAAACGCCC ATCGCGGCTG TAAGCGTTCT GTTGGAGGGAATGCTTGAAA ATATCGGTGA CTACAAAGAC CATTCTAAGT ATCTGCGCGA ATGCATCAAAATGATGCACA GGCAGGGCAA AACCATTTCC GAAATACTGG AGCTTGTCAG CCTCAACGATGGGACAATCG TACCCATAGC CGAACCGCTG GACATAGGGC GCACGGTTGC CGAGCTGCTACCCGATTTTC AAACCTTGGC AGAGGCAAAC AACCAGCGCT TCGTCACAGA TATTCCAGCCGGACAAATTG TCCTGTCCGA TCCGAAGCTG ATCCAAAAGG CGCTATCCAA TGTCATATTGAATGCGGTTC AGAACACGCC CCAGGGAGGT GAGGTACGGA TATGGAGTCA GCCTGGGGCTGAAAAATACC GTCTTTCCGT TTTGAACATG GGCGTTCACA TTGATGATAC TGCACTTTCAAAGCTGTTCA TCCCATTCTA TCGCATTGAT CAGGCGCGAA C-CAGCAAAAA GTGGGCGAAGCGGTTTGGGG CTTGCCATCG TACAAAAAAC GCTGGATGCC ATGAGCCTCC AATATGCGCTGGAAAACACC TCAGATGGCG TTTTGTTCTG GCTGGATTTA CCGCCCACAT CAACACTATAAATATTTEF085-4 (SEQ ID NO:324)QFVSYEPA MEAQQTVKSY QPLVELIQNS DRLDMQEVAGLFHYNNQSFE FYIEDKEGSV LYATPNADTS NSVRPDFLYV VHRDDNISIV AQSKAGVGLLYQGLTIRGIV MIAIMVVFSL LCAYIFARQM TTPIKALADS ANKNANLKEV PPPLERKDELGALAHDMHSM YIRLKETIAR LEDEIAREHE LEETQRYFEA AASHELKTPI AAVSVLLEGMLENIGDYKDH SKYLRECIKM MDRQGKTISE ILELVSLNDG RIVPIAEPLD IGRTVAELLPDFQTLAEANN QRFVTDIPAG QIVLSDPKLI QKALSNVILN AVQNTPQGGE VRIWSEPGAEKYRLSVLNMG VHIDDTALSK LFIPFYRIDQ ARSSKKWAKR FGACHRTKNA GCHEPPICAGKHLRWRFVLA GFTAHINTIN IEF086-1 (SEQ ID NO:325)TAACTGGTGG GATTGGCAAA TTGGTTCCGC GCAGCGCTAA CAGATACATT GATTTTATTACATGATGACC TATTGAATAC AGATGCAGAA AAATTAAATA AATTTACTGC TCCGCTGATGCTGTATGCAA AAGATCCAAA CATACAATGG CCAATTTATC GTGCAACAGG AGCTAACTTAACAGATATTT CAATCACCGT TTTAGGTACT GGACTTTTGT TAGAAGATAA TCAACGCCTAGTACAAGTAC AAGAAGCTGT TCCGTCCGTT TTAAAAAGTG TTTCCTCTGG TGATGGCTTATATCCTGATG GTTCCTTGAT TCAACATGGT TATTTTCCGT ACAACGCCAG TTACGGGAATGAGTTGCTAA AACGGTTTGG ACGAATTCAG ACTATTTTAC AAGGTTCCGA CTGGGAGATGAATGACCCTA ACATTAGTAA TTTATTTAAT GTTGTGGATA AAGGTTACTT ACAATTGATGGTAAATGGAA AAATGCCATC GATGGTTTCT GGTAGAAGTA TTTCCAGAGC GCCAGAAACGAATCCTTTTA CTACAGAGTT TGAATCGGGT AAAGAAACAA TAGCTAATTT AACCTTAATTGCAAAATTTG CACCAGAAAA TTTAAGAAAT GACATTTATA CATCTATCCA AACGTGGCTTCAACAAAGTG GGTCATACTA TCATTTCTTT AAAAAACCAA GAGATTTTGA AGCGTTAATTGACTTGAAAA ATGTAGTGAA TAGTGCGTCA CCTGCCCAAG CCACACCAAT GCAATCTTTAAATGTATATG GTTCGATGGA TCGAGTCCTA CAGAAAAATA ACGAATATGC GGTGGGGATCAGTATGTATT CACAACGTGT CGGAAACTAT GAATTTGGGA ATACGGAAAA TAAAAAAGGCTGGCATACAG CAGACGGCAT GCTTTATTTA TACAATCAAG ACTTTGCTCA GTTTGATGAAGGATACTGGG CAACGATCGA TCCATATCGA TTACCAGGAA CGACAGTTGA CACAAGAGAATTGGCAAATG GTGCTTATAC AGGGAAACGC AGTCCCCAGT CATGGGTAGG TGGCTCAAATAATGGACAGG TTGCCTCTAT AGGAATGTTT TTAGATAAAA GTAATGAAGG AATGAACTTAGTTGCTAAAA AATCTTGGTT CTTATTAGAT CGTCAAATCA TTAATTTGGG AAGTGGCATTACTGGTACGA CAGATGCTTC GATTGAAACA ATCCTCGATA ATCGGATGAT TCATCCACAGGAAGTGAAGC TTAACCAAGG TTCAGACAAA GATAATTCTT GGATTAGTTT AAGCGCAGCGANTCCATTGA ATAACATTGG CTATGTTTTT CCTAATTCNA TGAATACGCT TGATGTTCAAATAGAAGAAC GCTCTGGTCG CTACGGAGAT ATTAACGAAT ACTTTGTTAA TGATAAAACCTATACAAATA CATTTGCTAA AATTAGTAAA AATTATGCCA AGACTGTTGA AAATGGTACTTACGAATATT TAACAGTGGT TGGGAAAACG AATGAAGAAA TCCCAGCTCT TTCTAAAAACAAAGGCTATA CTGTTCTAGA AAATACAGCA AACTTACAAG CCATTGAAGC AGGTAATTATGTCATGATGA ATACATGGAA TAATGACCAA GAAATTGCAG GACTGTATGC GTATGATCCAATGTCGGTTA TTTCAGAAAA AATTGATAAC GGTGTTTATC GCTTAACTCT TGCGAATCCTTTACAAAATA ATGCATCCGT TTCTATTGAA TTTGATAAGG GCATTCTTGA AGTAGTCGCAGOGGACCOAG AAATTTCTGT TGACCAAAAT ATTATCACTT TAAATAGTGC GGGGTTAAATGGCAGCTCGC GTTCAATCAT TGTTAAAACA ACTCCTGAAG TAACGAAAGA AGCGTTAGAAAAATTAATTC AGGAACAAAA AGAACACCAA GAAAAAGACT ACACCGCAAG CAGCTGGAAAGTCTACAGCG AAGCATTGAA ACAAGCACAA ACTGTGGCAG ATCAAACAAC AGCAACGCAAGCAGAAGTAG ACCAAGCAGA AACAGAGTTA CGTTCGGCAG TGAAGCAATT GGTAAAAGTGCCAACTAAAG AAGTAGATAA AACCAACTTG TTGAAAATCA TCAAAGAAAA CGAGAAACACCAAGAAAAAG ACTACACCGC AAGCAGTTGG AAAGTCTACA GTGAAGCATT GAAGCAAGCGCAAACTGTGG CAGATCAAAC AACAGCAACG CAAGCAGAAG TAGACCAACC AGAAGCAAAACTACGTTCGG CAGTGAAGCG ATTAACATTG AAAAATAGTG GGGAAAATAA AAAGGAGCAAAAAAATGGGG GGAATAATGG ACACTTAAAT ACTAGTACAG GAGTTGATCA AACTGGTACGAAACAAGTTA AGCCATCAAC CCAAGGTGGT TTCAGAAAAG CTAGCCAATT TTTACCGAGCACAGGAGAAA AGAAATCGAT CGCGCTTGTG ATTATTGGTC TTCTAGTTAT CGCCAGTGGGTGTCTTTTAG TTTTTCGTAA AAGTAAATCG AAGAAGTAAEF086-2 (SEQ ID NO:326)LVGLANWFRA ALTDTLILLH DDLLNTDAEK LNKFTAPLML YAKDPNIQWP IYRATGANLTDISITVLGTG LLLEDNQRLV QVQEAVPSVL KSVSSGDGLY PDGSLTQHGY FPYNGSYGNELLKGFGRIQT ILQGSDWEMN DPNISNLFNV VDKGYLQLMV NGKMPSMVSG RSISRAPETNPFTTEFESGK ETIANLTLIA KFAPENLRIW IYTSIQTWLQ QSGSYYHFFK KPRDFEALIDLKNVVNSASP AQATPMQSLN VYGSMDRVLQ KNNEYAVGIS MYSQRVGNYE FGNTENKKGWHTADGMLYLY NQDFAQFDEG YWATIDPYRL PGTTVDTREL ANGAYTGKRS PQSWVGGSNNGQVASIGMFL DKSNEGMNLV AKKSWFLLDG QIINLGSGIT GTTDASIETI LDNRMIHPQEVKLNQGSDKD NSWISLSAAX PLNNIGYVFP NSMNTLDVQI EERSGRYGDI NEYFVNDKTYTNTFAKISKN YGKTVENGTY EYLTVVGKTN EEIAALSKNK GYTVLENTAN LQAIEAGNYVMMNTWNNDQE IAGLYAYDPM SVISEKIDNG VYRLTLANPL QNNASVSIEF DKGTLEVVAADPEISVDQNI ITLNSAGLNG SSRSTIVKTT PEVTKEALEK LIQEQKEHQE KDYTASSWKVYSEALKQAQT VADQTTATQA EVDQAETELR SAVKQLVKVP TKEVDKTNLL KIIKENEKHQEKDYTASSWK VYSEALKQAQ TVADQTTATQ AEVDQAEAKL RSAVKRLTLK NSGENKKEQKNGGNNGHLNT STGVDQTGTK QVKPSSQCGF RKASQFLPST GEKKSIALVI IGLLVIASGCLLVFRKSKSK KEF086-3 (SEQ ID NO:327)ACCAGAAAA TTTAAGAAAT GACATTTATA CATCTATCCA AACGTGGCTTCAACAAAGTG GGTCATACTA TCATTTCTTT AAAAAACCAA GACATTTTGA AGCGTTAATTGACTTGAAAA ATGTAGTGAA TAGTGCGTCA CCTGCCCAAG CGACACCAAT GCAATCTTTAAATGTATATG GTTCGATGGA TCGAGTCCTA CAGAAAAATA ACGAATATGC GGTGGGGATCAGTATGTATT CACAACGTGT CGGAAACTAT CAATTTGCGA ATACGGAAAA TAAAAAAGGCTGGCATACAG CAGACGGCAT GCTTTATTTA TACAATCAAG ACTTTGCTCA GTTTGATGAAGGATACTGGG CAACGATCGA TCCATATCGA TTACCAGGAA CGACAGTTGA CACAAGAGAATTGGCAAATG GTGCTTATAC AGGGAAACGC AGTCCCCAGT CATGGGTAGG TGGCTCAAATAATEF086-4 (SEQ ID NO:328)PENLEND IYTSIQTWLQ QSGSYYHFFK KPRDFEALIDLKNVVNSASP AQATPMQSLN VYGSMDRVLQ KNNEYAVGIS MYSQRVGNYE FGNTENKKGWHTADGMLYLY NQDFAQFDEG YWATIDPYRL PGTTVDTREL ANGAYTGKRS PQSWVGGSNNEF087-1 (SEQ ID NO:329)TAACTGGTGG GATTGGCAAA TTGGTTCCGC GCAGCGCTAA CAGATACATT GATTTTATTACATGATGACC TATTGAATAC AGATGCAGAA AAATTAAATA AATTTACTGC TCCGCTGATGCTGTATGCAA AAGATCCAAA CATACAATGC CCAATTTATC GTGCAACAGG AGCTAACTTAACAGATATTT CAATCACCGT TTTAGGTACT GGACTTTTGT TAGAAGATAA TCAACGCCTAGTACAAGTAC AAGAAGCTGT TCCGTCCGTT TTAAAAAGTG TTTCCTCTGG TGATGGCTTATATCCTGATG GTTCCTTGAT TCAACATGGT TATTTTCCGT ACAACGGCAG TTACGGGAATGAGTTGCTAA AAGCGTTTGG ACCAATTCAG ACTATTTTAC AAGGTTCCGA CTGGGAGATGAATGACCCTA ACATTAGTAA TTTATTTAAT GTTGTGGATA AAGGTTACTT ACAATTGATGGTAAATGGAA AAATGCCATC GATGGTTTCT GGTACAAGTA TTTCCAGAGC GCCAGAAACGAATCCTTTTA CTACAGAGTT TGAATCGGGT AAAGAAACAA TAGCTAATTT AACCTTAATTGCAAAATTTG CACCAGAAAA TTTAAGAAAT GACATTTATA CATCTATCCA AACGTGGCTTCAACAAAGTG GGTCATACTA TCATTTCTTT AAAAAACCAA GAGATTTTGA AGCGTTAATTGACTTGAAAA ATGTAGTGAA TAGTGCGTCA CCTGCCCAAG CGACACCAAT GCAATCTTTAAATGTATATG GTTCGATGGA TCGAGTCCTA CAGAAAAATA ACGAATATGC GGTGGGGATCAGTATGTATT CACAACGTGT CGGAAACTAT GAATTTGGGA ATACGGAAAA TAAAAAAGGCTGGCATACAG CAGACGGCAT GCTTTATTTA TACAATCAAG ACTTTGCTCA GTTTGATGAAGGATACTCGG CAACGATCGA TCCATATCGA TTACCAGGAA CGACAGTTGA CACAAGAGAATTGGCAAATG GTGCTTATAC AGGGAAACGC AGTCCCCAGT CATGGGTAGG TGGCTCAAATAATGGACAGG TTGCCTCTAT AGGAATGTTT TTAGATAAAA GTAATGAAGG AATGAACTTAGTTGCTAAAA AATCTTGGTT CTTATTAGAT GGTCAAATCA TTAATTTGGG AAGTGGCATTACTGGTACGA CAGATGCTTC GATTGAAACA ATCCTCGATA ATCGGATGAT TCATCCACAGGAAGTGAAGC TTAACCAACG TTCAGACAAA GATAATTCTT GGATTAGTTT AAGCGCAGCGANTCCATTGA ATAACATTCG CTATGTTTTT CCTAATTCNA TGAATACGCT TGATGTTCAAATAGAACAAC GCTCTGGTCG CTACGGAGAT ATTAACGAAT ACTTTGTTAA TGATAAAACCTATACAAATA CATTTCCTAA AATTAGTAAA AATTATGGCA AGACTGTTGA AAATGGTACTTACGAATATT TAACAGTGGT TGGGAAAACG AATGAAGAAA TCGCAGCTCT TTCTAAAAACAAAGGCTATA CTGTTCTAGA AAATACAGCA AACTTACAAG CCATTGAAGC AGGTAATTATGTCATGATGA ATACATGGAA TAATGACCAA GAAATTGCAG GACTGTATGC GTATGATCCAATGTCGGTTA TTTCAGAAAA AATTGATAAC GGTGTTTATC GCTTAACTCT TGCGAATCCTTTACAAAATA ATGCATCCGT TTCTATTGAA TTTGATAAGG GCATTCTTGA AGTAGTCGCAGCGGACCCAG AAATTTCTGT TGACCAAAAT ATTATCACTT TAAATAGTGC GGGGTTAAATGGCAGCTCGC GTTCAATCAT TGTTAAAACA ACTCCTGAAG TAACGAAAGA AGCGTTAGAAAAATTAATTC AGGAACAAAA AGAACACCAA GAAAAAGACT ACACCGCAAG CAGCTGGAAAGTCTACAGCG AAGCATTGAA ACAAGCACAA ACTGTGGCAG ATCAAACAAC AGCAACGCAAGCAGAAGTAG ACCAAGCAGA AACAGAGTTA CGTTCGGCAG TGAAGCAATT GGTAAAAGTGCCAACTAAAG AAGTAGATAA AACCAACTTG TTGAAAATCA TCAAAGAAAA CGAGAAACACCAAGAAAAAG ACTACACCGC AAGCAGTTGG AAAGTCTACA GTGAAGCATT GAAGCAAGCGCAAACTGTCG CAGATCAAAC AACAGCAACG CAAGCAGAAG TAGACCAAGC AGAAGCAAAACTACGTTCGG CAGTGAAGCG ATTAACATTG AAAAATAGTG GGGAAAATAA AAAGGAGCAAAAAAATGGGG GGAATAATGG ACACTTAAAT ACTAGTACAG GAGTTGATCA AACTGGTACGAAACAAGTTA AGCCATCAAG CCAAGGTGGT TTCAGAAAAG CTAGCCAATT TTTACCGAGCACAGGAGAAA AGAAATCGAT CGCGCTTGTG ATTATTGGTC TTCTAGTTAT CGCCAGTGGGTGTCTTTTAG TTTTTCGTAA AAGTAAATCG AAGAAGTAAEF087-2 (SEQ ID NO:330)LVGLANWFRA ALTDTLILLH DDLLNTDAEK LNKFTAPLML YAKDPNTQWP IYRATGANLTDISITVLGTG LLLEDNQRLV QVQEAVPSVL KSVSSGDGLY PDGSLIQHGY FPYNGSYGNELLKGFGRIQT ILQGSDWEMN DPNTSNLFNV VDKGYLQLMV NGKNPSMVSG RSISRAPETNPFTTEFESGK ETIANLTLIA KFAPENLRND IYTSIQTWLQ QSGSYYHFFK KPRDFEALIDLKNVVNSASP AQATPMQSLN VYGSMDRVLQ KNNEYAVGIS MYSQRVGNYE FGNTENKKGWHTADGMLYLY NQDFAQFDEG YWATIDPYRL PGTTVDTREL ANGAYTGKRS PQSWVGGSNNGQVASIGMFL DKSNEGMNLV AKKSWFLLDG QIINLGSGIT GTTDASIETI LDNRMIHPQEVKLNQGSDKD NSWISLSAAX PLNNTGYVFP NSMNTLDVQI EERSGRYGDI NEYFVNDKTYTNTFAKISKN YGKTVENGTY EYLTVVGKTN EEIAALSKNK GYTVLENTAN LQAIEAGNYVMMNTWNNDQE IACLYAYDPM SVISEKTDNG VYRLTLANPL QNNASVSIEF DKGILEVVAADPEISVDQNI ITLNSAGLNG SSRSIIVKTT PEVTKEALEK LIQEQKEHQE KDYTASSWKVYSEALKQAQT VADQTTATQA EVDQAETELR SAVKQLVKVP TKEVDKTNLL KIIKENEKHQEKDYTASSWK VYSEALKQAQ TVADQTTATQ AEVDQAEAKL RSAVKRLTLK NSGENKKEQKNGGNNGHLNT STGVDQTGTK QVKPSSQGGF RKASQFLPST GEKKSIALVI IGLLVIASGCLLVFRKSKSK KEF087-3 (SEQ ID NO:331)A ATCGGATGAT TCATCCACAGGAAGTGAAGC TTAACCAAGG TTCAGACAAA GATAATTCTT GGATTAGTTT AAGCGCAGCGANTCCATTGA ATAACATTGG CTATGTTTTT CCTAATTCNA TGAATACGCT TGATGTTCAAATAGAAGAAC GCTCTGGTCG CTACGGAGAT ATTAACGAAT ACTTTGTTAA TGATAAAACCTATACAAATA CATTTGCTAA AATTAGTAAA AATTATGGCA AGACTGTTCA AAATGGTACTTACGAATATT TAACAGTGGT TGGGAAAACG AATGAAGAAA TCGCAGCTCT TTCTAAAAACAAAGGCTATA CTGTTCTAGA AAATACAGCA AACTTACAAG CCATTGAAGC AGGTAATTATGTCATGATGA ATACATGCAA TAATGACCAA GAAATTGCAG GACTGTATGC CTATGATCCAATGTCGGTTA TTTCAGAAAA AATTGATAAC GGTGTTTATC GCTTAACTCT TGCGAATCCTTTACAAAATA ATGCATCCEF087-4 (SEQ ID NO:332)NRI4IHPQEVKLNQGSDKD NSWISLSAAX PLNNIGYVFP NSHNTLDVQI EERSGRYGDT NEYFVNDKTYTNTFAKISKN YCKTVENGTY EYLTVVGKTN EEIAALSKNK GYTVLENTAN LQAIEAGNYVMMNTWNNDQE IAGLYAYDPM SVISEKIDNG VYRLTLANPL QNNASEF088-1 (SEQ ID NO:333)TAACTGGTGG GATTGGCAAA TTGGTTCCGC GCAGCGCTAA CAGATACATT GATTTTATTACATGATGACC TATTGAATAC AGATGCAGAA AAATTAAATA AATTTACTGC TCCGCTGATGCTGTATCCAA AAGATCCAAA CATACAATGG CCAATTTATC GTGCAACAGG AGCTAACTTAACAGATATTT CAATCACCGT TTTAGGTACT GGACTTTTGT TAGAAGATAA TCAACGCCTAGTACAAGTAC AAGAAGCTGT TCCGTCCGTT TTAAAAAGTG TTTCCTCTGG TGATGGCTTATATCCTGATG GTTCCTTCAT TCAACATGGT TATTTTCCGT ACAACGGCAC TTACGGGAATGAGTTGCTAA AAGGGTTTGG ACGAATTCAG ACTATTTTAC AAGGTTCCGA CTGGGAGATGAATGACCCTA ACATTAGTAA TTTATTTAAT GTTGTGGATA AAGGTTACTT ACAATTGATGGTAAATGGAA AAATGCCATC GATGGTTTCT GGTAGAAGTA TTTCCAGAGC GCCAGAAACGAATCCTTTTA CTACAGAGTT TGAATCGGGT AAAGAAACAA TAGCTAATTT AACCTTAATTGCAAAATTTG CACCAGAAAA TTTAAGAAAT GACATTTATA CATCTATCCA AACGTGGCTTCAACAAAGTG GGTCATACTA TCATTTCTTT AAAAAACCAA GAGATTTTGA AGCGTTAATTGACTTGAAAA ATGTAGTCAA TAGTGCGTCA CCTGCCCAAG CGACACCAAT GCAATCTTTAAATGTATATG GTTCGATGGA TCGAGTCCTA CAGAAAAATA ACGAATATGC GGTGGGGATCAGTATGTATT CACAACGTGT CGGAAACTAT GAATTTGGGA ATACGGAAAA TAAAAAAGGCTGGCATACAG CAGACGGCAT GCTTTATTTA TACAATCAAG ACTTTGCTCA GTTTGATGAAGGATACTGGG CAACGATCCA TCCATATCGA TTACCAGGAA CGACAGTTGA CACAAGAGAATTGGCAAATG GTGCTTATAC AGGGAAACGC AGTCCCCAGT CATGGGTAGG TGGCTCAAATAATGGACAGG TTGCCTCTAT AGGAATGTTT TTAGATAAAA GTAATGAAGG AATGAACTTAGTTGCTAAAA AATCTTGGTT CTTATTAGAT GGTCAAATCA TTAATTTGGG AAGTGGCATTACTOCTACCA CAGATGCTTC GATTGAAACA ATCCTCGATA ATCGGATGAT TCATCCACAGGAAGTGAAGC TTAACCAAGG TTCAGACAAA GATAATTCTT GGATTAGTTT AAGCGCAGCGANTCCATTGA ATAACATTGG CTATGTTTTT CCTAATTCNA TGAATACGCT TGATGTTCAAATAGAAGAAC GCTCTGGTCG CTACGGAGAT ATTAACGAAT ACTTTGTTAA TGATAAAACCTATACAAATA CATTTGCTAA AATTAGTAAA AATTATGGCA AGACTGTTGA AAATGGTACTTACGAATATT TAACAGTGGT TGGGAAAACG AATGAAGAAA TCGCAGCTCT TTCTAAAAACAAAGGCTATA CTGTTCTAGA AAATACAGCA AACTTACAAG CCATTGAAGC AGGTAATTATGTCATGATGA ATACATGGAA TAATGACCAA GAAATTGCAG GACTGTATGC GTATGATCCAATGTCGGTTA TTTCAGAAAA AATTGATAAC GGTGTTTATC GCTTAACTCT TGCGAATCCTTTACAAAATA ATGCATCCGT TTCTATTGAA TTTGATAAGG GCATTCTTGA AGTAGTCGCAGCGGACCCAG AAATTTCTGT TGACCAAAAT ATTATCACTT TAAATAGTGC GGGGTTAAATGGCAGCTCGC GTTCAATCAT TGTTAAAACA ACTCCTCAAG TAACGAAAGA AGCGTTAGAAAAATTAATTC AGGAACAAAA AGAACACCAA GAAAAAGACT ACACCCCAAG CAGCTGGAAAGTCTACAGCG AAGCATTGAA ACAACCACAA ACTGTGGCAG ATCAAACAAC AGCAACGCAAGCAGAAGTAG ACCAAGCAGA AACAGAGTTA CGTTCGGCAG TGAAGCAATT GGTAAAAGTGCCAACTAAAG AAGTAGATAA AACCAACTTG TTGAAAATCA TCAAAGAAAA CGAGAAACACCAACAAAAAG ACTACACCGC AAGCAGTTGG AAAGTCTACA GTGAAGCATT GAAGCAAGCGCAAACTGTGG CAGATCAAAC AACAGCAACG CAAGCAGAAG TAGACCAAGC AGAACCAAAACTACGTTCGG CAGTGAAGCG ATTAACATTG AAAAATAGTG GGGAAAATAA AAAGGAGCAAAAAAATGGGG GGAATAATGG ACACTTAAAT ACTAGTACAG GAGTTGATCA AACTGGTACGAAACAAGTTA AGCCATCAAG CCAAGGTGGT TTCAGAAAAG CTAGCCAATT TTTACCGAGCACAGGAGAAA AGAAATCGAT CGCGCTTGTG ATTATTGGTC TTCTAGTTAT CGCCAGTGGGTGTCTTTTAG TTTTTCGTAA AAGTAAATCG AAGAAGTAAEF088-2 (SEQ ID NO:334)LVGLANWFRA ALTDTLILLH DDLLNTDAEK LNKFTAPLML YAKDPNIQWP IYRATGANLTDISITVLGTG LLLEDNQRLV QVQEAVPSVL KSVSSCDGLY PDGSLIQHGY FPYNGSYGNELLKGFGRIQT ILQGSDWENM DPNISNLFNV VDKGYLQLMV NGKMPSMVSG RSISRAPETNPFTTEFESGK ETIANLTLIA KFAPENLRND IYTSIQTWLQ QSGSYYHFFK KPRDFEALIDLKNVVNSASP AQATPMQSLN VYGSMDRVLQ KNNEYAVGIS MYSQRVGNYE FGNTENKKGWHTADGMLYLY NQDFAQFDEG YWATIDPYRL PGTTVDTREL ANGAYTGKRS PQSWVGGSNNGQVASIGMFL DKSNEGMNLV AKKSWFLLDG QLLNLGSGIT GTTDASIETI LDNRMIHPQEVKLNQGSDKD NSWISLSAAX PLNNIGYVFP NSHNTLDVQI EERSGRYGDT NEYFVNDKTYTNTFAKISKN YGKTVENGTY EYLTVVGKTN EEIAALSKNK GYTVLENTAN LQAIEAGNNVMMNTWNNDQE IAGLYAYDPM SVISEKIDNG VYRLTLANPL QNNASVSIEF DKGILEVVAADPEISVDQNI ITLNSAGLNG SSRSIIVKTT PEVTKEALEK LIQEQKEHQE KDYTASSWKVYSEALKQAQT VADQTTATQA EVDQAETELR SAVKQLVKVP TKEVDKTNLL KIIKENEKHQEKDYTASSWK VYSEALKQAQ TVADQTTATQ AEVDQAEAKL RSAVKRLTLK NSGENKKEQKNGGNNGHLNT STGVDQTGTK QVKPSSQGGF RKASQFLPST GEKKSIALVI IGLLVIASGCLLVFRKSKSK KEF088-3 (SEQ ID NO:335)A ACTCCTGAAG TAACGAAAGA AGCGTTAGAAAAATTAATTC AGCAACAAAA AGAACACCAA GAAAAACACT ACACCGCAAG CAGCTGGAAAGTCTACAGCG AAGCATTGAA ACAAGCACAA ACTGTGGCAG ATCAAACAAC AGCAACGCAAGCAGAAGTAG ACCAAGCAGA AACAGAGTTA CGTTCGGCAG TGAAGCAATT GGTAAAAGTGCCAACTAAAG AAGTAGATAA AACCAACTTG TTGAAAATCA TCAAAGAAAA CGAGAAACACCAAGAAAAAG ACTACACCGC AAGCAGTTGG AAAGTCTACA GTGAAGCATT GAAGCAAGCGCAAACTGTGG CAGATCAAAC AACAGCAACG CAAGCAGAAG TAGACCAAGC AGAAGCAAAACTACGTTCGG CAGTGAAGCG ATTAACATTG AAAAATAGTG GGGAAAATAA AAAGGAGCAAAAAAATGGGG GGAATAATGG ACACTTAAAT ACTAGTACAG GAGTTGATCA AACTGGTACGAAACAAGTTA AGCCATCAAG CCAAGGTGGT TTCAGAAAAG CTAGCCAATT TTTACCGAGCACAGGAGAAA AGAAAEF088-4 (SEQ ID NO:336)T PEVTKEALEK LIQEQKEHQE KDYTASSWKVYSEALKQAQT VADQTTATQA EVDQAETELR SAVKQLVKVP TKEVDKTNLL KIIKENEKHQEKDYTASSWK VYSEALKQAQ TVADQTTATQ AEVDQAEAKL RSAVKRLTLK NSGENKKEQKNGGNNGHLNT STGVDQTGTK QVKPSSQGGF RKASQFLPST GEKKEF089-1 (SEQ ID NO:337)TGACAGATAC ACCTGCTAAC ACAGGAAACT AAGAACGACA GCATACACGC AAGATCGGGATATAGGTCAA AAATTTTTTG GCTTATCTTT CGGTCTTTTG GTGCTTATAA TACAACAAAGAATGACAGAC ATAGGAGAAT GAATATGAAC AGATGGAAAG TATATGCAAC GGTAATCGCTTGTATGTTAT TTGGCTGGAT TGGCGTGGAG GCGCACGCTT CTGAATTTAA TTTTGCGGTCACACCAACAA TTCCCGAAAA TCAAGTGGAT AAATCAAAAA CCTACTTTGA CTTAAAAATGGCGCCTCGTG CCAAACAAAC CGTAGAAATT CAGTTACGCA ATGATACAGA TGAAGACATTACCATTGAAA ATACGGTGAA CTCAGCGACA ACAAATTTAA ATGGCGTAGT AGAATATGGCCAAAACGGGA TCAAACCTGA CAAAACCTTA CGTTTTAACT TAAAAGATTA TGTGGAAGCACCGAAAGAAA TCATCTTGCC GAAGCATTCC CAAAAGACCT TACCTTTAAC CATTACGATGCCTAAAGATT CTTTTGATGG CGTGATGGCT GGCGGTATAA CACTCAAAGA GAAAAAGAAAGAAACAACGA CTTCTGCGGA TCAATCAAAA GGGTTAGCTA TTAATAATGA ATACTCCTATGTTGTGGCTA TTATTCTTCA GCAAAATGAG ACAAAGGTTC AACCAGATTT AAAATTACTGGGGGTTAAAC CAGGCCAAGT CAACGCGCGA AACGTCATCA ATGTTTCTTT ACAAAACCCACAAGCGGCCT ATTTAAACCA ATTACATTTA ATCAACACTG TTTCAAAAGG AGGCGAAACGCTTTACCAAT CCGATACTCA GGATATGCAA GTGGCGCCAA ACTCTAACTT TAGTTACCCAATTTCTTTAA AAGGGGAACG ATTAACGCCA GGAAAATATG TCTTGAAATC AACCGCCTATGGTGTAAAAG ATGAAAAGGG CACCTATCAA GTCAAAGGCG CCAATGGTGA AGAACGGTACCTGTACAAAT GGGAATTTAC AAAAGAATTT ACTATTTCTG GGGACGTCGC TAAAGAATTAAATGAAAAAG ACGTAACCAT TAAAGGAACC AATTGGTGGT TGTATCTACT GATTGCATTAATCATTCTAG CGCTGCTCTT ATTGATTTTC TTCTTGTATC GTAAAAAGAA AAAAGAGGAAGAACAACAAT CTGAGCAATA AEF089-2 (SEQ ID NO:338)HNR WKVYATVTACMLFGWTGVEA HASEFNFAVT PTTPENQVDK SKTYFDLKMA PGAKQTVEIQ LRNDTDEDITIENTVNSATT NLNGVVEYGQ NGIKPDKTLR FNLKDYVEAP KETILPKHSQ KTLPLTTTMPKDSFDGVMAG GITLKEKKKE TTTSADQSKG LAINNEYSYV VAITLQQNET KVQPDLKLLGVKPCQVNARN VINVSLQNPQ AAYLNQLHLI NTVSKGGETL YQSDTEDMQV APNSNFSYPISLKGERLTPG KYVLKSTAYG VKDEKGTYQV KGANGEERYL YKWEFTKEFT ISGDVAKELNEKDVTIKGTN WWLYLLIALI ILALLLLIFF LYRKKKKEEE QQSEQEF089-3 (SEQ ID NO:339)T CTGAATTTAA TTTTGCGGTCACACCAACAA TTCCCGAAAA TCAAGTGGAT AAATCAAAAA CCTACTTTGA CTTAAAAATGGCGCCTGGTG CCAAACAAAC CGTAGAAATT CAGTTACGCA ATGATACAGA TGAAGACATTACCATTGAAA ATACGGTGAA CTCAGCGACA ACAAATTTAA ATGGCGTAGT AGAATATGGCCAAAACGGGA TCAAACCTGA CAAAACCTTA CGTTTTAACT TAAAAGATTA TGTGGAAGCACCGAAAGAAA TCATCTTGCC GAAGCATTCC CAAAAGACCT TACCTTTAAC CATTACGATGCCTAAAGATT CTTTTGATGG CGTGATGGCT GCCGGTATAA CACTCAAAGA GAAAAAGAAAGAAACAACGA CTTCTGCGGA TCAATCAAAA GGGTTAGCTA TTAATAATGA ATACTCCTATGTTGTGGCTA TTATTCTTCA GCAAAATGAG ACAAAGCTTC AACCAGATTT AAAATTACTGGGGGTTAAAC CAGGCCAAGT CAACGCGCGA AACGTCATCA ATGTTTCTTT ACAAAACCCACAAGCGGCCT ATTTAAACCA ATTACATTTA ATCAACACTG TTTCAAAAGG AGGCGAAACGCTTTACCAAT CCGATACTGA GGATATGCAA GTGGCGCCAA ACTCTAACTT TACTTACCCAATTTCTTTAA AAGGGGAACG ATEF089-4 (SEQ ID NO:340)SEFNFAVT PTIPENQVDK SKTYFDLKMA PGAKQTVEIQ LRNDTDEDITTENTVNSATT NLNGVVEYGQ NGIKPDKTLR FNLKDYVEAP KEIILPKHSQ KTLPLTITMPKDSFDGVMAG GITLKEKKKE TTTSADQSKG LAINNEYSYV VAIILQQNET KVQPDLKLLGVKPGQVNARN VINVSLQNPQ AAYLNQLHLI NTVSKGGETL YQSDTEDMQV APNSNFSYPISLKGEREF090-1 (SEQ ID NO:341)TAGTCTCTAA GAAATAAACC TAAAATTATT GATATAAAGG ATGAACAAAT GAAAAAAGAAGAAATGCAAA TGCGTAATAC ACGTCGTCAA AAATCAGGAA AAAATAATAA AAAGAAAGTAATTATTACTT CTTTGGTTGG ACTAGCTCTG GTTGCTGGGG GCAGTTATGT TTATTTTCAAAGTCACTTTT TNCCAACCAC AAAAGTAAAT GGAGTTTCTG TAGGCTGGTT AAATCTAAATGCTGCAGAAG AAAAATTAGC GCAAGTTAAT CAAACCGAAG AAGTTGTGGT TCAAACGGGGACAAAAGAAG AAAAAATTCA ACTTCCTAAA AAATACCAAT TGGATCAAAA ATTTTTAAAAGACCATTTAC ACAGTAGCAA GGTGAAGCTA CCGTTAAACG AGGCATTCAA AAAAGAACTAGAAGCCAAAT TAGCAACTTT GAGTTTTCCA GAGGGGAAAC CAAGCAAAAA TGCGAGTATCCGTCGAGGCA ATGGCACTTT TGAAATTGTT CCCGAAGAAC AAGGCACAGT AGTGGACACACAGCGCTTAA ACCAGCAGAT TATTGCGGAT GTTGAAGCGG GAAAAGGCAA CTATCAATATAATGCCAAAG ATTTTTATAA AGCCCCTGAA ATTACAAAAG AGGATCAAAC GTTAAAGGCAACATTGACAA CGCTCAATAA CAAGTTAAAT AAAACAATTA CAGTTGATAT TAATGGTGAAAAAGTAGCCT TTGATAAAAC ACAAATTCAA AACGTGCTGA ATGATGATGG CACAATCAACAAAGAAAAAC TAACTACTTG GGTGACACAA TTAGAAACAA CATATGGTTC TGCTAATCAACCAGTTTTAT TTACAGATGT TCACGGCACG ACACGTCGTT TTAAAAACAA CGGAAGTTATGGCTGGTCGA TTGATGCGGC CAAAACGCAA GAACTACTAG TAAACGCGCT GAATAGCCAAGAACAAACGA ATGCAATCAC TGCTCCGTTG GTTGGTGATA CCAAAGAAAA TAGTAAAATTGCCAATAATT ACATTGAAAT TGATTTAAAA GATCAAAAAA TGTATTGTTT CATTGATGGCAAAAAAATAG TCACCACAGA TGTCATTACT GGCAGATATA ACAAAGGAAC CGCAACAGTACCAGGATTCC ATACAATTTT ATATCGGACA ACCGATGTGA ATTTAGAAGG TCAAATGCTTGATGGTTCTC GATACAGTGT GCCAGTAAAA TATTGGATGC CGTTATTAAG TCAAGGGGCCGTTCTCACAC AAATCGGGAT TCATCACTCC GACCATAAAT TCGATAAGTA TGOCGATAAAGAAGCCTTTA AAACCGATGC TGGTAGTAAT GGCTGTATCA ATACGCCAGC AACAGAAGTTTCAAAAATCT TTGATGTATC CTATGACGGA ATGCCGGTAA TTATTTATGG ACATATCTATGATGATGCAC CAGGTGAATT TGATAAACCT GTAGATTACG GCGAAGAAGT ATAAEF090-2 (SEQ ID NO:342)MRNTRRQK SGKNNKKKVI TTSLVGLALV AGCSYVYFQSHFXPTTKVNG VSVGWLNVNA AEEKLAQVNQ TEEVVVQTGT KEEKIQLPKK YQLDQKFLKDHLHSSKVKLP LNEAFKKELE AKLATLSFPE GKPSKNASIR RGNGTFEIVP EEQGTVVDTQRLNQQITADV EAGKGNYQYN AKDFYKAPET TKEDQTLKAT LTTLNNKLNK TITVDINGEKVAFDKTQIQN VLNDDGTINK EKLTTWVTQL ETTYGSANQP VLFTDVHGTT RRFKNNGSYGWSTDGAKTQE LLVNALNSQE QTNAITAPLV GDTKENSKIA NNYTEIDLKD QKMYCFIDGKKIVTTDVITG RYNKGTATVP GFHTILYRTT DVNLEGQMLD GSRYSVPVKY WMPLLSQGGVVTQIGIHDSD HKLDKYGDKE AFKTDAGSNG CINTPGTEVS KIFDVSYDGM PVIIYGHIYDDAPGEFDKPV DYGEEVEF090-3 (SEQ ID NO:343)CAC AAAAGTAAAT CGAGTTTCTG TACGCTGGTT AAATGTAAATGCTGCAGAAC AAAAATTACC GCAAGTTAAT CAAACCGAAC AAGTTGTGGT TCAAACGGGCACAAAAGAAG AAAAAATTCA ACTTCCTAAA AAATACCAAT TGCATCAAAA ATTTTTAAAAGACCATTTAC ACAGTAGCAA GGTGAAGCTA CCGTTAAACG AGGCATTCAA AAAAGAACTACAAGCCAAAT TAGCAACTTT GAGTTTTCCA GAGGGGAAAC CAAGCAAAAA TGCGAGTATCCGTCGAGCCA ATGGCACTTT TGAAATTCTT CCCGAAGAAC AAGGCACAGT AGTGGACACACAGCGCTTAA ACCAGCAGAT TATTGCGGAT GTTGAACCGG GAAAAGCCAA CTATCAATATAATGCCAAAC ATTTTTATAA AGCCCCTGAA ATTACAAAAC ACCATCAAAC GTTAAAGGCAACATTGACAA CGCTCAATAA CAAGTTAAAT AAAACAATTA CAGTTCATAT TAATGGTGAAAAAGTAGCCT TTGATAAAAC ACAAATTCAA AACGTGCTGA ATCATGATGG CACAATCAACAAACAAAAAC TAACTACTTG GGTGACACAA TTAGAAACAA CATATGGTTC TGCTAATCAACCAGTTTTAT TTACAGATCT TCACGCCACG ACACGTCGTT TTAAAAACAA CGCAACTTATGGCTGGTCGA TTGATGGGGC CAAAACGCAA GAACTACTAG TAAACGCGCT GAATAGCCAACAACAAACGA ATGCAATCAC TGCTCCGTTG GTTGGTGATA CCAAACAAAA TAGTAAAATTGCCAATAATT ACATTGAAAT TGATTTAAAA GATCAAAAAA TGTATTGTTT CATTGATGGCAAAAAAATAG TCACCACAGA TGTCATTACT CGCAGATATA ACAAAGGAAC CGCAACAGTACCAGGATTCC ATACAATTTT ATATCGGACA ACCGATGTGA ATTTAGAAGG TCAAATGCTTCATGGTTCTC GATACAGTGT GCCAGTAAAA TATTGGATGC CGTTATTAAG TCAAGGGGGCGTTGTCACAC AAATCGGGAT TCATGACTCC GACCATAAAT TGGATAACTA TGCCGATAAAGAAGCCTTTA AAACCGATGC TGGTAGTAAT GGCTGTATCA ATACGCCAGG AACAGAAGTTTCAAAAATCT TTGATGTATC CTATGACGGA ATGCCGGTAA TTATTTATGC ACATATCTATGATGATGCAC CACGTGAATT TGATAAACCT GTAGATTACG GCGAAGAAGT ATEF090-4 (SEQ ID NO:344)TKVNG VSVGWLNVNA AEEKLAQVNQ TEEVVVQTGT KEEKIQLPKK YQLDQKFLKDHLHSSKVKLP LNEAFKKELE AKLATLSFPE GKPSKNASIR RCNGTFEIVP EEQGTVVDTQRLNQQIJADV EAGKGNYQYN AKDFYKAPEI TKEDQTLKAT LTTLNNKLNK TITVDINGEKVAFDKTQIQN VLNDDGTINK EKLTTWVTQL ETTYGSANQP VLFTDVHGTT RRFKNNGSYGWSIDGAKTQE LLVNALNSQE QTNAITAPLV CDTKENSKIA NNYIEIDLKD QKMYCFIDGKKIVTTDVITG RYNKGTATVP GFHTILYRTT DVNLEGQMLD GSRYSVPVKY WMPLLSQGCVVTQIGIHDSD HKLDKYGDKE AFKTDAGSNG CINTPGTEVS KIFDVSYDGM PVIIYGHIYDDAPGEFDKPV DYGEEVEF091-1 (SEQ ID NO:345)TAATTGGNGC AGATTTTTAT GGCTAAAAAA GGCGGATTTT TCTTAGGNGC AGTAATTGGTGGAACAGCAG CAGCCGTTGC CGCATTATTA CTTGCACCAA AATCAGGTAA AGAATTACGTGATGATTTAT CAAATCAAAC AGATGATTTA AAAAACAAAG CGCAAGATTA CACAGATTATGCTGTTCAAA AAGGAACAGA ATTAACAGAA ATCGCAAAAC AAAAAGCCGG CGTTTTATCAGATCAAGCCT CTGATTTGGC AGGTTCTGTC AAAGAAAAAA CAAAAGATTC ATTGGATAAAGCACAAGGTG TTTCTGGCGA CATGCTTGAT AACTTTAAAA AACAAACAGG TGATTTATCTGATCAATTTA AAAAAGCAGC TGACGATGCT CAAGATCACG CAGAAGATTT AGGTGAAATTGCCGAAGATG CAGCAGAAGA TATCTATATT GACGTTAAAG ATTCTGCGGC AGCGGCCAAAGAAACTGTTT CTGCTGGTGT CGATGAAGCA ANAGAAACCA CCAAAGATGT TCCTGAAAAAGCTGCAGAAG CAAAAGAAGA TGTTAAAGAT GCAGCGAAAG ACGTAAAAAA AGAATTTAAAGGGTAAEF091-2 (SEQ ID NO:346)MAKKG GFFLGAVIGG TAAAVAALLL APKSGKELRD DLSNQTDDLK NKAQDYTDYAVQKGTELTEI AKQKAGVLSD QASDLAGSVK EKTKDSLDKA QGVSGDMLDN FKKQTGDLSDQFKKAADDAQ DHAEDLGEIA EDAAEDIYID VKDSAAAAKE TVSAGVDEAX ETTKDVPEKAAEAKEDVKDA AKDVKKEFKGEF091-3 (SEQ ID NO:347)AT CAAATCAAAC AGATGATTTA AAAAACAAAG CGCAAGATTA CACAGATTATGCTGTTCAAA AAGGAACAGA ATTAACAGAA ATCGCAAAAC AAAAAGCCGG CGTTTTATCAGATCAAGCCT CTGATTTGGC AGGTTCTGTC AAAGAAAAAA CAAAAGATTC ATTGGATAAAGCACAAGGTG TTTCTGGCGA CATGCTTGAT AACTTTAAAA AACAAACAGG TGATTTATCTGATCAATTTA AAAAAGCAGC TGACGATGCT CAAGATCACG CAGAAGATTT AGGTGAAATTGCCGAAGATG CAGCAGAAGA TATCTATATT GACGTTAAAG ATTCTGCGGC AGCGGCCAAAGAAACTGTTT CTGCTGGTGT CGATGAAGCA ANAGAAACCA CCAAAGATGT TCCTGAAAAAGCTGCAGAAG CAAAAGAAGA TGTTAAAGAT GCAGCGAAAG ACGTAAAAAA AGAATTTAAAGGGTAAEF091-4 (SEQ ID NO:348)SNQTDDLK NKAQDYTDYAVQKGTELTEI AKQKAGVLSD QASDLAGSVK EKTKDSLDKA QGVSGDMLDN FKKQTGDLSDQFKKAADDAQ DHAEDLGEIA EDAAEDIYID VKDSAAAAKE TVSAGVDEAX ETTKDVPEKAAEAKEDVKDA AKDVKKEFKGEF092-1 (SEQ ID NO:349)TAAGGGGATG AAGAAAAAAT GGCAAAAAAA ACAATTATGT TAGTTTGTTC CGCAGGAATGAGCACGAGTT TATTAGTAAC AAAAATGCAA AAAGCAGCAG AAGATCGTGG CATGGAAGCAGACATCTTTG CAGTATCGGC TTCTGAAGCA GATACAAACT TGGAAAATAA AGAGGTGAATGTTTTACTTT TAGGTCCACA AGTTCGTTTC ATGAAAGGGC AATTTGAACA AAAATTACAACCAAAAGGGA TTCCTTTAGA TGTAATTAAC ATGGCAGATT ATGGCATGAT GAATGGCGAAAAAGTTTTAG ATCAAGCAAT CTCATTAATG GGATAAEF092-2 (SEQ ID NO:350)MAKKT IMLVCSAGMS TSLLVTKNQK AAEDRGMEAD TFAVSASEAD TNLENKEVNVLLLGPQVRFM KGQFEQKLQP KGIPLDVINM ADYGMMINGEK VLDQAILSLMGEF092-3 (SEQ ID NO:351)AG AAGATCGTGG CATGGAAGCAGACATCTTTG CAGTATCGGC TTCTGAAGCA GATACAAACT TGGAAAATAA AGAGGTGAATGTTTTACTTT TAGGTCCACA AGTTCGTTTC ATGAAAGGGC AATTTGAACA AAAATTACAACCAAAAGGGA TTCCTTTAGA TGTAATTAAC ATGGCAGATT ATGGCATGAT GAATGGCGAAAAAGTTTTAG ATCAAGCAAT CTCATTAATG GGATEF092-4 (SEQ ID NO:352)EDRGMEAD IFAVSASEAD TNLENKEVNVLLLGPQVRFM KGQFEQKLQP KGIPLDVINM ADYGMMNGEK VLDQAISLMGEF093-1 (SEQ ID NO:353)TAGTTTTTTT CCGATAAAGG GAGAATTTTA ATGAGGCAAA AATATTCAGG AAACTTATTGTTCACGGCCA TGGCCATTGT TTATTTGATG ACTTTTCTCG CCCTTCAGTT ACTAGAAGAACGTCAGTTAA CACAAAAATT TACGCAAGCT ACCCAGGAAT ACTATGCAGG GAAAAGTATCTTTCATTTAT TTCTTGCAGA TGTTAAACAA AATAGACGAA AGTTAAAAAC AGAAGAAAGGCTCGTATACG CGCAACTGAC COTOGATTAT ACATACAAAA ATGAACAATT AAGAATAACTGTTTTATTAA ACAAATCTGG TCGAAAATAC CAATATCAAG AGAGAGTTTC TCATCAAAAAAAAGCGGAAA CAATACTGGA ATAGEF093-2 (SEQ ID NO:354)M RQKYSGNLLF TAMAIVYLMS FLALQLLEER QLTQKFTQAT QEYYAGKSIFHLFLADVKQN RRKLKTEERL VYAQVTLDYT YKNEQLRITV LLNKSGRKYQ YQERVSHQKKAETILEEF093-3 (SEQ ID NO:355)CCTTCAGTT ACTAGAAGAACGTCAGTTAA CACAAAAATT TACGCAAGCT ACCCAGGAAT ACTATGCAGG GAAAAGTATCTTTCATTTAT TTCTTGCAGA TGTTAAACAA AATAGACGAA AGTTAAAAAC AGAAGAAAGGCTCGTATACG CGCAAGTGAC CCTCGATTAT ACATACAAAA ATGAACAATT AAGAATAACTGTTTTATTAA ACAAATCTGG TCGAAAATAC CAATATCAAG AGAGAGTTTC TCATCAAAAAAAAGCCGAAA CAATACTGGEF093-4 (SEQ ID NO:356)LQLLEER QLTQKFTQAT QEYYAGKSJIFHLFLADVKQN RRKLKTEERL VYAQVTLDYT YKNEQLRITV LLNKSCRKYQ YQERVSHQKKAETIEF094-1 (SEQ ID NO:357)TAAACATTTG AGACATTCAG AGGTGAATGT CTCTTTTTTA TTACTCAAAA ACGAAAGGGGATTAATTATA TGAAAAAAAC AACATTTAAA AATTGGTCGT TATTTGCGAC TTTGGCTCTATTAAGTCAAA CAATTGGCGG AACGATTGGT CCTACGATTG CTTTTGCCGA TGAAATTACTCACCCTCAAG AGGTAACAAT TCATTATGAC GTAAGTAAAC TGTATGAAGT TGACGGAACTTTTAGCGATG GCAGCACCCT CTCAGAACGT ACTACGTCAT TATATGCAGA ATACAATGGTGCAAAACAAA CAGTATTTTG TATTGAACCA GGTGTTAGTA TTCCAACAGA AGTGACGCACGGTTATCAGA AAAACCCTTT GCCATCAATG TCTGATAAAG CGAAACTAGT ATCGGTTCTTTGGGAAAAGC CTGGAACAGA TATTOATACA AATATGGTTG CACAAAAGAT GATTTGGGAAGAAGTGAACG GTTATAAACT CCATTCCATA AAAAGATTAG GTGGTGCTTC AGTTGATATAAAATCTATTG AAGGAAAAAT TAATAAGGCA ATTGAGGAGT ATCAXAAAAA ACCAAGTTTTCATAATACCA CTGTAAAAAC AATTTTAGGT CAATCGACAA CTTTAATAGA TAAAAATGAATTAAATTTAT CTGAGTTTGA TAAAGTCGTC CAAAATACGG CGAATATAGA TTACCGTGTAATTCGGAATC AATTAGTGCT TACTCCAAAC TCTAATTCCA AATCAGGAAC ATTAACATTGAAAAAATCAG CTGGTACTGG AACTCCAGTC GCTTATAAAA AAGCAGGACT TCAAACTGTGATGGCTGGTG CGCTTGATAA GCCCAATACC TACGCTATTA AAATTAATGT GGAAACTAAGGGTTCTTTAA AGATCAAAAA AATCGATAAA GAATCAGGTG ATATTGTACC AGAAACGGTTTTCCATTTAG ATTTTGGGAA AGCTTTACCT TCAAAAGATG TGACAACAGA TAAAGATGGCATTTCTATTT TGGATGGAAT TCCCCATGGT ACAAAGGTAA CTATTACTGA AAAATCGGTGCCAGATCCTT ATATGATTCA TACCACACCC ATGGCTGCCA CCATTAAAGC GGGCGAGACCATTTCCATGA CTTCGAAAAA TATGCGACAA AAAGGTCAAA TTCTTTTAGA GAAGACTGGGGTAGAAACAG GTACTGATCT TTGGAATGAC AATTATTCTC TAGCTGGAAA TACATTTGCCATTCGTAAAG ACAGCCCAGC TGGTGAAATT GTCCAAGAAA TAACAACGGA TGAAAAAGGTCGTGCGGAAA CACCAAAAGA GCTTGCTAAT GCTTTGGAAC TGGGAACCTA TTACGTGACAGAAACTAAAT CTAGTAATGG TTTCGTGAAT ACCTTCAAAC CAACAAAAGT CGAGTTAAAATATGCCAATC AAACCGTGGC TCTTGTTACC AGTAACGTAA AAGGGCAAAA CCAAGAAATTACTGGGGAAA CCACTTTGAC AAAAGAAGAC AAAGATACCG GTAATGAGAG TCAACGGAAAGCTCAGTTTA AAGGAGCTGA ATATACTCTC TTTACTGCAA AAGATGGTCA AGCTGTTAAATGGAGTGAAG CTTTTAAAAC AGAATTAGTG AAGGGAACGA AAGCTTCTGA TGAAACAGTGACTTTGGCTT TAGATGAAAA GAACCAAGTT GCCGTTAAAC ACCTAGCAAT TAACGAGTATTTCTGGCAAG AAACCAAAGC ACCTGAAGGA TATACTTTGG ATGAAACGAA GTATCCTGTATCCATCAAAA AAGTTGATAA TAACGAAAAA AATGCCGTAA TTACTCGAGA TGTTACGGCAAAAGAACAAG TTATTCGCTT TGGCTTTGAT TTCTTTAAAT TTGCTGCATC GGCTGATGGCACTGCCGAAA CTGGATTTAA CGACTTATCT TTTAAAGTGT CGCCATTGGA AGGGACCAANGAAATCACAG GTCCTGAAGA TAAAGCGACC ACAGCTTGTA ACGAGCAATT AGGTTTTGATGGCTATGGTA AGTTTGAAAA TCTTCCTTAT GCGGATTATT TACTTGAAGA AATAGAGGCTCCAGAAGGAT TTCAAAAGAT TACACCACTA GAAATCCGTT CTACATTTAA GGAAAACAAAGACGACTATG CGAAGAGTGA GTATGTCTTT ACCATTACCG AAGAAGGACA AAAACAACCAATTAAGATGG TGACCGTTCC TTACGAGAAA CTAACTAACA ACGAGTTTTC TGTTAGTCTGAACCGTTTGA TGCTTTATGA TTTCCCCGAG AAAGAAGATA GTTTGACTTC TCTTGCGACTTGGAAAGACG GAAATAAAAA ATTGAATACC CTTGATTTTA CCGACCTAGT TGATAAATTGAGATATAACT TGCATGAAAT CAAAGAAGAC TGGTATGTCG TAGCTCAAGC CATTGATGTGGAAGCCACAA AAGCTGCCCA AGAAAAAGAC GAAAAAGCCA AACCGGTGGT GATTGCCGAAACAACCGCAA CGTTGGCGAA CAAAGAGAAA ACTGGAACTT GGAAAATTCT GCATAAATTAACCGCTGAAC AAGTTTTGGA TAAAAGCATC GTCTTGTTCA ATTATGTGTA TGAAAACAAGGTAGCCTTTG AAGCAGGCAA TGAGCCAGTA GCGAAGGATG CTAGCTTGAA CAATCAAGCACAAACCGTCA ATTGTACGAT TGAACGCCAT GTTTCCATCC AAACAAAAGC CCACCTAGAAGATGGTTCGC AAACTTTTAC TCATGGTGAC GTGATGGATA TGTTTGATGA TGTGTCGGTTACCCATGATG TACTGGATGG CTCAAAAGAA GCTTTCGAAA CAATTCTGTA TGCTTTACTACCAGATGGTA CGAACAAAGA AATTTGGAAA TCTGGCAAAA TTGAGCATGA AGTGAATGATAAAGAATTTA CCAAAACCGT ACTTGCGGAA AAAGTAGATA CCGGAAAGTA TCCAGAAGGAACTAAGTTTA CTTTTACCGA AATCAATTAC GAAAAAGATG GAAACGTGAA TGGAAAACACAATGAAGATT TGAAAGAAAA ATCTCAAACC TTAACACCAA AAGAAGTGCC AACCATACCGAGTACGCCAA AACAACCGGA AACACCAGCT GTTCCAAGTA ATTCTCAAGA ATCTAGTCCCACAGTGAAGA CATTCCCGCA AACTGGGGAG AAAAATTCCA ACGTTCTACT GTTAGTTGGCTTTATCTTGA TTTTTTCGAC TGCTGGGTAT TATTTCTGGA ATCGCCGCAA TTAAEF094-2 (SEQ ID NO:358)MKKTTFKN WSLFATLALL SQTIGGTIGP TIAFADEITHPQEVTIHYDV SKLYEVDGTF SDGSTLSERT TSLYAEYNGA KQTVFCIEPG VSIPTEVTHGYQKNPLPSMS DKAKLVSVLW EKAGTDTDTN MVAQKNIWEE VNGYKLHSIK RLGGASVDIKSIEGKINKAI EEYQKKPSFH NTTVKTILGQ STTLIDKNEL NLSEFDKVVQ NTANIDYRVIGNQLVLTPNS NSKSGTLTLK KSAGTGTPVA YKKAGLQTVM AGALDKPNTY AIKINVETKGSLKIKKIDKE SGDIVPETVF HLDFGKALPS KDVTTDKDGI SILDGIPHGT KVTITEKSVPDPYMTDTTPM AATIKAGETT SMTSKNMRQK GQILLEKTGV ETGTDLWNDN YSLAGNTFAIRKDSPAGEIV QEITTDEKGR AETPKELANA LELGTYYVTE TKSSNGFVNT FKPTKVELKYANQTVALVTS NVKGQNQEIT GETTLTKEDK DTGNESQGKA EFKGAEYTLF TAKDGQAVKWSEAFKTEIVK GTKASDETVT LALDEKNQVA VKHLAINEYF WQETKAPEGY TLDETKYPVSIKKVDNNEKN AVITRDVTAK EQVIRFGFDF FKFAGSADGT AETGFNDLSF KVSPLEGTXETTGAEDKATT ACNEQLGFDG YGKFENLPYG DYLLEETEAP EGEQKITPLE IRSTFKENKDDYAKSEYVPT ITEEGQKQPI KNVTVPYEKL TNNEFSVSLN RLMLYDLPEK EDSLTSLATWKDGNKKLNTL DFTELVDKLR YNLHEIKEDW YVVAQAIDVE ATKAAQEKDE KAKPVVIAETTATLANKEKT GTWKILHKLT AEQVLDKSIV LFNYVYENKV AFEAGNEPVA KDASLNNQAQTVNCTIERHV SIQTKAHLED CSQTFTHGDV MDMFDDVSVT HDVLDGSKEA FETILYALLPDGTNKEIWKS GKIEHEVNDK EFTKTVLAEK VDTGKYPEGT KFTFTEINYE KDGNVNGKHNEDLKEKSQTL TPKEVPTIPS TPKQPETPAV PSNSQESSPT VKTFPQTGEK NSNVLLLVGFILIFSTAGYY FWNRRNEF094-3 (SEQ ID NO:359)CGA TGAAATTACTCACCCTCAAG AGGTAACAAT TCATTATCAC GTAAGTAAAC TGTATGAAGT TGACGGAACTTTTAGCGATG GCAGCACGCT CTCAGAACGT ACTACGTCAT TATATGCAGA ATACAATGGTGCAAAACAAA CAGTATTTTG TATTGAACCA GGTGTTAGTA TTCCAACAGA AGTGACGCACGGTTATCAGA AAAACCCTTT GCCATCAATG TCTGATAAAG CGAAACTAGT ATCGGTTCTTTGGGAAAAGG CTGGAACAGA TATTGATACA AATATCGTTG CACAAAAGAT GATTTGGGAAGAAGTGAACG GTTATAAACT CCATTCCATA AAAAGATTAG GTGGTGCTTC AGTTGATATAAAATCTATTG AAGGAAAAAT TAATAAGGCA ATTGAGGAGT ATCAAAAAAA ACCAAGTTTTCATAATACCA CTGTAAAAAC AATTTTAGCT CAATCGACAA CTTTAATAGA TAAAAATGAATTAAATTTAT CTGAGTTTGA TAAAGTCGTC CAAAATACGG CGAATATAGA TTACCGTGTAATTGCGAATC AATTAGTGCT TACTCCAAAC TCTAATTCCA AATCAGGAAC ATTAACATTGAAAAAATCAG CTGGTACTGG AACTCCAGTC GCTTATAAAA AAGCAGGACT TCAAACTGTGATGGCTGGTG CGCTTGATAA GCCCAATACC TACGCTATTA AAATTAATGT GGAAACTAAGGGTTCTTTAA AGATCAAAAA AATCGATAAA GAATCAGGTG ATATTGTACC AGAAACGGTTTTCCATTTAG ATTTTGGGAA AGCTTTACCT TCAAAAGATG TGACAACAGA TAAAGATGGGATTTCTATTT TGGATGGAAT TCCCCATGGT ACAAAGGTAA CTATTACTGA AAAATCGCTGCCACATCCTT ATATGATTGA TACCACACCC ATCGCTGCCA CCATTAAAGC GGGCGAGACCATTTCCATGA CTTCGAAAAA TATGCGACAA AAACGTCAAA TTCTTTTAGA GAAGACTGGGGTAGAAACAG GTACTGATCT TTGGAATGAC AATTATTCTC TAGCTGGAAA TACATTTGCCATTCGTAAAC ACAGCCCAGC TGGTGAAATT GTCCAAGAAA TAACAACGGA TGAAAAAGGTCGTGCGGAAA CACCAAAAGA GCTTGCTAAT GCTTTGGAAC TGGGAACCTA TTACGTGACAGAAACTAAAT CTAGTAATGG TTTCGTGAAT ACCTTCAAAC CAACAAAAGT CGAGTTAAAATATGCCAATC AAACCGTGGC TCTTGTTACC AGTAACGTAA AAGGGCAAAA CCAAGAAATTACTGGGGAAA CCACTTTGAC AAAAGAAGAC AAAGATACCG GTAATGAGAG TCAAGGGAAAGCTCAGTTTA AAGGAGCTGA ATATACTCTC TTTACTGCAA AAGATGGTCA AGCTGTTAAATGGAGTGAAG CTTTTAAAAC ACAATTAGTG AAGGGAACGA AAGCTTCTGA TGAAACAGEF094-4 (SEQ ID NO:360)DEITHPQEVTTHYDV SKLYEVDGTF SDGSTLSERT TSLYAEYNGA KQTVFCTEPG VSIPTEVTHCYQKNPLPSMS DKAKLVSVLW EKAGTDIDTN MVAQKMIWEE VNGYKLHSIK RLCGASVDIKSIEGKINKAI EEYQKKPSFH NTTVKTILGQ STTLIDKNEL NLSEEDKVVQ NTANIDYRVIGNQLVLTPNS NSKSGTLTLK KSAGTGTPVA YKKAGLQTVM AGALDKPNTY AIKINVETKGSLKIKKIDKE SGDIVPETVF HLDFGKALPS KDVTTDKDGI SILDGIPHGT KVTITEKSVPDPYMTDTTPM AATIKAGETI SMTSKNMRQK GQILLEKTGV ETGTDLWNDN YSLAGNTFATRKDSPAGEIV QEITTDEKGR AETPKELANA LELGTYYVTE TKSSNGFVNT FKPTKVELKYANQTVALVTS NVKGQNQEIT GETTLTKEDK DTGNESQGKA EFKGAEYTLF TAKDGQAVKWSEAFKTELVK GTKASDETEF095-1 (SEQ ID NO:361)TAAGAATTGT TGGATTGTTC TTTACAAAGA AGGGACAATA TGAAGCGAAG TAAATGGAAAGAATTGATAG TAACGGGCAT CTGCCATATA TTAGTATTCC CCATACTAAT ACAGACAACTGTTTTTGCAG AAACATTACC AAGTACAAAA CAAGTAACAG AAGCAACCAA TCATTCATTAACAGCAGAAA AAGCCGAAAG TGAACAACCA CAGACAAAGG ATAAACTACA TGATGAAGAAACACTGGCAT TGTCAAAAAG TGAGTTAATC CATAATGAGG CTAATGTTAC AAGTCAAACGATTAGAGAAA GAATTGAGAC GCCTAACCTA ACTTATCGTT ATGGATTTAT TAATGAAGAGGGGCAGCCAG TAAACGCCAA TGAGATCCTT CTACAGTATC ATAGTTGGCA ACGCAATTCCCCAGATGGCA TAAATGTGTG GGAAGGTGAA AGTCAACCAG TGACAGCATC TACAGTGGCTAATTTAAAAG AAGTGGTAAT TCCAAGTGAG AAAGTAGCCG TCTATTCCGA CATGTCAACGGTGCTTGCAG CGAGTAATCA AACATTTTTT TTACCAAGAT ATTATACTTC TTTAAGCTTATACAATAAGA AAGGGGAAAT TGATCCCAAT TATCCGCTGC CAACTATTTC CGACGCATCAGGAAACCAAT ATCCAACAAC AATTTCGCAA TTTGAATTGG AAAAAATGTC TGCACAACAATATAGTCAGA AAACAGGAGT AACGTTTAAC ATTAGOGAGA GTCAAAAACT AATCGTTCCTTTGTACAACC AAGTGAAGGT TGATTCATCG AATCAATCTC GGCTATTGAA TTACTTTAAATTTTCAGGGC CGGTTTATTA TCATGTTACC AATCGCAAAG TGACAGAACA TTTTGTGGATACTCAAGGGA AACCAATCCC TCCACCACCG GGGTTTAGAC AAGGAAAGCA AACACTTATTGAGCGTGACC CTTACACCTT TAAACAGAAA GATCTTTTGC CAAGTAGCTA TGAAATTGACTCAAAAACGT ATCAATTTCA AGGATGGTAT AAAGGGAAAA CGAAACCTGA AAATTTAGAAAAAAGCGTAA CGCCCAGTTA TGATATTACC TATGACGACA ATGATGATTT AACTGTTGTCTATAAGGAGA TACCTCAAAA AAATTATACA TTTGAGGATG TCAATGGTGT TGAAATTGCACCACCATCTG ATTTTATTCA GGATCACCAA CAACCAATAA CTACGGATGG CTTTCGCTATTTAGCTGGAA AAAAACTGCC ACAACAATAC AGCGTTAACG GTAAAACTTA TTTATATCAAGGTTGGTATC AAGATAAAAC NAAACAAGAG AGCTTAGAAA AAACGAAGCG ACCCATAAACTCCCCTGTTT TTAATGAAAT GAACGCTATT ACAGCAGTGT ATAAGGAAAT AACTGCAAAAGCTGAAATGC AAATAGAAGG ACTAGTCAAA GTCATGCCAA GTGGTTATAT ACAAATTTGGCAGATTATGC TTACAAATGT GGGAGAAGTA CCGTTAAAAA AAATAAACTT AAAGCCAGCAAGTGGTTGGT CACCACGTCT AGCTCGGCCA ATCCAAGTCA CGATTCGTGT TGGATCTGAACCAAACAAAA TTGTTCCTAT TACTGATGAA AATTGGCGAG TTGGCATTAC TTTAAATACGGAAGTGCCTA TTGGTCAGAC AGCAACTATT ATGATGACAA CAATTGCTAC AGGTGAACCAGATCAAGTGT TACAAGCGGC TGTTGAAATG AATGGAAATT TTTCTGCTGT TCACGCAGCTGATACTGTCA GAATCCAACC TAAAAATCAA GAAATTGTGG CACCAGATGA GGAAGGTTTTATCAGCACAC CAACTTTTGA TTTTGGCAAA GTCGCCATTT CTAGCAACAC GCAGCAACATGGTTTAAAGC AGGOAGOAGA TTATTATGAA AATGGTCAGG AAAATCCATA TTTACGTTTGAAAAAATCAC AACCCAATTG GGCACTAACT GCAGAACTAT CCCCCTTTGA AGGAAGAGTGGATCAACTAT CATCAATGAC AAAGTTATTG TTAGGAACAA CCAATGTTTC AGGTTTTATTCAGTACAATC AACCAACGGA AACTAAAGTT GCTCTTGGCA AAACAACCGC TATTCAATTAGTTGCCAACG GTGTAGCTAG CCATATTGTT GCCAATGGTC AGTTTGACGA AAGTGATGTTTATCAATTTG ATTTTTCTTT TGATCAAATC AAATTAGAAA TTCCAGCAAA TCAAGGTAGAAAAGATCAAA CTTATCAAGC AATGGTGACT TGGAATTTAG TGACAGGCCC ATAAEF095-2 (SEQ ID NO:362)MKRSKWKE LIVTGICHIL VFPILIQTTV FAETLPSTKQ VREGTNHSLTAEKAESEQPQ TKDKLHDEET LALSKSELID NEANVTSQTI RERIETPNLT YRYGFINEEGQPVNANEILL QYHSWQGNSP DGINVWEGES QPVTASTVAN LKEVVIPSEK VAVYSDMSTVLAASNQTEFL PRYYTSLSLY NKKCETDPNY PLPTTSDASG NQYPTTISQF ELEKMSAQQYSQKTGVTFNI SESQKLIVPL YNQVKVDSSN QSGLLNYFKF SGPVYYHVTN RKVTEHFVDTQGKPIPPPPG FRQGKQTLIE RDPYTFKQKD LLPSSYEIDS KTYQFQGWYK GKTKPENLEKSVTPSYDITY DDNDDLTVVY KEIPQKNYTF EDVNGVEIAP PSDFIQDHQQ PITTDGFRYLAGKKLPQQYS VNGKTYLYQG WYQDKTKQES LEKTKRPTNS PVFNEMNAIT AVYKEITAKAEMQIEGLVKV MPSGYIQIWQ IMLTNVGEVP LKKINLKPAS CWSPGLARPI QVTIRVGSEPNKIVPITDEN WRVGITLNTE VPEGQTATIM MTTIATGEPD QVLQAAVEMN GNFSAVHAADTVRTQPKNQE IVAPDEEGFI STPTFDFGKV AISSNTQQHG LKQAADYYEN GQENPYLRLKKSQPNWALTA ELSPFEGRVD QLSSMTKLLL GTTNVSGFIQ YNQPTETKVA LGKTTAIQLVANGVASHTVA NGQFDESDVY QFDFSFDQIK LEIPANQORK DQTYQAMVTW NLVTGPEF095-3 (SEQ ID NO:363)AAGTACAAAA CAAGTAAGAG AAGGAACCAA TCATTCATTAACAGCAGAAA AAGCCGAAAG TGAACAACCA CAGACAAAGG ATAAACTACA TGATGAAGAAACACTGGCAT TGTCAAAAAG TGAGTTAATC GATAATGACG CTAATCTTAC AAGTCAAACGATTAGAGAAA GAATTGAGAC GCCTAACCTA ACTTATCGTT ATCGATTTAT TAATGAAGAGGGGCAGCCAG TAAACGCCAA TGAGATCCTT CTACAGTATC ATAGTTGGCA AGGCAATTCCCCAGATGGCA TAAATGTGTG GGAAGGTGAA AGTCAACCAG TGACAGCATC TACAGTGGCTAATTTAAAAG AAGTGGTAAT TCCAAGTGAG AAAGTAGCCG TCTATTCCGA CATGTCAACGGTGCTTGCAG CGAGTAATCA AACATTTTTT TTACCAACAT ATTATACTTC TTTAAGCTTATACAATAAGA AAGGGGAAAT TGATCCCAAT TATCCGCTGC CAACTATTTC CGACGCATCAGGAAACCAAT ATCCAACAAC AATTTCGCAA TTTCAATTCG AAAAAATGTC TGCACAACAATATAGTCAGA AAACAGGAGT AACGTTTAAC ATTACCGAGA GTCAAAAACT AATCGTTCCTTTCTACAACC AAGTCAAGGT TGATTCATCG AATCAATCTG GGCTATTGAA TTACTTTAAATTTTCAGCCC CGGTTTATTA TCATGTTACC AATCGCAAAG TGACACAACA TTTTGTGGATACTCAAGGGA AACCAATCCC TCCACCACCG GCGTTTAGAC AAGGAAAGCA AACACTTATTGAGCGTGACC CTTACACCTT TAAACAGAAA GATCTTTTGC CAAGTAGCTA TGAAATTGACTCAAAAACGT ATCAATTTCA AGGATGGTAT AXAGGGAAAA CGAAACCTGA AAATTTAGAAAAAAGCGTAA CGCCCAGTTA TGATATTACC TATGACGACA ATGATGATTT AACTGTTGTCTATAAGCAGA TACCTCAAAA AAATTATACA TTTGAGGATG TCAATGGTGT TGAAATTGCACCACCATCTG ATTTTATTCA GGATCACCAA CAACCAATAA CTACGGATCG CTTTCGCTATTTAGCTGGAA AAAAACTGCC ACAACAATAC AGCGTTAACG GTAAAACTTA TTTATATCAAGCTTGGTATC AAGATAAAAC NAAACAAGAG AGCTTAGAAA AAACGAAGCG ACCCATAAACTCCCCTGTTT TTAATGAAAT GAACGCTATT ACAGCAGTCT ATAAGGAAAT AACTGCAAAAGCTGAAATGC AAATAGAAGG ACTAGTCAAA GTCATGCCAA GTGGTTATAT ACAAATTTGGCAGATTATGC TTACAAATGT GGCAGAAGTA CCGTTAAAAA AAATAAACTT AAACCCAGCAAGTCGTTGGT CACCACOTOT ACCTCGGCCA ATCCAACTCA CCATTCGTGT TGGATCTCAACCAAACAAAA TTGTTCCTAT TACTGATCAA AATTGGCGAG TTGGCATTAC TTTAAATACGGAAGTGCCTA TTGGTCAGAC ACCAACTATT ATGATGACAA CAATTGCTAC AGCTGAACCAGATCAACTGT TACAAGCGGC TGTTGAAATG AATCGAAATT TTTCTGCTGT TCACGCAGCTGATACTGTCA GAATCCAACC TAAAAATCAA GAAATTGTGG CACCAGATLA GGAAGGTTTTATCAGCACAC CAACTTTTGA TTTTGGCAAA GTCGCCATTT CTACCAACAC GCAGCAACATCGTTTAAACC AGOCACCAGA TTATTATGAA AATGGTCAGG AAAATCCATA TTTACGTTTGAAAAAATCAC AACCCAATTG GGCACTAACT GCAGAACTAT CCCCCTTTGA AGGAAGAGTGCATCAACTAT CATCAATGAC AAAGTTATTG TTAGGAACAA CCAATGTTTC AGGTTTTATTCAGTACAATC AACCAACCGA AACTAAAGTT GCTCTTCGCA AAACAACCGC TATTCAATTAGTTGCCAACG GTGTAGCTAG CCATATTGTT GCCAATGGTC AGTTTGACGA AAGTGATGTTTATCAATTTG ATTTTTCTTT TGATCAAATC AAATTAGAAA TTCCAGCAAA TCAAGGTAGAAAAGATCAAA CTTATCAAGC AATGGTGACT TGGAATTTAG TGACAGGCCC A5F095-4 (SEQ ID NO:364)STKQ VREGTNHSLTAEKAESEQPQ TKDKLHDEET LALSKSELID NEANVTSQTI RERIETPNLT YRYGFINEEGQPVNANEILL QYHSWQCNSP DGINVWEGES QPVTASTVAN LKEVVIPSEK VAVYSDMSTVLAASNQTFFL PRYYTSLSLY NKKGETDPNY PLPTISDASG NQYPTTISQF ELEKNSAQQYSQKTCVTFNT SESQKLIVPL YNQVKVDSSN QSGLLNYFKE SGPVYYHVTN RKVTEHFVDTQGKPIPPPPG FRQGKQTLIE RDPYTPKQKD LLPSSYEIDS KTYQFQGWYK GKTKPENLEKSVTPSYDITY DDNDDLTVVY KEIPQKNYTF EDVNGVEIAP PSDETQDHQQ PITTDGFRYLAGKKLPQQYS VNGKTYLYQG WYQDKTKQES LEKTKRPINS PVFNEMNATT AVYKETTAKAEMQIEGLVKV MPSGYIQIWQ IMLTNVGEVP LKKINLKPAS GWSPGLARPI QVTIRVGSEPNKIVPITDEN WRVCTTLNTE VPIGQTATIM MTTIATGEPD QVLQAAVEHN GNFSAVHAADTVRIQPKNQE IVAPDEEGFI STPTFDFGKV AISSNTQQHG LKQAADYYEN GQENPYLRLKKSQPNWALTA ELSPFEGRVD QLSSMTKLLL GTTNVSGFIQ YNQPTETKVA LGKTTATQLVANGVASHIVA NGQFDESDVY QFDFSFDQIK LEIPANQGRK DQTYQAIYTVTW NLVTCPEF096-1 (SEQ ID NO:365)TGAGGTGGCC AAGTTAAAAT GAAAAAATTA CAGTCACTTT TTATTGGAAT TATCGCTATTATTGTCATCT TGTTTTTTCG CGTGCGCCAA TTGGAGAAAG CAAGTGGCAT GGCAGGAGCAGATACCTTGA CCATTTACAA TTGGGGGGAC TATATAGATC CGGCCTTGAT TAAGAAATTTGAAAAAGAAA CAGCCTATAA AGTCAATTAC GAAACCTTTG ATTCTAATGA AGCTATGTATACAAAAATTC AGCAAGGTGG CACAGCCTAT GATATTGCCA TTCCTTCTGA ATATATGATTCAAAAAATGA TGAAAGCGAA GATGCTTTTA CCACTTCATC ACAGCAAATT AAAAGGCTTAGAAAACATTG ATGCACGCTT TTTAGATCAA TCCTTTGATC CCAAAAATAA GTTTTCCGTTCCGTACTTCT GGGGCACGTT GGGGATTATT TATAATGATA AATTTATTGA CGGCCGTCAGATCCAACATT GGCATGATTT ATCGCCCCCG GAATTAAAAA ATAATGTCAT GCTGATTGATGGCGCTCGCG AAGTGTTAGG ATTATCTTTG AACAGTTTAG GCTATTCGTT AAACAGTAAAAACGACCAAC AATTACGTCA GGCTACCGAT AAGTTAAACC GATTAACGAA CAATGTCAAAGCAATTGTTG CCGATGAAAT CAAAATGTAC ATGGCTAATG AAGAAAGTGC AGTTGCTGTAACTTTCTCTG GTGAAGCTGC TGAAATGCTA CAAAACAATG AACATCTACA TTATGTGATTCCCAGTGAAG GCTCTAATCT CTGGTTTGAT AACATTGTGA TGCCTAAGAC AGCCAAAAATAAAGAGCGTG CCTATGCATT TATCAACTTT ATGTTACGAC CAGAAAATGC GGCACAAAATGCAGAATATA TTGGTTATTC CACACCAAAT AAAGAAGCTA AAAAACTATT ACCAAAAGAAGTTGCCGAAG ATAAACAATT TTATCCAGAT GATGAAACTA TCAAACATTT AGAAGTTTACCAAGACTTAG GTCAAGAATA CTTACGAATT TATAACGATC TGTTCTTGCA GTTTAAGATGTATCCGAAAT PAEE096-2 (SEQ ID NO:366)MKKLQ SLEIGITAII VILFFGVRQL EKASGMAGAD TLTIYNWGDY IDPALIKKFEKETGYKVNYE TFDSNEAMYT KIQQGGTAYD IAIPSEYMTQ KMMKAKMLLP LDHSKLKGLENIDARFLDQS FDPKNKESVP YFWGTLGIIY NDKFIDGRQI QHWDDLWRPE LKNNVMLIDGAREVLGLSLN SLGYSLNSKN DQQLRQATDK LNRLTNNVKA IVADEIK4YM ANEESAVAVTFSGEAAEMLE NNEHLHYVTP SEGSNLWFDN IVMPKTAKNK EGAYAFHNFM LRPENAAQNAEYIGYSTPNK EAKKLLPKEV AEDKQFYPDD ETTKHLEVYQ DLGQEYLGIY NDLFLEFKMYRKEF096-3 (SEQ ID NO:367)AAGTGGCAT GCCAGGAGCAGATACCTTGA CCATTTACAA TTGGGGGGAC TATATAGATC CGGCCTTGAT TAAGAAATTTGAAAAAGAAA CAGGCTATAA AGTCAATTAC GAAACCTTTG ATTCTAATGA AGCTATGTATACAAAAATTC AGCAAGGTGG CACAGCCTAT GATATTGCCA TTCCTTCTGA ATATATGATTCAAAAAATGA TGAAAGCGAA GATGCTTTTA CCACTTGATC ACAGCAAATT AAAAGGCTTAGAAAACATTG ATGCACGCTT TTTAGATCAA TCCTTTGATC CCAAAAATAA GTTTTCCGTTCCGTACTTCT GGGGCACGTT GGGGATTATT TATAATGATA AATTTATTGA CGGCCGTCAGATCCAACATT GGGATGATTT ATGGCGCCCG GAATTAAAAA ATAATGTCAT GCTGATTGATGGCGCTCGCG AAGTGTTAGG ATTATCTTTG AACAGTTTAG GCTATTCGTT AAACAGTAAAAACGACCAAC AATTACGTCA GGCTACCGAT AAGTTAAACC GATTAACGAA CAATGTCAAAGCAATTGTTG CCGATGAAAT CAAAATGTAC ATGGCTAATG AAGAAAGTGC AGTTGCTGTAACTTTCTCTG GTGAAGCTGC TGAAATGCTA GAAAACAATG AACATCTACA TTATGTGATTCCCAGTGAAG GCTCTAATCT CTGGTTTGAT AACATTGTGA TGCCTAAGAC AGCCAAAAATAAAGAGGGTG CCTATGCATT TATGAACTTT ATGTTACGAC CAGAAAATGC GGCACAAAATGCAGAATATA TTGGTTATTC CACACCAAAT AAAGAAGCTA AAAAACTATT ACCAAAAGAAGTTGCCGAAG ATAAACAATT TTATCCAGAT GATGAAACTA TCAAACATTT AGAAGTTTACCAAGACTTAG GTCAAGAATA CTTAGGAATT TATAACGATC TGTTCTTGGA GTTTAAGATGTATCGGAAAEF096-4 (SEQ ID NO:368)SGMAGAD TLTIYNWGDY IDPALIKKFEKETGYKVNYE TFDSNEAMYT KIQQGGTAYD IAIPSEYMTQ KMMKAKNLLP LDHSKLKGLENIDARFLDQS FDPKNKFSVP YFWGTLGIIY NDKFIDGRQI QHWDDLWRPE LKNNVMLIDGAREVLGLSLN SLGYSLNSKN DQQLRQATDK LNRLTNNVKA IVADEIKMYM ANEESAVAVTFSGEAAEMLE NNEHLHYVIP SEGSNLWFDN IVMPKTAKNK EGAYAFMNFM LRPENAAQNAEYTGYSTPNK EAKKLLPKEV AEDKQFYPDD ETIKHLEVYQ DLGQEYLGIY NDLFLEFKMYRKEF097-1 (SEQ ID NO:369)TAGAAGTATT CTAATTATCT ACATAGAGAG CGAGGGACAA GGAATATGAA GGAAAAAGAAATGCATTCGC TCTTTTTTAA ACATAAGTTT GTGAAAGTAA CTCCCTATTT ACGTCGTTTTGGTCATCGTT TGAGTGGGAT GATTATGCCA AATTTGAGTA TTTTTATTGC GTGGAGCTTATTGTCTTTGG TGGCTGGCTA TACGACTGGG AATCTACGGC TAGCTCTTTC TGAAGTCGAAACGATAATGA TTCGAGTTGT TTTACCGATT CTAATTGGTT TTACAGGCGG AAAAATGTTCGAGGAACAAC GTGGCGGCGT TGTTGCTGCT ATTGCGACAG TGGGCGTGAT TGTTTCCACAGATGTTCCAC AGTTGTTTGG TGCTATGTTT ATTGGCCCTT TAGCAGGATA TACTTTCGCCAAAATTGAAC AAATTCTCTT ACCGAAAGTT AAAGAAGGCT ACGAGATGCT GACTAAAAACTTTTTAGCAG CAATTGTGGG AGGACTGCTG TGCTGTTTTG GTATTCTGGT TGTAGCTCCGGCTGTTGAAA GCGCTAGTTT TTGGCTGTAT CAATTTTCTT CTTGGTTAAT TGAAGCCAATCTTTTACCAT TGGTTCACGT TTTCTTAGAG CCCTTAAAAG TGTTATTTTT TAATAATGCGATTAACCATG GCTTATTAAC GCCTCTAGGT TTAGAAGGTG CTAGTCAAAC AGGTCAGTCCATTTTATTTC TATTGGAAAC AAACCCTGGA CCAGGCGTGG GCGTTTTGGT TGCTTTTCTGCTGTTTGGGC CTGTAGGACA ACGAAAAACA GCAGGAGGTG CCACCATGAT TCAACTGATTGGGGGCATTC ATGAAATTTA TTTTCCGTTT GTTTTGATGG ACCCGCGCTT ATTTTTAGCAGTAATTGCTG GAGGAATGAG TGGTACGCTT GTTTTTCAAA TATTTAATGT GGGTCTAAGTGCTCCAGCTT CGCCAGGTTC ATTGGTTGCG ATTTTAGCCA ATGCCCCGAC TGATGCGAGGCTGGCGGTTT TTAGCGGAAT TTTTGTTAGC TTTCTGTGCT CTTTTGCAAT AGCAAGCTTGTTATTAAAAC GTCAACGAGG AATTGAACCA GTTTCAATGA TAAAGATGAA GGAGGAAGACCAAGTGGAAA CAGTCACACC TAACTATCAG CAAATTTTAT TTGTTTGTGA TGCAGGAATGGGCTCAAGTG CCATGGGGGC TAGTTTGCTA AGCCGACAAT TAAAAGCTGT GAACTTGGAGATGCCTGTGA CTTACCAGTC CGTTCATCAG ATGAAGTGGC AGCCTAAGAC ATTAGTGGTCATTCAAGCAG AATTGAAACA GTTAGCACAA AAGTACGTCC CAGAAAAGGA TATGGTGAGTGTTCAAAATT TTTTAGAkAT TAAATCCTAT TACCCGCAAG TTTTAGCCAA ACTGACTGCTTCTTCTCAAG AGCAATCTTC ACTTGGTTCA GAGTCTACTG AAACGAACTC GACAAAACAAATACAGAAGC TTGTTTTTTT ATATGCCGAG AATGTTCGAG GATCGCAAAC AATGGGAATGGAATTATTGC GGCAACAAGC GGCGAAACAA GGAGTCGCGA TTGAAGTATC TAAAGAGCCACTGGAAACAG TCTTTTTTAC CAAGGAGACA ACCTACGTAG TGACTCGTGA ACTGGCGCAAGCCTATCATT TAGATCTAAC GCAACAAAAT TTATACGTAG TTACTAGTTT TTTGAATAAGAAAGAGTATC AAGAATGGCT GGAAGGAGGA GCTGATAGAT GTTTTTAAEF097-2 (SEQ ID NO:370)MLTKNF LACIVGGLLC CFGILVVAPAVESASFWLYQ FSSWLIEANL LPLVHVFLEP LKVLFFNNAI NHGLLTPLGL EGASQTGQSILFLLETNPGP GVGVLVAFLL FGPVGQRKTA GGATMIQLIG GIHEIYFPFV LMDPRLFLAVIAGGMSGTLV FQIFNVGLSA PASPGSLVAI LANAPTDARL AVFSGIFVSF LCSFAIASLLLKRQRGIEPV SMIKMKEEDQ VETVTPNYQQ ILFVCDAGMG SSAMGASLLS RQLKAVNLEMPVTYQSVHQM KWQPKTLVVI QAELKQLAQK YVPEKDMVSV QNFLEIKSYY PQVLAKLTASSQEQSSLGSE STETNSTKQI QKLVFLYAEN VRGSQTMGME LLRQQAAKQG VAIEVSKEPLETVFFTKETT YVVTRELAQA YHLDLTQQNL YVVTSFLNKK EYQEWLEGGA DRCFEF097-3 (SEQ ID NO:371)ACGAGG AATTGAACCA GTTTCAATGA TAAAGATGAA GGAGGAAGACCAAGTGGAAA CAGTCACACC TAACTATCAG CAAATTTTAT TTGTTTGTGA TGCAGGAATGGGCTCAAGTG CCATGGGGGC TAGTTTGCTA AGCCGACAAT TAAAAGCTGT GAACTTGGAGATGCCTGTGA CTTACCAGTC CGTTCATCAG ATGAAGTGGC AGCCTAAGAC ATTAGTGGTCATTCAAGCAG AATTGAAACA GTTAGCACAA AAGTACGTCC CAGAAAAGGA TATGGTGAGTGTTCAAAATT TTTTAGAAAT TAAATCCTAT TACCCGCAAG TTTTAGCCAA ACTGACTGCTTCTTCTCAAG AGCAATCTTC ACTTGGTTCA GAGTCTACTG AAACGAACTC GACAAAACAAATACAGAAGC TTGTTTTTTT ATATGCCGAG AATGTTCGAC GATCGCAAAC AATGGGAATGGAATTATTGC GGCAACAAGC GGCGAAACAA GGAGTCGCGA TTGAAGTATC TAAAGAGCCACTGGAAACAG TCTTTTTTAC CAAGGAGACA ACCTACGTAG TGACTCGTGA ACTGGCGCAAGCCTATCATT TAGATCTAAC GCAACAAAAT TTATACGTAG TTACTAGTTT TTTGAATAAGAAAGAGTATC AAGAATGGCT GGAAGGAGGA GCTGATAGAT GTTTTTEF097-4 (SEQ ID NO:372)RGIEPV SMIKNKEEDQ VETVTPNYQQ ILFVCDAGMG SSAMGASLLS RQLKAVNLEMPVTYQSVHQM KWQPKTLVVI QAELKQLAQK YVPEKDMVSV QNFLEIKSYY PQVLAKLTASSQEQSSLGSE STETNSTKQI QKLVFLYAEN VRGSQTMGME LLRQQAAKQG VAIEVSKEPLETVFFTKETT YVVTRELAQA YHLDLTQQNL YVVTSFLNKK EYQEWLEGGA DRCFEF098-1 (SEQ ID NO:373)TAAATGAAAA AGACAAAAGT AATGACATTG ATGGCAACCA CAACTTTAGG CGCACTGGCACTTGTACCAA TGAGTGCATT AGCAGTCGAC GGTGGTGAAT ACCAAACAAA CGGAGCGATTCAATTTGCAC CAAATACGAA CCCAACGAAT CCAGTTGATC CGACGAATCC AGACCCAGATAAACCAATTA CACCAGTTGA TCCAACTGAT CCGACAGGGC CTAAGCCAGG GACAGCAGGTCCGTTATCCA TTGACTATGC ATCTAGCTTA TCTTTTGGGG AACAAACGAT TACCTCAAAAAATATGACCT ACTATGCAGA AACACAAAAA TACAAAGATA ACGCTGGTGC CGACCAAGAAGGCCCAAACT TTGTTCAAGT CTCAGATAAT CGTGGGACTG AGACAGGTTG GACGCTAAAAGTAAAACAAA ATCGTCAATT CAAAACTGAA GCCAACCAAG AACTAACAGC GGCCAAACTAACTTTAAGCA ACGGACGCGT GGTTTCAGCT TCACAATCTG CAAAGCCAAC GACAGCGCCAGCTACGATTG AATTAAACCC AACTGGGGCT GAATCAGTGG TCATGGCTGC TGGCGATAAAGAAGGTGCGG GTACGTACTT AATGAGCTGG GGCGATAGTG TAGATACCGC TAAAACAAGTATTTCATTAG AAGTACCTGG TTCAACCACA AAATATGCGA AAAAATACAC GACAACTTTTACTTGGACTT TGACAGATAC ACCTGCTAAC ACAGGAAACT AAEF098-2 (SEQ ID NO:374)MKKTKVMTLM ATTTLGALAL VPMSALAVDG GEYQTNGAIQ FAPNTNPTNP VDPTNPDPDKPITPVDPTDP TGPKPGTAGP LSIDYASSLS FGEQTITSKN MTYYAETQKY KDNAGADQEGPNFVQVSDNR GTETGWTLKV KQNGQFKTEA NQELTAAKVT LSNGRVVSAS QSAKPTTAPATIELNPTGAE SVVMAAGDKE GAGTYLMSWG DSVDTAKTSI SLEVPGSTTK YAKKYTTTFTWTLTDTPANT GNEF098-3 (SEQ ID NO:375)AGTCGAC GCTGGTGAAT ACCAAACAAA CGGAGCGATTCAATTTGCAC CAAATACGAA CCCAACGAAT CCAGTTGATC CGACGAATCC AGACCCAGATAAACCAATTA CACCAGTTGA TCCAACTGAT CCGACAGGGC CTAAGCCAGG GACAGCAGGTCCGTTATCCA TTGACTATGC ATCTAGCTTA TCTTTTGGGG AACAAACGAT TACCTCAAAAAATATGACCT ACTATOCAGA AACACAAAAA TACAAAGATA ACGCTGGTGC CGACCAAGAAGGCCCAAACT TTGTTCAAGT CTCAGATAAT CGTGGCACTG AGACAGGTTG GACGCTAAAAGTAAAACAAA ATGGTCAATT CAAAACTGAA GCCAACCAAG AACTAACACC GGCCAAAGTAACTTTAAGCA ACGGACGCGT GGTTTCAGCT TCACAATCTG CAAAGCCAAC GACAGCGCCAGGTACCATTG AATTAAACCC AACTGGGGCT GAATCAGTGG TCATGGCTGC TGGCGATAAAGAAGGTGCGG GTACGTACTT AATGAGCTGG GGCGATAGTG TAGATACCGC TAAAACAAGTATTTCATTAG AAGTACCTGG TTCAACCACA AAATATGCGA AAAAATACAC GACAACTTTTACTTGGACTT TGACAGATAC ACCTGCTAAC ACAGGAAACTEF098-4 (SEQ ID NO:376)VDG GEYQTNGAIQ FAPNTNPTNP VDPTNPDPDKPITPVDPTDP TGPKPGTAGP LSIDYASSLS FGEQTITSKN MTYYAETQKY KDNAGADQEGPNFVQVSDNR GTETGWTLKV KQNGQFKTEA NQELTAAKVT LSNGRVVSAS QSAKPTTAPATIELNPTGAE SVVMAAGDKE GAGTYLMSWG DSVDTAKTSI SLEVPGSTTK YAKKYTTTFTWTLTDTPANT GNEF099-1 (SEQ ID NO:377)TGATGTTGTA GAGGGCTGAT GAAATGTTTA TCAGTCTTCT TTTTATTGAA AGGAGAGATCATGAAGAAAT TAGGCAAGGT TTTAATTGTT AGTTGTTTTA TTTTTATTCT TCCTTTTTTATTATTTTTAG GTGTATTTTC TTCTAGTGAA AGCGGAGATT CTTCCCAGTT TCAGCCCGCTACACCACAGG AAAAAGTAGC ATTAGAAGTT TCTAACTACG TGACGTCACA TGGCGGAACGTTGCAGTTTG CTTCCGCTTC GATTGGCAAT ATGGAACATG AAAGTGGATT AAATCCTGCTAGAATTCAAA GTGATTTATC GTTTAATTCA GCGATAGCTT TTAATCCTTC GTTAGGCGGTTATGGAATTG GGTTAGGACA ATGGGATTCA GGACGAAGAG TTAATTTATT AAATTTTGCAAAAAGTCAAA AAAAGGAATG GAAATCAGTA GCTTTACAAA TGGATTTTGC GTGGAATAAGGATGGTTCTG ATAGTGACTT ACTTAAAAGA ATGTCTAAAT CAAAAGATGT GAATACACTTGCGGTAGATA TTTTGAAGCT GTGGGAACGA GCTGGAACAA AAGATGATCC CGCAGAACAAGTAAAAAGAA AGGCTAGTGC TAATAATTGG TATAAACGAC TTTCTACAGG TTCCATGGGCGGAGGTTCAG CCAATGTTGG TCGAGGAAAA ATTGATGCCT TGGAAAAAGT GATGGGGCAAACTATTAATG GTGGTCAATG TTATGGCTTA TCTGCTTTTT TTGTTGAAAA ACAAGGAGGTCTACAAATGA TGGGTACGGG GCATATGTTT GCGAGTGAAA TTGGTAATGA TTATCCTTGGAGTTCAATTG GTTGGACAGT CATAAAGAAT CCAAATTATT CAGATATTAA AGGAGGAGATGTCATTAATT TTGGTCAAGG TGGTGTGGCT ACTAGTATTT ATGGGCATAC TGGTGTAGTGGCAAGTGTTG AAGGTAAAAA CAAGTTTACT ACTTATGAGC AAAACGCTGA ACAAGGTCAAATTGTTGCTA AGTATTTTCG GACTTGGGGA TTAGATTTTC CACATGTGAC CAGCATAGTAAGGAAATAGEF099-2 (SEQ ID NO:378)MKCLS VFFLLKGEIM KKLGKVLIVS CFIFILPFLL FLGVFSSSES GDSSQFQPATPQEKVALEVS NYVTSHGGTL QFASAWIGNN EHESGLNPAR IQSDLSFNSA IAFNPSLGGYGIGLGQWDSG RRVNLLNFAK SQKKEWKSVA LQMDFAWNKD GSDSDLLKRM SKSKDVNTLAVDILKLWERA GTKDDPAEQV KRKASANMWY KRLSTGSMGG GSANVGGGKI DALEKVMGQTINGGQCYGLS AFFVEKQGGL QMMGTGHMFA SEIGNDYPWS SIGWTVTKNP NYSDIKAGDVINFGQGGVAT SIYGHTGVVA SVEGKNKFTT YEQNAEQGQI VAKYFRTWGL DFPHVTSIVRKEF099-3 (SEQ ID NO:379)TAGTGAA AGCGGAGATT CTTCCCAGTT TCAGCCCGCTACACCACAGG AAAAAGTAGC ATTAGAAGTT TCTAACTACG TGACGTCACA TGGCCGAACGTTGCAGTTTG CTTCCGCTTG GATTGGCAAT ATGGAACATG AAAGTGGATT AAATCCTGCTAGAATTCAAA GTGATTTATC GTTTAATTCA GCGATAGCTT TTAATCCTTC GTTAGGCGGTTATGGAATTG GGTTAGGACA ATGGGATTCA GGACGAAGAG TTAATTTATT AAATTTTGCAAAAAGTCAAA AAAAGGAATG GAAATCAGTA GCTTTACAAA TGGATTTTGC GTGGAATAAGGATGGTTCTG ATAGTGACTT ACTTAAAAGA ATGTCTAAAT CAAAAGATGT GAATACACTTGCGGTAGATA TTTTGAAGCT GTGGGAACGA GCTGGAACAA AAGATGATCC CGCAGAACAAGTAAAAAGAA AGGCTAGTGC TAATAATTGG TATAAACGAC TTTCTACAGG TTCCATGGGCGGAGGTTCAG CCAATGTTGG TGGAGGAAAA ATTGATGCCT TGGAAAAAGT GATGGGGCAAACTATTAATG GTGGTCAATG TTATGGCTTA TCTGCTTTTT TTGTTGAAAA ACAAGGAGGTCTACAAATGA TGGGTACGGG GCATATGTTT GCGAGTGAAA TTGGTAATGA TTATCCTTGGAGTTCAATTG GTTGGACAGT CATAAAGAAT CCAAATTATT CAGATATTAA AGCAGGAGATGTCATTAATT TTGGTCAAGG TGGTGTGGCT ACTAGTATTT ATGGGCATAC TGGTGTAGTGGCAAGTGTTG AAGGTAAAAA CAAGTTTACT ACTTATGAGC AAAACGCTGA ACAAGGTCAAATTGTTGCTA AGTATTTTCG GACTTGGGGA TTAGATTTTC CACATGTGAC CAGCATAGTAAGGAAATEF099-4 (SEQ ID NO:380)SES GDSSQFQPATPQEKVALEVS NYVTSHGGTL QFASAWIGNM EHESGLNPAR IQSDLSFNSA IAFNPSLGGYGIGLGQWDSG RRVNLLNFAK SQKKEWKSVA LQMDFAWNKD GSDSDLLKRM SKSKDVNTLAVDILKLWERA GTKDDPAEQV KRKASANNWY KRLSTGSMGG GSANVGGGKI DALEKVMGQTINGGQCYGLS AFFVEKQGGL QMMGTGHMFA SETGNDYPWS SIGWTVIKNP NYSDIKAGDVINFGQGGVAT SIYGHTGVVA SVEGKNKFTT YEQNAEQGQI VAKYFRTWGL DFPHVTSIVRKEF100-1 (SEQ ID NO:381)TANTTATGGC AATATGGAAG GAGTTTTATA ATGAAAAAGA AACAAAAATA CGCAGGGTTTACATTATTAG AAATGTTGAT TGTCTTATTG ATTATTTCCG TATTGATTTT ACTTTTTGTCCCTAACTTAG CGAAACATAA AGAAACAGTT GATAAAAAAG GCAATGAAGC AATCGTAAAAATTGTAGAAT CACAAATCGA GCTCTACACA CTAGAAAAAA ATAAGACGCC TTCCTTAAATGAATTAGTCA ACGAAGGCTA CATTACTAAA GAGCAGTTAG ATAAATATAC AGCAGAAAAGCAATGAEF100-2 (SEQ ID NO:382)MKKKQKYAGF TLLEMLIVLL IISVLILLFV PNLAKHKETV DKKGNEAIVKIVESQIELYT LEKNKTPSLN ELVNEGYITK EQLDKYTAEK QEF100-3 (SEQ ID NO:383)TAA AGAAACAGTT GATAAAAAAG GCAATGAAGC AATCGTAAAAATTGTAGAAT CACAAATCGA GCTCTACACA CTAGAAAAAA ATAAGACGCC TTCCTTAAATGAATTAGTCA ACGAAGGCTA CATTACTAAA GAGCAGTTAG ATAAATATAC AGCAGAAAAGCAATEF100-4 (SEQ ID NO:384)KETV DKKGNEAIVKIVESQIELYT LEKNKTPSLN ELVNEGYITK EQLDKYTAEK QEF100-1 (SEQ ID NO:385)TANTTATGGC AATATGGAAG GAGTTTTATA ATGAAAAAGA AACAAAAATA CGCACGGTTTACATTATTAG AAATGTTGAT TGTCTTATTG ATTATTTCCG TATTGATTTT ACTTTTTGTCCCTAACTTAG CGAAACATAA AGAAACAGTT GATAAAAAAG GCAATGAAGC AATCGTAAAAATTGTAGAAT CACAAATCGA GCTCTACACA CTAGAAAAAA ATAAGACGCC TTCCTTAAATGAATTAGTCA ACGAAGGCTA CATTACTAAA GAGCAGTTAG ATAAATATAC AGCAGAAAAGCAATGAEF100-2 (SEQ ID NO:386)MKKKQKYAGF TLLEMLIVLL IISVLILLFV PNLAKHKETV DKKGNEAIVKIVESQIELYT LEKNKTPSLN ELVNEGYITK EQLDKYTAEK QEF100-3 (SEQ ID NO:387)TAA AGAAACAGTT GATAAAAAAG GCAATGAAGC AATCGTAAAAATTGTAGAAT CACAAATCGA GCTCTACACA CTAGAAAAAA ATAAGACGCC TTCCTTAAATGAATTAGTCA ACGAAGGCTA CATTACTAAA GAGCAGTTAG ATAAATATAC AGCAGAAAAGCAATEF100-4 (SEQ ID NO:388)KETV DKKGNEAIVKIVESQIELYT LEKNKTPSLN ELVNEGYITK EQLDKYTAEK QEF101-1 (SEQ ID NO:389)TGAGGAGATG AAACGAAGAA AATGAAGAAG AAAACGATAA TTATATTGGG GGCAGTTGCGGTAATTGCGG TTGGGGGCAT CGTAACTGTG AATGCGTTAA ATAAAAATGC ACAACAAGTAGCTGTCAAGC AAGCGCCTAA AGATGACTGG GGAATTGACT ATTTTGACGT TCCCGACTTGCAACAAATTT ATATTAACGG TGTCATCCAA CCGGAACAAA TGGAAGCCTT TGCGCGTGATCAAAAAATAA CAAAGGATCC AGAGATTAAG GTGAAAAACG GCGATGTCGT AGATGCAGGCACAGAATTAT TTACTTATGA AGATGAGGCG GTCACAAAAG AAATTGAGGC ACAACAAAATAGCTTAGCCA AATTAGAAAC GAAGCGGGCG AATATCTATA ATAAGTGGAA TCGGGCCATTGATAAATTTA ATAAAACTAA AGAAGAAGAC CGCACGATGT CTGGTGATGA TTTAAATGAACAATATCAAA CAGAAGTCGA TGCAGTAGAT GAAGAGATTA CCTTCACCAA TGAAACCTTAGCGGATTTAG GAGCGAAGCA ATATATTTCC ACAAAGGCTA ATTTCAAAGG TCGTGTATCAATTCCAGAAG TAAAAGATGC CAATTCACCG ATTTTACGGT TAACTTCAGA AGATCTTTATTTAGCTGGAA AAGTGAATGA AAAGGACTTG ACTAAAATTA GTGTTGGGCA AAAAGCTAAACTAACTTCTG TTTCCAACAA TGTGGTTGTG GATGGCTCAA TTTCTTACAT CGATGATAATCCTCCTGAAG GCAACAGCGA TGCCGCGAGT CGCAATCCAG AGGGCGGCAC AACGATGTCTAGTTATAGCG TCAAAATTGC GTTGGCCAAT TTAGACAAAG TCAAAAATGG CTACCATATGCAAGCAACCA TTGATTTAGG CGATTTAGGG GCGATTGAGT TACCGAAAAA AGCGATTCAAAAAGAGGGTG AACAGGCCTA CCTTTTAGTG AATGATTTTG GAACCATCAT TCGTCGTGATGTCCAAGTCG GGCAAGAAAA TGGCGACAAA ATGGCGATTG AATCTGGCTT AGAATCAGCCGACCGAGTGG TTATTTCTTC AAAAAAACCA GTAAAAGTCG GTGATATTGT TGAATCAGATGCAGCGATTG CTTCTGATGA ATCAGCAACC AACGAATCAA TGACAGATGC GTCGAAATAGEF101-2 (SEQ ID NO:390)MKKK TITILGAVAV IAVGGIVTVN ALNKNAQQVA VKQAPKDDWG IDYFDVPDLQQIYINGVIQP EQMEAFARDQ KITKDPEIKV KNGDVVDAGT ELFTYEDEAV TKEIEAQQNSLAKLETKRAN IYNKWNRAID KFNKTKEEDR TMSGDDLNEQ YQTEVDAVDE ETTETNETLADLGAKQYIST KANFKGRVSI PEVKDANSPI LRLTSEDLYL AGKVNEKDLT KISVGQKAKLTSVSNNVVVD GSTSYIDDNP PEGNSDAASG NPEGGTTMSS YSVKIALANL DKVKNGYHMQATIDLCDLGA IELPKKAIQK EGEQAYVLVN DFGTIIRRDV QVGQENGDKM AIESGLESADRVVISSKKPV KVGDIVESDA AIASDESATN ESMTDASKEF101-3 (SEQ ID NO:391)TAAAAATGC ACAACAAGTAGCTGTCAAGC AAGCGCCTAA AGATGACTGG GGAATTGACT ATTTTGACGT TCCCGACTTGCAACAAATTT ATATTAACGG TGTCATCCAA CCGGAACAAA TGGAAGCCTT TGCGCGTCATCAAAAAATAA CAAAGGATCC AGAGATTAAG GTGAAAAACG GCGATGTCGT AGATGCAGGCACAGAATTAT TTACTTATGA AGATGAGGCG GTCACAAAAG AAATTGAGGC ACAACAAAATAGCTTAGCCA AATTAGAAAC GAAGCGGGCG AATATCTATA ATAAGTGCAA TCGGGCCATTGATAAATTTA ATAAAACTAA AGAAGAAGAC CGCACGATGT CTGGTGATGA TTTAAATGAACAATATCAAA CAGAAGTCGA TGCAGTAGAT GAAGAGATTA CCTTCACCAA TGAAACCTTAGCGGATTTAG GAGCGAAGCA ATATATTTCC ACAAAGGCTA ATTTCAAAGG TCGTGTATCAATTCCAGAAG TAAAAGATGC CAATTCACCG ATTTTACGGT TAACTTCAGA AGATCTTTATTTAGCTGGAA AAGTGAATGA AAAGGACTTG ACTAAAATTA GTGTTGGGCA AAAAGCTAAACTAACTTCTG TTTCCAACAA TGTGGTTGTG GATGGCTCAA TTTCTTACAT CGATGATAATCCTCCTGAAG GCAACAGCGA TGCCGCGAGT GGCAATCCAG AGGGCGGCAC AACGATGTCTAGTTATAGCG TCAAAATTGC GTTGGCCAAT TTAGACAAAG TCAAAAATGG CTACCATATGCAAGCAACCA TTGATTTAGG CGATTTAGGG GCGATTGAGT TACCGAAAAA AGCGATTCAAAAAGAGGGTG AACAGGCCTA CGTTTTAGTG AATGATTTTG GAACCATCAT TCGTCGTGATGTCCAAGTCG GGCAAGAAAA TGGCGACAAA ATGGCGATTG AATCTGGCTT AGAATCAGCCGACCCAGTGG TTATTTCTTC AAAAAAACCA GTAAAAGTCG GTGATATTGT TGAATCAGATGCAGCGATTG CTTCTGATGA ATCAGCAACC AACGAATCAA TGACAGATGC GTCGAAATEF101-4 (SEQ ID NO:392)KNAQQVA VKQAPKDDWG IDYFDVPDLQQIYINGVIQP EQMEAFARDQ KITKDPEIKV KNGDVVDAGT ELFTYEDEAV TKEIEAQQNSLAKLETKRAN IYNKWNRAID KFNKTKEEDR TMSGDDLNEQ YQTEVDAVDE EITFTNETLADLGAKQYIST KANFKGRVSI PEVKDANSPI LRLTSEDLYL AGKVNEKDLT KISVGQKAKLTSVSNNVVVD GSISYIDDNP PEGNSDAASG NPEGGTTMSS YSVKIALANL DKVKNGYHMQATIDLGDLGA IELPKKAIQK EGEQAYVLVN DFGTIIRRDV QVGQENGDKM AIESGLESADRVVISSKKPV KVGDIVESDA AIASDESATN ESMTDASKEF102-1 (SEQ ID NO:393)TAAACATTTG AGACATTCAG AGGTGAATGT CTCTTTTTTA TTACTCAAAA ACGAAAGGGGATTAATTATA TGAAAAAAAC AACATTTAAA AATTGGTCGT TATTTGCGAC TTTGGCTCTATTAAGTCAAA CAATTGGCGG AACGATTGGT CCTACGATTG CTTTTGCCGA TGAAATTACTCACCCTCAAG AGCTAACAAT TCATTATGAC GTAAGTAAAC TGTATGAAGT TGACGGAACTTTTAGCGATG GCAGCACGCT CTCAGAACGT ACTACGTCAT TATATGCAGA ATACAATGGTGCAAAACAAA CAGTATTTTG TATTGAACCA CGTGTTAGTA TTCCAACAGA AGTGACGCACGGTTATCAGA AAAACCCTTT GCCATCAATG TCTCATAAAG CGAAACTAGT ATCGGTTCTTTGGGAAAAGG CTGGAACAGA TATTGATACA AATATGGTTG CACAAAAGAT GATTTGGGAAGAAGTGAACG GTTATAAACT CCATTCCATA AAAAGATTAG GTGGTGCTTC AGTTGATATAAAATCTATTG AAGGAAAAAT TAATAAGGCA ATTGAGGAGT ATCAAAAAAA ACCAAGTTTTCATAATACCA CTGTAAAAAC AATTTTAGGT CAATCGACAA CTTTAATAGA TAAAAATGAATTAAATTTAT CTGAGTTTGA TAAAGTCGTC CAAAATACGG CGAATATAGA TTACCGTGTAATTGGGAATC AATTAGTGCT TACTCCAAAC TCTAATTCCA AATCAGGAAC ATTAACATTGAAAAAATCAG CTGOTACTGG AACTCCAGTC GCTTATAAAA AAGCAGGACT TCAAACTGTGATGGCTGGTG CGCTTGATAA GCCCAATACC TACGCTATTA AAATTAATGT GGAAACTAAGGGTTCTTTAA AGATCAAAAA AATCGATAAA GAATCAGCTG ATATTGTACC AGAPACGGTTTTCCATTTAG ATTTTGGGAA AGCTTTACCT TCAAAAGATG TGACAACAGA TAAAGATGGGATTTCTATTT TGGATCGAAT TCCCCATGGT ACAAAGGTAA CTATTACTGA AAAATCGGTGCCAGATCCTT ATATGATTGA TACCACACCC ATGGCTGCCA CCATTAAAGC GGGCGAGACCATTTCCATGA CTTCGAAAAA TATGCGACAA AAAGGTCAAA TTCTTTTAGA GAAGACTGGGGTAGAAACAG GTACTGATCT TTGGAATGAC AATTATTCTC TAGCTGGAAA TACATTTGCCATTCGTAAAG ACAGCCCAGC TGGTCAAATT GTCCAAGAAA TAACAACGGA TGAAAAAGGTCGTGCGGAAA CACCAAAAGA GCTTGCTAAT GCTTTGGAAC TGGGAACCTA TTACGTGACAGAAACTAAAT CTAGTAATGG TTTCGTGAAT ACCTTCAAAC CAACAAAAGT CGAGTTAAAATATGCCAATC AAACCGTGGC TCTTGTTACC AGTAACGTAA AAGGGCAAAA CCAAGAAATTACTGGGGAAA CCACTTTGAC AAAAGAAGAC AAAGATACCG GTAATGAGAG TCAAGGGAAAGCTGAGTTTA AAGGACCTGA ATATACTCTC TTTACTGCAA AAGATGGTCA AGCTGTTAAATGGAGTGAAG CTTTTAAAAC AGAATTAGTG AAGGGAACGA AAGCTTCTGA TGAAACAGTGACTTTGGCTT TAGATGAAAA GAACCAAGTT CCCGTTAAAC ACCTAGCAAT TAACGAGTATTTCTGGCAAG AAACCAAAGC ACCTGAAGGA TATACTTTGG ATGAAACGAA GTATCCTGTATCCATCAAAA AAGTTGATAA TAACGAAAAA AATGCCGTAA TTACTCGAGA TGTTACGGCAAAAGAACAAG TTATTCGCTT TGGCTTTGAT TTCTTTAAAT TTGCTGGATC GGCTGATGGCACTGCCGAAA CTGGATTTAA CGACTTATCT TTTAAAGTGT CGCCATTGGA AGGGACCAANGAAATCACAG GTGCTGAAGA TAAAGCGACC ACAGCTTGTA ACGAGCAATT AGGTTTTGATGGCTATGGTA AGTTTGAAAA TCTTCCTTAT GGGGATTATT TACTTGAAGA AATAGAGGCTCCAGAAGGAT TTCAAAAGAT TACACCACTA GAAATCCGTT CTACATTTAA GGAAAACAAAGACGACTATG CGAAGAGTGA GTATGTCTTT ACCATTACCG AAGAAGCACA AAAACAACCAATTAAGATGG TGACCGTTCC TTACGAGAAA CTAACTAACA ACGAGTTTTC TGTTAGTCTGAACCGTTTGA TGCTTTATGA TTTGCCCGAG AAAGAAGATA GTTTGACTTC TCTTGCGACTTGGAAAGACG GAAATAAAAA ATTGAATACC CTTGATTTTA CCGAGCTAGT TGATAAATTGAGATATAACT TGCATGAAAT CAAAGAAGAC TGGTATGTCG TAGCTCAAGC CATTGATGTGGAAGCCACAA AAGCTGCCCA AGAAAAAGAC GAAAAAGCCA AACCGGTGGT GATTGCCGAAACAACCGCAA CGTTGGCGAA CAAAGAGAAA ACTGGAACTT CGAAAATTCT GCATAAATTAACCGCTGAAC AAGTTTTGGA TAAAAGCATC GTCTTGTTCA ATTATGTGTA TGAAAACAAGGTAGCCTTTG AAGCAGGCAA TGAGCCAGTA GCGAAGGATG CTAGCTTGAA CAATCAAGCACAAACCGTCA ATTGTACGAT TGAACGCCAT GTTTCCATCC AAACAAAAGC CCACCTAGAAGATGGTTCGC AAACTTTTAC TCATGGTGAC GTGATGGATA TGTTTGATGA TGTGTCGGTTACCCATGATG TACTGGATGG CTCAAAAGAA GCTTTCGAAA CAATTCTGTA TGCTTTACTACCAGATGGTA CGAACAAAGA AATTTGGAAA TCTGGCAAAA TTGAGCATGA AGTGAATGATAAAGAATTTA CCAAAACCGT ACTTGCGGAA AAAGTAGATA CCGGAAAGTA TCCAGAAGGAACTAAGTTTA CTTTTACGGA AATCAATTAC GAAAAAGATG GAAACGTGAA TGGAAAACACAATGAAGATT TGAAAGAAAA ATCTCAAACC TTAACACCAA AAGAAGTGCC AACCATACCGAGTACGCCAA AACAACCGGA AACACCAGCT GTTCCAAGTA ATTCTCAAGA ATCTAGTCCCACAGTGAAGA CATTCCCGCA AACTGGGGAG AAAAATTCCA ACGTTCTACT CTTAGTTGGCTTTATCTTGA TTTTTTCCAC TGCTGGGTAT TATTTCTGGA ATCGCCGCAA TTAAEF102-2 (SEQ ID NO:394)MKKTTFKN WSLFATLALL SQTIGGTTGP TIAFADEITHPQEVTIHYDV SKLYEVDGTF SDGSTLSSRT TSLYAEYNGA KQTVFCIEPG VSIPTEVTHGYQKNPLPSMS DKAKLVSVLW EKAGTDIDTN MVAQKMIWEE VNGYKLHSIK RLGGASVDTKSIEGKINKAI EEYQKKPSFH NTTVKTILGQ STTLIDKNEL NLSEFDKVVQ NTANIDYRVIGNQLVLTPNS NSKSGTLTLK KSAGTGTPVA YKKAGLQTVM AGALDKPNTY AIKTNVSTKGSLKTKKIDKE SGDIVPETVF HLDFGKALPS KDVTTDKDGT SILDGIPHGT KVTITEKSVPDPYMIDTTPM AATTKAGETI SMTSKNNRQK CQILLEKTGV ETCTDLWNDN YSLAGNTFAIRKDSPACETV QEITTDEKGR AETPKELANA LELGTYYVTE TKSSNGFVNT FKPTKVELKYANQTVALVTS NVKGQNQEIT GETTLTKEDK DTGNESQGKA EFKGAEYTLF TAKDGQAVKWSEAFKTELVK GTKASDETVT LALDEKNQVA VKHLAINEYF WQETKAPEGY TLDETKYPVSIKKVDNNEKN AVITRDVTAK EQVIRFGFDF FKFAGSADGT AETGFNDLSF KVSPLEGTXEITGAEDKATT ACNEQLGFDG YGKFENLPYG DYLLEEIEAP EGPQKITPLE IRSTFKENKDDYAKSEYVFT ITEEGQKQPI KMVTVPYEKL TNNEFSVSLN RLMLYDLPEK EDSLTSLATWKDGNKKLNTL DFTELVDKLR YNLHETKEDW YVVAQAIDVE ATKAAQEKDE KAKPVVIAETTATLANKEKT GTWKILHKLT AEQVLDKSIV LFNYVYENKV AFEAGNEPVA KDASLNNQAQTVNCTIERHV STQTKAHLED GSQTFTHGDV MDMFDDVSVT HDVLDGSKEA FETILYALLPDGTNKEIWKS GKIEHEVNDK EFTKTVLAEK VDTGKYPEGT KFTFTEINYE KDGNVNGKHNEDLKEKSQTL TPKEVPTIPS TPKQPETPAV PSNSQESSPT VKTFPQTGEK NSNVLLLVGFILIFSTAGYY FWNRRNEF102-3 (SEQ ID NO:395)TT TAGATGAAAA GAACCAAGTT GCCGTTAAAC ACCTAGCAAT TAACGAGTATTTCTGGCAAG AAACCAAAGC ACCTGAACGA TATACTTTGG ATGAAACGAA GTATCCTGTATCCATCAAAA AAGTTGATAA TAACGAAAAA AATGCCGTAA TTACTCGACA TCTTACGGCAAAAGAACAAG TTATTCGCTT TGGCTTTGAT TTCTTTAAAT TTGCTGGATC GGCTGATGGCACTGCCGAAA CTGGATTTAA CGACTTATCT TTTAAAGTGT CGCCATTGGA AGGGACCAANGAAATCACAG GTGCTGAAGA TAAAGCGACC ACAGCTTGTA ACGAGCAATT AGGTTTTCATGGCTATGGTA AGTTTGAAAA TCTTCCTTAT GGGGATTATT TACTTGAACA AATAGAGGCTCCACAAGGAT TTCAAAAGAT TACACCACTA GAAATCCGTT CTACATTTAA GGAAAACAAAGACGACTATG CGAAGACTGA CTATGTCTTT ACCATTACCG AAGAAGGACA AAAACAACCAATTAAGATCG TGACCGTTCC TTACGACAAA CTAACTAACA ACGAGTTTTC TGTTACTCTGAACCGTTTGA TGCTTTATGA TTTGCCCGAC AAAGAAGATA GTTTGACTTC TCTTGCGACTTGGAAAGACG GAAATAAAAA ATTGAATACC CTTGATTTTA CCGAGCTAGT TCATAAATTCAGATATAACT TGCATGAAAT CAAAGAAGAC TGGTATGTCC TAGCTCAAGC CATTGATGTGGAAGCCACAA AAGCTGCCCA AGAAAAACAC GAAAAAGCCA AACCGGTGGT GATTCCCCAAACAACCGCAA CCTTGGCGAA CAAAGAGAAA ACTGGAACTT GGAAAATTCT GCATAAATTAACCGCTGAAC AAGTTTTGGA TAAAAGCATC GTCTTGTTCA ATTATGTGTA TGAAAACAAGCTAGCCTTTC AAGCAGGCAA TGAGCCACTA GCGAACGATG CTAGCTTGAA CAATCAAGCACAAACCGTCA ATTGTACGAT TGAACGCCAT GTTTCCATCC AAACAAAAGC CCACCTACAAGATGGTTCCC AAACTTTTAC TCATGGTGAC GTGATCGATA TGTTTGATGA TGTGTCCCTTACCCATGATG TACTGGATGG CTCAAAACAA GCTTTCGAAA CAATTCTGTA TGCTTTACTACCAGATGGTA CGAACAAAGA AATTTGGAAA TCTCGCAAAA TTGAGCATGA AGTGAATGATAAAGAATTTA CCAAAACCGT ACTTGCGGAA AAACTACATA CCGCAAAGTA TCCAGAAGGAACTAAGTTTA CTTTTACGGA AATCAATTAC GAAAAAGATG GAAACGTGAA TGGAAAACACAATGAAGATT TGAAAGAAAA ATCTCAAACC TTAACACCAA AAGAAGTGCC AACCATACCGAGTACCCCAA AACAACCGGA AACACCAGCT GTTCCAAGTA ATTCTCAAGA ATCTAGTCCCACAGTGAACAEF102-4 (SEQ ID NO:396)LDEKNQVA VKHLAINEYF WQETKAPEGY TLDETKYPVSIKKVDNNEKN AVITRDVTAK EQVIRFGFDF FKFACSADCT AETGFNDLSF KVSPLEGTXEITGAEDKATT ACNEQLGFDC YGKFENLPYG DYLLEETEAP ECFQKITPLE IRSTFKENKDDYAKSEYVFT ITEEGQKQPT KMVTVPYEKL TNNEFSVSLN RLMLYDLPEK EDSLTSLATWKDGNKKLNTL DFTELVDKLR YNLHEIKEDW YVVAQATDVE ATKAAQEKDE KAKPVVIAETTATLANKEKT GTWKILHKLT AEQVLDKSIV LFNYVYENKV AFEAGNEPVA KDASLNNQAQTVNCTIERHV SIQTKAHLED GSQTFTHGDV MDMFDDVSVT HDVLDCSKEA FETILYALLPDGTNKEIWKS GKIEHEVNDK EFTKTVLAEK VDTGKYPEGT KFTFTEINYE KDGNVNGKHNEDLKEKSQTL TPKEVPTIPS TPKQPETPAV PSNSQESSPT VKEF103-1 (SEQ ID NO:397)TAAGATAGGT TTATCAAAGA AAAGGAGCGA TGCTTTATGA AAAAGAAAGT ATTAAGTTCGATTACTTTAG TAACATTAAG TACGTTACTT ATAGCAGGTT ATGCAAGTCC AGCATTTGCAGATCATGCAG CCAATCCAAA TAGTGCTACA GCAAATTTAG GCAAACATCA AAACAATGGCCAAACAAGAG GCGACAAGGC GACTAAGATT TTATCTGGCA CGGACTGGCA AGGAACCCGTGTTTATGATG CTGCTGGTAA TGATTTAACG GCAGAAAATG CTAATTTTAT TGGTTTAGCAAAATATGATG GTGAAACCGG TTTTTACGAG TTTTTCGACA AAAATACTGG GGAAACCCGTGGTGACGAAG GAACATTTTT TGTGACAGGT GATGGCACAA AACGAATTTT AATTTCGCGGACACAAAATT ATCAAGCCGT ACTGGATTTA ACCGAAGTGA GTAAAGACNA ATTTACTTACAAGCGTTTAG GGAAAGATAA ACTGGGGAAT GATGTTGAAG TTTACGTGGA ACACATCCCTTATCATGGGA AAAAATTAGC TTTTACAAAT GGACGTGAAG CATTAACCAA TCAAACTGGCAAAATTGTGA CAAATAAATC AGGGGATAAA ATTTTAGGAA CAACCTTGTG GAATGGCACAAAAGTCGTAG ATAAAAACGG TAATGATGTG ACAGCGGCCA ATCAAAATTT CATTAGTTTAGCGAAATTTG ATCCAAACAC AAGTAAATAT GAATTTTTCA ATTTACAAAC AGGTGAAACCCGCGGCGACT TTGGGTACTT CCAAGTGGTG GACAATAACA AGATTCGGGC CCATGTATCTATTGGTACGA ATCGTTACGG CGCGGCCCTA GAATTAACGG AACTAAACAA TGATCGATTTACGTATACTC GAATGGGTAA AGATAATGCT GGTAATGATA TTCAAGTGTT CGTGGAACATGAACCTTACC AAGGCACATA TCATCCAGCC TTTACTTTCT AAEF103-2 (SEQ ID NO:398)MKKKVLSSI TLVTLSTLLI AGYASPAFAD HAANPNSATA NLGKHQNNGQTRGDKATKIL SGTDWQGTRV YDAAGNDLTA ENANFIGLAK YDGETGFYEF FDKNTGETRGDEGTFFVTGD GTKRILISRT QNYQAVVDLT EVSKDXFTYK RLGKDKLGND VEVYVEHIPYHGKKLAFTNG REALTNQTGK IVTNKSGDKI LGTTLWNGTK VVDKNGNDVT AANQNFISLAKFDPNTSKYE FFNLQTGETR GDFGYFQVVD NNKIRAHVSI GTNRYGAALE LTELNNDRFTYTRMGKDNAG NDIQVFVEHE PYQGTYHPAF TFEF103-3 (SEQ ID NO:399)TCATGCAG CCAATCCAAA TAGTGCTACA GCAAATTTAG GCAAACATCA AAACAATGGCCAAACAAGAG GCGACAAGGC GACTAAGATT TTATCTGGCA CGGACTGGCA AGGAACCCGTGTTTATGATG CTGCTGGTAA TGATTTAACG GCAGAAAATG CTAATTTTAT TGGTTTAGCAAAATATGATG GTGAAACCGG TTTTTACGAG TTTTTCGACA AAAATACTGG GGAAACCCGTGGTGACGAAG GAACATTTTT TGTGACAGGT GATGGCACAA AACGAATTTT AATTTCGCGGACACAAAATT ATCAAGCCGT AGTGGATTTA ACCGAAGTGA GTAAAGACNA ATTTACTTACAAGCGTTTAG GGAAAGATAA ACTGGGGAAT GATGTTGAAG TTTACGTGGA ACACATCCCTTATCATGGGA AAAAATTAGC TTTTACAAAT GGACGTGAAG CATTAACCAA TCAAACTGGCAAAATTGTGA CAAATAAATC AGGGGATAAA ATTTTAGGAA CAACCTTGTG GAATGGCACAAAAGTCGTAG ATAAAAACGG TAATGATGTG ACAGCGGCCA ATCAAAATTT CATTAGTTTAGCGAAATTTG ATCCAAACAC AAGTAAATAT GAATTTTTCA ATTTACAAAC AGGTGAAACCCGCGGCGACT TTGGGTACTT CCAAGTGGTG GACAATAACA AGATTCGGGC CCATGTATCTATTGGTACGA ATCGTTACGG CGCGGCGCTA GAATTAACGG AACTAAACAA TGATCGATTTACGTATACTC GAATGGGTAA AGATAATGCT GGTAATGATA TTCAAGTGTT CGTGGAACATGAACCTTACC AAGGCACATA TCATCCAGCC TEF103-4 (SEQ ID NO:400)HAANPNSATA NLGKHQNNGQTRGDKATKIL SGTDWQGTRV YDAAGNDLTA ENANFIGLAK YDGETGFYEF FDKNTGETRGDEGTFFVTGD GTKRILISRT QNYQAVVDLT EVSKDXFTYK RLGKDKLGND VEVYVEHIPYHGKKLAFTNC REALTNQTGK TVTNKSGDKI LGTTLWNGTK VVDKNGNDVT AANQNFISLAKFDPNTSKYE FFNLQTGETR CDFGYFQVVD NNKIRAHVSI GTNRYCAALE LTELNNDRFTYTRMGKDNAG NDIQVFVEHE PYQGTYHPAEF104-1 (SEQ ID NO:401)TGAAAGGGGA TTAGTATGAA GAAAAAAACT TTTTCTTTTG TGATGTTGAG TATACTTCTCGCACAAAATT TCGGGTTTGC CGTAAATGCC TATGCTGTAA CAACGACAGA AGCACAAACAGAGACCACTG ATACAGCAAA AAAAGAGGCA GAGTTATCGA ACTCAACACC ATCTTTACCTTTAGCAACAA CGACTACTTC AGAAATGAAT CAACCAACTG CAACAACTGA ATCGCAAACCACAGAGGCGA GCACAACAGC TTCCAGTGAT GCTGCTACAC CATCTGAACA ACAAACAACGGAGGACAAGG ACACCTCACT TAATGAAAAA GCCCTGCCAG ATGTTCAAGC GCCAATTACAGATGAACTAC TTGACAGTAT GAGTCTTGCG CCGATTGGTG GAACAGAATA CAGCCAAACAGAGGTTCACC GCGAATTAAA TACAACACCG GTAACCGCTA CGTTCCAATT TGCTGTTGGAAACACAGGTT ATGCACCTGG ATCAGTTTAT ACAGTTCAAT TACCAGAACA TTTAGGTTATTCAACTGTCA GCGGAGAAGT GACAGGCATT GGCGCAACTT GGGCAGTCGA TGCGGCGACCAAAACATTAA GTATTACGTT TAATCAACGA GTTTCAGATA CTTCCTTTAA AGTAGAACTAAAAAGTTATC TAACAACAGA GGCGGAACCA TTAATCAAAA TTGAAACTCC AGGAAAAAATAAAAAAACCT ACTCGTTTGA TTTATATGAA CAAGTGGAAC CAATTCAATA TAACGAACGAACCAGAACGA CGGGGTTAGA TGGCGAAATT TTTTATAATT TAGACCGGAC GTTAACTGGCAATCAAACAT TAGAATTATT AACAACAGAG ACGCCAGGCG CTGTCTTTGG AAAACAAGATAACTTGGAAC CTCAAGTTTT CAGTTACGAT GTCGACATTA ATGGTCAAAT TTTACCAGAAACGCAAACCT TGTTAACACC TGGCAAAGAT TATACATTAA GCGATAATTC ACTCGGGCGGATTGCTGTAA CTGTTCCAAA CATCAATCAA CAAAAAGCCT ATTCCTTATC GATTAATCGGACAATTTATT TAGAGAGTGC TTCGGACTAT AACTACTTAT ATTCGCAGCA GTATCCAACAACAAAAATTG GCTCAATTTC TTTGAAAAGT ACGACAGGAA CTAAACAAAC AACCGATTTTACTGCTAAGA CGAGTCAAAC AAGTAAAGTA ATTGCTGATC GTGAAATGCG TAGTATGTCCTATATCAGTT TTCAAAGCAA AGGGAAATAT TATGTAACAA TTTATGGCAC GTTAACAGAAACAAAAGTGG GTCAACAAAT COTATTAGAG AGTACAAACG GTCAAGAAAT TAAGAATCCTAAATTTACGG CGTATGGTCC TTTATATGAA AATGTAAAAT TGGAAGACTA TTTTGATATTAAAACTGAAG GTGGCAAGCT CACTTTAACG GCCACAAAAG ATAGCTATTT AAGAATAAATATTTCTGATT TAACAATGGA TTTTGACAAG AAGGACATTA ATCTATCATT AAGTACACCTGTAATTGGTC CTAATAAAGC CATTCAATTA GTATCCGATC AATATATTGA ACCAATTAGTGTTGTTAATC CTTTGAATGC TGAAACTGCT TGGGGTAATT ATGATCAAAA TGGTGCCTATTCATCAAGAA CAACTGTCTC AGTTATGGGA AGCAAAGAGA AACCGATTCA AAATTTAGAAATTAAAGTAA AGCATCCTAA TTATCTTTCA TTACGAGCTA CAAAAGAAAT TTATTTTTATTACAAGTTAG GAACGGATTA TACAGTAACG CCAACGTCAG ATGGTTCAGT TATTAAGTTCACTACGCCAA TAACCAACGA AATCCAAATT CCAATTGGTT TTAATTATGT GCCAGATAGTTTGCCAAAAG ATAAAAGTAT CCCAGTCGAT ACGATACCGA TAACAATGAG TGCTGAAGGTTTAACTCCAG TTGATACGAC AGTAACTACT AATAGTAAGC GTGGTTCTGA ACGAACACTTCAAAGTAGTA AAAATCAATT CCTTGTCAAT GCACGAAATG ATTCTTTTGA CTCACTAAGCGTCCGTACAA AAATTCCAGC TGGCGCCGAT GTTCTTTTTG ACATTTATGA TGTTTCAAACGATCAGGTAG ATTCAATTTA TCCACAATAC TGGGACCGCG GTCAATACTT TGATAAACCAATGACGCCAA ACAGCCCTGG ATATCCAACG ATTACTTTTG ACGAAAATAC CAATAGTTACACGTTTGATT TTGGAAAAAC CAACAAACGT TACATTATTG AGTATAAAAA CGCCAATGGCTGGATCGACG TGCCAACTCT TTATATAACA GGGACAGCGA AAGAACCACA ATCGAATAATAATGAAGGCT CTGCTTCGGT TTCTGTTCAA AATGAAGCGT TAGACATTTT GAGTGCAACACAAGCGGCGA ATCCAACATT AAAAAATGTA ACAAAAACGA CAGTAACAAC AAAAAATATTGATAATAAAA CACATCGTGT GAAAAATCCA ACGATTGAAT TAACACCAAA AGGCACAACCAATGCTCAAA TCGATTTGAA TTCTATTACC GTGAAAGGCG TGCCAGAAGA TGCTTATTCATTAGAGAAGA CTACAAACGG TGCGAAAGTC ATTTTTAAAG ACTATACATT GACAGAAAACATTACGATTG AATACAATAC GGTCTCTGCA AACGCTGGCC AAATCTATAC AGAAACAACAATCGACTCTG AAACATTGAA CCAGATGTCT GCTAGCAAGA AAAAAGTCAC CACTGCGCCAATCACATTGA AATTCTCAGA AGGTGATGCG GAAGGTATTG TTTATTTAGC AACTGCCACATTCTACACGC ATAACGTAGA GGATGAAAAC CAAGCAATTG CGAAGGTTTC TTTTCAACTAATTCATAATG TCACCCATAC AGCAACCGAA TTTACAACAG ATGAAAAAGG TCAATACTCCTTTGATGCCA TCATGACAGG TOATTATACT TTGCGAGTAA CGAATGTACC GCAGGAATATTCCGTGGATG AAGAGTATTT GACAGGAAAA GCCATTAAGC TGGTCAAACG ACACAACCAACTAAAAATTC CATTAACGAA AACAATTGAT CACAGTCCTT TACAAGTCAA AGATTCAACGATTTATGTCG GCGATTCATG GAAACCAGAA CAGAACTTTG TTTCAGCAAC AGATAAAACAGGTCAAGACG TTCCCTTCGA AAAAATCACT GTTTCAGGTC AAGTTGATAA CANCAAAGCAGCCGTTTATC CAATTATTTA CAGTGACGAA GGTAAAGAAG AAACAGCCTA TGTGACCGTCAAACCCCACC AATCTAAGTT AGAGGTCAAA GATACAACGA TTTATGTTGG TGATTCGTGGAAACCAGAAG ATAATTTCGT TTCAGCCACA GACAAAACAG GTCAACACGT NCCGTTTGAAAAAATTGATG TTCAGCGAAC AGTCAATGTT CATAAAATAC GCCATTATGA AATTGTCTATAAAAATGGCA NAAAAGAAGC GAAAGCAATC GTTCATGTCC GTGATGACAG TCAGTTAGAGGTTAAAGATA CAACGATTTA TGTTGGTGAT TCCTGGAAAC CAGAAGATAA TTTCGTTTCAGCAACAGACA AAACAGGCCA AGACGTTCCG TTTGAAAAAA TCACTGTTTC AGGTCAAGTTGATACTAGCA AAGCAGGCGT TTATCCAATC GTTTACAGTT ACGAAGGTAA AGAAGAAACAGCTAATGTCA CTCTCAAACC CGACCAATCT AAGTTAGAGG TTAAAGATAC AACGATTTATGTGGGCGATA AATCGGAACC AGAAGATAAT TTCGTTTCAG CAACAGACAA AACAGGTCAAGATGTCCCGT TTGAAAAAAT TGACGTTCAG GGAACAGTGA ATCTTGATAA AATAGGCGATTATGAAATTG TCTATAAAAA TGGCACAAAA GAAGCGAAAG CAATCGTTCA TGTCCGTGATCACAGTCAGT TACAGGTCAA AGATACAACA ATTTATGTGG GTGATAAATG GCAAGCACAAGATAACTTCG TTTCCGCGAC AGACAAAACA GGTCAAGACG TTCCGTTTGA AAAAATTGATGTTCAGGGAA CAGTGAATGT TGATAAAATA GGCGATTATC AAATTGTCTA TAAAAATGGCACAAAAGAAG CGAAAGCAAT CGTTCATGTC CGTGATCATA GTCGTTTACA AGTCAAGGATACAACGATTT ATGTCGGCGA TTCNTGGANA CCAGAAGNGA ACTTTGTTTC AGCNACAGATAAAACAGGTC AAGATCTCCC ATTCGAAAAA ATCACTGTTEF104-2 (SEQ ID NO:402)MKKKTF SFVMLSILLA QNFCFAVNAY AVTTTEAQTE TTDTAKKEAE LSNSTPSLPLATTTTSEMNQ PTATTESQTT EASTTASSDA ATPSEQQTTE DKDTSLNEKA LPDVQAPITDELLDSMSLAP IGGTEYSQTE VHRELNTTPV TATFQFAVGN TGYAFGSVYT VQLPEHLGYSTVSGEVTGIG ATWAVDAATK TLSITFNQRV SDTSFKVELK SYLTTEAEPL IKIETPGKNKKTYSFDLYEQ VEPIQYNERT RTTGLDCETF YNLDRTLTGN QTLELLTTET PGAVFGKQDNLEPQVFSYDV DINOQILPET QTLLTPGKDY TLSDNSLGRI AVTVPNNNQQ KAYSLSINRTIYLESASDYN YLYSQQYPTT KIGSISLKST TGTKQTTDFT AKTSQTSKVI ADREHRSMSYISFQSKGKYY VTIYGTLTET KVGQQIVLES TNCQEIKNPK FTAYGPLYEN VKLEDYFDIKTEGGKLTLTA TKDSYLRINI SDLTMDFDKK DINLSLSTPV IGPNKAIQLV SDQYIEPISVVNPLNAETAW GNYDQNGAYS SRTTVSVMGS KEKPIQNLEI KVKHPNYLSL RATKEIYFYYKLGTDYTVTP TSDCSVTKFT TPITNEIQIP ICFNYVPDSL PKDKSIPVDT IPITMSAEGLTPVDTTVTTN SKRGSERTLQ SSKNQFLVNA ENDSFDSLSV RTKIPAGADV LFDIYDVSNDQVDSIYPQYW DRGQYFDKPM TPNSPGYPTI TFDENTNSYT FDFGKTNKRY IIEYKNANCWIDVPTLYITG TAKEPQSNNN EGSASVSVQN EALDTLSATQ AANPTLKNVT KTTVTTKNIDNKTHRVKNPT IELTPKGTTN AQIDLNSITV KGVPEDAYSL EKTTNGAKVI FKDYTLTENITTEYNTVSAN AGQIYTETTI DSETLNQMSA SKKKVTTAPI TLKFSEGDAE CIVYLATATEYTHNVEDENQ AIAKVSFELI DNVTHTATEF TTDEKGQYSF DAIMTGDYTL RVTNVPQEYSVDEEYLTGKA TKLVKCDNQL KTPLTKTIDH SRLQVKDSTI YVGDSWKPEE NFVSATDKTCQDVPFEKTTV SGQVDNXKAG VYPIIYSDEG KEETAYVTVK PDQSKLEVKD TTIYVGDSWKPEDNFVSATD KTGQDVPFEK IDVQGrJNVD KIGDYEIVYK NGXKEAKAIV HVRDDSQLEVKDTTTYVGDS WKPEDNFVSA TDKTGQDVPF EKITVSCQVD TSKAGVYPIV YSYEGKEETANVTVKPDQSK LEVKDTTIYV GDKWEPEDNF VSATDKTGQD VPFEKIDVQG TVNVDKIGDYEIVYKNCTKE AKATVHVRDD SQLEVKDTTI YVGDKWEAED NFVSATDKTG QDVPFEKTDVQGTVNVDKIG DYEIVYKNGT KEAKAIVHVR DDSRLQVKDT TIYVGDSWXP EXNFVSATDKTGQDVPFEKI TVEF104-3 (SEQ ID NO:403)TGTAA CAACGACAGA AGCACAAACAGAGACCACTG ATACAGCAAA AAAAGAGGCA GAGTTATCGA ACTCAACACC ATCTTTACCTTTAGCAACAA CGACTACTTC AGAAATGAAT CAACCAACTG CAACAACTGA ATCGCAAACCACAGAGGCGA GCACAACAGC TTCCAGTGAT GCTGCTACAC CATCTGAACA ACAAACAACGGAGGACAAGG ACACCTCACT TAATGAAAAA GCCCTGCCAG ATGTTCAAGC GCCAATTACAGATCAACTAC TTGACAGTAT GAGTCTTGCG CCGATTGGTG GAACAGAATA CAGCCAAACAGAGGTTCACC GCGAATTAAA TACAACACCG GTAACCGCTA CGTTCCAATT TCCTGTTGGAAACACAGGTT ATCCACCTGG ATCAGTTTAT ACAGTTCAAT TACCAGAACA TTTAGGTTATTCAACTGTCA GCGGAGAAGT CACAGGCATT GGCGCAACTT GGGCAGTCGA TGCGGCGACCAAAACATTAA GTATTACGTT TAATCAACGA GTTTCAGATA CTTCCTTTAA AGTAGAACTAAAAAGTTATC TAACAACAGA GGCGGAACCA TTAATCAAAA TTGAAACTCC AGGAAAAAATAAAAAAACCT ACTCGTTTGA TTTATATGAA CAAGTGGAAC CAATTCAATA TAACGAACGAACCAGAACGA CGGGGTTAGA TGGCGAAATT TTTTATAATT TAGACCGGAC GTTAACTGGCAATCAAACAT TAGAATTATT AACAACAGAG ACGCCAGGCG CTGTCTTTGG AAAACAAGATAACTTGCAAC CTCAAGTTTT CAGTTACGAT GTCGACATTA ATGGTCAAAT TTTACCAGAAACGCAAACCT TCTTAACACC TGGCAAAGAT TATACATTAA GCGATAATTC ACTCGGGCGGATTGCTGTAA CTGTTCCAAA CATGAATCAA CAAAAAGCCT ATTCCTTATC GATTAATCGGACAATTTATT TAGAGAGTGC TTCGGACTAT AACTACTTAT ATTCGCAGCA GTATCCAACAACAAAAATTG GGTCAATTTC TTTCAAAAGT ACGACAGGAA CTAAACAAAC AACCGATTTTACTCCTAACA CGACTCAAAC AAGTAAAGTA ATTGCTGATC GTGAAATGCG TAGTATGTCCTATATCAGTT TTCAAAGCAA AGGGAAATAT TATGTAACAA TTTATGGCAC GTTAACAGAAACAAAAGTGG GTCAACAAAT CGTATTAGAG AGTACAAACG GTCAAGAAAT TAAGAATCCTAAATTTACGG CGTATGGTCC TTTATATGAA AATGTAAAAT TGGAAGACTA TTTTGATATTAAAACTGAAG GTGGCAAGCT CACTTTAACG GCCACAAAAG ATAGCTATTT AAGAATAAATATTTCTGATT TAACAATGGA TTTTGACAAG AAGGACATTA ATCTATCATT AAGTACACCTGTAATTGGTC CTAATAAACC CATTCAATTA GTATCCGATC AATATATTGA ACCAATTAGTGTTGTTAATC CTTTGAATGC TGAAACTGCT TGGGGTAATT ATGATCAAAA TGGTGCCTATTCATCAAGAA CAACTGTCTC AGTTATGGGA AGCAAAGAGA AACCGATTCA AAATTTAGAAATTAAAGTAA ACCATCCTAA TTATCTTTCA TTACGAGCTA CAAAACAAAT TTATTTTTATTACAAGTTAG GAACGGATTA TACAGTAACG CCAACGTCAG ATGGTTCACT TATTAAGTTCACTACGCCAA TAACCAACGA AATCCAAATT CCAATTGGTT TTAATTATGT GCCAGATAGTTTGCCAA4AG ATAAAAGTAT CCCAGTCGAT ACGATACCGA TAACAATGAG TGCTGAAGGTTTAACTCCAG TTGATACGAC AGTAACTACT AATAGTAAGC GTGGTTCTGA ACGAACACTTCAAAGTAGTA AAAATCAATT CCTTGTCAAT GCACGAAATG ATTCTTTTGA CTCACTAAGCGTCCGTACAA AAATTCCAGC TCGCGCCGAT GTTCTTTTTG ACATTTATGA TGTTTCAAACGATCAGGTAG ATTCAATTTA TCCACAATAC TCGGACCGCG GTCAATACTT TGATAAACCAATGACGCCAA ACAGCCCTGG ATATCCAACG ATTACTTTTG ACGAAAATAC CAATAGTTACACGTTTGATT TTGGAAAAAC CAACAAACGT TACATTATTG AGTATAAAAA CGCCAATGGCTGGATCGACG TGCCAACTCT TTATATAACA GGGACAGCGA AAGAACCACA ATCGAATAATAATGAAGGCT CTGCTTCGGT TTCTGTTCAA AATGAAGCCT TAGACATTTT GAGTGCAACACAACCGGCGA ATCCAACATT AAAAAATGTA ACAAAAACGA CAGTAACAAC AAAAAATATTGATAATAAAA CACATCGTGT GAAAAATCCA ACGATTGAAT TAACACCAAA AGGCACAACCAATCCTCAAA TCGATTTGAA TTCTATTACC CTGAAAGGCG TCCCAGAACA TGCTTATTCATTAGAGAAGA CTACAAACGG TGCGAAAGTC ATTTTTAAAG ACTATACATT GACAGAAAACATTACGATTG AATACAATAC GGTCTCTGCA AACGCTGGCC AAATCTATAC ACAAACAACAATCGACTCTG AAACATTGAA CCAGATGTCT GCTAGCAAGA AAAAAGTCAC CACTGCGCCAATCACATTGA AATTCTCAGA AGGTGATGCG GAAGGTATTG TTTATTTAGC AACTGCCACATTCTACACGC ATAACGTAGA GGATGAAAAC CAACCAATTG CGAAGGTTTC TTTTGAACTAATTGATAATG TCACGCATAC AGCAACCGAA TTTACAACAC ATGAAAAAGG TCAATACTCCTTTGATGCCA TCATCACACG TGATTATACT TTGCGAGTAA CGAATGTACC CCAGGAATATTCCGTGGATG AAGAGTATTT CACAGGAAAA GCCATTAAGC TGGTCAAAGG AGACAACCAACTAAAAATTC CATTAACCAA AACAATTGAT CACAGTCGTT TACAAGTCAA AGATTCAACGATTTATGTCG GCGATTCATG GAAACCAGAA GAGAACTTTG TTTCAGCAAC AGATAAAACAGGTCAAGACG TTCCCTTCGA AAAAATCACT GTTTCAGGTC AAGTTGATAA CANCAAAGCACGCGTTTATC CAATTATTTA CAGTGACCAA GGTAAAGAAG AAACAGCCTA TGTGACCGTCAAACCCGACC AATCTAAGTT AGAGGTCAAI GATACAACGA TTTATGTTGG TGATTCGTGGAAACCAGAAG ATAATTTCGT TTCAGCGACA GACAAAACAG GTCAAGACGT NCCGTTTGAAAAAATTGATG TTCAGGGAAC AGTGAATGTT GATAAAATAG GCGATTATGA AATTGTCTATAAAAATGGCA NAAAAGAAGC GAAAGCAATC GTTCATGTCC GTGATGACAG TCAGTTAGAGGTTAAAGATA CAACGATTTA TGTTGGTGAT TCGTGGAAAC CAGAAGATAA TTTCGTTTCAGCAACAGACA AAACAGGCCA AGACGTTCCG TTTGAAAAAA TCACTGTTTC AGGTCAAGTTGATACTAGCA AAGCAGCCGT TTATCCAATC GTTTACAGTT ACGAAGGTAA AGAAGAAACAGCTAATGTGA CTGTCAAACC CGACCAATCT AAGTTAGAGG TTAAAGATAC AACGATTTATGTGGCCGATA AATGGGAACC AGAAGATAAT TTCGTTTCAG CAACAGACAA AACAGGTCAAGATGTCCCGT TTGAAAAAAT TGACGTTCAG GCAACAGTGA ATGTTGATAA AATAGGCGATTATGAAATTG TCTATAAAAA TGGCACAAAA GAAGCGAAAG CAATCGTTCA TGTCCGTGATGACAGTCAGT TAGAGGTCAA AGATACAACA ATTTATGTCG GTGATAAATG GGAAGCAGAAGATAACTTCG TTTCCCCGAC AGACAAAACA GGTCAAGACG TTCCGTTTGA AAAAATTGATGTTCAGGGAA CAGTGAATGT TGATAAAATA GGCGATTATG AAATTGTCTA TAAAAATGGCACAAAAGAAG CGAAAGCAAT CGTTCATGTC CGTGATGATA GTCGTTTACA AGTCAAGGATACAACGATTT ATGTCGGCGA TTCNTGGANA CCAGAAGNGA ACTTTGTTTC AGCNACACATAAAACAGGTC AAGATGTCCC ATTGEF104-4 (SEQ ID NO:404)VTTTEAQTE TTDTAKKEAE LSNSTPSLPLATTTTSEMNQ PTATTESQTT EASTTASSDA ATPSEQQTTE DKDTSLNEKA LPDVQAPITDELLDSMSLAP IGGTEYSQTE VHRELNTTPV TATFQFAVGN TGYAPGSVYT VQLPEHLGYSTVSGEVTGIG ATWAVPAATK TLSITFNQRV SDTSFKVELK SYLTTEAEPL IKIETPGKNKKTYSFDLYEQ VEPIQYNERT RTTGLDGEIF YNLDRTLTGN QTLELLTTET PGAVFGKQDNLEPQVFSYDV DINGQILPET QTLLTPGKDY TLSDNSLGRI AVTVPNNNQQ KAYSLSINRTIYLESASDYN YLYSQQYPTT KIGSISLKST TGTKQTTDFT AKTSQTSKVI ADREMRSMSYISFQSKGKYY VTIYGTLTET KVGQQIVLES TNGQEIKNPK FTAYGPLYEN VKLEDYFDIKTEGGKLTLTA TKDSYLRINI SDLTMDFDKK DINLSLSTPV IGPNKAIQLV SDQYIEPTSVVNPLNAETAW GNYDQNGAYS SRTTVSVMGS KEKPIQNLEI KVKHPNYLSL RATKEIYFYYKLCTDYTVTP TSDGSVIKFT TPITNEIQIP IGFNYVPDSL PKDKSIPVDT IPTTMSAEGLTPVDTTVTTN SKRGSERTLQ SSKNQFLVNA RNDSFDSLSV RTKIPAGADV LFDIYDVSNDQVDSIYPQYW DRGQYFDKPM TPNSPGYPTI TFDENTNSYT FDFGKTNKRY IIEYKNANGWIDVPTLYITG TAKEPQSNNN EGSASVSVQN EALDILSATQ AANPTLKNVT KTTVTTKNIDNKTHRVKNPT IELTPKGTTN AQIDLNSITV KGVPEDAYSL EKTTNGAKVI FKDYTLTENITIEYNTVSAN AGQIYTETTI DSETLNQMSA SKKKVTTAPI TLKFSEGDAE GIVYLATATFYTHNVEDENQ AIAKVSFELI DNVTHTATEF TTDEKGQYSF DAIMTGDYTL RVTNVPQEYSVDEEYLTGKA IKLVKGDNQL KIPLTKTIDH SRLQVKDSTI YVGDSWKPEE NFVSATDKTGQDVPFEKITV SGQVDNXKAG VYPIIYSDEG KEETAYVTVK PDQSKLEVKD TTIYVGDSWKPEDNFVSATD KTGQDVPFEK IDVQGTVNVD KIGDYEIVYK NGXKEAKAIV HVRDDSQLEVKDTTIYVGDS WKPEDNFVSA TDKTCQDVPF EKITVSCQVD TSKAGVYPIV YSYEGKEETANVTVKPDQSK LEVKDTTIYV GDKWEPEDNF VSATDKTGQD VPFEKIDVQG TVNVDKIGDYEIVYKNGTKE AKAIVHVRDD SQLEVKDTTI YVGDKWEAED NFVSATDKTG QDVPFEKIDVQGTVNVDKIG DYEIVYKNGT KEAKAIVHVR DDSRLQVKDT TIYVGDSWXP EXNFVSATDKTGQDVPFEF105-1 (SEQ ID NO:405)TAAATGAAAA AAACAGTCGT CTACTCCTTG TTATTCGGAA CAATGTTGCT TGGCGCCACTGTTCCTGCTG AAGCGGCGAC GGTCGTTTTT GATAGCGAAC AGTCGATTGT TTTTACCCCAAGCACAGATG GGACGGATCC AGTAAATCCA GAAAATCCCG ATCCAGAAAA ACCAGTTCGACCAGTCGATC CAACGAATCC TGATGGACCT AATCCAGGTA CCCCTGGTCC ACTTTCCATCGATTATGCCT CAAGTTTGGA TTTTGGGAGT AATGAGATAT CCAATAAGGA TCAAACGTATTTTGCCAGAG CGCAAACCTA TAGAAATCCA GATGGTTCAG CAAGTGAATT GGCAACTGCTAATTATGTAC AAGTAAGTGA TTTACGGGGA ACCAATGCTG GCTGGGTTTT AAAAGTGAAACAAAATGGTC AATTTCGTAA TGCAGAAACA TTACACAAAG AATTAACAGG CGCCACCGTCGCCTTTACTG AGCCCAGTGT TCGCTCAAAT GCGACGCACG TATTGCCGCC AACTGCTACCGCAAACATTC AATTAGATGC TGCGGGCGCA CAAACTGTTG TCATGCAAGC CCCAGAAAAGACCGCCGCCG GAACGTGGAT CACGCTGTGG GGGCAAGCAG AAAAAGTGAC CGAAAAAAATCAACAAGCAC AGCAAGTAAA TGCCACAATC ACACGGGCAA TCTCACTAAC TGTTCCTGGGAAAACCCCTA AGGATGCAGT ACAATATAAA ACAACATTGA CTTGGCTACT TTCAGATGTACCAGTAAATA ATGGAGGGAA ATAAEF105-2 (SEQ ID NO:406)MKKTVVYSLL FGTMLLGATV PAEAATVVFD SEQSIVFTPS TDGTDPVNPE NPDPEKPVRPVDPTNPDGPN PGTPGPLSID YASSLDFGSN EISNKDQTYF ARAQTYENPD GSASELATANYVQVSDLRGT NAGWVLKVKQ NCQFRNAETL HKELTGATVA FTEPSVRSNA TDVLPPTATANIQLDAACAE TVVMQAPEKT GAGTWITLWG QAEKVTEKNQ QGQQVNATIT RAISLTVPCKTPKDAVQYKT TLTWLLSDVP VNNGGKEF105-3 (SEQ ID NO:407)GGCGAC GGTCGTTTTT GATAGCGAAC AGTCGATTGT TTTTACCCCAAGCACAGATG GGACGGATCC AGTAAATCCA GAAAATCCCG ATCCAGAAAA ACCAGTTCGACCAGTCGATC CAACGAATCC TGATGGACCT AATCCAGGTA CCCCTGGTCC ACTTTCCATCGATTATGCCT CAAGTTTGGA TTTTGGGACT AATGAGATAT CGAATAAGGA TCAAACGTATTTTGCCAGAG CGCAAACCTA TAGAAATCCA GATGGTTCAG CAAGTGAATT GGCAACTGCTAATTATGTAC AAGTAAGTGA TTTACGGCGA ACCAATGCTG GCTGGGTTTT AAAAGTGAAACAAAATGGTC AATTTCGTAA TGCAGAAACA TTACACAAAG AATTAACAGG CGCCACCGTCGCCTTTACTG AGCCCAGTGT TCGCTCAAAT GCCACGGACG TATTGCCGCC AACTGCTACCGCAAACATTC AATTAGATGC TGCGGGCGCA GAAACTGTTG TCATGCAACC CCCAGAAAAGACCGGCGCCG GAACCTGGAT CACGCTGTGG GGGCAAGCAG AAAAAGTGAC CGAAAAAAATCAACAAGGAC AGCAAGTAAA TGCCACAATC ACACGGGCAA TCTCACTAAC TGTTCCTGGGAAAACCCCTA AGGATGCAGT ACEF105-4 (SEQ ID NO:408)ATVVFD SEQSIVFTPS TDGTDPVNPE NPDPEKPVRPVDPTNPDGPN PGTPGPLSID YASSLDFGSN EISNKDQTYF ARAQTYRNPD GSASELATANYVQVSDLRGT NAGWVLKVKQ NGQFRNAETL HKELTGATVA FTEPSVRSNA TDVLPPTATANIQLDAAGAE TVVMQAPEKT GAGTWITLWG QAEKVTEKNQ QGQQVNATIT PAISLTVPGKTPKDAVEF106-1 (SEQ ID NO:409)TAGTCGTTTA TGAAGAAAAA AATCGTTGGT ACAATTACGT TGTTGGCTTT AAGTGCGTTATTAGTTGGTG GAGCACGAGG CGCTTTGACG CCAGAAGCAT ACGTTCCTCA AAGCGTAGACAATCCCAATA ATTTAGGGGA TTTACCTGAG TATTTACGTT CAGTTGGTAT TAGACAAGATGAACCATTAT CAGAAAAAGA TTGGGCTGGA ACACGCGTTT ATGATCGAAA TGGGAATGACTTAACAGATG AAAATCAAAA CCTATTACAT GCAATCAAAT TTGATGCAAC CACTAGTTTCTATCAATTTT TTGATAAAGA GACTGGAGAA TCAACAGGAG ATGAACGAAC CTTCTTTATGACCGCTCGTA TTACAGATGT TTCCCGTCTT GTAATTATTT CTGAAACCAA AAATTATCAACGTGTATACC CACTTAGAAC TTTATACCAA GATACTTTTA CGTATAGACA GATGGGGAAAGATAAAAACG GAAATGATAT TGAAGTTTTC GTAGAAAACA AAGCAACCTC AGGACCAGTTTATGGTCGTC CGCAGCCATA CCCCAATAAT CGTCCCAGAA CACTAGAATT CACGAATGGACGCCGTGCCA TGACAGAACA AACAGGCCAG ATTGATCTAA ATCGACAAGG CGATGAAATTATTGGTAAAA CTTCCTTTGA TGGGACACCG CAACTTCTTT GGAATGGCAC AAAAGTAGTGGATAAAGATG GCAATGACGT AACTTCGGCC AACCAAAACT TTATCAGCTT AGCGAAATTTGACCAAGATA GCAGCAAATA TGAATTTTTC AATTTACAAA CTGGTGAAAC TCGTGGCGACTATGGCTACT TTAAACTAGG AAATCAAAAT AAATTCCGTG CCCATGTTTC CATTGGAACCAATCGCTATG GCGCTGTCTT AGAGTTAACA GAATTGAATG ATAATCGTTT TACGTACACACGAATGGGTA AAGATAACGA AGGAAACCAT ATCCAAGTCT ATGTGGAACA TCAACCATACCAAGGAACTT TTAATCCTGA ATTTACCTTT TAAEF106-2 (SEQ ID NO:410)MKKKIVGT ITLLALSALL VGGAGGALTA EAYVPQSVDN PNNLGDLPEY LRSVGIRQDEGLSEKDWAGT RVYDRNGNDL TDENQNLLHA IKFDATTSFY EFFDKETGES TGDEGTFFMTAGITDVSRLV IISETKNYQG VYPLRTLYQD TFTYRQMCKD KNGNDIEVFV ENKATSGPVYGRPQPYPNNR PRTLEFTNGR RAMTEQTGQI DVNRQGDETI GKTSFDGTPQ LLWNGTKVVDKDCNDVTSAN QNFISLAKFD QDSSKYEFFN LQTGETRGDY GYFKVGNQNK FRAHVSIGTNRYGAVLELTE LNDNRFTYTR MGKDNEGNDI QVYVEHEPYQ GTFNPEFTFEF106-3 (SEQ ID NO:411)AT ACGTTCCTCA AAGCGTAGACAATCCCAATA ATTTAGGGGA TTTACCTGAG TATTTACGTT CAGTTGGTAT TAGACAAGATGAAGGATTAT CAGAAAAAGA TTGGGCTGGA ACACGCGTTT ATGATCGAAA TGGGAATGACTTAACAGATG AAAATCAAAA CCTATTACAT GCAATCAAAT TTGATGCAAC CACTAGTTTCTATGAATTTT TTGATAAAGA GACTGGAGAA TCAACAGGAG ATGAAGGAAC CTTCTTTATGACCGCTGGTA TTACAGATGT TTCCCGTCTT GTAATTATTT CTGAAACCAA AAATTATCAAGGTGTATACC CACTTACAAC TTTATACCAA GATACTTTTA CGTATAGACA GATGGGGAAAGATAAAAACG GAAATGATAT TGAAGTTTTC GTAGAAAACA AAGCAACCTC AGGACCAGTTTATGGTCGTC CGCAGCCATA CCCCAATAAT CGTCCCAGAA CACTAGAATT CACGAATGGACGCCGTGCCA TGACAGAACA AACAGGCCAG ATTGATGTAA ATCGACAAGG GGATGAAATTATTGGTAAAA CTTCCTTTGA TGGGACACCG CAACTTCTTT CGAATGGCAC AAAAGTAGTGGATAAAGATG GCAATGACGT AACTTCGGCC AACCAAAACT TTATCAGCTT AGCGAAATTTGACCAAGATA GCAGCAAATA TGAATTTTTC AATTTACAAA CTGGTGAAAC TCGTCGCGACTATGGCTACT TTAAAGTAGG AAATCAAAAT AAATTCCGTG CCCATGTTTC CATTGGAACCAATCGCTATG GCGCTGTCTT AGAGTTAACA GAATTGAATG ATAATCGTTT TACGTACACACGAATGGGTA AAGATAACGA AGGAAACGAT ATCCAAGTCT ATGTGGAACA TGAACCATACCAAGGAACTTEF106-4 (SEQ ID NO:412)YVPQSVDN PNNLGDLPEY LRSVGIRQDEGLSEKDWAGT RVYDRNGNDL TDENQNLLHA IKFDATTSFY EFFDKETGES TGDEGTFFMTAGITDVSRLV IISETKNYQG VYPLRTLYQD TFTYRQMGKD KNGNDIEVFV ENKATSGPVYGRPQPYPNNR PRTLEFTNGR RAMTEQTGQI DVNRQGDEII GKTSFDGTPQ LLWNGTKVVDKDGNDVTSAN QNFISLAKFD QDSSKYEFFN LQTGETRGDY GYFKVGNQNK FRAHVSIGTNRYGAVLELTE LNDNRFTYTR MGKDNECNDI QVYVEHEPYQ GTEF107-1 (SEQ ID NO:413)TAAAAAACGG CACTCAATAT GTCAAAATTT GAAATTTCAA GCTGTGTGTT CTTTGGTAAAATANATANAA AAATGCTAGT TATCAGTATC GATAATAACA GGATACTGAT TAAGAAAGGACTTTATAGAG ACTATAGATT GAATTTTTAC ATAGAAAGAA GGACCAAGAT GAAGCGAGTAAATTGGAAAA GATGGCTAGT TGTTGGGTTA AGTTGTTCTT TGTTCATGGA TTCAGTGGTTGGTGTGACTG TGTTAGCGGA AACGATTACT GGGGCGACGG AGCAAGGAGT AGCAACATCTCAGTCGAGTC ACGAAGCGAG CCAGACGACG CAAACAACCG AAGAGTCACA GGCAACGGTCGCTAGTGAAG CGAAAACAGT ACCGCCACAG GAAACGGCAA GAATTGCTTC TCGAGCGATTGGTTATTCTT CTGTGGAAGG GCGCGAGATT CCCTTTTTCT TTGTGGAGGA AGACGGGACGTTGTTTGATC CCGACCGAAT TACGATGGCG GTCAATCTTT CCACGTTTTC GTTTTATGAACACAAATTAC AACGAACCCC CCTTGAGCCC ACCACTGTGA ATGGCGGAAA GTTACTGTCTATTCCAACGT CACCAGCTTT TAAATATGAT ACAAATAACC AGAATCCAAG TAATATTTATGGCGTTTCTG AAGTGTCGTT TACTATTCCT AAGGAGTATC AAAGCCTGGA CATTCGACCAAGTACGTTTT ATACAGGAGA CACTACGCAA TATCCAGTGC CAACGGTTTT TGCGAACGTTGGGGGCAAAG TGACGAACTA TGTGGGCGCC AATGCGGAGA CGGAATTAGA GTTAACCAATGAAAAAATGC CCAATAAGCT GACGTTTGGT CCTAAAAAGA CGTTTAAATA TACGGTACCTACGGCACCAG GAGGCGTTAC GTATGCGCTG ACCTATTTTT ATGGAGATGT CGGCGGTCCAACTAGTTCGC ACCAAAGACG AGGAACAGCG GGTCCTGTGT ATTATTATTT AACAAAGCGGCGTGTCACGG AAAAATTTGA GAATCCCGCA GGCGGGGCGA TTCCTGCGCC AGAAGGTTATACGCAGGATA AGAAAACCAT TGTAACAGGG GAGGATTTTA CTTTTACCCA AGAAGGCACCTTGCCTGAAC GTTACACAGG CAGTGATGGG AAGACGTATT TATTTAAAGG TTGGTACAAAGGGAATGCGA AACCTAGCAC CTTGGAAACC ACCAAAACGC CTAGTTATGC GGTGACCTATGATGACAATG ACGATTTGCA TGTGGTCTAT GAAGAAGCAG TGATGAAAAC CTATACGTTGCCAGCGAGAG AAGCTTTGTT CGGCTATGTT GATGAGCAAG GAAACTTGAT TAATCCCGCCAAGTTTAAGC TAAGTGCGAC CATGGGTGAA ACTGACGGAG CCACAGGGGA AATGACGACTTTTCCCACAA TTGATGGAAT CGATATGCCA GCAAGTCAAT TAAAGAAATT AGCCATCCCGCAAAAAGTCT ACACACGCCC AGACGATGGG ACAATCGTAA CTTATGGCCC GCAAGAAGTGAGTGTTGAAA TTCCTAAGTA TTACCAGACG ATTTCGATTT CACCAACTAC TGCGTATACAGGGGATAAAA CCAAGTATCC AGTACCAAAT GAAGTGCGCC GTGGCATCGA AAACCCCGACAACATTGTTA GTAGTTTAGT GGGAANCNCT GCGTATAACT TGACCCAAAA AAGTGCCACACGCTATACTG CCCGCCGTTC TTACTGGANG TGGGGCCCCA CGAAGACACT TTACTCAATGAGTATCTATT CAGGAACTGC TGCGGGCAAC TATAATTTAT CGACCCCTGA TGGCACCATTTATTATTACT TAGAAAATCG GCGGGTCACT GAACATTTTG TAGACGAAAG TGGCGCAAAAATCACGCCAC CAACTGGCTT TACACAAGGA AATCAGCTAG TGGTGGACAG TGAAAACTATGTCTACACTG TCGCAAAAGC TTTGCCGAAG ATCTACCAAG CTGGTGAAAA AACCTATATCTTCCAAGGCT GGTTTAAAGG CAAAACCAAG CCAGCAACAT TAAAGACGAC AACGACCCCAAGTTTTACAC CAACTTTTAA TGATGAGGAC GACATGACCG CTGTGTACCA AGAAGCGATTCCCACCGCGG AACTAACGTT AACAGGTGCC GTTGACATAA TCGAAAATGG CGCCACAATGGATTACTGGG AGGCGCTACT GAAGAACACA GGCGAAGCGC CGTTAACCAC CATTAAAATCAAGCCAACGG CAACTTGGGC GGCTGGCATC GGCGCACCCA ACACGATATT TGTACAAGGAACGGGTCAAA ACACCAAACC TTTTCCTGTC ACCAAAGAAC AATGGACGAC CGGTGCAGGAGTGTCCATCA CGTTGGATCA GCCTTTACCA GCTGGCGGTC AATTAAAAAT GAACTTATTAGGAACCGCCG TTACAGCAAA TCCTCGTCAA GTTTTAACCG CTGATGTTGA AGTAACGGGCAACTTTGGCA GTTTAACTGC CAAAGATACG GTCCGTATTA AAGACTTAGA TCAAGAAATTACGAGTCCTG ACGGCGACGG CTTTATTAGT ACCCCGACAT TTGATTTTGG TAAACTAGCAATTTCAGGAA GTAAGCAACA ATATGGTTTG AAGAAGGCCG CAGATTACTA CGGCAATGGCACTCGCAACC CTTATTTACG CCTGAATACT AGCCAAGCCA ATTGGAGTTT AACGGCCCAGCTATCGCAAC CAAAATCAGC CACAGACAGC TTGCCAACAA CGACCCGCTT GTTGCTAGGAACGGCCGCTG CTGCCAGCTT TACCGATTAC AACCAACCAA CAGAAACCAG GACACCACTTGGCAAGACCA GCACCGTGAC TTTAACCGCC GACAATACCG CAACAGCGGT GGTCGCAAACCAACACTTCA CAGGCAGTGA CGTCTATCAG TTGGACTTCA CGTTTGCTAA CATCAAACTAGAAGTGCCAG CCAACCAAGG TATGGCTGGC CAACAATACC AAGCCGCCGT CACGTGGAATTTAGTGACTG GCCCCTAAEF107-2 (SEQ ID NO:414)MKRVNWKRWLVVGLS CSLFMDSVVG VTVLAETITG ATEQGVATSQ SSDEASQTTQ TTEESQATVASEAKTVPPQE TARIASRAIG YSSVEGREIP FFFVEEDGTL FDPDRITMAV NLSTFSFYEEKLQRTPLEPT TVNCGKLLSI PTSPAFKYDT NNQNPSNIYG VSEVSFTIPK EYQSLDIRPSTFYTGDTTQY PVPTVFANVG GKVTNYVGAN AETELELTNE KMPNKLTFGP KKTFKYTVATAPGGVTYALT YFYGDVGGPT SSHQRRGTAG PVYYYLTKRR VTEKFENPAG GAIPAPEGYTQDKKTIVTGE DFTFTQEGTL PERYTGSDGK TYLFKGWYKG NAKPSTLETT KTPSYAVTYDDNDDLHVVYE EAVMKTYTLP AREALFGYVD EQGNLINPAK FKLSATMGES DGATGEMTTFPTIDGIDMPA SQLKKLAIPQ KVYTRPDDGT IVTYGPQEVS VEIPKYYQTI SLSPTTAYTGDKTKYPVPNE VRRGIENPDN IVSSLVGXXA YNLTQKSATR YTARRSYWXW GPTKTLYSMSIYSGTAGGNY NLSTPDGTIY YYLENRRVTE HFVDESGAKI TPPTGFTQGN QLVVDSENYVYTVAKALPKE YQAGEKTYIF QGWFKGKTKP ATLKTTTTPS FTPTFNDEDD MTAVYQEAIPTAELTLTGAV DIIENGATMD YWEALLKNTG EAPLTTIKIK PTATWAAGIG APNTIFVQGTGQNTKAFPVT KEQWTTGAGV SITLDQPLPA GGQLKMNLLG TAVTGNPGQV LTADVEVTGNFGSLTAKDTV RIKDLDQEIT SPDGDGFIST PTFDFGKLAI SGSKQQYGLK KAADYYGNGTRNPYLRLNTS QANWSLTAQL SQPKSATDSL PTTTRLLLGT AAAASFTDYN QPTETRTPLGKTSTVTLTAD NTATAVVANQ QFTGSDVYQL DFTFANIKLE VPANQGMAGQ QYQAAVTWNLVTGPEF107-3 (SEQ ID NO:415)CC AGCAAGGAGT AGCAACATCTCAGTCGAGTG ACGAAGCGAG CCAGACGACG CAAACAACCG AAGAGTCACA GGCAACGGTCGCTAGTGAAG CCAAAACAGT ACCGCCACAG GAAACGGCAA GAATTGCTTC TCGAGCGATTGGTTATTCTT CTGTGGAAGG GCGCGAGATT CCCTTTTTCT TTGTGGAGGA AGACGGGACGTTGTTTGATC CCGACCGAAT TACGATGGCG GTCAATCTTT CCACGTTTTC GTTTTATGAAGAGAAATTAC AACGAACCCC CCTTGAGCCC ACCACTGTGA ATGGCGGAAA GTTACTGTCTATTCCAACGT CACCAGCTTT TAAATATGAT ACAAATAACC AGAATCCAAG TAATATTTATGGCGTTTCTG AAGTGTCGTT TACTATTCCT AAGGAGTATC AAAGCCTGCA CATTCGACCAAGTACGTTTT ATACAGGAGA CACTACGCAA TATCCAGTCC CAACGGTTTT TCCGAACGTTGGGGGCAAAG TGACGAACTA TGTGGGCGCC AATGCGGAGA CGGAATTAGA GTTAACCAATGAAAAAATGC CCAATAAGCT GACGTTTGGT CCTAAAAAGA CGTTTAAATA TACGGTAGCTACGGCACCAG GAGGCGTTAC GTATGCGCTG ACCTATTTTT ATGGAGATGT CGGCGGTCCAACTAGTTCGC ACCAAAGACG AGGAACAGCG GGTCCTGTGT ATTATTATTT AACAAAGCGGCGTGTCACGG AAAAATTTGA GAATCCCGCA GGCGGGGCGA TTCCTGCGCC AGAAGGTTATACGCAGGATA AGAAAACCAT TGTAACAGGG GAGGATTTTA CTTTTACCCA AGAAGGCACCTTGCCTGAAC GTTACACAGG CAGTGATCGG AAGACGTATT TATTTAAAGG TTGGTACAAAGGGAATGCGA AACCTAGCAC GTTGGAAACC ACCAAAACGC CTAGTTATGC GGTGACCTATGATGACAATG ACGATTTGCA TGTGGTCTAT GAAGAAGCAG TGATGAAAAC CTATACGTTGCCAGCGAGAG AAGCTTTGTT CCGCTATGTT GATGAGCAAG GAAACTTGAT TAATCCCGCCAAGTTTAAGC TAAGTGCGAC CATGGGTGAA AGTGACGGAG CCACAGGGGA AATGACGACTTTTCCCACAA TTGATGGAAT CGATATGCCA GCAAGTCAAT TAAAGAAATT AGCCATCCCGCAAAAAGTCT ACACACGCCC AGACGATGGG ACAATCGTAA CTTATGGCCC GCAAGAAGTGAGTGTTGAAA TTCCTAAGTA TTACCAGACG ATTTCGATTT CACCAACTAC TGCGTATACAGGGGATAAAA CCAAGTATCC AGTACCAAAT GAAGTGCGCC GTGGCATCGA AAACCCCGACAACATTGTTA GTAGTTTAGT GGGAANCNCT GCGTATAACT TGACCCAAAA AAGTGCCACACCCTATACTG CCCGCCGTTC TTACTCGANG TGGGGCCCCA CGAACACACT TTACTCAATGAGTATCTATT CAGGAACTGC TGGGGGCAAC TATAATTTAT CGACCCCTGA TGGCACCATTTATTATTACT TAGAAAATCG GCGGGTCACT GAACATTTTG TACACGAAAG TGGCGCAAAAATCACGCCAC CAACTGGCTT TACACAAGGA AATCAGCTAG TCGTGCACAG TGAAAACTATGTCTACACTG TCGCAAAAGC TTTGCCGAAG ATCTACCAAG CTGGTGAAAA AACCTATATCTTCCAAGGCT GGTTTAAAGG CAAAACCAAG CCAGCAACAT TAAAGACGAC AACGACCCCAAGTTTTACAC CAACTTTTAA TGATGAGGAC GACATGACCG CTGTGTACCA AGAAGCGATTCCCACCGCGG AACTAACGTT AACAGGTGCC GTTGACATAA TCGAAAATGG CGCCACAATGGATTACTGGG AGGCGCTACT GAAGAACACA GGCGAAGCGC CGTTAACCAC CATTAAAATCAAGCCAACGG CAACTTGGGC GGCTGGCATC GGCGCACCCA ACACGATATT TGTACAAGGAACGGGTCAAA ACACCAAAGC TTTTCCTGTC ACCAAAGAAC AATGGACGAC CGGTGCAGGAGTGTCCATCA CGTTGGATCA GCCTTTACCA GCTGGCGGTC AATTAAAAAT GAACTTATTAGGAACCGCCG TTACAGGAAA TCCTGGTCAA GTTTTAACCG CTGATGTTGA AGTAACGGGCAACTTTGGCA GTTTAACTGC CAAAGATACG GTCCGTATTA AAGACTTAGA TCAAGAAATTACGAGTCCTG ACGGCGACGG CTTTATTAGT ACCCCGACAT TTGATTTTGG TAAACTAGCAATTTCAGGAA GTAAGCAACA ATATGGTTTG AAGAAGGCCG CAGATTACTA CGGCAATGGCACTCGCAACC CTTATTTACG CCTGAATACT AGCCAAGCCA ATTGGAGTTT AACGGCCCAGCTATCGCAAC CAAAATCAGC CACAGACAGC TTGCCAACAA CGACCCGCTT GTTGCTAGGAACGGCCGCTG CTCCCAGCTT TACCGATTAC AACCAACCAA CAGAAACCAG GACACCACTTGGCAAGACCA GCACCGTGAC TTTAACCGCC GACAATACCG CAACAGCGGT GGTCGCAAACCAACAGTTCA CAGGCAGTGA CGTCTATCAG TTGGACTTCA CGTTTGCTAA CATCAAACTAGAAGTGCCAG CCAACCAAGG TATGGCTGGC CAACAATACC AAGCCGCCGT CACGTGGAATTTAGTGACTG GCCCCTEF107-4 (SEQ ID NO:416)EQGVATSQ SSDEASQTTQ TTEESQATVASEAKTVPPQE TARIASRAIG YSSVEGREIP FFFVEEDGTL FDPDRITMAV NLSTFSFYEEKLQRTPLEPT TVNGGKLLSI PTSPAFKYDT NNQNPSNIYG VSEVSFTIPK EYQSLDIRPSTFYTGDTTQY PVPTVFANVG GKVTNYVGAN AETELELTNE KMPNKLTFGP KKTFKYTVATAPGGVTYALT YFYGDVGGPT SSHQRRGTAG PVYYYLTKRR VTEKFENPAG GAIPAPEGYTQDKKTIVTGE DFTFTQEGTL PERYTGSDGK TYLFKGWYKG NAKPSTLETT KTPSYAVTYDDNDDLHVVYE EAVMKTYTLP AREALFGYVD EQGNLINPAK FKLSATMGES DGATGEMTTFPTIDGIDMPA SQLKKLAIPQ KVYTRPDDGT IVTYGPQEVS VEIPKYYQTI SISPTTAYTGDKTKYPVPNE VRRGIENPDN IVSSLVGXXA YNLTQKSATR YTARRSYWXW GPTKTLYSMSIYSGTAGGNY NLSTPDGTIY YYLENRRVTE HFVDESGAKI TPPTGFTQGN QLVVDSENYVYTVAKALPKI YQAGEKTYIF QGWFKGKTKP ATLKTTTTPS FTPTFNDEDD MTAVYQEAIPTAELTLTGAV DITENGATMD YWEALLKNTG EAPLTTIKIK PTATWAAGIG APNTIFWQGTGQNTKAFPVT KEQWTTGAGV SITLDQPLPA GGQLKNNLLG TAVTGNPGQV LTADVEVTGNFGSLTAKDTV RIKDLDQEIT SPDGDGFIST PTFDFGKLAI SGSKQQYGLK KAADYYGNGTRNPYLRLNTS QANWSLTAQL SQPKSATDSL PTTTRLLLGT AAAASFTDYN QPTETRTPLGKTSTVTLTAD NTATAVVANQ QFTGSDVYQL DFTFANIKLE VPANQGMAGQ QYQAAVTWNLVTGPEF108-1 (SEQ LD NO:417)TAATCGGTTT GGCGGGAATC GTACATAGAA AGAAGGGACG ACATGAAGCA AACTAAGTGGCAACGATTAG CAACCATTGG CTTGTGTAGT TCTTTAGTAA TTAACGCCTT TTCTGGTGTGACGGCAGTTG CGGAAACCGT GACGATTGAA AGTAGTCCGA CCGCCGAAAG TAGTGCCAAGGAACAGACGC AAGCAAGTAG CGTGAAGGAA GAAACAACGA AAGCCAGTAC GGAAAATAGTCAAGTAACAA CTGACACGAG TCAGGAAGAA GCAACGAAAG AAGCGGAGAA AGAAGAACCGCAAGCAGAAG TGCAACAAGC AGAAACACCA ATCATTCCTA AACCAAAAAA AATCAATATGAAGGCAACTT ATTCATTTTC TGCAGAAACT TATCAGTTTG GATTTGTGAA TGAATCAGGTCAATTAATAA ATCCAGATAT TATACCAATT ACGTATAGCT ATGCCAAAGG ATCATGGAAGACAGATGGTT ATAATCGAAA GTGGACTAGT ATGGTTCAAG GGAGTGCTTC AACCGTAGGAAACTTAAAGA ATGTAATAAT GCCAGCAACT TCTGTAGTTA TGCCACCAGG ACCGTCATATGAAGGAACTC AAGAGGTGTA CACAAACTTT TCAATTCGCA TACCAAAATA TTATGCATCAGCGAGTCTCT ACAATAGAGA AGGTAAAATT GATTCTACTT ATCCGTTACC TGCTATTGCACTAGCAGGTA CTAGACCGCT ATCTTTGACT CAAAGTAGTG TAATTAGTGC ATTGGCGCTGACCAGTAAAG GAGACAATGT TTATACACCA CGGGAAACAT TTTTTGGAGG AGATCCTGCAGGTGTAAAGT TTACTAATTT TTTGTATCGT ATAAATGACT TTGATGTGAA AGGTAATAACATAGGTTATA AGACTGTGAG TAGCCCAATC TATTACCATC TGACCAACCG CCGTGTCACCGAAAACTTCG TAGATACAAG TGGCGCCAAA ATCACGCCAC CAAGTAATTT CACCCAAGGGAAACAAACGG TCATTAACAG TGATCCTTAC ACGTTCCAAC AAAGTGGTTT TTTACCCGAGACCTACAAAG TTGGCACGAA ATCTTACCGA TTCAAAGGCT GGTACAAAGG GAAAACCAAAACCGAGCCTT TGGCCACCAC TAAAACACCT AGCTATAAAG TCACGTATGA TGACAATGATGATTTGACGG TGGTCTATGA GGAGTTTTCA GGGTACGAGC TGCCTGCTTC GACCAATCAATTTGGCTTTG TGGATGAAGC GACGAACAAA TTAATTGCCC CCGACCAAGT GCACATGAAGTATAATCTTA CTTTAAATGA AAATAATAAA AAAACAGTAA TGAGCAGTAA CTTAACGGGGACAGATACAG CGACACTGAA AAACTTGTCC GTGCCTGTCA ACTATTTTGA ACAATATCGCGTCAATACGT TTTATCGCGC GAGTGACATT ACGTTTACAT TGCCCAAACG GTACAAATCAATCAATATTA CCAAATCAGA TGGCAAAACC GACCCAGCTT TTCCTCTTCC TAAAATCTATAATATAGATC AAGTAGAAAT GTCACACATG CCTGTGACCA CTTATAACAA GTTGAAACAGCTGTCGGGCC AAACGTTTGG CTTTAATGCT TTAGCCGATC AACCTGAATT TTATACGAAAACGTTATTTG GGACAGAGTC TGGCATCGAT GACCCAGTCA ATTATTATAC AATGAGTGGCCCTGTTTACT ATTATTTAGA AAACCGCAAA GTCACCGAGA ACTTCGTAGA CACCAACGGCGCTAAAATCA CACCGCCAAC AGGTTTCACC CAAGGTAAAA AAACGGTGAT TACAAGCGACGCCTACACTT TCAAACAAGC AGGCACCTTA CCAGACACTT ACACAACAGG CGGTAAGACCTACAAGTTCA AAGGTTGGTA CAAAGGCAAG TCCATACTCA ACACATTGAC AACTACCAAAGCGCCAAGTT ATCAAGTGAC CTACGATGAC AATGATGATT TGAATGTGGT GTATGAAGAAGAAACAGTTA CGACAGTGTA TCCATCAGTC GATATGAACT TTGTGAATGA AAAAGGCGGGGCTTTCACAC CGGCGTTAAC TTTTAGTGGT AAGTACTATG CGCAAAGTAC GAGTGCGTACTTAAGAACCG ATTTATATGA CGTGACCTCA AAAAATAATG GTAATGGGCA ATATACGGTAAGTATTAATA ATGGTAGTAT GCCATTGTCC CAAGAATTAT TGAAAAAATA TAATAATGGACAACCAATCA GTGCTACCAA CAGATTACAG TTTAATGTTG ATAAATTAGC CATCGACCAACAACTAAAAT ATCTTGACAG CATTCAATTA GACACAGCTC AAAGTAGCAA TCTCAAATCCTATAGATATG TGTACACGAA CAATAGCTCA CTGGTTTTCG ACCCAAATGT AGCACCAGCAGAGGTTGACC TTAGTTCAGA ATCTCTTAAC TTGCTTAATT TTGATTCAGA TGGCACCTATTTTTCTAATG CAAATAATAG ACTTTTTTAC ACGCATTTAG GATATAGTGG CACACCAGGAGTTAACTATC TTCTCGTAAT GTTTCTTTTT AACGCCAAAC CTGCGGATAA GTCAAAACTTGTCTACAAAG TCACTCGCAA ACAAGTCACC GAAAACTTCG TGGATGTCAA CGGTGCCAAAATCACTGCAC CAACAGGCTT CACCCAAGGT AACCAAGTAC CAATGAACAG TAACACCTTCAAGTACACAG CCGCAAAAGC TTTACCAGCG ACGTATACTA CAGGTGGCAA AGTCTATACCTTCCAAGGGT GGTATAAAGG GAAAACCAAG CCAAGTACGT TGAACAAAAC AACAACTCCAACGTTCAATG CGACCTTTGA TGGCAATGAC GATATGACCG CCATGTATAA GGAAGAAATACCAACAGCTA GTGTCACATT AACTCGACCA AAAGAAGTGA TTGATACGAA TACCAATGTAATCTGGACAA CAACGATCAC GAATACTAGC AAAGCACCCT TACAAAATCT CACCTTGAAAAAAGGGCCCA ATTGGTCAGC TGGTCTGACG ATCCCGACCT TTATGGAAGT GACACCAGAAGGAGAAACGA CAAAATCAAT CCCAGTAAAT AGTACACTTT GGACAGAGGG GGTTCCTTTACCAAATGCCC TTCCTATCGG CAAAAAAGTT TCAGTTGCTT TCACAACTCG CGCAACAGGGAAACCAAACA CTGTTTTGAA AGCAGAAGTT GTAGTATTTG GTGGTATTAA AGATAGTACAGTGGATAACT TCGTGAGAAT TCGTCCAAAT GATCAAGAAG TAGTCACACC AACGACCGAAGGCTTCATCA GTGTGCCAAC CTTCGACTTC GGCCAAGTGG GCGTTGCAGG AACTAAGCAACAACACAGCT TGAAACAAGC CGCGGATTAC TACGGTAACG GCACACGGAA TCCGTATCTGCGGATTAAGA AAACGCAACC CAATTGGAGC TTAACAGCGC AACTGTCACA ACCAAAATCAGCGACAGACA GCTTGCCTAC AGCGACCCGC TTATTATTAG GGGCGGCGCC TGTCTCTAGCTTTACCAATT ACAATCAACC AACCGAGTTG AAAAATACGG TCGGTACCAC GAGTGCCATTAGCTTAACAG CCAACAACAC AGCAACGAGT ATTATTGCCA ACAAGCAATT CACAGGTAGTAATGTTTATC AGTTGGACTT CACCTTCAAT AATGTCAAAC TTGAAGTGCC AGCCAATCAAGGTGTTAAAG GGCAACAATA CAAGGCCGCA GTTACATGGA ACCTAGTTAC AGGTCCTTAAEF108-2 (SEQ ID NO:418)MKQTKWQ RLATIGLCSS LVINAFSGVT AVAETVTTES SPTAESSAKEETQASSVKEE TTKASTENSQ VTTDTSQEEA TKEAEKEEPQ AEVEQAETPI IPKPKKINMKATYSFSAETY QFGFVNESGQ LINPDIIPIT YSYAKGSWKT DGYNRKWTSM VQGSASTVGNLKNVIMPATS VVMPPGPSYE GTQEVYTNFS TRIPKYYASA SLYNREGKID STYPLPAIALAGTRPLSLTQ SSVISALALT SKGDNVYTPR ETFFGGDPAG VKFTNFLYRI NDFDVKGNNIGYKTVSSPIY YHLTNRRVTE NFVDTSGAKI TPPSNFTQGK QTVLNSDPYT FQQSGFLPETYKVGTKSYRF KCWYKGKTKT EPLATTKTPS YKVTYDDNDD LTVVYEEFSG YELPASTNQFGFVDEATNKL IAPDQVQMKY NLTLNENNKK TVMSSNLTGT DTATLKNLSV PVNYFEQYRVNTFYGASDIT FTLPKRYKSI NITKSDGKTD PAFPLPKIYN IDQVEMSHNP VTTYNKLKQLSGQTFGFNAL ADQPEFYTKT LFGTESGIDD PVNYYTMSGP VYYYLENRKV TENFVDTNGAKITPPTGFTQ GKKTVITSDA YTFKQAGTLP DTYTTGGKTY KFKGWYKGKS TLNTLTTTKAPSYQVTYDDN DDLNVVYEEE TVTTVYPSVD MNFVNEKGGA FTPALTFSGK YYAQSTSAYLRTDLYDVTSK NNGNGQYTVS INNGSMPLSQ ELLKKYNNGQ PISATNRLQF NVDKLAIDQQLKYVDSIQLD TAQSSNLKSY RYVYTNNSSL VFDPNVAPAE VDLSSESLNL LNFDSDGTYFSNANNRLFYT HLGYSGTPGV NYLLVMFLFN AKPADKSKLV YKVTRKQVTE NFVDVNGAKITAPTGFTQGN QVPMNSNTFK YTAAKALPAT YTTGOKVYTF QGWYKGKTKP STLNKTTTPTFNATFDGNDD MTAMYKEEIP TASVTLTRPK EVIDTNTNVI WTTTITNTSK APLQNLTLKKGPNWSAGLTI PTFMEVTPEC ETTKSIPVNS TLWTEGVPLP NAVPTGKKVS VAFTTEATGKPNTVLKAEVV VFGGIKDSTV DNFVRIRPND QEVVTPTTEG FISVPTFDFG QVGVAGTKQQHSLKQAADYY GNGTRNPYLR IKKTQPNWSL TAQLSQPKSA TDSLPTATRL LLGAAPVSSFTNYNQPTELK NTVGTTSAIS LTANNTATSI IANKQFTGSN VYQLDFTFNN VKLEVPANQGVKGQQYKAAV TWNLVTGPEF108-3 (SEQ ID NO:419)CGT GACGATTGAA AGTAGTCCGA CCGCCGAAAG TAGTGCCAAGGAAGAGACGC AAGCAACTAG CGTGAAGGAA GAAACAACGA AAGCCAGTAC GGAAAATAGTCAAGTAACAA CTGACACGAG TCAGGAAGAA GCAACGAAAG AACCCCACAA AGAAGAACCGCAAGCACAAG TGGAACAAGC AGAAACACCA ATCATTCCTA AACCAAAAAA AATCAATATGAAGGCAACTT ATTCATTTTC TGCAGAAACT TATCAGTTTG GATTTGTGAA TGAATCAGGTCAATTAATAA ATCCAGATAT TATACCAATT ACGTATAGCT ATCCCAAAGG ATCATGGAAGACAGATGGTT ATAATCGAAA GTGGACTAGT ATGGTTCAAG GGAGTGCTTC AACCGTAGGAAACTTAAAGA ATCTAATAAT GCCACCAACT TCTGTACTTA TGCCACCAGG ACCOTCATATGAAGGAACTC AAGAGGTGTA CACAAACTTT TCAATTCGCA TACCAAAATA TTATGCATCACCGAGTCTCT ACAATAGAGA AGCTAAAATT GATTCTACTT ATCCGTTACC TGCTATTGCACTAGCAGGTA CTAGACCGCT ATCTTTGACT CAAAGTAGTG TAATTACTGC ATTGGCGCTGACCAGTAAAG GAGACAATGT TTATACACCA CGGGAAACAT TTTTTGGAGG AGATCCTGCAGGTGTAAAGT TTACTAATTT TTTGTATCGT ATAAATCACT TTGATGTGAA AGGTAATAACATAGOTTATA AGACTOTOAG TAGCCCAATC TATTACCATO TGACCAACCG CCGTGTCACCGAAAACTTCG TAGATACAAG TGGCGCCAAA ATCACGCCAC CAAGTAATTT CACCCAAGCGAAACAAACGG TCATTAACAG TGATCCTTAC ACGTTCCAAC AAAGTCCTTT TTTACCCGAGACCTACAAAG TTGGCACGAA ATCTTACCCA TTCAAAGGCT GGTACAAAGG GAAAACCAAAACCGAGCCTT TOOCCACCAC TAAAACACCT AGCTATAAAG TCACGTATGA TGACAATGATGATTTCACGG TGGTCTATGA GGAGTTTTCA GGGTACGAGC TGCCTGCTTC GACCAATCAATTTGGCTTTG TGGATGAAGC GACGAACAAA TTAATTGCCC CCGACCAAGT GCAGATGAAGTATAATCTTA CTTTAAATCA AAATAATAAA AAAACAGTAA TGAGCAGTAA CTTAACGGGGACAGATACAC CGACACTGAA AAACTTGTCC GTGCCTGTCA ACTATTTTGA ACAATATCGCCTCAATACGT TTTATGGCGC GAGTGACATT ACGTTTACAT TGCCCAAACG GTACAAATCAATCAATATTA CCAAATCAGA TGGCAAAACC GACCCAGCTT TTCCTCTTCC TAAAATCTATAATATAGATC AAGTAGAAAT GTCACACATG CCTGTGACCA CTTATAACAA GTTGAAACAGCTGTCGGGCC AAACGTTTGG CTTTAATGCT TTAGCCCATC AACCTGAATT TTATACGAAAACGTTATTTG GGACAGAGTC TGGCATCGAT GACCCACTCA ATTATTATAC AATGAGTGGCCCTGTTTACT ATTATTTAGA AAACCGCAAA GTCACCGAGA ACTTCGTAGA CACCAACGGCGCTAAAATCA CACCGCCAAC AGGTTTCACC CAAGGTAAAA AAACGGTGAT TACAAGCCACGCCTACACTT TCAAACAAGC AGGCACCTTA CCAGACACTT ACACAACAGG CGGTAAGACCTACAAGTTCA AAGGTTGGTA CAAAGGCAAG TCCATACTCA ACACATTGAC AACTACCAAAGCGCCAAGTT ATCAAGTGAC CTACGATGAC AATGATCATT TGAATGTGGT GTATGAAGAAGAAACAGTTA CGACAGTGTA TCCATCAGTC GATATGAACT TTGTGAATGA AAAACCCGCCGCTTTCACAC CGGCGTTAAC TTTTAGTGGT AAGTACTATG CGCAAAGTAC GAGTGCGTACTTAAGAACCG ATTTATATGA CGTGACCTCA AAAAATAATG GTAATGGGCA ATATACGGTAAGTATTAATA ATGGTAGTAT GCCATTGTCC CAAGAATTAT TGAAAAAATA TAATAATGGACAACCAATCA GTGCTACCAA CAGATTACAG TTTAATGTTG ATAAATTAGC CATCGACCAACAACTAAAAT ATGTTGACAG CATTCAATTA GACACAGCTC AAAGTAGCAA TCTGAAATCCTATAGATATG TGTACACGAA CAATAGCTCA CTGGTTTTCG ACCCAAATGT AGCACCAGCAGAGGTTGACC TTAGTTCAGA ATCTCTTAAC TTGCTTAATT TTGATTCAGA TGGCACCTATTTTTCTAATG CAAATAATAG ACTTTTTTAC ACGCATTTAG GATATAGTGG CACACCAGGAGTTAACTATC TTCTCGTAAT GTTTCTTTTT AACGCCAAAC CTGCGGATAA GTCAAAACTTCTCTACAAAG TCACTCGCAA ACAAGTCACC GAAAACTTCG TGGATGTCAA CGGTGCCAAAATCACTGCAC CAACAGGCTT CACCCAAGGT AACCAAGTAC CAATGAACAG TAACACCTTCAAGTACACAG CGGCAAAAGC TTTACCAGCG ACGTATACTA CAGGTGGCAA AGTCTATACGTTCCAAGGGT GGTATAAAGG GAAAACCAAG CCAAGTACGT TGAACAAAAC AACAACTCCAACGTTCAATG CGACCTTTGA TGGCAATGAC GATATGACCG CCATGTATAA GGAAGAAATACCAACAGCTA GTGTCACATT AACTCGACCA AAAGAAGTGA TTGATACGAA TACCAATGTAATCTGGACAA CAACGATCAC GAATACTAGC AAAGCACCCT TACAAAATCT CACCTTGAAAAAAGGGCCCA ATTGGTCAGC TGGTCTGACG ATCCCGACCT TTATGGAAGT GACACCAGAAGGAGAAACGA CAAAATCAAT CCCAGTAAAT AGTACACTTT GGACAGAGGG GGTTCCTTTACCAAATGCCC TTCCTATCGG CAAAAAAGTT TCAGTTGCTT TCACAACTCG CGCAACAGGGAAACCAAACA CTGTTTTGAA AGCAGAAGTT GTAGTATTTG GTGGTATTAA AGATAGTACAGTGGATAACT TCGTGAGAAT TCGTCCAAAT GATCAAGAAG TAGTCACACC AACGACCGAAGGCTTCATCA GTGTGCCAAC CTTCGACTTC GGCCAAGTGG GCGTTGCAGG AACTAAGCAACAACACAGCT TGAAACAAGC CGCGGATTAC TACGGTAACG GCACACGGAA TCCGTATCTGCGGATTAAGA AAACGCAACC CAATTGGAGC TTAACAGCGC AACTGTCACA ACCAAAATCAGCGACAGACA GCTTGCCTAC AGCGACCCGC TTATTATTAG GGGCGGCGCC TGTCTCTAGCTTTACCAATT ACAATCAACC AACCGAGTTG AAAAATACGG TCGGTACCAC GAGTGCCATTAGCTTAACAC CCAACAACAC AGCAACGAGT ATTATTGCCA ACAAGCAATT CACAGGTAGTAATGTTTATC AGTTGGACTT CACCTTCAAT AATGTCAAAC TTGAAGTGCC AGCCAATCAAGCTGTTAAAG GGCAACAATA CAAGGCCGCA GTTACATGGA ACCTAGTTAC AGEF108-4 (SEQ lED NO:420)VTIES SPTAESSAKEETQASSVKEE TTKASTENSQ VTTDTSQEEA TKEAEKEEPQ AEVEQAETPI IPKPKKINMKATYSFSAETY QFGFVNESGQ LINPDIIPIT YSYAKGSWKT DGYNRKWTSM VQGSASTVGNLKNVIMPATS VVMPPGPSYE GTQEVYTNFS IRTPKYYASA SLYNREGKTD STYPLPAIALAGTRPLSLTQ SSVISALALT SKGDNVYTPR ETFFGGDPAG VKFTNFLYRI NDFDVKGNNIGYKTVSSPIY YHLTNRRVTE NFVDTSGAKI TPPSNFTQGK QTVTNSDPYT FQQSGFLPETYKVGTKSYRF KCWYKGKTKT EPLATTKTPS YKVTYDDNDD LTVVYEEFSC YELPASTNQFGFVDEATNKL IAPDQVQMKY NLTLNENNKK TVMSSNLTGT DTATLKNLSV PVNYFEQYRVNTFYGASDIT FTLPKRYKST NTTKSDGKTD PAFPLPKIYN IDQVEMSHMP VTTYNKLKQLSGQTFGFNAL ADQPEFYTKT LFGTESGIDD PVNYYTMSGP VYYYLENRKV TENFVDTNGAKITPPTGFTQ GKKTVTTSDA YTFKQAGTLP DTYTTGGKTY KFKGWYKGKS ILNTLTTTKAPSYQVTYDDN DDLNVVYEEE TVTTVYPSVD MNFVNEKGGA FTPALTFSGK YYAQSTSAYLRTDLYDVTSK NNGNGQYTVS INNGSMPLSQ ELLKKYNNGQ PTSATNRLQF NVDKLAIDQQLKYVDSIQLD TAQSSNLKSY RYVYTNNSSL VFDPNVAPAE VDLSSESLNL LNFDSDGTYFSNANNRLFYT HLGYSGTPGV NYLLVNFLFN AKPADKSKLV YKVTRKQVTE NFVDVNGAKITAPTGFTQGN QVPMNSNTFK YTAAKALPAT YTTGGKVYTF QGWYKGKTKP STLNKTTTPTFNATFDGNDD MTAMYKEEIP TASVTLTRPK EVIDTNTNVI WTTTITNTSK APLQNLTLKKGPNWSAGLTI PTFMEVTPEG ETTKSIPVNS TLWTEGVPLP NAVPIGKKVS VAFTTRATGKPNTVLKAEVV VFGGIKDSTV DNFVRTRPND QEVVTPTTEG FTSVPTFDFG QVGVAGTKQQHSLKQAADYY GNGTRNPYLR IKKTQPNWSL TAQLSQPKSA TDSLPTATRL LLGAAPVSSFTNYNQPTELK NTVGTTSAIS LTANNTATSI IANKQFTGSN VYQLDFTFNN VKLEVPANQGVKGQQYKAAV TWNLVTEF109-1 (SEQ ID NO:421)AGGAGTAAAT TAATCAAAAA AAGTGTTATA ACTAGTTCTA TOTTACCOOT TTTCTTGTCGCCATTTCTCG TTACCCCTAT TTCTGCTTAC GCTTTGGAAC GCTCTAAGGG AACTACTGAAGAAACGGTGG CTTCAGAAAC ATCTCTAACG GAGCGACAAA TGAGTAGCGG TGTCACTGAAGAAATCAACC CAACCATCAT AAATTCTCAA GAGGAAACAG AAACAACGTC CACTTCCTCAACCTCCGATT CCACCACTGA AGTTTCTACA TCAGAAGTAA CAACTGTTAA TGATACAGAANATAGTAGCG ACGTACTGAA ACTACTTTGG NAACATCACN AACTAATCAG GACACACCTATAGEF109-2 (SEQ ID NO:422)MKKSVI TSSMLAVLLS GFLVTPISAY ALERSKGTTE ETVASETSLT ERQMSSGVTEEHNPSIILNSQ EETETTSTSS TSDSTTEVST SEVTTVNDTE XSSDVLKLLW XHHXVMRTHLEF109-3 (SEQ ID 110:423)GGAAC GCTCTAAGGG AACTACTGAAGAAACGGTGG CTTCACAAAC ATCTCTAACG GAGCGACAAA TGAGTACCCG TCTCACTCAAGAAATGAACC CAAGCATCAT AAATTCTCAA GAGGAAACAG AAACAACGTC CACTTCCTCAACCTCCGATT CCACCACTGA AGTTTCTACA TCAGEF109-4 (SEQ ID 140:424)ERSKGTTE ETVASETSLT ERQMSSGVTE EMNPSIINSQ EETETTSTSS TSDSTTEVST SEF110-1 (SEQ ID 140:425)TAAATAAAAA TGGATAAGGA GTGGCATAAT CTTATGAAAA AGTTCTCCAT ACGAAAAATTAGTGCTGGTT TTTTGTTTCT GATTTTAGTA ACTTTGATCG CCGGTTTTAG CTTGTCTGCAAATGCAGAAG AGTATATCGT TCCTGCCGAA AGTCATTCAC GACAAAAAAG ATCGTTACTGGACCCTGAGG ACAGAAGACA AGAAGTGGCA GATACAACCG AAGCGCCTTT TGCGTCAATCGGAAGAATCA TTTCCCCTGC CAGTAAACCA GGCTATATTT CTTTAGGAAC AGGCTTTGTTGTTGGAACCA ATACAATTGT CACCAATAAT CATGTGGCTG AAAGTTTTAA GAATGCCAAAGTATTAAATC CGAATGCCAA AGATGATGCT TGGTTTTATC CAGGTCGAGA TGGCAGTGCGACACCATTTG GCAAATTCAA AGTGATTGAT GTAGCTTTTT CCCCGAATGC GGATATTGCGGTAGTGACTG TCGGCAAACA AAACGATCGT CCAGATGGCC CAGAGTTGGG AGAAATTTTAACGCCATTTG TTTTGAAAAA GTTTGAATCT TCAGATACCC ATGTCACAAT ATCAGGCTATCCAGGTGAGA AAAACCACAC ACAATGGTCT CATGAAAATG ATTTGTTTAC ATCTAACTTTACAGACTTAG AAAATCCATT ACTATTTTAT GATATCGATA CAACCGGCGG TCAATCTGGTTCACCAATCT ATAATGATCA GGTTGAAGTA GTTGGTGTTC ATTCCAATGG CGGCATTAAGCAAACAGGAA ATCATGGTCA AAGACTAAAT GAAGTGAATT ATAACTTTAT TGTTAATCGAGTGAATGAAG AAGAAAATAA ACGTTTATCC GCTGTGCCAG CAGCGTAAEF110-2 (SEQ ID 140:426)MKKFSIRKIS AGFLFLILVT LIAGFSLSAN AEEYIVPAES HSRQKRSLIJDPEDRRQEVAD TTEAPFASIG RIISPASKPG YISLGTGFVV GTNTIVTNNH VAESFKNAKVLNPNAKDDAW FYPGRDGSAT PFGKFKVIDV AFSPNADIAV VTVGKQNDRP DGPELGEILTPFVLKKFESS DTHVTISGYP GEKNHTQWSH ENDLFTSNFT DLENPLLFYD IDTTGGQSGSPIYNDQVEVV GVHSNGGIKQ TGNHGQRLNE VNYNFIVNRV NEEENKRLSA VPAAEF110-3 (SEQ ID 140:427)AG AGTATATCGT TCCTGCCGAA AGTCATTCAC GACAAAAAAG ATCGTTACTGGACCCTGAGG ACAGAAGACA AGAAGTGGCA GATACAACCG AAGCGCCTTT TGCGTCAATCGGAAGAATCA TTTCCCCTGC CAGTAAACCA GGCTATATTT CTTTAGGAAC AGGCTTTGTTGTTGGAACCA ATACAATTGT CACCAATAAT CATGTGGCTG AAAGTTTTAA GAATGCCAAAGTATTAAATC CGAATGCCAA AGATGATGCT TGGTTTTATC CAGGTCGAGA TGGCAGTGCGACACCATTTG CCAAATTCAA AGTGATTGAT GTAGCTTTTT CCCCGAATGC GGATATTGCGGTAGTGACTG TCGGCAAACA AAACGATCGT CCAGATGGCC CAGAGTTGGG AGAAATTTTAACGCCATTTG TTTTGAAAAA GTTTGAATCT TCAGATACCC ATGTCACAAT ATCAGGCTATCCAGGTGAGA AAAACCACAC ACAATGGTCT CATGAAAATG ATTTGTTTAC ATCTAACTTTACAGACTTAC AAAATCCATT ACTATTTTAT GATATCGATA CAACCGGCGG TCAATCTGGTTCACCAATCT ATAATGATCA GGTTGAAGTA GTTGGTGTTC ATTCCAATGG CGGCATTAAGCAAACAGGAA ATCATGGTCA AAGACTAAAT GAAGTGAATT ATAACTTTAT TGTTAATCGAGTGAATGAAG AAGAAAATAA ACGTTTATCC GCTGTGCCAG CAGCGTEF110-4 (SEQ ID NO:428)EYIVPAES HSRQKRSLLDPEDRRQEVAD TTEAPFASTG RIISPASKPG YISLGTGFVV GTNTIVTNNH VAESFKNAKVLNPNAKDDAW FYPGRDGSAT PFGKFKVIDV AFSPNADIAV VTVGKQNDRP DOPELGEILTPFVLKKFESS DTHVTISGYP GEKNHTQWSH ENDLFTSNFT DLENPLLFYD IDTTGGQSGSPIYNDQVEVV GVHSNGGIKQ TGNHGQRLNE VNYNFIVNRV NEEENKRLSA VPAAEF111-1 (SEQ ID NO:429)TGATCAATAC ACTTCGATAC GGTCGCTTTT TTTCTAGAGA AAGTTGAATC TTTCAATAATAAAAAGGGAT ACACTCCATT TGGCATAGTC CTTGCTGATA ATAAATCAGT GTATAAAGCGCTATCATTTT ATAGGAGGGG TTTTATGAAG GGTTTATCAA AAAAGAAACG GGTGTCTACTTGGTTAGCGT TAGGAATCAC CGTAGTCAGC TGTTTTGCGT TAAGCAGGGA AGTGCAAGCAAGTGTTGAAA GAACAAAAGT TGATGAATTT GCAAATGTTT TAGATGTGAG TGCATCACCAACCGAACGGA CGAATGGCGT ATACGATACC AATTATTTTA ATAATTTTTC TGATTTAGGTGCATGGCATG GCTACTATTT ACCTGAAAAA AGCAATAAAG AGCTACTGGG TGGTTTTGCGGGGCCATTGA TTATTGCCGA AGAATATCCA GTAAACTTGG CCGCAAGTTT AAACAAATTAACGGTCAAAA ATAAAAAAAC GGGAGAAACC TATGATTTAA GCCAAAGCAA CCGCATGGACCTGTCTTATT ATCCTGGGCG CCTAGAGCAA ACCTATGAAT TAGACGATTT AACGATTCATTTAGCTTTAA TTTTTGTCAG CAATCGAACG GCGCTTATCC AAACGACACT TGAAAACACTGGTGAAGAGC CCTTGTCACT TGGAGCAAGC TGGACAGGTG CGGTCTTTCA CAAAATTCAAGAGGGAACGG AAACCTTAGA TATTGGCACT CGTTTAACTG CTAAAGACAA TGACATTCAAGTGAATTTTG GTGAAGTCAG AGAAACGTGG AATTATTTTG CTACGAAAGA CACAAAATATACGATTCATC ATGCGGATAA AGTTTCAACA AAAATTGATA ATCGGAATTA TACAGCAACCGCTGAACCAA TTGAATTGAA GCCTAAACAA ACGTACAACA CCTATACGAC AGAAAGCTATACTTTTACAA AAGAAGAAGA GGCAAAGGAA CAACAACAAG CACCCGAATA TACCAAAAATGCGGCGCGCT ATTTCAAAGA GAACAAGCAA AGATGGCAAG GATATCTAGA TAAAACGTTTGATCAAAAGA AAACAGCAGA ATTTCCTGAA TATCAAAATG CGCTAGTCAA ATCGATTGAAACGATTAATA CCAATTGGCG AAGTGCGGCA GGTGCCTTTA AGCATGACGG GATTGTTCCGTCCATGTCTT ATAAATGGTT TATTGGTATG TGGGCTTGGG ATTCGTGGAA AGCGGATGTAGCAACGGCTG ATTTTAATCC TGAGTTAGCT AAAAATAATA TGCGGGCCTT GTTTGATTATCAAATTCAAA AAGATGATAC CGTACGTCCA CAAGATGCAG GAGCGATCAT TGATGCTGTCTTTTACAATC AAGACAGTGC GCGTGGTGGT GAAGGTGGCA ACTGGAATGA ACGAAATTCTAAACCACCAT TGGCTCCATG GGCAGTTTGG CATATTTATC AAGAAACCAA AGATAAGGAATTTTTAAAAG AAATGTATCC CAAACTTGTG GCTTATCATA ATTGGTGGTA TACCAACAGAGACCACAATA AAAATCGGAT AGCAGAATAT GGAAGCATGG TCAGTGATGC TCACTGGCAAAAAGACGACA AGGATCAAAT CATTAAAGAT AAAAATGGCC ACCTAAAGTG GATGATGATGCTGTTATTGA AGCAGCCGCG TGGGAAAGTG GCATGGATAA CGCTACACGG TTTGACAAAGAAGGTGTGGG CAAAGGCGAC GTTGGAGTTA AAGTTTTTGA AAACAAAAAT AAAGGAAAAGTAGEF111-2 (SEQ TD NO:430)MKG LSKKKRVSTWLALGITVVSC FALSREVQAS VERTKVDEFA NVLDVSASPT ERTNGVYDTN YFNNFSDLGAWHGYYLPEKS NKELLGGFAG PLIIAEEYPV NLAASLNKLT VKNKKTGETY DLSQSNRMDLSYYPGRLEQT YELDDLTIHL ALTFVSNRTA LIQTTLENTG EEPLSLGASW TGAVFDKTQEGTETLDIGTR LTAKDNDIQV NFGEVRETWN YFATKDTKYT IHHADKVSTK IDNRNYTATAEPIELKPKQT YNTYTTESYT FTKEEEAKEQ QQAPEYTKNA ARYFKENKQR WQGYLDKTFDQKKTAEFPEY QNALVKSIET INTNWRSAAG AFKHDGIVPS MSYKWFIGMW AWDSWKADVATADFNPELAK NNMRALFDYQ TQKDDTVRPQ DAGATIDAVE YNQDSARGGE GGNWNERNSKPPLAAWAVWH TYQETKDKEF LKEMYPKLVA YHNWWYTNRD HNKNGIAEYG SMVSDAHWQKDDKDQIIKDK NGHLKWMMML LLKQPRGKVA WITLHGLTKK VWAKATLELK FLKTKIKEKEF111-3 (SEQ ID NO:431)TGATGAATTT GCAAATGTTT TAGATGTGAG TGCATCACCAACCGAACGGA CGAATGGCGT ATACGATACC AATTATTTTA ATAATTTTTC TGATTTAGGTGCATGGCATG GCTACTATTT ACCTGAAAAA AGCAATAAAG AGCTACTGGG TGGTTTTGCGGGGCCATTGA TTATTGCGGA AGAATATCCA GTAAACTTGG CGGCAAGTTT AAACAAATTAACGGTCAAAA ATAAAAAAAC GGGAGAAACC TATGATTTAA GCCAAAGCAA CCGCATGGACCTGTCTTATT ATCCTGGGCG CCTAGAGCAA ACCTATGAAT TAGACGATTT AACGATTCATTTAGCTTTAA TTTTTGTCAG CAATCGAACG GCGCTTATCC AAACGACACT TGAAAACACTGGTGAAGAGC CCTTGTCACT TGGAGCAAGC TGGACAGGTG CGGTCTTTGA CAAAATTCAAGAGGGAACGG AAACCTTAGA TATTGGCACT CGTTTAACTG CTAAAGACAA TGACATTCAAGTGAATTTTG CTGAAGTCAG AGAAACCTCG AATTATTTTG CTACGAAAGA CACAAAATATACGATTCATC ATGCGGATAA AGTTTCAACA AAAATTGATA ATCGGAATTA TACAGCAACCGCTGAACCAA TTGAATTGAA GCCTAAACAA ACGTACAACA CCTATACGAC AGAAAGCTATACTTTTACAA AAGAAGAAGA GGCAAAGGAA CAACAACAAG CACCCGAATA TACCAAAAATGCGGCGCGCT ATTTCAAAGA GAACAAGCAA AGATGGCAAG GATATCTAGA TAAAACGTTTGATCAAAAGA AAACAGCAGA ATTTCCTGAA TATCAAAATG CGCTAGTCAA ATCGATTGAAACGATTAATA CCAATTGGCG AAGTGCGGCA GGTGCCTTTA AGCATGACGG GATTGTTCCGTCCATGTCTT ATAAATGGTT TATTGGTATG TGGGCTTGGG ATTCGTGGAA AGCGGATGTAGCAACGGCTG ATTTTAATCC TGAGTTAGCT AAAAATAATA TGCGGGCCTT GTTTGATTATCAAATTCAAA AAGATGATAC CGTACGTCCA CAAGATGCAG GAGCGATCAT TGATGCTGTCTTTTACAATC AAGACAGTGC GCGTGGTGGT GAAGGTGGCA ACTGGAATGA ACGAAATTCTAAACCACCAT TGGCTGCATG GGCAGTTTGG CATATTTATC AAGAAACCAA AGATAAGGAATTTTTAAAAG AAATGTATCC CAAACTTGTG GCTTATCATA ATTGGTGGTA TACCAACAGAGACCACAATA AAAATGGGAT AGCAGAATAT GGAAGCATGG TCAGTGATGC TCACTGGCAAAAAGACGACA AGGATCAAAT CATTAAAGAT AAAAATGGCC ACCTAAAGTG GATGATGATGCTGTTATTGA AGCAGCCGCG TGGGAAAGTG GCATGGATAA CGCTACACGG TTTGACAAAGAAGGTGTGGG CAAAGGCGAC GTTGGAGTTA AAGTTEF111-4 (SEQ ID NO:432)DEFA NVLDVSASPT ERTNGVYDTN YFNNFSDLGAWHGYYLPEKS NKELLGGFAG PLIIAEEYPV NLAASLNKLT VKNKKTGETY DLSQSNRMDLSYYPGRLEQT YELDDLTIHL ALIFVSNRTA LIQTTLENTC EEPLSLGASW TGAVFDKIQEGTETLDIGTR LTAKDNDIQV NFGEVRETWN YFATKDTKYT IHHADKVSTK IDNRNYTATAEPIELKPKQT YNTYTTESYT FTKEEEAKEQ QQAPEYTKNA ARYFKENKQR WQGYLDKTFDQKKTAEFPEY QNALVKSTET INTNWRSAAG AFKHDGIVPS MSYKWFTGMW AWDSWKADVATADFNPELAK NNMRALFDYQ IQKDDTVRPQ DAGAIIDAVE YNQDSARGGE GGNWNERNSKPPLAAWAVWH IYQETKDKEF LKEMYPKLVA YHNWWYTNRD HNKNGIAEYG SMVSDAHWQKDDKDQIIKDK NGHLKWMMML LLKQPRGKVA WITLHGLTKK VWAKATLELKSF117-1 (SEQ ID NO:433)TAATTCGATG GAGAAGGTGG TTTAGTGAAA AGATTTTCAT TTTTTTTACT AATTTTACTTGCTTTAACAG GTTGTAAATC CGGTGAAAAA GAATTTGATG AAGAATCTCT TCAAAATCTAAAGGAAACGN CACAGTCTTA NTCAGAAACA GAATTACAAA ATGGTGACGT TCGTTTAAATGAATATATTT CTTTGAAAGG GGAGATTGTT GAGAGTGACA GTCGTTCCAG TTTAATAAAAAAAGGTGATC GTTTTATTTT GAAAAGTGGT TCTAGTAAAT ATCAAGTTTN TAATGAGCAAAAGAAAAAAT TGAAGATTGG TGACGAAGTG ACAGTTTACG GAGAATATTA CGGCTTTTTGAAAGGCACAT TAATTGAAAG TGAGGAGAAT CATGATTCAG CCACGAATTA CEF117-2 (SEQ ID NO:434)VKR FSFFLLILLA LTGCKSGEKE FDEESLQNLK ETXQSXSETE LQNGDVRLNEYISLKGEIVE SDSRSSLIKK GDRFILKSGS SKYQVXNEQK KKLKIGDEVT VYGEYYGFLKGTLIESEENH DSATNEF117-3 (SEQ ID NO:435)TG AAGAATCTCT TCAAAATCTAAAGGAAACGN CACAGTCTTA NTCAGAAACA GAATTACAAA ATGGTGACGT TCGTTTAAATGAATATATTT CTTTGAAAGC GGAGATTGTT GACAGTGACA GTCCTTCCAG TTTAATAAAAAAAGGTGATC GTTTTATTTT GAAAAGTGGT TCTAGTAAAT ATCAAGTTTN TAATGAGCAAAAGAAAAAAT TGAAGATTGG TGACGAAGTG ACAGTTTACG GACAATATTA CGGCTTTTTGAAAGGGACAT TAATTGAAAG TGAGGAGAAT CATGATTCAG CCACGAAEF117-4 (SEQ ID NO:436)EESLQNLK ETXQSXSETE LQNGDVRLNE YISLKGEIVE SDSRSSLIKK GDRFILKSGSSKYQVXNEQK KKLKIGDEVT VYGEYYGFLK GTLIESEENH DSATNEF118-1 (SEQ ID NO:437)TGAGGGGGAA AAAGTGTGTT AAAAAGAAAA GTGGGGATTG TCGCAGGCCT TTTCTGTTCAGCTTTGTTAC TGACAGGTTG TGGCAAAAGT GCGAAAGATG AGTTCATTCA AGGAATCGGCAATCANAACG CACAAGAATC TGGGGTTTGN GATTTCTCTA TGTCAATTAG TGACATGAAATTTTCACAAG AAGATGGTGC ACAAACGAAT CCTATGATTG GGATGCTCAT CACGCAAATCAAAGACGCAT CGCTTTCTGG GGAAGATTCA AGTAGATGCC AAAAAAGAAA AAGCATTCAACTTAGACATC AAATTAAAAG CGATCGCAAT GGATCTACCG ATTTCATTGG TTGGATCGTTAGATAAEF118-2 (SEQ ID NO:438)VLKRKV GIVAGVFCSA LLLTGCGKSA KDEFIQGIGN XNAQESGVXD FSMSISDMKFSQEDGAQTNP MIGMLITQIK DASLSGEDSS RCQKRKSIQL RDETKSDGNG CTDFIGWIVREF118-3 (SEQ ID NO:439)GAAAGATG AGTTCATTCA AGGAATCGGCAATCANAACG CACAAGAATC TGCGGTTTGN GATTTCTCTA TGTCAATTAG TGACATGAAATTTTCACAAG AAGATGGTGC ACAAACGAAT CCTATGATTG GGATGCTCAT CACGCAAATCAAAGACGCAT CGCTTTCTGG GGAAGATTCA AGTAGATGCC AAAAAAGAAA AAGCATTCAACTTAGAGATG AAATTAAAAG CGATGGGAAT GGATGTACCG ATTTCATTGG TTGGATCGTTAGATEF118-4 (SEQ ID NO:440)KDEFIQGIGN XNAQESGVXD FSMSISDMKF SQEDGAQTNP MIGMLITQIK DASLSGEDSSRCQKRKSIQL RDEIKSDGNG CTDFIGWIVREF119-1 (SEQ ID NO:441)TAAAGAATAC CGAGTAAAAT TTTCGGAAGG CTTTTTTTCA AAAATTGTAT ATGCAAAAGAAGTGCAACGG AAAGGAGCTC GGAAATCGTG AATAAGCTAC CTTTACTTAT TTTATTGTTAGGCGCAGTGT TGCTTGTTAG TGGCTGTCAA AGCCATAAGG AAGAAAACAA GTCTAGTAAAGTATCGACAG AAGAAACGAC AGTGATTGAA ACAGTAGCAA GGGAACAATC GAAGGAATCGTTTACGAGTG AAGCAACTAA AAAACAGACA GAAACAACGA AATTAGAAGA ACCAGATCATGTAAAACTTC TAGAAGCTTA TGGAAATGCG TATGCGAACT TTACAAGTAT TAATGATCGCAATGAAAAGC TAAAGCCCCT CATGACTGAA AAATGTATCA AAAAAAATGG AATTGATGTTAAAACTGGAG TAGCGTTAGT TTCCGTAGGA AAGGTTACAA CGATTTATAA AAATGATCAACATGAATATG CTTTACTTTT GGATTGTGAA CAAAATCGAA CGCAGACACG AGTCTTACTTTTGGCTAAGG TCAAGAACAA TAAAATTTCT GAAATGACCT ATAATTCAGT TAAGCAAGAGTATTAGEF119-2 (SEQ ID NO:442)VN KLPLLILLLG GVLLVSGCQS HKEENKSSKV STEETTVIET VAREQSKESF TSEATKKQTETTKLEEPDHV KLLEAYGNAY ANFTSINDRN EKLKPILMTEK CIKKNGIDVK TGVALVSVGKVTTIYKNDQH EYALLLDCEQ NGTQTRVLLL AKVKNNKISE MTYNSVKQEYEF119-3 (SEQ ID NO:443)AGAAAACAA GTCTAGTAAAGTATCGACAC AAGAAACGAC AGTGATTGAA ACAGTAGCAA GGGAACAATC GAAGGAATCGTTTACGAGTG AAGCAACTAA AAAACAGACA GAAACAACGA AATTAGAAGA ACCAGATCATGTAAAACTTC TAGAAGCTTA TGGAAATGCG TATGCGAACT TTACAAGTAT TAATGATCGCAATGAAAAGC TAAAGCCCCT CATGACTGAA AAATGTATCA AAAAAAATGG AATTGATGTTAAAACTGGAG TAGCGTTAGT TTCCGTAGGA AAGGTTACAA CGATTTATAA AAATGATCAACATGAATATG CTTTACTTTT GGATTGTGAA CAAAATGGAA CGCAGACACG AGTGTTACTTTTGGCTAAGG TGAAGAACAA TAAAATTTCT GAAATGACCT ATAATTCAGT TAAGCAAGAGTATEF119-4 (SEQ ID NO:444)ENKSSKV STEETTVIET VAREQSKESF TSEATKKQTE TTKLEEPDHV KLLEAYGNAYANFTS INDRNEKLKPLMTEK CIKKNGIDVK TGVALVSVGK VTTIYKNDQH EYALLLDCEQ NGTQTRVLLLAKVKNNKI SE MTYNSVKQEYEF120-1 (SEQ ID NO:445)TGAATAGGCG TGAAAAAGGG AATGTTAGCG TTTTTTGTCG TGCTAGCGGT TTTATCATTAACTGCTTGTC GGGAACCAAA AGNAAAGAAA GTAACCGCTT CAACGGAGGC ATCCTCTAAAGTTGAAGAGA CGAATGAAAA AACGAGTGAA ACAATTGATA AGACAAACGA ACAAGCGAGCAGCAGTGTCG AGTCTAACGA ATCAGTGAAA AATGAAGAGC CGACAGCTGA TGGAAACAATAGTCAGCTAA CTGTAGCTGA TTTAGATACT ACAGCGATTA ATGCTGGCGA TTTTACTACTTTAGTTGGAA TATGGAAAAA TGGTAAAGGA GAGAGTTTGA TCATTCATCC TGATGGTAGTACAAATACCG GAGGAATGAT TACGAAGGAT TCACCTACTG ATGAGTCGCG ACCAATTACAAGCTTAAGTA TTAGGTGGGG GCCTACTGGT GCTGCGCTAT TATTATATAA AATTGGTGTTEF120-2 (SEQ ID NO:446)VKKGMLAF FVVLAVLSLT ACREPKXKKV TASTEASSKV EETNEKTSET IDKTNEQASSSVESNESVKN EEPTADGNNS QLTVADLDTT AINAGDFTTL VGIWKNGKGE SLIIHPDGSTNTGGMITKDS PTDESRPITS LSIRWGPTGA ALLLYKIGVEF120-3 (SEQ ID NO:447)AAGAAA GTAACCGCTT CAACGGAGGC ATCCTCTAAAGTTGAAGAGA CGAATGAAAA AACGACTGAA ACAATTGATA AGACAAACGA ACAAGCGAGCAGCAGTGTCG AGTCTAACGA ATCAGTGAAA AATGAAGAGC CGACAGCTGA TGGAAACAATAGTCAGCTAA CTGTACCTGA TTTAGATACT ACAGCGATTA ATGCTGCCGA TTTTACTACTTTAGTTGGAA TATGGAAAAA TGGTAAAGGA GAGAGTTTGA TCATTCATCC TGATGGTAGTACAAATACCG GAGGAATGAT TACGAAGGAT TCACCTACTG ATGAGTCGCG ACCAATTACAAGCTTAAGTA TTAGGTGGGG GCCTACTGGT GCTGCGCTAT TATTATATAA AATTGGTGTTEF120-4 (SEQ ID NO:448)KKV TASTEASSKV EETNEKTSET IDKTNEQASSSVESNESVKN EEPTADGNNS QLTVADLDTT AINAGDFTTL VGIWKNGKGE SLIIHPDGSTNTGGMITKDS PTDESRPITS LSIRWGPTGA ALLLYKIGVEF121-1 (SEQ ID NO:449)TGAAACACAA GGAGGAAATT TGTGAAAAAG TTGAGCTTTA AAAAAGTGAA GTGGGGCATGCATTTTTTAA TGGCTGTTGC GTTGATAGCG CCAAGTGTTA CTAGTACGGC ATATGCAGTAGAAACAACGA GTCAACAAAG TTCAGAAGCA GTAACAAGTA CCACCGATTC AAGTAGAAAACAAGAACCAG TCATTACACA GGAAACAACA GACATCAAAC AAGAAGCACC AAATCAGGCTACGAGTCACA GTGTCAAGCA GTCACAAGAA ACCACAGCAC CAACAGAGAC GACGAATTTAGAAACGTCAA TCGCTGAAAA AGAAGAAACG AGCACGCCGC AAAAAATAAC AATTTTAGGTACGTCAGATG TTCATGGTCA ATTATGGAAT TGGTCTTATG AAGATGATAA AGAACTACCAGTTGGTTTGT CCCAAGTAAG TACAGTCGTT AACCAAGTCC GGGCACAAAA CCCAGCAGGCACCGTTTTAA TTCATAATGG CGACAATATT CAAGGCACTA TTTTAACAGA TGACTTGTATAATAAAGCGC CTTTAGTGAA TGAAAAGACC CATCCAATGA TCACCGCCAT GAATGTGATGAAGTATGATG CAATGCTTTT GGGAAATCAT GAGTTTAATT TTGGTTTACC GTTAATCAAAAAAATTCAAC AAGAAGCCAC TTTTCCAATC TTGTCTGCGA ATACCTACAA TAAGGAAGATGGTCTTCCTT TTGTTGAAGG GACTACCACG AAGGAACTTG ATTTTAATCA AGATGGGCAGCCAGATTTAA AAGTTGGGAT TATCGGCTTA ACAATTCCGC ACATTCCTTT GTGGGATGGCCCTCGTGTTA CTTCGCTTAA TTTTTTACCT TTGAAAGAAG AAGCAGAAAA AGCAGTTACTGAGTTGAAAG CTAACGATCA GGCTGACATT ATTGTTGCCT CGATTCATGC GGGACAACAAAATAGTGATC CGGCTGCCAG TGCCGACCAA GTAATTGAAA ATGTCGCGGG GATTGATGCGTATATTCTGG GTCATGACCA CCTTTCTTTT ACCAAGCAAG GAGCAGCGCC GAATGGAAAAACTGTACCGG TAGGGGGACC GAAAGATACG GGGACAGAAG TTGTCAAAAT TGATCTTTCAGTTGCTAAAA ATGCCGATAA GTGGGAAGTG CAAGAAGGTA CAGCAACGAT TGTACCAACAACGAATGTTC CAGCAGATGA AGCAGTTAAG GCAGCGACAA AAGAATACCA TGAAAAAACGCGAGCGTTTA TTCAGGAGGA GATCGGCACA GCAACAGCTG ATTTTTTACC AAAACAAGAAATTAAAGGAA TTCCCGAAGC ACAATTACAA CCAACAGCGA TGATTTCTTT AATTAATAACGTTCAAAAAG AAGTAACGGG CGCACAATTA AGTGCGGCAG CGCTGTTTAA ATACGACAGTAAATTACCTG CGGGGAAGAT TTCCTATGCC ACGATTTTTG ATATCTACAA ATACCCGAATACCTTAGTGA GTGTTCCCAT TAACGGTGAA AACTTACTGA AGTATTTACA AAAACAAGCGGCGTACTATA ACCAAACACA GCCAGATGAT TTGACCATTA CTTTTAATCC AAACATTCGTGTATATAACT ATGACATGAT TTCTGGAGTG GACTACAAGA TTGACATTTC AAAACCAGTGGGTCAACGAA TTGTAGATGC GAAAATTGAC GGCCAACCCC TGGATCCTGC CAAAGAATATACGATTGCTA TGAATAATTA TCGTTACGGC GGTTTAGCTA GCCAAGGGAT TCAAGTAGGGGAACCTATTA AAAATTCTGA TCCAGAAACC TTACGAGGAA TGATTGTTGA TTATATTAAGAAAAAAGGAA CTCTTGATCC AGAACAACAA ATCGAACGAA ATTGGTCAAT TATTOGGACAAATTTTGATG AAAAATGGCG TGCCAAAGCA ATCGAATTAG TGAATGACGG CACTCTTCAAATTCCGACTT CTCCTGATGG ACGTACACCA AACGCCGCCG CTATTACGAA ACAAGATGTCCGTAATGCGG GCTTTGATTT AGATAATGCA TATACCATTA TGCACACAAA TGACGTTCATGGCCGACTAG AAGCAGGGAA AGGCGAATTA GGTATGGCGC GTCTAAAAAC CTTTAAAGACCAAGAAAACC CAACCTTGAT GGTGGATGCA GGGGATGTTT TCCAAGGATT ACCAATCTCCAATTTCTCCA AAGGCGCGGA TATGGCCAAA GCAATGAATG AAGTTGGTTA TGATGCCATGGCGGTGGGAA ATCACGAGTT TGATTTTGGT TTAGAGATTG CACTAGGTTA TAAAGACCAACTGAATTTTC CGATTTTATC TAGTAATACG TATTACAAAG ATGGCAGTGG ACGGGTTTTTGATCCGTATA CAATCGTAGA AAAATCCGGG AAAAAGTTTG CCATTGTAGG TGTGACGACCCCAGAAACAG CAACGAAAAC ACACCCGAAA AACGTAGAGA AGGTGACATT TAAAGACCCGATTCCAGAAG TAGAAGCAGT GATTAAGGAA ATTAAAGAGA AGTACGCGGA TATNCAAGCTTTCGTGGTTA CTGGGCATTT AGGCGTAGAT GAAACGACCC CGCATATCTG GCGTGGTGATACGCTAGCAG AAACCCTTAG TCAAACATAT CCTGAGTTAG ATATCACTGT GATTGATGGACATTCGCATA CAGCCGTCGA AAGTGGCAAA CGTTATGGCA AAGTCATCTA TGCTCAAACAGGTAATTATT TAAATAATGT TGGGATCGTC ACAGCACCAG AGAGTGAACC AACTAAGAAAACAACAAAAT TGATTTCAGC AGCAGAGCTG CTAGAATTGC CAGAAAACCC GGCAGTTAAAGCCATCGTTG ATGAAGCACG TACGAATTTT AACGCTGAAA ATGAAAAAGT AATTGTCGATTATATTCCAT TCACATTGGA TGGACAACGA GAAAATGTGC GCACACGAGA GACCAACTTAGGGAATTTGA TTGGTGATGC GATTATGTCA TATGGCCAAG ACGCGTTTAG CCAACCTGCTGATTTTGCAG TAACTAATGG TGGCGGCATT CGCGCTGATA TTAAACAAGG GCCAATTAAAGTTGGGGATG TCATTGCTGT GTTACCTTTT GGCAATAGCA TTGCGCAAAT TCAAGTAACCGGCGCCCAAG TTAAAGAAAT GTTTGAAATG TCTGTTCGTT CGATTCCACA AAAAGATGAGAATGGCACAA TTTTACTAGA TGATGCTGGC CAACCAAAAC TTGGCGCAAA TCGTGGTTTCCTACATGTTT CAAGCTCCAT TCGTATCCAC TATGATTCCA CAAAACCAGG TACTCGCTTGGCTAGTGACG AAGGCAATGA AACAGGACAA ACGATTGTCG GTAGTCGCGT ATTAGGAATAGAAATTAAAA ATCGGCAAAC ACAAAAGTTT GAACCATTGG ATGAGAAGAA ACAATACCGGATGGCTACCA ATGATTTCTT AGCTGCTGGT GGTGATGGTT ACGATATGCT AGGTGGTGAACGAGAAGAAG GGATTTCACT AGATTCTGTC TTAATTGAAT ACTTGAAAAG TGCAACCAGCTTGCGGTTGT ATCGTGCAGC AACGACGATT GATTTAGCAC AATATAAAGA ACCATTCCCAGGCGAACGAA TTGTTTCTAT TTCGGAAGAA GCTTACAAAG AGTTAATCGG TGGAGGAGAGACGCCAAAAC CAGATCCAAA ACCAGACCCG AAACCAACAC CAGAAACACC AGTAGCAACCAATAAACAAA ACCAAGCGGG AGCAAGACAG AGCAATCCAT CCGTAACAGA GAAGAAAAAGTATGGCGGCT TTTTACCTAA AACGGGTACA GAAACAGAAA CGCTTGCATT ATATGGTTTACTGTTCGTTG GACTTTCTTC TTCTGGCTGG TATATTTATA AACGACGTAA CAAAGCTAGTTAGEF121-2 (SEQ ID NO:450)VKKL SFKKVKWGMH FLMAVALIAP SVTSTAYAVE TTSQQSSEAV TSTTDSSRKQEPVITQETTD IKQEAPNQAT SDSVKQSQET TAPTETTNLE TSIAEKEETS TPQKITILGTSDVHGQLWNW SYEDDKELPV GLSQVSTVVN QVRAQNPAGT VLIDNGDNIQ GTILTDDLYNKAPLVNEKTH PMITAMNVMK YDAMVLGNHE FNFGLPLIKK IQQEATFPIL SANTYNKEDGLRFVEGTTTK ELDFNQDGQP DLKVGIIGLT IPHIPLWDGP RVTSLNFLPL KEEAEKAVTELKANDQADII VASIHAGQQN SDPAASADQV IENVAGIDAY ILGHDHLSFT KQGAAPNGKTVPVGGPKDTG TEVVKIDLSV AKNADKWEVQ EGTATIVPTT NVPADEAVKA ATKEYHEKTRAFIQEEIGTA TADFLPKQEI KGIPEAQLQP TANISLINNV QKEVTGAQLS AAALFKYDSKLPAGKISYAT IFDIYKYPNT LVSVPINGEN LLKYLEKQGA YYNQTQPDDL TISFNPNIRVYNYDMISGVD YKIDISKPVG ERIVDAKIDG QPLDPAKEYT IAMNNYRYGG LASQGIQVGEPIKNSDPETL RGMIVDYIKK KGTLDPEQEI ERNWSIIGTN FDEKWRAKAT ELVNDGTLQTPTSPDGRTPN AAAITKQDVR NAGFDLDNAY TIMHTNDVHG RLEAGKGELG MARLKTFKDQENPTLMVDAG DVFQGLPISN FSKGADMAKA MNEVGYDANA VGNHEFDFGL EIALGYKDQLNFPILSSNTY YKDGSGRVFD PYTIVEKSGK KFAIVGVTTP ETATKTHPKN VEKVTFKDPIPEVEAVIKEI KEKYADXQAF VVTGHLGVDE TTPHIWRGDT LAETLSQTYP ELDITVIDGHSHTAVESGKR YGKVIYAQTG NYLNNVGIVT APESEPTKKT TKLISAAELL ELPENPAVKAIVDEARTNFN AENEKVIVDY IPFTLDCQRE NVRTRETNLG NLIGDAIMSY GQDAFSQPADFAVTNGGGIR ADIKQGPIKV GDVIAVLPFG NSIAQTQVTG AQVKEMFEMS VRSIPQKDENGTILLDDAGQ PKLGANGGFL HVSSSIRIHY DSTKPGTRLA SDEGNETGQT IVGSRVLGIETKNRQTQKFE PLDEKKQYRM ATNDFLAACG DGYDMLGGER EEGISLDSVL IEYLKSATSLRLYRAATTTD LAQYKEPFPG ERIVSISEEA YKELIGGGET PKPDPKPDPK PTPETPVATNKQNQAGARQS~NPSVTEKKKY GGFLPKTGTE TETLALYGLLJ FVGLSSSGWY IYKRRNKASEF121-3 (SEQ ID NO:451)ACAAAG TTCAGAAGCA GTAACAAGTA CCACCGATTC AAGTAGAAAACAAGAACCAC TCATTACACA CGAAACAACA GACATCAAAC AACAAGCACC AAATCACGCTACGAGTGACA GTGTCAAGCA GTCACAACAA ACCACAGCAC CAACAGAGAC GACCAATTTAGAAACGTCAA TCGCTGAAAA AGAAGAAACG AGCACGCCGC AAAAAATAAC AATTTTAGGTACGTCAGATG TTCATGGTCA ATTATGGAAT TGGTCTTATG AAGATCATAA AGAACTACCAGTTGGTTTGT CCCAAGTAAG TACAGTCGTT AACCAAGTCC GGGCACAAAA CCCAGCAGGCACCGTTTTAA TTCATAATGG CGACAATATT CAAGGCACTA TTTTAACAGA TGACTTGTATAATAAAGCGC CTTTAGTGAA TGAAAAGACC CATCCAATGA TCACCCCCAT GAATGTGATGAAGTATGATG CAATGGTTTT CGGAAATCAT GAGTTTAATT TTCGTTTACC GTTAATCAAAAAAATTCAAC AAGAAGCCAC TTTTCCAATC TTGTCTGCGA ATACCTACAA TAAGGAAGATGGTCTTCGTT TTGTTGAAGG GACTACCACG AAGGAACTTG ATTTTAATCA AGATGGGCACCCAGATTTAA AAGTTGGGAT TATCGGCTTA ACAATTCCGC ACATTCCTTT GTGGGATGGCCCTCGTGTTA CTTCGCTTAA TTTTTTACCT TTGAAACAAG AAGCAGAAAA AGCAGTTACTGAGTTGAAAC CTAACGATCA CCCTGACATT ATTGTTGCCT CGATTCATGC GGCACAACAAAATAGTGATC CGGCTGCCAG TCCCGACCAA CTAATTGAAA ATGTCGCGGG GATTGATGCCTATATTCTGG GTCATGACCA CCTTTCTTTT ACCAACCAAG GAGCAGCGCC GAATGGAAAAACTGTACCCG TAGGGGGACC GAAAGATACG GGGACAGAAG TTGTCAAAAT TGATCTTTCAGTTGCTAAAA ATGCCGATAA GTGGGAAGTG CAAGAAGGTA CAGCAACGAT TGTACCAACAACCAATGTTC CAGCAGATGA AGCAGTTAAG GCAGCGACAA AAGAATACCA TGAAAAAACGCGAGCGTTTA TTCAGCAGCA GATCGGCACA GCAACAGCTG ATTTTTTACC AAAACAAGAAATTAAAGGAA TTCCCGAAGC ACAATTACAA CCAACAGCGA TGATTTCTTT AATTAATAACGTTCAAAAAG AAGTAACCGG CGCACAATTA AGTGCGGCAG CGCTOTTTAA ATACGACAGTAAATTACCTG CGCCGAAGAT TTCCTATGCC ACGATTTTTG ATATCTACAA ATACCCGAATACCTTAGTGA GTGTTCCCAT TAACGGTGAA AACTTACTGA ACTATTTACA AAAACAACCGGCGTACTATA ACCAAACACA GCCAGATGAT TTGACCATTA GTTTTAATCC AAACATTCGTCTATATAACT ATGACATGAT TTCTGGAGTC GACTACAACA TTGACATTTC AAAACCAGTGGGTGAACGAA TTGTAGATGC CAAAATTGAC GGCCAACCGC TGGATCCTGC CAAAGAATATACGATTGCTA TGAATAATTA TCGTTACGGC GGTTTAGCTA GCCAAGGCAT TCAAGTAGGGGAACCTATTA AAAATTCTGA TCCAGAAACC TTACGAGCAA TGATTGTTGA TTATATTAAGAAAAAAGGAA CTCTTGATCC AGAACAAGAA ATCGAACGAA ATTGGTCAAT TATTGGGACAAATTTTGATG AAAAATGGCG TGCCAAAGCA ATCCAATTAG TGAATGACGG CACTCTTCAAATTCCGACTT CTCCTGATGC ACGTACACCA AACCCCGEF121-4 (SEQ ID NO:452)QSSEAV TSTTDSSRKQEPVITQETTD IKQEAPNQAT SDSVKQSQET TAPTETTNLE TSIAEKEETS TPQKITILGTSDVHGQLWNW SYEDDKELPV GLSQVSTVVN QVRAQNPAGT VLIDNGDNIQ GTILTDDLYNKAPLVNEKTH PMITAMNVMK YDAMVLCNHE FNFGLPLIKK IQQEATFPIL SANTYNKEDOLRFVEGTTTK ELDFNQDGQP DLKVGIIGLT IPHIPLWDGP RVTSLNFLPL KEEAEKAVTELKANDQADII VASIHAGQQN SDPAASADQV TENVAGIDAY ILGHDHLSFT KQGAAPNGKTVPVGGPKDTG TEVVKIDLSV AKNADKWEVQ EGTATIVPTT NVPADEAVKA ATKEYHEKTRAFIQEEIGTA TADFLPKQET KGIPEAQLQP TAMISLINNV QKEVTGAQLS AAALFKYDSKLPAGKISYAT IFDIYKYPNT LVSVPTNGEN LLKYLEKQGA YYNQTQPDDL TISFNPNIRVYNYDMISGVD YKIDISKPVG ERIVDAKIDG QPLDPAKEYT IAMNNYRYGG LASQGIQVGEPIKNSDPETL RGMTVDYIKK KGTLDPEQEI ERNWSITGTN FDEKWRAKAI ELVNDGTLQIPTSPDGRTPN AEF122-1 (SEQ ID NO:453)TGAAACACAA GGAGGAAATT TGTGAAAAAG TTGAGCTTTA AAAAAGTGAA GTGGGGCATGCATTTTTTAA TGGCTGTTGC GTTGATAGCG CCAAGTGTTA CTAGTACGGC ATATGCAGTAGAAACAACGA GTCAACAAAG TTCAGAAGCA GTAACAAGTA CCACCGATTC AAGTAGAAAACAAGAACCAG TCATTACACA GGAAACAACA GACATCAAAC AAGAAGCACC AAATCAGGCTACGAGTGACA GTGTCAAGCA GTCACAAGAA ACCACAGCAC CAACAGAGAC GACCAATTTAGAAACGTCAA TCGCTGAAAA AGAAGAAACG AGCACGCCGC AAAAAATAAC AATTTTAGGTACGTCAGATG TTCATGGTCA ATTATGGAAT TGGTCTTATG AAGATGATAA AGAACTACCAGTTGGTTTCT CCCAAGTAAG TACAGTCGTT AACCAAGTCC GGGCACAAAA CCCAGCAGGCACCGTTTTAA TTGATAATGG CGACAATATT CAAGGCACTA TTTTAACAGA TGACTTGTATAATAAAGCGC CTTTAGTGAA TGAAAAGACC CATCCAATGA TCACCGCCAT GAATGTGATGAAGTATGATG CAATGGTTTT GGGAAATCAT GAGTTTAATT TTGGTTTACC GTTAATCAAAAAAATTCAAC AAGAAGCCAC TTTTCCAATC TTGTCTGCGA ATACCTACAA TAAGGAAGATGGTCTTCGTT TTGTTGAAGG GACTACCACG AAGGAACTTG ATTTTAATCA AGATGGGCAGCCAGATTTAA AAGTTGGGAT TATCGGCTTA ACAATTCCGC ACATTCCTTT GTGGGATGGCCCTCGTGTTA CTTCGCTTAA TTTTTTACCT TTGAAAGAAG AAGCAGAAAA AGCAGTTACTGAGTTGAAAG CTAACGATCA GGCTGACATT ATTGTTGCCT CGATTCATGC CGGACAACAAAATAGTGATC CGGCTGCCAG TGCCGACCAA GTAATTGAAA ATGTCGCGGG GATTGATGCGTATATTCTGG GTCATGACCA CCTTTCTTTT ACCAAGCAAG GAGCAGCGCC GAATGGAAAAACTGTACCGG TAGGGGGACC GAAAGATACG GGGACAGAAG TTGTCAAAAT TGATCTTTCAGTTGCTAAAA ATGCCGATAA GTGGGAAGTG CAAGAAGGTA CAGCAACGAT TGTACCAACAACGAATGTTC CAGCAGATGA AGCAGTTAAG GCAGCGACAA AAGAATACCA TGAAAAAACGCGAGCGTTTA TTCAGGAGGA GATCGGCACA GCAACAGCTG ATTTTTTACC AAAACAAGAAATTAAAGGAA TTCCCGAAGC ACAATTACAA CCAACAGCGA TGATTTCTTT AATTAATAACGTTCAAAAAG AAGTAACGGG CGCACAATTA AGTGCGGCAG CGCTGTTTAA ATACGACAGTAAATTACCTG CGGGGAAGAT TTCCTATGCC ACGATTTTTG ATATCTACAA ATACCCGAATACCTTAGTGA GTGTTCCCAT TAACGGTGAA AACTTACTGA AGTATTTAGA AAAACAAGGGGCGTACTATA ACCAAACACA GOCAGAIGAT TTGACCATTA GTTTTAATCC AAACATTCGTGTATATAACT ATGACATGAT TTCTGGAGTG GACTACAAGA TTGACATTTC AAAACCAGTGGGTGAACGAA TTGTAGATGC GAAAATTGAC GGCCAACCGC TGGATCCTGC CAAAGAATATACGATTGCTA TGAATAATTA TCGTTACGGC GGTTTAGCTA GCCAAGGGAT TCAAGTAGGGGAACCTATTA AAAATTCTGA TCCAGAAACC TTACGAGGAA TGATTGTTGA TTATATTAAGAAAAAAGGAA CTCTTGATCC AGAACAAGAA ATCGAACGAA ATTGGTCAAT TATTGGGACAAATTTTGATG AAAAATGGCG TGCCAAAGCA ATCGAATTAG TGAATGACGG CACTCTTCAAATTCCGACTT CTCCTGATGG ACOTACACCA AACGCCGCCG CTATTACGAA ACAAGATGTCCGTAATGCGG GCTTTGATTT AGATAATGCA TATACCATTA TGCACACAAA TGACGTTCATGGCCGACTAG AAGCAGGGAA AGGCGAATTA GGTATGGCGC GTCTAAAAAC CTTTAAAGACCAAGAAAACC CAACCTTGAT GGTGGATGCA GGGGATGTTT TCCAAGGATT ACCAATCTCCAATTTCTCCA AAGGCGCGGA TATGGCCAAA GCAATGAATG AAGTTGGTTA TGATGCCATGGCGGTGGGAA ATCACGAGTT TGATTTTGGT TTAGAGATTG CACTAGGTTA TAAAGACCAACTGAATTTTC CGATTTTATC TAGTAATACG TATTACAAAG ATGGCAGTGG ACGGGTTTTTGATCCGTATA CAATCGTAGA AAAATCCGGG AAAAAGTTTG CCATTGTAGG TGTGACGACCCCAGAAACAG CAACGAAAAC ACACCCGAAA AACGTAGAGA AGGTGACATT TAAAGACCCGATTCCAGAAG TAGAAGCACT GATTAACCAA ATTAAAGAGA ACTACGCGGA TATNCAAGGTTTCGTGGTTA CTGGGCATTT AGGCGTAGAT GAAACGACGC CGCATATCTG GCGTGGTGATACGCTACCAG AAACCCTTAG TCAAACATAT CCTCACTTAG ATATCACTGT GATTOATOGACATTOCCATA CAGCCGTCGA AAGTGGCAAA CGTTATGGCA AAGTGATCTA TCCTCAAACAGGTAATTATT TAAATAATGT TGGCATCGTC ACAGCACCAG AGAGTGAACC AACTAAGAAAACAACAAAAT TGATTTCAGC AGCAGAGCTG CTACAATTGC CAGAAAACCC GGCAGTTAAAGCCATCGTTC ATGAAGCACG TACGAATTTT AACGCTGAAA ATGAAAAAGT AATTGTCGATTATATTCCAT TCACATTGGA TGGACAACGA GAAAATGTGC GCACACGAGA GACCAACTTAGGGAATTTGA TTGGTGATGC GATTATGTCA TATGGCCAAG ACGCGTTTAG CCAACCTGCTGATTTTGCAG TAACTAATGG TGCCCGCATT CGCGCTGATA TTAAACAAGG GCCAATTAAAGTTGGGGATG TCATTGCTGT GTTACCTTTT GGCAATAGCA TTGCGCAAAT TCAAGTAACCGGCGCCCAAC TTAAAGAAAT GTTTGAAATG TCTGTTCGTT CGATTCCACA AAAAGATGAGAATGGCACAA TTTTACTAGA TGATGCTGGC CAACCAAAAC TTGGCGCAAA TGGTGGTTTCCTACATCTTT CAAGCTCCAT TCGTATCCAC TATGATTCCA CAAAACCAGG TACTCGCTTGGCTAGTGACG AAGGCAATGA AACAGGACAA ACGATTGTCG GTAGTCGCGT ATTAGGAATAGAAATTAAAA ATCGGCAAAC ACAAAAGTTT GAACCATTGG ATGAGAAGAA ACAATACCGCATGGCTACCA ATGATTTCTT AGCTGCTGGT GGTGATGGTT ACGATATGCT AGGTGGTGAACGAGAACAAG GGATTTCACT ACATTCTGTC TTAATTGAAT ACTTCAAAAG TCCAACCAGCTTGCGGTTGT ATCGTGCAGC AACGACGATT GATTTAGCAC AATATAAAGA ACCATTCCCAGGCGAACGAA TTGTTTCTAT TTCGGAAGAA GCTTACAAAG AGTTAATCGG TGGAGGAGAGACGCCAAAAC CAGATCCAAA ACCAGACCCC AAACCAACAC CAGAAACACC AGTAGCAACCAATAAACAAA ACCAAGCGGG AGCAAGACAG AGCAATCCAT CCGTAACAGA GAAGAAAAAGTATGGCGGCT TTTTACCTAA AACGGGTACA GAAACAGAAA CGCTTGCATT ATATGGTTTACTGTTCGTTG GACTTTCTTC TTCTGGCTGG TATATTTATA AACGACGTAA CAAAGCTAGTTAGEF122-2 (SEQ ID NO:454)VKKL SFKKVKWGMH FLMAVALIAP SXTTSTAYAVE TTSQQSSEAV TSTTDSSRKQEPVITQETTD IKQEAPNQAT SDSVKQSQET TAPTETTNLE TSIAEKEETS TPQKTTTLGTSDVHGQLWNW SYEDDKELPV GLSQVSTVVN QVBAQNPAGT VLIDNGDNIQ GTILTDDLYNKAPLVNEKTH PMITANNVMK YDAMVLGNHE FNFGLPLIKK IQQEATFPTL SANTYNKEDGLRFVEGTTTK ELDFNQDGQP DLKVGIIGLT IPHIPLWDGP RVTSLNFLPL KEEAEKAVTELKANDQADII VASIHAGQQN SDPAASADQV TENVAGIDAY ILGHDHLSFT KQGAAPNGKTVPVGGPKDTG TEVVKTDLSV AKNADKWEVQ EGTATIVPTT NVPADEAVKA ATKEYHEKTRAFIQESIOTA TADFLPKQEI KGIPEAQLQP TAMISLINNV QKEVTGAQLS AAALFKYDSKLPAGKISYAT IFDIYKYPNT LVSVPINGEN LLKYLEKQGA YYNQTQPDDL TTSFNPNIRVYNYDMISGVD YKIDISKPVG ERIVDAKIDG QPLDPAKEYT IAMNNYRYGG LASQGIQVGEPIKNSDPETL RGMIVDYIKK KGTLDPEQET EENWSIIGTN FDEKWRAKAI ELVNDGTLQTPTSPDGRTPN AAAITKQDVR NAGEDLONAY TIMHTNDVHG RLEAGKGELG MARLKTFKDQENPTLMVDAG DVFQGLPISN FSKGADMAKA MNEVGYDAMA VGNHEFDFGL EIALGYKDQLNFPILSSNTY YKDGSGRVFD PYTIVEKSGK KFATVGVTTP ETATKTHPKN VEKVTFKDPIPEVEAVIKET KEKYADXQAF VVTGHLGVDE TTPHIWRGDT LAETLSQTYP ELDITVIDGHSHTAVESGKR YGKVIYAQTG NYLNNVGIVT APESEPTKKT TKLISAAELL ELPENPAVKAIVDEARTNFN AENEKVIVDY IPFTLDGQRE NVRTRETNLG NLIGDAIMSY GQDAFSQPADFAVTNGGGIR ADIKQGPTKV GDVIAVLPFG NSIAQTQVTG AQVKEMFEMS VRSIPQKDENGTILLDDAGQ PKLGANGGFL EVESSIRIHY DSTKPGTRLA SDEGNETCQT IVGSRVLGIEIKNRQTQKFE PLDEKKQYRM ATNDFLAAGG DGYDMLGGER EEGTSLDSVL IEYLKSATSLRLYPAATTTD LAQYKEPEPG ERIVSISEEA YKELIGGGET PKPDPKPDPK PTPETPVATNKQNQAGARQS NPSVTEKKKY GGFLPKTGTE TETLALYGLL FVGLSSSGWY IYKRPNKASEF122-3 (SEQ ID NO:455)TG AAAAATGGCG TGCCAAAGCA ATCGAATTAG TGAATGACGG CACTCTTCAAATTCCGACTT CTCCTGATGG ACGTACACCA AACGCCGCCG CTATTACGAA ACAAGATGTCCGTAATGCGG GCTTTGATTT AGATAATGCA TATACCATTA TGCACACAAA TGACGTTCATGGCCGACTAG AAGCAGGGAA AGGCGAATTA GGTATGGCGC GTCTAAAAAC CTTTAAAGACCAAGAAAACC CAACCTTGAT GGTGGATCCA GGGGATGTTT TCCAAGGATT ACCAATCTCCAATTTCTCCA AAGGCGCGGA TATGGCCAAA GCAATGAATG AAGTTGGTTA TGATGCCATGGCGGTGGGAA ATCACGAGTT TGATTTTGGT TTAGAGATTG CACTACGTTA TAAAGACCAACTGAATTTTC CGATTTTATC TAGTAATACG TATTACAAAG ATGGCAGTGG ACGGGTTTTTGATCCGTATA CAATCGTAGA AAAATCCGGG AAAAAGTTTG CCATTGTAGG TGTGACGACCCCAGAAACAG CAACGAAAAC ACACCCGAAA AACGTAGAGA AGGTGACATT TAAAGACCCCATTCCAGAAG TAGAAGCAGT GATTAAGGAA ATTAAAGAGA AGTACGCGGA TATNCAAGCTTTCGTGGTTA CTGGGCATTT AGGCGTAGAT GAAACGACGC CGCATATCTG GCGTGGTGATACGCTAGCAG AAACCCTTAG TCAAACATAT CCTGAGTTAG ATATCACTGT GATTGATGGACATTCGCATA CAGCCGTCGA AAGTGGCAAA CGTTATGGCA AAGTGATCTA TGCTCAAACAGGTAATTATT TAAATAATGT TGGGATCGTC ACAGCACCAG AGAGTGAACC AACTAAGAAAACAACAAAAT TGATTTCAGC AGCAGAGCTG CTAGAATTGC CAGAAAACCC GGCAGTTAAAGCCATCGTTG ATGAAGCACG TACGAATTTT AACGCTGAAA ATGAAAAAGT AATTGTCGATTATATTCCAT TCACATTGGA TGGACAACGA GAAAATGTGC GCACACGAGA GACCAACTTAGGGAATTTGA TTGGTGATGC GATTATGTCA TATGGCCAAG ACGCGTTTAG CCAACCTGCTGATTTTGCAG TAACTAATGG TGGCCGCATT CGCGCTGATA TTAAACAAGG GCCAATTAAAGTTGGGGATG TCATTCCTGT GTTACCTTTT GGCAATAGCA TTGCGCAAAT TCAAGTAACCGGCGCCCAAG TTAAAGAAAT GTTTGAAATG TCTGTTCGTT CGATTCCACA AAAAGATGAGAATGGCACAA TTTTACTAGA TGATGCTGGC CAACCAAAAC TTGGCGCAAA TGGTGGTTTCCTACATGTTT CAAGCTCCAT TCGTATCCAC TATCATTCCA CAAAACCAGG TACTCGCTTGGCTAGTGACG AAGGCAATGA AACAGGACAA ACCATTGTCC GTAGTCGCGT ATTAGGAATAGAAATTAAAA ATCGGCAAAC ACAAAAGTTT GAACCATTGG ATGAGAAGAA ACAATACCGGATGGCTACCA ATGATTTCTT AGCTGCTGGT GGTGATGGTT ACGATATGCT AGGTCGTGAACGAGAAGAAG GGATTTCACT AGATTCTGTC TTAATTGAAT ACTTGAAAAG TGCAACCAGCTTGCGGTTGT ATCGTGCAGC AACGACGATT GATTTAGCAC AATATAAAGA ACCATTCCCAGGCGAACGAA TTGTTTCTAT TTCGGAAGAA GCTTACAAAG AGTTAATCGG TGGAGGAGAGACGCCAAAAC CAGATCCAAA ACCAGACCCG AAACCAACAC CAGAAACACC AGTAGCAACCAATAAACAAA ACCAAGCGGG AGCAAGACAG AGCAATCCAT CCGTAACAGA GAAGAAAAAGTATGGCGGCT TTEF122-4 (SEQ ID NO:456)EKWRAKAI ELVNDGTLQIPTSPDCRTPN AAAITKQDVR NAGFDLDNAY TIMHTNDVHG RLEAGKGELG MARLKTFKDQENPTLMVDAG DVFQGLPISN FSKGADMAKA MNEVGYDAMA VGNHEFDFGL EIALGYKDQLNFPILSSNTY YKDGSGRVFD PYTIVEKSGK KFAIVGVTTP ETATKTHPKN VEKVTFKDPIPEVEAVIKEI KEKYADXQAF VVTGHLGVDE TTPHIWRGDT LAETLSQTYP ELDITVIDGHSHTAVESGKR YGKVTYAQTG NYLNNVGIVT APESEPTKKT TKLISAAELL ELPENPAVKAIVDEARTNFN AENEKVIVDY IPFTLDGQRE NVRTRETNLG NLIGDAIMSY GQDAFSQPADFAVTNGGGIR ADIKQGPIKV GDVIAVLPFG NSTAQIQVTG AQVKEMFEMS VRSIPQKDENGTILLDDAGQ PKLGANGGFL HVSSSIRIHY DSTKPGTRLA SDEGNETGQT IVGSRVLGIELKNRQTQKFE PLDEKKQYRM ATNDFLAAGG DGYDMLGGER EEGISLDSVL IEYLKSATSLRLYRAATTID LAQYKEPFPG ERIVSISEEA YKELIGGGET PKPDPKPDPK PTPETPVATNKQNQAGARQS NPSVTEKKKY GGFEF123-1 (SEQ ID NO:457)TAAAATAAAA AATTGGTACG AAGTGAACGT TCTCTTCTAT GTGTCGTTAG TAGAGGAAGGATGAAAGAAA TGAGAAAGAA TGGTCCAATG GTAAACCGTT GGCTCTACGG GTTGATGTGTTTGTTACTTG TTCTAAATTA TGGCACACCA CTCATGGCTT TGGCGGAAGA GGTTAACAGCGATGGCCAGT TAACGTTAGG AGAAGTGAAG CAAACCAGCC AGCAAGAAAT GACCTTAGCGCTTCAAGGAA AAGCACAACC AGTAACACAA GAGGTTGTAG TGCATTATAG TGCCAATGTGTCAATCAAAG CTGCACATTG GGCAGCGCCC AATAATACGC GCAAGATTCA AGTGGATGACCAGAAGAAAC AGATTCAAAT TGAATTGAAT CAGCAAGCGT TAGCAGATAC CTTAGTCTTAACGTTGAACC CTACAGCTAC AGAAGATGTG ACGTTTTCTT ATCGACAACA GCAACGAGCGTTGACGTTAA AGACTGGTAC TGATCCGACA GAATCAACGG CAATCACGAG TTCGCCAGCCGCATCAGCGA ATGAAGGTTC AACAGAAGAA GCATCTACAA ACTCCTCTGT TCCTCGTTCGTCCGAAGAAA CTGTCGCCAG CACGACAAAA GCGATAGAAA GTAAAACAAC TGAATCGACGACTGTCAAAC CGCGCGTAGC AGGACCAACA GATATCAGTG ATTATTTTAC AGGTGATGAAACAACGATTA TCGATAATTT TGAAGATCCG ATTTATTTAA ATCCTGATGG AACACCAGCAACACCGCCGT ATAAAGAAGA TGTGACCATT CATTGGAACT TTAACTGGTC GATTCCAGAAGATGTGCGAG AACAAATGAA AGCAGGCGAT TACTTCGAGT TTCAATTACC TGGCAATTTGAAACCTAATA AACCAGGTTC AGGTGATTTA CTTGATGCAG AAGGCAATGT CTATGGAACCTACACAATTA GTGAAGATGG TACGGTTCGT TTTACCTTTA ATGAGCGAAT CACGTCTGAAAGTGACATTC ACGGGGACTT TTCTTTAGAT ACTCATTTGA ATGATTCAGA TGGGCGGGGCCCAGGAGATT GGGTGATTGA TATTCCTACA CAAGAAGATT TGCCGCCTGT AGTGATTCCAATTGTCCCAG ATACCGAACA ACAAATTGAT AAACAAGGCC ATTTTGATCG AACGCCCAATCCTAGTGCGA TTACTTGGAC GGTAGATATC AATCAAGCGA TGAAAGATCA AACAAATCCAACTGTGACGG AAACATGGCC AACAGGGAAT ACCTTTAAGT CCGTGAAAGT CTATGAGTTAGTGATCAATC TTGATGGAAC AATTAAAGAA GTGGGTCGCG AACTTAGTCC AGATGAATATACCGTTGATA AAAATGGCAA TGTGACGATT AAAGGTGACA CCAACAAAGC GTATCGTCTTGAGTACCAAA CGACGATTGA CGAGGCGGTT ATTCCAGATG GCGGCGGCGA TCTGCCTTTTAAAAATCACG CGACGTTAAC AAGTGATAAT AATCCAAATG GGTTAGATGC TGAAGCAACTGTTACCGCCA CATATGGCAA AATGTTAGAC AACCGCAATA TAGATTACGA CGAAGCCAATCAAGAATTCA CTTGGGAAAT TAACTACAAC TATGGTGAAC AAACCATTCC AAAAGACCAAGCAGTCATTA CAGACACAAT GGGGGATAAT TTAACGTTTG AACCAGATTC TTTACATTTATATTCAGTGA CATTTGATGA CAAAGGAAAT GAAGTCGTTG GAGCAGAACT TGTGGAAGGAAAAGATTACA AAGTGGTAAT CAACGGAGAC GGTTCCTTTG CAATTGACTT TTTACATGATGTGACTGGCG CAGTCAAGAT TGATTATAAA ACCAAAGTTG ATGGAATTGT CGAAGGCGATGTTGCCGTGA ATAATCGTGT GGATGTTGGC ACTGGTCAGC ATTCAGAAGA TGATGGCACAGCCAGTCAAC AAAATATTAT TAAAAACACT GGTGCAGTTG ATTATCAAAA TTCAACGATTGGTTGGACGT TAGCTGTGAA TCAAAATAAT TATTTGATGG AAAATGCCGT GATTACGGATACGTACGAAC CAGTTCCTGG CTTAACTATG GTACCCAATT CGTTGGTTGT CAAAGATACAACCACTGGTG CTCAGTTGAC GTTAGGCAAG GATTTCATGG TAGAAATAAC TCGTAATGCAGATGGTGAAA CAGGCTTTAA GGTAAGTTTT ATAGGGGCGT ATGCCAAAAC AAGTGATCCCTTCCACATAA CTTATACTAC CTTTTTCGAT GTTACCGAGT TAGACGCTAA CAATCCTGCGTTGGACCATT ATCGAAATAC CGCTGCCATT GATTGGACGG ATGAAGCAGG AAACAATCATCATTCAGAAG ATAGTAAACC GTTTAAACCT TTACCTGCTT TTGATTTAAA TGCGCAAAAAAGCGGTGTTT ACAATGCCGT CACCAAAGAA ATCACTTGGA CGATTGCGGT TAATTTAAGTAATAATCGTT TAGTCGACGC CTTTTTGACG GATCCAATTT TAACCAATCA AACCTATTTGGCTGGGACCT TGAAAGTCTA TGAAGGCAAT ACAAAGCCAG ATGGTTCGGT TGAAAAAGTGAAACCAACGC AACCGTTGAC GGATATCACA ATGGAAGAAC CAAGCGAGAA AAACCAAAATACTTGGCGTG TTGATTTTCC TAATGATACT CGTACGTATG TGATTGAATT TAAGACGTCTGTTGATGAAA AAGTTATCGA AGGTTCGGCT AGTTATGACA ATACCGCATC TTATACAAACCAAGGTTCTT CACGTCATGT GACAGGAAAA GTTTCTATTC AACATGGTGG CGAATCAGTGAAAAAAGCTG GCGAATACCA CAAAGATGAT CCAGATCATG TGTACTGGCA TGTAATGATCAATGGCGCCC AATCGGTTTT AGACGATGTG GTTATTACTG ATACACCCTC ACCAAACCAAGTGCTAGATC CCGAGTCATT GGTGATTTAC GGTACCAACG TAACAGAAGA CGGAACTATTACGCCAGATA AATCTGTTAT TTTAGAAGAA GGAAAAGATT ACACACTGGA AGTTACCACCGATAATGAAA CAGGACAACA AAAAATTGTC GTTAAAATGG CCCATATTGA AGCACCTTATTATATGGAAT ATCGTAGTTT AGTGACTTCT TCAGCGGCGG GGAGTACAGA CACGGTATCCAACCAAGTGT CAATTACTGG AAATGGTTCA GAAGTCGTTC ATGGGGATGA CAATGGCGATGTGGTCGTTG ACATTGATCA CAGTGGCGGG CATGCCACAG GGACTAAAGG CAAAATTCAGCTGAAGAAAA CAGCCATGGA TGAGACGACT ATTTTAGCAG GCGCCCATTT CCAAATTTGGGACCAAGCTA AAACACAAGT CCTACGTGAA GGTACAGTAG ATGCCACCGG GGTTATCACATTTGGTGGGT TGCCACAAGG GCAATACATT TTGGTGGAGA CAAAAGCACC AGAACGCTATACAGTTTCGG ACGAATTAGC TAAAGGCCGA GTCATTACTA TTGATGAAGA AACTTCAGCCGAAGGAGCAC AACCAACCAT TATTAAAAAC GATGTCAATA AAGTATTTTT AGAAAAAATGGATGAGAAGG GTAAAAAGTT AGTCAATGCT CGCTTTAAAT TAGAGCATGC CGTAACCACGCCGTTTACTC ATTGGGAAGA AGTTCCCCTT GCGCCGGATC GAACCAACGC GAATGGCCAGTTAGAGGTGG ATAGTTTAAA ACCAGGGCTT TATCAGTTCA CAGAAATCGA AGCACCGACAGGCTATCTTT TAGACACOAC CCCCAAACGA TTCATCGTGA CACAAAATAC GAGCGGACAAATTCGTGATG TTCATGTCAA AATGCTTAAT TACCAAGGTT CTGCTGAACT AATTAAAAAAGACCAAGCAG GCAATCCATT AGCAGGTGCT GAATTTTCAG TCCTTGACAC CACAGGACAAGCAGTTCGAG AACACTTAGT TTCGGATGCA AACGGAAAAG TCACAGTGAC GGATTTAGCCCCAGGAAAAT ATCAATTTGT GGAAACCAAA GCGCCAGCAG GGTACCTTTT AAACACTGAACCAAGTGCTT TCACGATTGC AGCAAGCGAT CGGGGCAAAC CAGCAACAGT TATAGCAACGGCTAACTTTG TTAACTATCA AGGCACGGCT AAATTAATCA AAAAAGATGT GAATGGACACTTATTAAGTG GTGCGACATT TAAAGTGCTT GATGCGAAGG GAGAAACGAT TCAAACAGGCTTGACGACAA ATAATCAAGG GGAAATTGTT GCAGAGCACT TAGCCCCAGG AAAATATCGCTTTGTAGAAA CCAAAGCGCC AACAGGCTAT TTATTAAATA CCACGCCAGT CCCATTTGAAATTGCTGAGA AAAATGCTGG TAAACCAGCG GTCGTGGTTG CTAGTGACAA CTTTGTGAGTTACAAAGGCG CTTTCCAAAT CGTGAAAACG AATAGCGCAG ACCAACCATT AGCAGGTGCTGTTTTTGAAT TATATGATCA CAATAAACAA TCATTAGGGA TTACAGCAAC GAGTGGCAAAGATGGCAAAA TTATCTTTAG AGACTTGGCG CCAGGTACCT ATTATTACAA AGAAATCAAAGCACCAAAAT TACCAGATGG CGCAGATTAT ATTATTTATC CTGAATTAGT AAAAGTAGAAATTCGTGGTG ATTTCAAAGG TGATCCGGAG ATTTTCCAAT TAGGGGCCTT CGCCAATTTCAAAGGACGCG CCGTCTTTAA GAAAATTGAT GCCAATGCGA ACCCACTTCC AGGAACGATTTTTAAATTGT ATCGAATCGA AAACGGGGAA AAAATCTTTG AAAGAGAACT AACTGCTGAAAAAGATGGTT CATTGGCTAT GGAGGATTTA GGTGCTGGTA GCTATGAATT AGATGAACTGGATGCAACGG ATGGCTATAT CGTCAATAAA CAACCCATTT ATTTTGTAGT GAAGAAGAATTCAAATGATA AACAACCACT AGATGAGTTA GAGTTTGTAA ATTATCAAGC AGAAGTAATGGGACGTAAAG TCAACGAGCA AGGTCAAACC TTAGCGGGTG CAGTTTTTGC AATTTACAATGCCGATGAGC AGAATCAGCC CCAAGGTTCA CCGATAACAT TCTTGAATCG TGCAGGAGAAAAAGTTTCTG AAATAACAAC GGATAAGACT GGCGAAATTT ACGCTAAAGG GCTAAATGAAGGGCATTACG TTTTAGTGGA AACGAAAGCA CCAACAGGCT ATCTGTTAGA CACAACGCTACATCCATTTG ATGTAACCGC CCAATTAGGA AAAGAGCAGC CAATTGCTTT AGGCGATCTTATCAATTATC AAGGAACTGC TCAATTAACC AAAGAAAACG AAACAGGTGA AGCATTGGCAGGTGCGGTGT TTAAGGTCAT TGATGAAACA GGGCAAACCG TAGATGGACA AACCAATCTGATGTCTGACA AGCAAGGCAA AGTCATTGCG AAAAACTTAG CACCGGGAAC GTATCGTTTTGTGGAGACAC AAGCGCCAAC TAGCTATCTT CTTAATGAAA CGCCAAGCGC AAGCTTTACGATTGCCAAAG ACAACCAAGG CAAACCAGCC ACTGTGGTAC TTAAAGCACC TTTTATTAATTACCAAGGTG CTGCCAAGCT GGTGAAAATT GATCAGCAAA AGAATGCCTT AGCAGGTGCTGAATTTAAAG TGACAGATGC AGAGACAGGG CAAACTGTCG CTCGTTCATT ACGTTCTGACAACCAAGGGT TAGTTCAAGT GAACCACTTA CAACCAGGAA AATATACCTT TGTGGAAACAAAAGCACCGG ATGGTTACCA ACTGTCTAAG CAAGCTGTCG CATTOACTAT TGCGGCAACAGCGAAAGACA AACCTGAACT CGTGAATGCG GGCACGTTTG TTAACGAGAA ACAACCTGTATCCAAAAAAA CAAAACCAAA TCAGCCAACA ACGAAACAAG CAGCTAGAGA GACAGGTTGGCTTGGTTTAC CGAAAACCAA CACACAAGTC AATTACTTCT TTGTCTTTAT CGGCCTCATGTTGGTCGGTT TGGCAAGTTG GCTCTTCTAT AAAAAGAGCA AGAAATAAEF123-2 (SEQ ID NO:458)MRKNGPMV NRWLYGLMCL LLVLNYGTPL MALAEEVNSDGQLTLGEVKQ TSQQEMTLAL QGKAQPVTQE VVVHYSANVS IKAAHWAAPN NTRKIQVDDQKKQIQIELNQ QALADTLVLT LNPTATEDVT FSYGQQQRAL TLKTGTDPTE STAITSSPAASANEGSTEEA STNSSVPRSS EETVASTTKA IESKTTESTT VKPRVAGPTD ISDYFTGDETTTIDNFEDPT YLNPDGTPAT PPYKEDVTIH WNFNWSIPED VREQNKACDY FEFQLPGNLKPNKPGSGDLV DAEGNVYGTY TISEDGTVRF TFNERITSES DIHGDFSLDT HLNDSDGRGPCDWVIDIPTQ EDLPPVVTPI VPDTEQQIDK QGHFDRTPNP SAITWTVDIN QANKDQTNPTVTETWPTGNT FKSVKVYELV MNLDGTIKEV GRELSPDEYT VDKNCNVTIK GDTNKAYRLEYQTTIDEAVT PDGGGDVPFK NHATLTSDNN PNCLDAEATV TATYGKMLDK RNIDYDEANQEFTWETNYNY GEQTIPKDQA VITDTMGDNL TFEPDSLHLY SVTFDDKGNE VVGAELVEGKDYKVVINGDG SFAIDFLHDV TGAVKIDYKT KVDGIVEGDV AVNNRVDVCT GQHSEDDGTASQQNIIKNTG AVDYQNSTIG WTLAVNQNNY LMENAVITDT YEPVPGLTMV PNSLVVKDTTTCAQLTLCKD FMVEITRNAD GETGFKVSFI GAYAKTSDAF HITYTTFFDV TELDANNPALDHYRNTAAID WTDEACNNHH SEDSKPFKPL PAFDLNAQKS GVYNAVTKET TWTIAVNLSNNRLVDAFLTD PILTNQTYLA GSLKVYEGNT KPDGSVEKVK PTQPLTDITM EEPSEKNQNTWRVDFPNDSR TYVIEFKTSV DEKVIEGSAS YDNTASYTNQ GSSRDVTGKV SIQHGGESVKKGGEYHKDDP DHVYWHVMTN GAQSVLDDVV ITDTPSPNQV LDPESLVTYG TNVTEDGTITPDKSVILEEG KDYTLEVTTD NETGQQKIVV KMAHIEAPYY MEYRSLVTSS AAGSTDTVSNQVSITGNGSE VVHGDDNGDV VVDIDHSGGH ATGTKGKIQL KKTAMDETTI LAGAHFQIWDQAKTQVLREG TVDATGVITF GGLPQGQYIL VETKAPEGYT VSDELAKGRV ITIDEETSAEGAQPTIIKND VNKVFLEKMD EKGKKLVNAR FKLEHAVTTP FTHWEEVPLA PDRTNANGQLEVDSLKPGLY QFTEIEAPTG YLLDTTPKRF IVTQNTSGQI RDVHVKMLNY QGSAELIKKDQACNPLAGAE FSVLDTTGQA VREHLVSDAN GKVTVTDLAP GKYQFVETKA PAGYLLNTEPSAFTIAASDR GKPATVTATA NFVNYQCTAK LIKKDVNCHL LSGATFKVLD AKGETIQTGLTTNNQGEIVA EHLAPCKYRF VETKAPTGYL LNTTPVPFEI AEKNAGKPAV VVASDNFVSYKGAFQIVKTN SADQPLAGAV FELYDHNKQS LGTTATSGKD OKITERDLAP GTYYYKEIKAPKLPDGADYT IYPELVKVEI RGDFKCDPET FQLGAFANFK GRAVFKKIDA NANPLPGTIFKLYRIENGEK IFEREVTAEK DGSLANEDLG AGSYELDELD ATDGYIVNKQ PIYFVVKKNSNDKQPLDELE FVNYQAEVMG RKVNEQGQTL AGAVFATYNA DEQNQPQCSP ITELNEAGEKVSEITTDKTG EIYAKGLNEG HYVLVETKAP TGYLLDTTLH PFDVTAQLGK EQPIALGDLTNYQGTAQLTK ENETGEALAG AVFKVIDETG QTVDGQTNLM SDKQGKVIAK NLAPGTYRFVETQAPTSYLL NETPSASFTI AKDNQGKPAT VVLKAPEINY QGAAKLVKID QQKNALAGAEFKVTDAETGQ TVARSLRSDN QGLVQVNHLQ PGKYTFVETK APDGYQLSKQ AVAFTIAATAKDKPELVNAG TFVNEKQPVS KKTKPNQPTT KQAARETGWL CLPKTNTQVN YFFVFIGLMLVGLASWLFYK KSKKEF123-3 (SEQ lED NO:459)CGAAGA GGTTAACAGCGATCCCCAGT TAACGTTACG AGAACTCAAG CAAACCAGCC AGCAAGAAAT GACCTTAGCGCTTCAAGGAA AAGCACAACC AGTAACACAA CAGGTTCTAG TOCATTATAG TGCCAATGTCTCAATCAAAG CTGCACATTG GGCAGCGCCC AATAATACGC GCAAGATTCA AGTCGATGACCAGAAGAAAC AGATTCAAAT TGAATTGAAT CAGCAACCGT TACCAGATAC GTTAGTCTTAACGTTCAACC CTACACCTAC AGAAGATGTG ACGTTTTCTT ATCGACAACA GCAACCAGCGTTGACGTTAA AGACTGGTAC TGATCCCACA GAATCAACGG CAATCACGAG TTCGCCAGCCGCATCAGCGA ATGAACGTTC AACAGAAGAA GCATCTACAA ACTCCTCTGT TCCTCGTTCGTCCGAAGAAA CTGTCGCCAG CACGACAAAA GCGATAGAAA GTAAAACAAC TGAATCGACGACTGTCAAAC CGCGCGTAGC AGGACCAACA GATATCACTG ATTATTTTAC AGGTCATGAAACAACGATTA TCCATAATTT TGAAGATCCG ATTTATTTAA ATCCTGATGG AACACCAGCAACACCGCCGT ATAAACAAGA TGTGACCATT CATTGGAACT TTAACTGGTC GATTCCACAAGATGTGCGAG AACAAATGAA AGGAGOCCAT TACTTCCAGT TTCAATTACC TGGCAATTTGAAACCTAATA AACCAGGTTC AGGTGATTTA GTTGATGCAG AAGGCAATGT CTATGGAACCTACACAATTA GTGAAGATGG TACGGTTCGT TTTACCTTTA ATGAGCGAAT CACGTCTGAAAGTGACATTC ACGGGGACTT TTCTTTAGAT ACTCATTTGA ATGATTCAGA TGGGCGGGGCCCAGGAGATT GGGTGATTGA TATTCCTACA CAAGAAGATT TGCCGCCTGT AGTGATTCCAATTGTCCCAG ATACCGAACA ACAAATTGAT AAACAAGGCC ATTTTGATCG AACGCCCAATCCTAGTGCGA TTACTTGGAC GGTAGATATC AATCAAGCGA TGAAAGATCA AACAAATCCAACTGTGACGG AAACATGGCC AACAGGGAAT ACCTTTAAGT CCGTGAAAGT CTATGAGTTAGTGATGAATC TTGATGGAAC AATTAAAGAA GTGGGTCGCG AACTTAGTCC AGATGAATATACCGTTGATA AAAATGGCAA TGTGACGATT AAAGGTGACA CCAACAAAGC GTATCGTCTTGAGTACCAAA CGACGATTGA CGAGGCGGTT ATTCCAGATG GCGGCCGCGA TGTGCCTTTTAAAAATCACG CGACCTTAAC AAGTCATAAT AATCCAAATG GGTTAGATGC TGAAGCAACTGTTACCGCCA CATATGGCAA AATGTTAGAC AAGCGCAATA TAGATTACGA CGAAGCCAATCAAGAATTCA CTTCGGAAAT TAACTACAAC TATGGTGAAC AAACCATTCC AAAAGACCAAGCAGTCATTA CAGACACAAT GGGCGATAAT TTAACGTTTG AACCAGATTC TTTACATTTATATTCAGTGA CATTTGATGA CAAAGGAAAT GAAGTCGTTG GAGCAGAACT TGTGGAAGGAAAAGATTACA AAGTGGTAAT CAACGGAGAC GGTTCCTTTG CAATTGACTT TTTACATGATGTGACTGGCG CAGTCAAGAT TGATTATAAA ACCAAAGTTG ATGGAATTGT CGAAGGCGATGTTGCCGTGA ATAATCGTCT GGATGTTGGC ACTGGTCAGC ATTCAGAAGA TGATGGCACAGCCAGTCAAC AAAATATTAT TAAAAACACT GGTGCAGTTG ATTATCAAAA TTCAACGATTGGTTGGACGT TAGCTGTGAA TCAAAATAAT TATTTGATGG AAAATGCCGT GATTACGGATACGTACGAAC CAGTTCCTGG CTTAACTATG GTACCCAATT CGTTGGTTGT CAAAGATACAACCACTGGTG CTCAGTTGAC GTTAGGCAAG GATTTCATGG TAGAAATAAC TCGTAATGCAGATGGTGAAA CAGGCTTTAA GGTAAGTTTT ATAGGGGCGT ATGCCAAAAC AAGTGATCCCTTCCACATAA CTTATACTAC CTTTTTCGAT GTTACCGAGT TAGACGCTAA CAATCCTGCGTTGGACCATT ATCGAAATAC CGCTGCCATT GATTGGEF123-4 (SEQ ID NO:460)EEVNSDGQLTLGEVKQ TSQQEMTLAL QGKAQPVTQE VVVHYSANVS IKAAHWAAPN NTRKIQVDDQKKQIQIELNQ QALADTLVLT LNPTATEDVT FSYGQQQRAL TLKTGTDPTE STAITSSPAASANEGSTEEA STNSSVPRSS EETVASTTKA IESKTTESTT VKPRVAGPTD ISDYFTGDETTTIDNFEDPI YLNPDGTPAT PPYKEDVTIH WNFNWSIPED VREQMKACDY FEFQLPCNLKPNKPGSGDLV DAEGNVYGTY TISEDGTVRF TFNERITSES DIHGDFSLDT HLNDSDGRGPGDWVTDTPTQ EDLPPVVIPI VPDTEQQIDK QGHFDRTPNP SAITWTVDIN QAMKDQTNPTVTETWPTGNT FKSVKVYELV MNLDGTIKEV GRELSPDEYT VDKNGNVTIK GDTNKAYRLEYQTTIDEAVI PDGGGDVPFK NHATLTSDNN PNGLDAEATV TATYGKMLDK RNIDYDEANQEFTWETNYNY GEQTTPKDQA VITDTMGDNL TFEPDSLHLY SVTFDDKGNE VVGAELVEGKDYKVVINGDG SFAIDFLHDV TGAVKIDYKT KVDGIVEGDV AVNNRVDVGT GQHSEDDGTASQQNIIKNTG AVDYQNSTIG WTLAVNQNNY LMENAVTTDT YEPVPGLTMV PNSLVVKDTTTGAQLTLGKD FMVEITRNAD GETGFKVSFI GAYAKTSDAF HITYTTFFDV TELDANNPALDHYRNTAAID WEF124-1 (SEQ ID NO:461)TAAAATAAAA AATTGGTACG AAGTGAACGT TCTCTTCTAT GTGTCGTTAG TAGAGGAAGGATGAAAGAAA TGAGAAAGAA TGGTCCAATG GTAAACCGTT GGCTCTACGG GTTGATGTGTTTGTTACTTG TTCTAAATTA TGGCACACCA CTCATGGCTT TGGCGGAAGA GGTTAACAGCGATGGCCAGT TAACGTTAGG AGAAGTGAAG CAAACCAGCC AGCAAGAAAT GACCTTAGCGCTTCAAGGAA AAGCACAACC AGTAACACAA GAGGTTGTAG TGCATTATAG TGCCAATGTGTCAATCAAAG CTGCACATTG GGCAGCGCCC AATAATACGC GCAAGATTCA AGTGGATGACCAGAAGAAAC AGATTCAAAT TGAATTGAAT CAGCAAGCCT TACCAGATAC GTTAGTCTTAACGTTGAACC CTACAGCTAC AGAAGATGTG ACGTTTTCTT ATGGACAACA GCAACGAGCGTTGACGTTAA AGACTGGTAC TGATCCGACA GAATCAACGG CAATCACGAG TTCGCCAGCCGCATCAGCGA ATGAAGGTTC AACAGAAGAA GCATCTACAA ACTCCTCTGT TCCTCGTTCGTCCGAAGAAA CTGTCGCCAG CACGACAAAA GCGATAGAAA GTAAAACAAC TGAATCGACGACTGTCAAAC CGCGCGTAGC AGGACCAACA GATATCAGTG ATTATTTTAC AGGTGATGAAACAACGATTA TCGATAATTT TGAAGATCCG ATTTATTTAA ATCCTGATGG AACACCAGCAACACCGCCGT ATAAAGAAGA TGTGACCATT CATTGGAACT TTAACTGGTC GATTCCAGAAGATGTGCGAG AACAAATGAA AGCAGGCGAT TACTTCGAGT TTCAATTACC TGGCAATTTGAAACCTAATA AACCAGGTTC AGGTGATTTA GTTGATGCAG AAGGCAATGT CTATGGAACCTACACAATTA GTGAAGATGG TACGGTTCGT TTTACCTTTA ATGAGCGAAT CACGTCTGAAAGTGACATTC ACGGGGACTT TTCTTTAGAT ACTCATTTGA ATGATTCAGA TCGGCGGGGCCCAGGAGATT GGGTGATTGA TATTCCTACA CAAGAAGATT TGCCGCCTGT AGTGATTCCAATTGTCCCAG ATACCGAACA ACAAATTGAT AAACAAGGCC ATTTTGATCG AACGCCCAATCCTAGTGCGA TTACTTGGAC GGTAGATATC AATCAAGCGA TGAAAGATCA AACAAATCCAACTGTGACGG AAACATGGCC AACAGGGAAT ACCTTTAAGT CCGTGAAAGT CTATGAGTTAGTGATGAATC TTGATGGAAC AATTAAAGAA GTGGGTCGCC AACTTAGTCC AGATGAATATACCGTTGATA AAAATGGCAA TGTGACGATT AAAGGTGACA CCAACAAAGC GTATCGTCTTGAGTACCAAA CGACGATTGA CGAGGCGGTT ATTCCAGATG GCGGCGGCGA TGTGCCTTTTAAAAATCACG CGACGTTAAC AAGTGATAAT AATCCAAATG GGTTAGATGC TGAAGCAACTGTTACCGCCA CATATGGCAA AATGTTAGAC AAGCGCAATA TAGATTACCA CGAAGCCAATCAAGAATTCA CTTGGGAAAT TAACTACAAC TATGGTGAAC AAACCATTCC AAAAGACCAAGCAGTCATTA CAGACACAAT GGGGGATAAT TTAACGTTTG AACCAGATTC TTTACATTTATATTCAGTGA CATTTGATGA CAAAGGAAAT GAAGTCGTTG GAGCAGAACT TGTGGAAGGAAAAGATTACA AAGTGGTAAT CAACGGAGAC GGTTCCTTTG CAATTGACTT TTTACATGATGTGACTGGCG CAGTCAAGAT TGATTATAAA ACCAAAGTTG ATGGAATTGT CGAAGGCGATGTTGCCGTGA ATAATCGTGT GGATGTTGGC ACTGGTCAGC ATTCAGAAGA TGATGGCACAGCCAGTCAAC AAAATATTAT TAAAAACACT GGTGCAGTTG ATTATCAAAA TTCAACGATTGGTTGGACGT TAGCTGTGAA TCAAAATAAT TATTTGATGG AAAATGCCGT GATTACGGATACGTACGAAC CAGTTCCTGG CTTAACTATG GTACCCAATT CGTTGGTTGT CAAAGATACAACCACTGGTG CTCAGTTGAC GTTAGGCAAG GATTTCATGG TAGAAATAAC TCGTAATGCAGATGGTGAAA CACGCTTTAA GGTAAGTTTT ATAGGGGCGT ATGCCAAAAC AAGTGATGCCTTCCACATAA CTTATACTAC CTTTTTCGAT GTTACCGAGT TAGACGCTAA CAATCCTGCGTTGGACCATT ATCCAAATAC CGCTGCCATT GATTGGACGG ATCAAGCAGG AAACAATCATCATTCAGAAG ATAGTAAACC GTTTAAACCT TTACCTGCTT TTGATTTAAA TGCGCAAAAAAGCGGTGTTT ACAATGCCGT CACCAAAGAA ATCACTTGGA CGATTGCGGT TAATTTAAGTAATAATCGTT TAGTCGACGC CTTTTTGACG GATCCAATTT TAACCAATCA AACCTATTTGGCTGGGAGCT TGAAAGTCTA TGAAGGCAAT ACAAAGCCAG ATGGTTCGGT TGAAAAAGTGAAACCAACGC AACCGTTGAC GGATATCACA ATGGAAGAAC CAAGCGAGAA AAACCAAAATACTTGGCGTG TTGATTTTCC TAATGATAGT CGTACGTATG TGATTGAATT TAAGACGTCTGTTGATGAAA AAGTTATCGA AGGTTCGGCT AGTTATGACA ATACCGCATC TTATACAAACCAAGGTTCTT CACGTGATGT GACAGGAAAA GTTTCTATTC AACATGGTGG CGAATCAGTGAAAAAAGGTG GCGAATACCA CAAAGATGAT CCAGATCATG TGTACTGGCA TGTAATGATCAATGGCGCCC AATCGGTTTT AGACGATGTG GTTATTACTG ATACACCCTC ACCAAACCAAGTGCTAGATC CCGAGTCATT GGTGATTTAC GGTACCAACG TAACAGAAGA CGGAACTATTACGCCAGATA AATCTGTTAT TTTAGAAGAA GGAAAAGATT ACACACTGGA AGTTACCACCGATAATGAAA CAGGACAACA AAAAATTGTC GTTAAAATGG CCCATATTGA AGCACCTTATTATATGGAAT ATCGTAGTTT AGTGACTTCT TCAGCGGCGG GGAGTACAGA CACGGTATCCAACCAAGTGT CAATTACTGG AAATGGTTCA GAAGTCGTTC ATGGGGATGA CAATGGCGATGTGGTCGTTG ACATTGATCA CAGTGGCGGG CATGCCACAG GGACTAAAGG CAAAATTCAGCTGAAGAAAA CAGCCATGGA TGAGACGACT ATTTTAGCAG GCGCCCATTT CCAAATTTGGGACCAAGCTA AAACACAAGT CCTACGTGAA GGTACAGTAG ATGCCACCGG GGTTATCACATTTGGTGGGT TGCCACAAGG GCAATACATT TTGGTGGAGA CAAAAGCACC AGAAGGCTATACAGTTTCGG ACGAATTAGC TAAAGGCCGA GTCATTACTA TTGATGAAGA AACTTCAGCCGAAGGAGCAC AACCAACCAT TATTAAAAAC GATGTCAATA AAGTATTTTT AGAAAAAATGGATGAGAAGG GTAAAAAGTT AGTCAATGCT CGCTTTAAAT TAGAGCATGC CGTAACCACGCCGTTTACTC ATTGGGAAGA AGTTCCCCTT GCGCCGGATC GAACCAACGC GAATGGCCAGTTAGAGGTGG ATAGTTTAAA ACCAGGGCTT TATCAGTTCA CAGAAATCGA AGCACCGACAGGCTATCTTT TAGACACCAC CCCCAAACGA TTCATCGTGA CACAAAATAC GAGCGGACAAATTCGTGATG TTCATGTCAA AATGCTTAAT TACCAAGGTT CTGCTGAACT AATTAAAAAAGACCAAGCAG GCAATCCATT AGCAGGTGCT GAATTTTCAG TCCTTGACAC CACAGGACAAGCAGTTCGAG AACACTTAGT TTCGGATGCA AACGGAAAAG TCACAGTGAC GGATTTAGCCCCAGGAAAAT ATCAATTTGT GGAAACCAAA GCGCCAGCAG GGTACCTTTT AAACACTGAACCAAGTGCTT TCACGATTGC AGCAAGCGAT CGGGGCAAAC CAGCAACAGT TATAGCAACGGCTAACTTTG TTAACTATCA AGGCACGGCT AAATTAATCA AAAAAGATGT GAATGGACACTTATTAAGTG GTGCGACATT TAAAGTGCTT CATGCGAAGG GAGAAACGAT TCAAACAGGCTTGACGACAA ATAATCAAGG GGAAATTGTT GCAGAGCACT TAGCCCCAGG AAAATATCGCTTTGTAGAAA CCAAAGCGCC AACAGGCTAT TTATTAAATA CCACGCCAGT CCCATTTGAAATTGCTGAGA AAAATGCTGG TAAACCAGCG GTCGTGGTTG CTAGTGACAA CTTTGTGACTTACAAAGGGG CTTTCCAAAT CGTGAAAACG AATAGCGCAG ACCAACCATT AGCAGGTGCTGTTTTTGAAT TATATGATCA CAATAAACAA TCATTAGGGA TTACAGCAAC GAGTGGCAAAGATGGCAAAA TTATCTTTAG AGACTTGGCG CCAGGTACCT ATTATTACAA AGAAATCAAAGCACCAAAAT TACCAGATOG CGCAGATTAT ATTATTTATC CTGAATTAGT AAAAGTAGAAATTCGTGGTG ATTTCAAAGG TGATCCGGAG ATTTTCCAAT TAGGGGCCTT CGCCAATTTCAAAGGACGCG CCGTCTTTAA GAAAATTGAT GCCAATGCGA ACCCACTTCC AGGAACGATTTTTAAATTGT ATCGAATCGA AAACGGGGAA AAAATCTTTG AAAGAGAAGT AACTGCTGAAAAAGATGGTT CATTGGCTAT GGAGGATTTA GGTGCTGGTA GCTATGAATT AGATGAACTGGATGCAACGG ATGGCTATAT CGTCAATAAA CAACCCATTT ATTTTGTAGT GAAGAAGAATTCAAATGATA AACAACCACT AGATGAGTTA GAGTTTGTAA ATTATCAAGC AGAAGTAATGGGACGTAAAG TCAACGAGCA AGGTCAAACC TTAGCGGGTG CAGTTTTTGC AATTTACAATGCCGATGAGC AGAATCAGCC CCAAGGTTCA CCGATAACAT TCTTGAATCG TGCAGGAGAAAAAGTTTCTG AAATAACAAC GGATAAGACT GGCGAAATTT ACGCTAAAGG GCTAAATGAAGGGCATTACG TTTTAGTGGA AACGAAAGCA CCAACAGGCT ATCTGTTAGA CACAACGCTACATCCATTTG ATGTAACCGC CCAATTAGGA AAAGAGCAGC CAATTGCTTT AGGCGATCTTATCAATTATC AAGGAACTGC TCAATTAACC AAAGAAAACG AAACAGGTGA AGCATTGGCAGGTGCGCTGT TTAAGGTCAT TGATGAAACA GGGCAAACCG TAGATGGACA AACCAATCTGATGTCTGACA AGCAAGGCAA AGTCATTGCG AAAAACTTAG CACCGGGAAC GTATCGTTTTGTGGAGACAC AAGCGCCAAC TAGCTATCTT CTTAATGAAA CGCCAAGCCC AAGCTTTACGATTGCCAAAG ACAACCAAGG CAAACCAGCC ACTGTGGTAC TTAAAGCACC TTTTATTAATTACCAAGGTG CTGCCAAGCT GGTGAAAATT GATCAGCAAA AGAATGCCTT AGCAGGTGCTGAATTTAAAG TGACAGATGC AGAGACAGGG CAAACTGTCG CTCGTTCATT ACGTTCTGACAACCAAGGGT TAGTTCAAGT GAACCACTTA CAACCAGGAA AATATACCTT TGTGGAAACAAAAGCACCGG ATGGTTACCA ACTGTCTAAG CAAGCTGTCG CATTCACTAT TGCGGCAACAGCGAAAGACA AACCTGAACT CGTGAATGCG GGCACGTTTG TTAACGAGAA ACAACCTGTATCCAAAAAAA CAAAACCAAA TCAGCCAACA ACGAAACAAG CAGCTAGAGA GACAGGTTGGCTTGGTTTAC CGAAAACCAA CACACAAGTC AATTACTTCT TTGTCTTTAT CGGCCTCATGTTGGTCGGTT TGGCAAGTTG GCTCTTCTAT AAAAAGAGCA AGAAATAAEF124-2 (SEQ ID NO:462)MRKNGPMV NRWLYGLMCL LLVLNYGTPL MALAEEVNSDGQLTLGEVKQ TSQQEMTLAL QGKAQPVTQE VVVHYSANVS IKAAHWAAPN NTRKIQVDDQKKQIQIELNQ QALADTLVLT LNPTATEDVT FSYGQQQRAL TLKTGTDPTE STAITSSPAASANEGSTEEA STNSSVPRSS EETVASTTKA IESKTTESTT VKPRVAGFTD ISDYFTGDETTITDNFEDPI YLNPDGTPAT PPYKEDVTIH WNFNWSIPED VREQMKAGDY FEFQLPGNLKPNKPGSGDLV DAEGNVYGTY TISEDGTVRF TFNERITSES DIHGDFSLDT HLNDSDGRGPGDWVIDIPTQ EDLPPVVIPT VPDTEQQIDK QGHFDRTPNP SAITWTVDIN QAMKDQTNPTVTETWPTGNT FKSVKVYELV MNLDGTIKEV GRELSPDEYT VDKNGNVTIK GDTNKAYRLEYQTTIDEAVI PDGGGDVPFK NHATLTSDNN PNGLDAEATV TATYGKMLDK RNIDYDEANQEFTWEINYNY GEQTTPKDQA VTTDTMGDNL TFEPDSLHLY SVTFDDKGNE VVGAELVEGKDYKVVINGDG SFAIDFLHDV TGAVKIDYKT KVDGIVEGDV AVNNRVDVGT GQHSEDDGTASQQNIIKNTG AVDYQNSTIG WTLAVNQNNY LMENAVITDT YEPVPGLTMV PNSLVVKDTTTGAQLTLGKD FMVEITRNAD GETGFKVSFI GAYAKTSDAF HTTYTTFFDV TELDANNPALDHYRNTAAID WTDEAGNNHH SEDSKPFKPL PAFDLNAQKS GVYNAVTKEI TWTIAVNLSNNRLVDAFLTD PILTNQTYLA GSLKVYEGNT KPDGSVEKVK PTQPLTDITM EEPSEKNQNTWRVDFPNDSR TYVIEFKTSV DEKVIEGSAS YDNTASYTNQ GSSRDVTGKV SIQHGGESVKKGGEYHKDDP DHVYWHVMIN GAQSVLDDVV ITDTPSPNQV LDPESLVIYG TNVTEDGTITPDKSVILEEG KDYTLEVTTD NETGQQKIVV KMAHIEAPYY MEYRSLVTSS AAGSTDTVSNQVSTTGNGSE VVHGDDNGDV VVDIDHSGGH ATGTKGKIQL KKTAMDETTI LAGAHFQIWDQAKTQVLREG TVDATGVTTF CGLPQGQYIL VETKAPEGYT VSDELAKGRV ITIDEETSAEGAQPTIIKND VNKVFLEKMD EKGKKLVNAR FKLEHAVTTP FTHWEEVPLA PDRTNANCQLEVDSLKPGLY QFTEIEAPTG YLLDTTPKRF IVTQNTSGQI RDVHVKMLNY QGSAELTKKDQAGNPLAGAE FSVLDTTGQA VREHLVSDAN GKVTVTDLAP GKYQFVETKA PAGYLLNTEPSAFTTAASDR GKPATVIATA NFVNYQGTAK LIKKDVNGHL LSGATFKVLD AKCETIQTGLTTNKQCEIVA EHLAPGKYRF VETKAPTGYL LNTTPVPFEI AEKNAGKPAV VVASDNFVSYKGAFQIVKTN SADQPLAGAV FELYDHNKQS LGITATSGKD GKTIFRDLAP GTYYYKEIKAPKLPDCADYI IYPELVKVEI RGDFKGDPEI FQLCAFANFK GPAVFKKIDA NANPLPGTIFKLYRIENGEK IFEREVTAEK DGSLAMEDLG AGSYELDELD ATDGYIVNKQ PIYFVVKKNSNDKQPLDELE FVNYQAEVMC RKVNEQGQTL ACAVEATYNA DEQNQPQGSP ITFLNRACEKVSETTTDKTG EIYAKGLNEG HYVLVETKAP TGYLLDTTLH PFDVTAQLGK EQPIALGDLINYQGTAQLTK ENETGEALAG AVFKVTDETG QTVDGQTNLM SDKQGKVIAK NLAPGTYRFVETQAPTSYLL NETPSASFTT AKDNQGKPAT VVLKAPFINY QCAAKLVKID QQKNALAGAEFKVTDAETGQ TVARSLRSDN QGLVQVNHLQ PGKYTFVETK APDGYQLSKQ AVAFTIAATAKDKPELVNAG TFVNEKQPVS KKTKPNQPTT KQAARETGWL GLPKTNTQVN YFFVFIGLMLVGLASWLFYK KSKKEF124-3 (SEQ ID NO:463)TGCCTTCCACATAACTTATACTACCTTTTTGACG GATCCAATTT TAACCAATCA AACCTATTTGGCTGGGAGCT TGAAAGTCTA TGAAGGCAAT ACAAAGCCAG ATGGTTCGGT TGAAAAAGTGAAACCAACGC AACCCTTGAC GCATATCACA ATGGAAGAAC CAAGCGAGAA AAACCAAAATACTTGCCGTG TTGATTTTCC TAATGATAGT CGTACGTATG TGATTGAATT TAAGACGTCTGTTGATGAAA AAGTTATCGA AGGTTCGGCT AGTTATGACA ATACCGCATC TTATACAAACCAAGGTTCTT CACGTGATGT GACAGGAAAA CTTTCTATTC AACATGGTCC CGAATCAGTGAAAAAAGGTC GCGAATACCA CAAAGATGAT CCACATCATG TCTACTGCCA TGTAATGATCAATGGCGCCC AATCGGTTTT AGACGATGTG GTTATTACTG ATACACCCTC ACCAAACCAAGTGCTAGATC CCGAGTCATT GGTGATTTAC GGTACCAACG TAACAGAAGA CGGAACTATTACOCCAGATA AATCTCTTAT TTTAGAAGAA CGAAAAGATT ACACACTGGA AGTTACCACCGATAATGAAA CAGGACAACA AAAAATTGTC GTTAAAATGG CCCATATTGA AGCACCTTATTATATGGAAT ATCGTAGTTT AGTGACTTCT TCAGCCGCGG OGACTACAGA CACGGTATCCAACCAAGTGT CAATTACTGG AAATGGTTCA GAAGTCGTTC ATGGGGATGA CAATGGCGATGTCGTCGTTG ACATTCATCA CAGTGCCGGG CATGCCACAG GGACTAAAGG CAAAATTCAGCTGAAGAAAA CAGCCATCGA TOAGACCACT ATTTTAGCAG GCGCCCATTT CCAAATTTGGGACCAAGCTA AAACACAAGT CCTACGTGAA GGTACACTAG ATGCCACCGG GGTTATCACATTTGGTGGGT TGCCACAAGG GCAATACATT TTGGTGGAGA CAAAAGCACC AGAAGGCTATACAGTTTCGG ACGAATTAGC TAAAGGCCGA GTCATTACTA TTGATGAAGA AACTTCAGCCGAAGGAGCAC AACCAACCAT TATTAAAAAC CATGTCAATA AAGTATTTTT AGAAAAAATGGATGAGAAGG GTAAAAAGTT AGTCAATGCT CGCTTTAAAT TAGAGCATGC CGTAACCACGCCGTTTACTC ATTCGGAAGA AGTTCCCCTT GCGCCGGATC GAACCAACGC GAATGGCCAGTTAGAGGTGG ATAGTTTAAA ACCAGCGCTT TATCAGTTCA CAGAAATCGA AGCACCGACAGGCTATCTTT TAGACACCAC CCCCAAACGA TTCATCGTGA CACAAAATAC GAGCGGACAAATTCGTGATG TTCATGTCAA AATGCTTAAT TACCAAGGTT CTGCTGAACT AATTAAAAAAGACCAAGCAG GCAATCCATT AGCAGGTGCT CAATTTTCAG TCCTTGACAC CACAGGACAAGCAGTTCGAG AACACTTAGT TTCGGATGCA AACGGAAAAG TCACAGTGAC GGATTTAGCCCCAGGAAAAT ATCAATTTGT GGAAACCAAA GCGCCAGCAG GGTACCTTTT AAACACTGAACCAAGTGCTT TCACGATTGC AGCAAGCGAT CGGGGCAAAC CAGCAACAGT TATAGCAACGGCTAACTTTG TTAACTATCA AGGCACGGCT AAATTAATCA AAAAAGATGT GAATGGACACTTATTAAGTG GTGCGACATT TAAAGTGCTT GATGCGAAGG GAGAAACGAT TCAAACAGGCTTGACGACAA ATAATCAAGG GEF124-4 (SEQ ID NO:464)AF HTTYTTFFDV TELDANNPALDHYRNTAAID WTDEAGNNHH SEDSKPFKPL PAFDLNAQKS GVYNAVTKEI TWTIAVNLSNNRLVDAFLTD PILTNQTYLA GSLKVYEGNT KPDGSVEKVK PTQPLTDITM EEPSEKNQNTWRVDFPNDSR TYVIEFKTSV DEKVIEGSAS YDNTASYTNQ GSSRDVTGKV SIQHGGESVKKGGEYHKDDP DHVYWHVMTN GAQSVLDDVV ITDTPSPNQV LDPESLVIYG TNVTEDGTITPDKSVILEEG KDYTLEVTTD NETGQQKIVV KMAHIEAPYY MEYRSLVTSS AAGSTDTVSNQVSITGNGSE VVHGDDNGDV VVDIDHSGGH ATGTKGKIQL KKTAMDETTI LAGAHFQIWDQAKTQVLREG TVDATGVITF GGLPQGQYIL VETKAPEGYT VSDELAKGRV ITIDEETSAEGAQPTIIKND VNKVFLEKMD EKGKKLVNAR FKLEHAVTTP FTHWEEVPLA PDRTNANGQLEVDSLKPGLY QFTEIEAPTG YLLDTTPKRF IVTQNTSGQI RDVHVKMLNY QGSAELIKKDQAGNPLAGAE FSVLDTTGQA VREHLVSDAN GKVTVTDLAP GKYQFVETKA PAGYLLNTEPSAFTIAASDR GKPATVTATA NFVNYQGTAK LIKKDVNGHL LSGATFKVLD AKGETTQTGLTTNNQGEF125-1 (SEQ ID NO:465)TAAAATAAAA AATTGGTACG AAGTGAACGT TCTCTTCTAT CTGTCGTTAG TAGAGGAAGGATGAAAGAAA TGAGAAAGAA TGGTCCAATG GTAAACCGTT GGCTCTACGG GTTGATGTGTTTGTTACTTG TTCTAAATTA TCGCACACCA CTCATGGCTT TGGCGGAAGA GGTTAACAGCGATGGCCAGT TAACGTTAGG AGAAGTGAAG CAAACCAGCC AGCAAGAAAT GACCTTAGCGCTTCAAGGAA AAGCACAACC AGTAACACAA GAGGTTGTAG TGCATTATAG TGCCAATGTGTCAATCAAAG CTGCACATTG GGCAGCGCCC AATAATACGC GCAAGATTCA AGTGGATGACCACAAGAAAC AGATTCAAAT TGAATTGAAT CAGCAAGCGT TACCAGATAC GTTAGTCTTAACGTTGAACC CTACAGCTAC AGAAGATGTG ACGTTTTCTT ATGGACAACA GCAACGAGCGTTGACGTTAA AGACTGGTAC TGATCCGACA GAATCAACGG CAATCACGAG TTCGCCAGCCGCATCAGCGA ATGAAGGTTC AACAGAAGAA GCATCTACAA ACTCCTCTGT TCCTCGTTCGTCCGAAGAAA CTGTCGCCAG CACGACAAAA GCGATAGAAA GTAAAACAAC TGAATCGACGACTGTCAAAC CGCGCGTAGC AGGACCAACA GATATCAGTG ATTATTTTAC AGGTGATGAAACAACGATTA TCGATAATTT TGAAGATCCG ATTTATTTAA ATCCTGATGG AACACCAGCAACACCGCCCT ATAAAGAAGA TGTGACCATT CATTGGAACT TTAACTGGTC GATTCCAGAAGATGTGCGAG AACAAATGAA AGCAGGCGAT TACTTCGAGT TTCAATTACC TGGCAATTTGAAACCTAATA AACCAGGTTC AGGTGATTTA GTTGATGCAG AAGGCAATGT CTATGGAACCTACACAATTA GTGAAGATGG TACGGTTCGT TTTACCTTTA ATGAGCGAAT CACGTCTGAAAGTGACATTC ACGGGGACTT TTCTTTAGAT ACTCATTTGA ATGATTCAGA TGGGCGGGGCCCAGGAGATT GGGTGATTGA TATTCCTACA CAAGAAGATT TGCCGCCTGT AGTGATTCCAATTGTCCCAG ATACCGAACA ACAAATTGAT AAACAAGGCC ATTTTGATCG AACGCCCAATCCTAGTGCGA TTACTTGGAC GGTAGATATC AATCAAGCGA TGAAAGATCA AACAAATCCAACTGTGACGG AAACATGGCC AACAGGGAAT ACCTTTAAGT CCGTGAAAGT CTATGAGTTAGTGATGAATC TTGATGGAAC AATTAAAGAA GTGGGTCGCG AACTTAGTCC AGATGAATATACCGTTGATA AAAATGGCAA TGTGACGATT AAAGGTGACA CCAACAAAGC GTATCGTCTTGAGTACCAAA CGACGATTGA CGAGGCGGTT ATTCCAGATG GCGGCGGCGA TGTGCCTTTTAAAAATCACG CGACGTTAAC AAGTGATAAT AATCCAAATG GGTTAGATGC TGAAGCAACTGTTACCGCCA CATATGGCAA AATGTTAGAC AAGCGCAATA TAGATTACGA CGAAGCCAATCAAGAATTCA CTTGGCAAAT TAACTACAAC TATGGTGAAC AAACCATTCC AAAAGACCAAGCAGTCATTA CAGACACAAT GGGGGATAAT TTAACGTTTG AACCAGATTC TTTACATTTATATTCAGTGA CATTTGATGA CAAAGGAAAT GAAGTCGTTG GAGCAGAACT TGTGGAAGGAAAAGATTACA AAGTGGTAAT CAACGGAGAC GGTTCCTTTG CAATTGACTT TTTACATGATGTGACTGGCG CAGTCAAGAT TGATTATAAA ACCAAAGTTG ATGGAATTGT CGAAGGCGATGTTGCCGTGA ATAATCGTGT GGATGTTGGC ACTGGTCAGC ATTCAGAAGA TGATGGCACAGCCAGTCAAC AAAATATTAT TAAAAACACT GGTGCAGTTG ATTATCAAAA TTCAACCATTGGTTGGACGT TAGCTGTGAA TCAAAATAAT TATTTGATGG AAAATGCCGT GATTACGGATACGTACGAAC CAGTTCCTGG CTTAACTATG GTACCCAATT CGTTGGTTGT CAAAGATACAACCACTGGTG CTCAGTTGAC GTTAGGCAAG GATTTCATGG TAGAAATAAC TCGTAATGCAGATGGTGAAA CAGCCTTTAA GGTAAGTTTT ATAGGGGCGT ATGCCAAAAC AAGTGATGCCTTCCACATAA CTTATACTAC CTTTTTCGAT GTTACCGAGT TAGACGCTAA CAATCCTGCGTTGGACCATT ATCGAAATAC CGCTGCCATT GATTGGACGG ATGAAGCAGG AAACAATCATCATTCAGAAG ATAGTAAACC GTTTAAACCT TTACCTGCTT TTGATTTAAA TGCGCAAAAAAGCGGTGTTT ACAATGCCGT CACCAAAGAA ATCACTTGGA CGATTGCGGT TAATTTAAGTAATAATCGTT TAGTCGACGC CTTTTTGACG GATCCAATTT TAACCAATCA AACCTATTTGGCTGGGAGCT TCAAAGTCTA TGAAGGCAAT ACAAAGCCAG ATGGTTCGGT TGAAAAAGTGAAACCAACGC AACCGTTGAC GGATATCACA ATGGAAGAAC CAAGCGAGAA AAACCAAAATACTTGGCGTG TTGATTTTCC TAATGATAGT CGTACGTATG TGATTGAATT TAAGACGTCTGTTGATGAAA AAGTTATCGA AGGTTCGGCT AGTTATGACA ATACCGCATC TTATACAAACCAAGGTTCTT CACGTGATGT GACAGGAAAA GTTTCTATTC AACATGGTGG CGAATCAGTGAAAAAAGGTG GCGAATACCA CAAAGATGAT CCAGATCATG TGTACTGGCA TGTAATGATCAATGGCGCCC AATCGGTTTT AGACGATGTG GTTATTACTG ATACACCCTC ACCAAACCAAGTGCTAGATC CCGAGTCATT GGTGATTTAC GGTACCAACG TAACAGAAGA CGGAACTATTACGCCAGATA AATCTGTTAT TTTAGAAGAA GGAAAAGATT ACACACTGGA AGTTACCACCGATAATGAAA CAGGACAACA AAAAATTGTC GTTAAAATGG CCCATATTGA AGCACCTTATTATATGGAAT ATCGTAGTTT AGTGACTTCT TCAGCGGCGG GGAGTACAGA CACGGTATCCAACCAAGTGT CAATTACTGG AAATGGTTCA GAAGTCGTTC ATGGGGATGA CAATGGCGATGTGGTCGTTC ACATTGATCA CAGTGGCGGG CATGCCACAC GGACTAAAGC CAAAATTCAGCTGAAGAAAA CAGCCATGGA TGAGACGACT ATTTTAGCAG GCGCCCATTT CCAAATTTGGGACCAAGCTA AAACACAAGT CCTACGTGAA GGTACAGTAG ATGCCACCGG GGTTATCACATTTGGTGGGT TGCCACAAGG GCAATACATT TTGGTGGAGA CAAAAGCACC AGAAGGCTATACAGTTTCCG ACGAATTAGC TAAAGGCCGA GTCATTACTA TTGATCAAGA AACTTCAGCCGAAGGAGCAC AACCAACCAT TATTAAAAAC GATGTCAATA AAGTATTTTT AGAAAAAATGGATGACAAGG GTAAAAAGTT AGTCAATGCT CGCTTTAAAT TAGAGCATGC CGTAACCACGCCGTTTACTC ATTGGGAAGA AGTTCCCCTT GCGCCGGATC GAACCAACGC GAATGGCCAGTTAGAGGTGG ATAGTTTAAA ACCAGGGCTT TATCAGTTCA CAGAAATCGA AGCACCGACAGGCTATCTTT TAGACACGAC CCCCAAACGA TTCATCGTGA CACAAAATAC GAGCGGACAAATTCGTGATG TTCATGTCAA AATGCTTAAT TACCAAGGTT CTGCTGAACT AATTAAAAAAGACCAAGCAG GCAATCCATT AGCAGGTGCT GAATTTTCAG TCCTTGACAC CACAGGACAAGCAGTTCGAG AACACTTAGT TTCGGATGCA AACGGAAAAG TCACAGTGAC GGATTTAGCCCCAGGAAAAT ATCAATTTGT GGAAACCAAA GCGCCAGCAG GGTACCTTTT AAACACTGAACCAAGTGCTT TCACGATTGC AGCAAGCGAT CGGGGCAAAC CAGCAACAGT TATAGCAACGGCTAACTTTG TTAACTATCA AGGCACGGCT AAATTAATCA AAAAAGATGT GAATGGACACTTATTAAGTG GTGCGACATT TAAAGTGCTT GATGCGAAGG GAGAAACGAT TCAAACAGGCTTGACGACAA ATAATCAAGG GGAAATTGTT GCAGAGCACT TAGCCCCAGG AAAATATCGCTTTGTAGAAA CCAAAGCGCC AACAGGCTAT TTATTAAATA CCACGCCACT CCCATTTGAAATTGCTGAGA AAAATGCTGG TAAACCAGCG GTCGTGGTTG CTAGTGACAA CTTTGTGAGTTACAAAGGGG CTTTCCAAAT CGTGAAAACG AATAGCGCAG ACCAACCATT AGCAGGTGCTGTTTTTGAAT TATATGATCA CAATAAACAA TCATTAGGGA TTACAGCAAC GAGTGGCAAAGATGGCAAAA TTATCTTTAG AGACTTGGCG CCAGCTACCT ATTATTACAA AGAAATCAAAGCACCAAAAT TACCAGATGG CGCAGATTAT ATTATTTATC CTGAATTAGT AAAAGTAGAAATTCGTGGTG ATTTCAAAGG TGATCCGGAG ATTTTCCAAT TAGGGGCCTT CGCCAATTTCAAAGGACGCG CCGTCTTTAA GAAAATTGAT GCCAATGCGA ACCCACTTCC AGGAACGATTTTTAAATTGT ATCGAATCGA AAACGGGGAA AAAATCTTTG AAAGAGAAGT AACTGCTGAAAAAGATGGTT CATTGGCTAT GGAGGATTTA GGTGCTGGTA GCTATGAATT AGATGAACTGGATGCAACGG ATOOCTATAT CGTCAATAAA CAACCCATTT ATTTTGTAGT GAAGAAGAATTCAAATCATA AACAACCACT AGATGAGTTA GAGTTTGTAA ATTATCAAGC AGAAGTAATGGGACGTAAAG TCAACGAGCA AGGTCAAACC TTAGCGGGTG CAGTTTTTGC AATTTACAATGCCGATGAGC AGAATCAGCC CCAAGGTTCA CCCATAACAT TCTTGAATCG TGCAGGAGAAAAAGTTTCTG AAATAACAAC GGATAAGACT GCCGAAATTT ACGCTAAAGG GCTAAATGAAGGGCATTACG TTTTAGTGGA AACGAAAGCA CCAACAGGCT ATCTGTTAGA CACAACGCTACATCCATTTG ATGTAACCGC CCAATTAGGA AAAGAGCAGC CAATTGCTTT ACGCGATCTTATCAATTATC AAGGAACTGC TCAATTAACC AAAGAAAACG AAACAGGTGA AGCATTGGCAGGTGCGGTGT TTAAGGTCAT TCATGAAACA GGGCAAACCG TAGATGGACA AACCAATCTGATCTCTGACA AGCAAGGCAA AGTCATTGCC AAAAACTTAG CACCGGGAAC GTATCGTTTTGTGGAGACAC AAGCGCCAAC TAGCTATCTT CTTAATGAAA CGCCAAGCGC AAGCTTTACGATTGCCAAAG ACAACCAAGG CAAACCAGCC ACTGTGGTAC TTAAAGCACC TTTTATTAATTACCAAGGTG CTGCCAAGCT GGTGAAAATT GATCAGCAAA AGAATGCCTT AGCAGGTGCTGAATTTAAAG TGACAGATGC AGAGACAGGG CAAACTGTCG CTCGTTCATT ACGTTCTGACAACCAAGGGT TAGTTCAAGT GAACCACTTA CAACCAGGAA AATATACCTT TGTGGAAACAAAAGCACCGG ATOOTTACCA ACTGTCTAAC CAACCTGTCG CATTCACTAT TCCGGCAACAGCGAAAGACA AACCTCAACT CGTGAATGCG GGCACGTTTG TTAACGAGAA ACAACCTGTATCCAAAAAAA CAAAACCAAA TCAGCCAACA ACGAAACAAG CAGCTAGAGA GACAGGTTGGCTTGGTTTAC CGAAAACCAA CACACAAGTC AATTACTTCT TTCTCTTTAT CCGCCTCATGTTCCTCGGTT TGGCAACTTG CCTCTTCTAT AAAAAGAGCA ACAAATAAEF125-2 (SEQ ID NO:466)MRKNGPMV NRWLYGLMCL LLVLNYGTPL MALAEEVNSDGQLTLGEVKQ TSQQEMTLAL QCKAQPVTQE VVVHYSANVS IKAAHWAAPN NTRKIQVDDQKKQIQIELNQ QALADTLVLT LNPTATEDVT FSYGQQQRAL TLKTGTDPTE STAITSSPAASANEGSTEEA STNSSVPRSS EETVASTTKA IESKTTESTT VKPRVAGPTD ISDYFTGDETTIIDNFEDPI YLNPDCTPAT PPYKEDVTIH WNFNWSIPED VREQMKAGDY FEFQLPGNLKPNKPGSGDLV DAECNVYGTY TISEDGTVRF TFNERITSES DIHGDFSLDT HLNDSDGRGPGDWVIDIPTQ EDLFPVVIPI VPDTEQQTDK QGHFDRTPNP SATTWTVDIN QAMKDQTNPTVTETWPTGNT FKSVKVYELV HNLDGTIKEV GRELSPDEYT VDKNGNVTIK GDTNKAYRLEYQTTIDEAVI PDGGGDVPFK NHATLTSDNN PNGLDAEATV TATYGKNLDK RNIDYDEANQSETWETNYNY GEQTIPKDQA VITDTMGDNL TFEPDSLHLY SVTFDDKGNE VVGAELVEGKDYKVVINGDC SFAIDFLHDV TGAVKIDYKT KVDGIVEGDV AVNNRVDVGT GQHSEDDGTASQQNIIKNTC AVDYQNSTIG WTLAVNQNNY LMENAVITDT YEPVPGLTMV PNSLVVKDTTTGAQLTLCKD FMVEITRNAD GETGFKVSFI GAYAKTSDAF HITYTTFFDV TELDANNPALDHYRNTAAID WTDEAGNNHH SEDSKPFKPL PAFDLNAQKS GVYNAVTKEI TWTIAVNLSNNRLVDAFLTD PILTNQTYLA CSLKVYEGNT KPDGSVEKVK PTQPLTDITM EEPSEKNQNTWRVDFPNDSR TYVIEFKTSV DEKVIECSAS YDNTASYTNQ GSSRDVTGKV SIQHGGESVKKGGEYHKDDP DHVYWHVMIN GAQSVLDDVV ITDTPSPNQV LDPESLVIYG TNVTEDGTITPDKSVILEEG KDYTLEVTTD NETCQQKIVV KMAHIEAPYY MEYRSLVTSS AAGSTDTVSNQVSITGNGSE VVHGDDNGDV VVDIDHSGCH ATGTKGKIQL KKTANDETTI LAGAHFQTWDQAKTQVLREG TVDATGVITF GGLPQCQYIL VETKAPEGYT VSDELAKGRV ITIDEETSAEGAQPTIIKND VNKVFLEKMD EKGKKLVNAR FKLEHAVTTP FTHWEEVPLA PDRTNANGQLEVDSLKPGLY QFTEIEAPTG YLLDTTPKRF IVTQNTSGQI RDVHVKMLNY QGSAELIKKDQAGNPLAGAE FSVLDTTGQA VREHLVSDAN GKVTVTDLAP GKYQFVETKA PACYLLNTEPSAFTIAASDR GKPATVIATA NFVNYQCTAK LIKKDVNGHL LSGATFKVLD AKGETIQTGLTTNNQGEIVA EHLAPGKYRF VETKAPTGYL LNTTPVFFEI AEKNACKPAV VVASDNFVSYKGAFQIVKTN SADQPLAGAV FELYDHNKQS LGTTATSGKD OKITERDLAP GTYYYKETKAPKLPDGADYI IYPELVKVEI RGDFKGDPEI FQLGAFANFK GEAVFKKIDA NANPLPGTIFKLYRIENGEK IFEREVTAEK DGSLAMEDLG AGSYELDELD ATDGYIVNKQ PIYFVVKKNSNDKQPLDELE FVNYQAEVMG RKVNEQGQTL AGAVFATYNA DEQNQPQGSP ITFLNPAGEKVSEITTDKTC EIYAKGLNEG HYVLVETKAP TGYLLDTTLH PFDVTAQLGK EQPIALCDLINYQCTAQLTK ENETGEALAG AVFKVIDETG QTVDGQTNLM SDKQGKVTAK NLAPGTYRFVETQAPTSYLL NETPSASFTI AKDNQGKPAT VVLKAPFINY QGAAKLVKID QQKNALAGAEFKVTDAETGQ TVARSLRSDN QGLVQVNHLQ PGKYTFVETK APDGYQLSKQ AVAFTIAATAKDKPELVNAG TFVNEKQPVS KKTKPNQPTT KQAARETGWL GLPKTNTQVN YFFVFICLMLVGLASWLFYK KSKKEF125-3 (SEQ ID NO:467)TAACTTTG TTAACTATCA AGGCACGGCT AAATTAATCA AAAAAGATGT GAATGGACACTTATTAAGTG GTGCGACATT TAAAGTGCTT GATGCGAAGG CAGAAACGAT TCAAACAGGCTTGACGACAA ATAATCAAGG GGAAATTGTT GCAGAGCACT TAGCCCCAGG AAAATATCGCTTTGTAGAAA CCAAAGCGCC AACAGGCTAT TTATTAAATA CCACGCCAGT CCCATTTGAAATTGCTGAGA AAAATGCTGG TAAACCAGCG GTCGTGGTTG CTAGTGACAA CTTTGTGAGTTACAAAGGGG CTTTCCAAAT CGTGAAAACG AATAGCGCAG ACCAACCATT AGCAGGTGCTGTTTTTGAAT TATATGATCA CAATAAACAA TCATTAGGGA TTACAGCAAC GAGTGGCAAAGATGGCAAAA TTATCTTTAG AGACTTCGCG CCAGGTACCT ATTATTACAA AGAAATCAAAGCACCAAAAT TACCAGATGG CGCAGATTAT ATTATTTATC CTGAATTAGT AAAAGTAGAAATTCGTGGTG ATTTCAAAGG TGATCCGGAG ATTTTCCAAT TAGGGGCCTT CGCCAATTTCAAAGGACGCG CCGTCTTTAA GAAAATTGAT GCCAATGCGA ACCCACTTCC AGGAACGATTTTTAAATTGT ATCGAATCGA AAACGGGGAA AAAATCTTTG AAAGAGAAGT AACTGCTGAAAAAGATGGTT CATTGGCTAT GGAGGATTTA GGTGCTGCTA GCTATGAATT AGATGAACTGGATGCAACGG ATGGCTATAT CGTCAATAAA CAACCCATTT ATTTTGTAGT GAAGAAGAATTCAAATGATA AACAACCACT AGATGAGTTA GAGTTTGTAA ATTATCAAGC AGAAGTAATGGGACGTAAAG TCAACGAGCA AGGTCAAACC TTAGCGCGTG CAGTTTTTGC AATTTACAATGCCGATGAGC AGAATCAGCC CCAAGGTTCA CCGATAACAT TCTTGAATCG TGCAGGAGAAAAAGTTTCTG AAATAACAAC GGATAAGACT GGCGAAATTT ACCCTAAAGG GCTAAATGAAGGGCATTACG TTTTAGTGGA AACGAAAGCA CCAACAGGCT ATCTGTTAGA CACAACGCTACATCCATTTG ATGTAACCGC CCAATTAGGA AAAGAGCAGC CAATTGCTTT AGGCGATCTTATCAATTATC AAGGAACTGC TCAATTAACC AAAGAAAACG AAACAGGTGA AGCATTGGCAGGTGCGGTCT TTAACGTCAT TGATGAAACA GGGCAAACCG TAGATGGACA AACCAATCTGATGTCTCACA AGCAAGGCAA AGTCATTGCG AAAAACTTAG CACCGGGAAC GTATCGTTTTGTGGAGACAC AAGCGCCAAC TAGCTATCTT CTTAATGAAA CGCCAAGCGC AACCTTTACGATTGCCAAAG ACAACCAAGG CAAACCAGCC ACTGTGGTAC TTAAAGCACC TTTTATTAATTACCAAGGTG CTGCCAAGCT GGTGAAAATT GATCAGCAAA AGAATGCCTT AGCAGGTGCTGAATTTAAAG TGACAGATGC AGAGACAGGG CAAACTGTCG CTCGTTCATT ACGTTCTGACAACCAAGGGT TAGTTCAAGT GAACCACTTA CAACCAGGAA AATATACCTT TGTGGAAACAAAAGCACCGG ATGGTTACCA ACTGTCTAAG CAAGCTGTCG CATTCACTAT TGCGGCAACAGCGAAAGACA AACCTGAACT CGTGAATGCG GGCACGTTTG TTAACGAGAA ACAACCTGTATCCAAAAAAA CAAAACCAAA TCAGCCAACA ACGAAACAAG CAGCTAGAGA GACAGGTTGGCTTGGTEF125-4 (SEQ ID NO:468)NFVNYQGTAK LIKKDXTNGHL LSGATFKVLD AKGETIQTGLTTNNQGEIVA EHLAPGKYRF VETKAPTGYL LNTTPVPFEI AEKNAGKPAV VVASDNFVSYKGAFQIVKTN SADQPLAGAV FELYDHNKQS LGITATSGKD GKIIFRDLAP GTYYYKEIKAPKLPDGADYI IYPELVKVEI RGDFKGDPET FQLGAFANFK GRAVFKKIDA NANPLPGTIFKLYRIENGEK IFEREVTAEK DGSLAMEDLG AGSYELDELD ATDGYTVNKQ PIYFVVKKNSNDKQPLDELE FVNYQAEVMG RKVNEQGQTL AGAVEATYNA DEQNQPQGSP ITFLNRAGEKVSEITTDKTG EIYAKGLNEG HYVLVETKAP TGYLLDTTLH PFDVTAQLGK EQPIALGDLINYQGTAQLTK ENETGEALAG AVFKVIDETG QTVDGQTNLM SDKQGKVIAK NLAPGTYRFVETQAPTSYLL NETPSASFTI AKDNQGKPAT VVLKAPFINY QCAAKLVKID QQKNALAGAEFKVTDAETGQ TVARSLRSDN QGLVQVNHLQ PGKYTFVETK APDGYQLSKQ AVAFTTAATAKDKPELVNAG TFVNEKQPVS KKTKPNQPTT KQAARETGWLGEF126-1 (SEQ ID NO:469)TAGCGAAAGA AAATAGCGAG GATTAAAATG TTTAAGAAAG CAACGAAATT ATTATCGACAATGGTGATTG TCGCTGGAAC AGTTGTGGGA AATTTCAGTC CCACATTGGC TTTAGCTGAAGAAGCGGTTA AAGCAGGAGA TACAGAAGGA ATGACCAATA CGGTGAAAGT GAAAGACGACAGTCTGGCTG ATTGTAAACG GATATTGGAA GGACAAGCTA CTTTCCCAGT TCAAGCGGGTGAAACGGAAC CAGTCGATTT AGTAGTTGTT GAAGATGCTA GTGGTAGTTT TTCAGATAATTTTCCACATG TAAGACAAGC GATTGATGAA GTGGTTCAAG GCTTATCTGA TCAAGACCGCGTGATGCTGG CTTCATATCG CGGCGGAAAA CAATTTATGT TTCCTGATGG AAAGACAAAAATTAATTCAG CTGATTATGA TATGAATGTG CGCGTCAATA CGCAATTGAC TTATGATAAAAGCCAATTTG TCTCTGGTTT TGGAGACGTT CGGACGTATG GTGGTACGCC AACCGCCCCAGGATTGAAAC TCGCTTTAGA TACGTACAAT CAAACACACG GAGATTTAAC GAATCGAAAAACGTATTTCC TATTAGTGAC AGATGGGGTC GCTAATACAC GTTTAGATGG TTACTTGCATAAGACCAATA CCAATGATTC AATCAATGAA TATCCAGATC CAAGACATCC TCTTCAAGTCTCAGTGGAAT ATAGTAATGA CTACCAAGGT GCAGCAGCAG AAGTTTTAGC GTTAAACCAAGAAATTACTA ACCAAGGCTA TGAAATGATT AATGCGTATT GGGAAAGTGT TGAATCTTTAAGTTCAGTGA ATTCATACTT TGATAAATAT AAAACAGAAG TGGGTCCTTT TGTAAAACAAGAGTTGCAAC AAGGGTCTAG CACACCAGAA GATTTTATTA CAAGCCAATC TATTGATGATTTTACAACCC AATTAAAACA AATTGTCAAA GATCGTCTGG CGCAATCGAC ACCAGCAACAGCTTCATTAA CGATTGCCAA TCAATTTGAT ATTCAATCTG CCACCGCTAC GGACCATGCTGGAAATGATG TGCCTGTTCA AATTAACGGA CAAACCATTT CAGCAACTAG TACAGAAGGTTACGTAGGAA ACATCACGAT TCACTACGAA CTCAAAGAAA ATACAGCGAT TGATGCAGCAACCCTTGTAA GTAGTGGGAC AATGAATCAA GGAACAATTG CTAAGGAATT TCCAGAAGCGACGATTCCTA AAAATGACAA TGCGCATGCG TGTCACGTGA CGCCAGAAGA TCCAACGATTACAAAAGATA TCGAAAATCA AGAACACTTA GATTTAACCA ATCGTGAAGA TAGTTTCGATTGGCATGTCA AAACAGCCTT TGGCAACGAA ACCAGTACTT GGACCCAAGC CAGCATGGTGGATGACATTA ATAAAGTGCT AGATATCATT GATGTGAAAG TCACCGACCA AAATGGTAAAGATGTTACAG CTAACGGCAC AGTAACACAA GAAAATAACA AAGTAACTTT TGAAATGAACAAACAAGCAG ACAGCTATGA CTATTTAAGT GGTCATACGT ATACAATGAC TATCACCACTAAAATTAAAA CTGACGCAAC GGACGAAGAA TTAGCGCCTT ACATTGAACA AGGCGGGATTCCCAACCAAG CCGACTTAAA CTTTGGCAAT GAAGGTGACG TGTTACATTC CAACAAACCAACCGTAACAC CACCGCCAGT TGATCCAAAT ATTCCTAAAG ACGTACAAGG ACAACAACATTTAGATTTAA CCAACCGCGA TCAAGAATTT AAATGGAACG TCAAAACAGC TTTCGGTAACGAAACAAGCA CTTGGACCCA AGCCAGCATG GTAGATGACA TTAATAAAGT GTTAGACATCACTGATGTAA AAGTCACAGA TGAAAATGGT AAAGATGTTA CAGCTAACGG CAAAGTAACACAAGAAAATA ACAAAGTAAC TTTTGAAATG AACAANCAAG CNGACAGCTA TGACTATTTAAGTGGTCATA CGTACACAAT GACCATTACT ACTAAAATCA AAGCTAGCGC AACGGACGAAGAATTAGCAC CTTATATTGA ACAAGGTGGC ATTCCCAACC AAGCCGACTT GAACTTTGGCAACGAAGGTG ACGTGTTGCA TTCCAACAAA CCAACCGTAA CACCACCTGC ACCAACGCCAGAAGATCCAA CGATTACAAA AGATATCGAA GGCCAAGAAC ATTTAGATTT AACCAACCGTGACCAAGAAT TTAAATGGAA CGTCAAAACA GCTTTCGGTA ACGAAACAAG CACATGGACCCAAGCCAGCA TGGTGGATGA CATTAATAAA GTGTTAGACA TCACAGACGT GAAAGTTNCTGANGAAAATG GCAAAGATGT TACAGATAAT GGCATAGTAA CACAAGAAAA TAACAAAGTAACTTTTACTA TGAACAAAAA AGATGACAGC TACTCTTACT TAGCTGGTCA TACATACACAATGACTATTA CCACTAAAAT TAAAACTGAC GCAACGGATG AAGAATTAGC GCCTTATATTGAACAAGGCG GGATTCCCAA CCAAGCCGAC TTAAACTTTG GCAACGAAGG TGACGTGTTGCATTCCAACA AGCCAACCGT AACACCGCCT GCACCAACGC CAGAAGACCC AAAAAAACCTGAACCTAAAC AACCGCTAAA ACCGAAAAAA CCGTTGACGC CTACAAATCA TCAAGCACCAACGAACCCAG TCAATTTTGG AAAATCAGCA AGTAAAGGAA TTCATTTACC AATGACTAATACAACAGTAA ATCCACTTTA CATGATCGCA GGTTTAATTG TCCTTATAGT GGCTATTAGCTTTGGCATAA CAAAAAATAA AANAAGAAAA AATTAGEF126-2 (SEQ TD NO:470)MF KKATKLLSTM VIVAGTVVGN FSPTLALAEE AVKAGDTEGM TNTVKVKDDSLADCKRILEG QATFPVQAGE TEPVDLVVVE DASGSFSDNF PHVRQAIDEV VQGLSDQDRVMLASYRGGKQ FMFPDGKTKI NSADYDMNVR VNTQLTYDKS QFVSGFGDVR TYGGTPTAPGLKLALDTYNQ THGDLTNRKT YFLLVTDGVA NTRLDGYLHK TNTNDSINEY PDPRHPLQVSVEYSNDYQGA AAEVLALNQE ITNQGYEMTN AYWESVESLS SVNSYFDKYK TEVGPFVKQELQQGSSTPED FITSQSIDDF TTQLKQJNKD RLAQSTPATA SLTIANQFDI QSATATDDAGNDVPVQINGQ TISATSTEGY VGNITIHYEV KENTAIDAAT LVSSGTMNQG TIAKEEPEATIPKNDNAHAC DVTPEDPTIT KDIENQEHLD LTNREDSFDW HVKTAFGNET STWTQASMVDDINKVLDIID VKVTDENGKD VTANGTVTQE NNKVTFEMNK QADSYDYLSG HTYTMTITTKIKTDATDEEL APYIEQGGIP NQADLNFGNE GDVLHSNKPT VTPPPVDPNI AKDVEGQEHLDLTNRDQEFK WNVKTAFGNE TSTWTQASMV DDINKVLDIT DVKVTDENCK DVTANGKVTQENNKVTFEMN XQADSYDYLS GHTYTMTITT KIKASATDEE LAPYIEQGGI PNQADLNFGNEGDVLHSNKP TVTPPAPTPE DPTITKDIEG QEHLDLTNRD QEFKWNVKTA FCNETSTWTQASMVDDINKV LDITDVKVXX ENGKDVTDNG IVTQENNKVT FTMNKKDDSY SYLAGHTYTMTITTKIKTDA TDEELAPYIE QGGIPNQADL NFGNEGDVLH SNKPTVTPPA PTPEDPKKPEPKQPLKPKKP LTPTNHQAPT NPVNFGKSAS KGTHLPMTNT TVNPLYMIAG LIVLIVAISFGITKNKKRKNEF126-3 (SEQ ID NO:471)TGAAGAAGCGGTTA AAGCAGGAGA TACAGAAGGA ATGACCAATA CGGTGAAAGT GAAAGACGACAGTCTGCCTG ATTGTAAACG GATATTGGAA GGACAAGCTA CTTTCCCAGT TCAAGCGGGTGAAACGCAAC CAGTCGATTT AGTAGTTGTT GAAGATGCTA GTGGTAGTTT TTCAGATAATTTTCCACATG TAAGACAAGC GATTGATGAA GTGGTTCAAG GCTTATCTGA TCAAGACCGCGTGATGCTGG CTTCATATCG CGGCGGAAAA CAATTTATGT TTCCTGATGG AAAGACAAAAATTAATTCAG CTGATTATGA TATCAATGTG CGCGTCAATA CGCAATTGAC TTATGATAAAAGCCAATTTG TCTCTGGTTT TGGAGACGTT CGGACGTATG GTGGTACGCC AACCGCCCCAGGATTGAAAC TCGCTTTAGA TACGTACAAT CAAACACACG GAGATTTAAC GAATCGAAAAACGTATTTCC TATTAGTGAC AGATGGGGTC GCTAATACAC GTTTAGATGG TTACTTGCATAAGACCAATA CCAATGATTC AATCAATGAA TATCCAGATC CAAGACATCC TCTTCAAGTCTCAGTGCAAT ATAGTAATGA CTACCAAGGT GCAGCAGCAG AAGTTTTAGC GTTAAACCAAGAAATTACTA ACCAAGGCTA TGAAATGATT AATGCGTATT GGGAAAGTGT TGAATCTTTAAGTTCAGTGA ATTCATACTT TGATAAATAT AAAACAGAAG TGGGTCCTTT TGTAAAACAAGAGTTGCAAC AAGGGTCTAG CACACCAGAA GATTTTATTA CAAGCCAATC TATTGATGATTTTACAACCC AATTAAAACA AATTGTCAAA GATCGTCTGG CGCAATCGAC ACCAGCAACACCTTCATTAA CGATTGCCAA TCAATTTGAT ATTCAATCTG CGACCGCTAC GGACGATGCTGGAAATGATG TGCCTGTTCA AATTAACGGA CAAACCATTT CAGCAACTAG TACAGAAGGTTACGTAGGAA ACATCACCAT TCACTACGAA GTCAAAGAAA ATACAGCGAT TGATEF126-4 (SEQ ID NO:472)EE AVKAGDTECM TNTVKVKDDSLADCKRILEG QATFPVQAGE TEPVDLVVVE DASGSFSDNF PHVRQAIDEV VQGLSDQDRVMLASYRGGKQ FMFPDGKTKI NSADYDHNVR VNTQLTYDKS QFVSGFGDVR TYGGTPTAPGLKLALDTYNQ THGDLTNRKT YFLLVTDGVA NTRLDGYLHK TNTNDSINEY PDPRYPLQVSVEYSNDYQGA AAEVLALNQE ITNQGYEMIN AYWESVESLS SVNSYFDKYK TEVGPFVKQELQQGSSTPED FITSQSIDDF TTQLKQIVKD RLAQSTPATA SLTIANQFDI QSATATDDAGNDVPVQINGQ TISATSTEGY VGNITIHYEV KENTAIDEF127-1 (SEQ ID NO:473)TAGCGAAAGA AAATAGGGAG GATTAAAATG TTTAAGAAAG CAACGAAATT ATTATCGACAATGGTGATTG TCGCTGGAAC AGTTGTGGGA AATTTCAGTC CCACATTGGC TTTAGCTGAAGAAGCGGTTA AAGCAGGAGA TACAGAAGGA ATGACCAATA CGGTGAAAGT GAAAGACGACAGTCTGGCTG ATTGTAAACG GATATTGGAA GGACAAGCTA CTTTCCCAGT TCAAGCGGGTGAAACGGAAC CAGTCGATTT AGTAGTTGTT GAAGATGCTA GTGGTAGTTT TTCAGATAATTTTCCACATC TAAGACAAGC GATTGATGAA GTGGTTCAAG GCTTATCTGA TCAAGACCGCGTGATGCTGG CTTCATATCG CGGCGGAAAA CAATTTATGT TTCCTCATGG AAAGACAAAAATTAATTCAG CTGATTATGA TATGAATGTG CGCGTCAATA CGCAATTGAC TTATGATAAAAGCCAATTTG TCTCTGGTTT TGGAGACGTT CGGACGTATG GTGGTACGCC AACCGCCCCAGGATTGAAAC TCGCTTTAGA TACGTACAAT CAAACACACG GAGATTTAAC GAATCGAAAAACGTATTTCC TATTAGTGAC AGATGGGGTC GCTAATACAC GTTTAGATGG TTACTTGCATAAGACCAATA CCAATGATTC AATCAATGAA TATCCAGATC CAAGACATCC TCTTCAAGTCTCAGTGGAAT ATAGTAATGA CTACCAAGGT GCAGCAGCAG AAGTTTTAGC GTTAAACCAAGAAATTACTA ACCAAGGCTA TGAAATGATT AATGCGTATT GGGAAAGTGT TGAATCTTTAAGTTCAGTGA ATTCATACTT TGATAAATAT AAAACAGAAG TGGGTCCTTT TGTAAAACAAGAGTTGCAAC AAGGGTCTAG CACACCAGAA GATTTTATTA CAAGCCAATC TATTGATGATTTTACAACCC AATTAAAACA AATTCTCAAA GATCGTCTGG CGCAATCGAC ACCAGCAACAGCTTCATTAA CGATTGCCAA TCAATTTGAT ATTCAATCTG CGACCGCTAC GGACGATGCTGGAAATGATG TGCCTGTTCA AATTAACGGA CAAACCATTT CAGCAACTAG TACAGAAGGTTACGTAGGAA ACATCACGAT TCACTACGAA GTCAAAGAAA ATACAGCGAT TGATGCAGCAACCCTTGTAA GTAGTGGGAC AATGAATCAA GGAACAATTG CTAAGCAATT TCCAGAAGCGACGATTCCTA AAAATGACAA TGCGCATGCG TGTGACGTGA CGCCAGAAGA TCCAACGATTACAAAAGATA TCGAAAATCA AGAACACTTA GATTTAACCA ATCGTGAAGA TAGTTTCGATTGGCATGTCA AAACAGCCTT TGGCAACGAA ACCAGTACTT GGACCCAAGC CAGCATGGTGGATGACATTA ATAAAGTGCT AGATATCATT GATGTGAAAG TCACCGACGA AAATGGTAAAGATGTTACAG CTAACGGCAC AGTAACACAA GAAAATAACA AAGTAACTTT TGAAATGAACAAACAAGCAG ACAGCTATGA CTATTTAAGT GGTCATACGT ATACAATGAC TATCACCACTAAAATTAAAA CTGACGCAAC GGACGAAGAA TTAGCGCCTT ACATTGAACA AGGCGGGATTCCCAACCAAG CCGACTTAAA CTTTGGCAAT GAAGGTGACG TGTTACATTC CAACAAACCAACCGTAACAC CACCGCCAGT TGATCCAAAT ATTGCTAAAG ACGTAGAAGG ACAAGAACATTTAGATTTAA CCAACCGCGA TCAAGAATTT AAATGGAACG TCAAAACAGC TTTCGGTAACGAAACAAGCA CTTGGACCCA AGCCAGCATG GTAGATGACA TTAATAAAGT GTTAGACATCACTGATGTAA AAGTCACAGA TGAAAATGGT AAAGATGTTA CAGCTAACCG CAAAGTAACACAAGAAAATA ACAAAGTAAC TTTTCAAATG AACAANCAAG CNGACAGCTA TGACTATTTAAGTGGTCATA CGTACACAAT GACCATTACT ACTAAAATCA AAGCTAGCGC AACGGACGAAGAATTAGCAC CTTATATTGA ACAAGGTGGC ATTCCCAACC AAGCCGACTT GAACTTTGGCAACGAAGGTG ACGTGTTGCA TTCCAACAAA CCAACCGTAA CACCACCTGC ACCAACGCCAGAAGATCCAA CGATTACAAA AGATATCGAA GGCCAAGAAC ATTTAGATTT AACCAACCGTGACCAAGAAT TTAAATGGAA CGTCAAAACA GCTTTCGGTA ACGAAACAAG CACATGGACCCAAGCCAGCA TGGTGGATGA CATTAATAAA GTGTTAGACA TCACAGACCT GAAAGTTNCTGANGAAAATG GCAAAGATGT TACAGATAAT GGCATAGTAA CACAAGAAAA TAACAAAGTAACTTTTACTA TGAACAAAAA AGATGACAGC TACTCTTACT TAGCTGGTCA TACATACACAATGACTATTA CCACTAAAAT TAAAACTGAC GCAACGGATG AAGAATTAGC GCCTTATATTGAACAAGGCG GGATTCCCAA CCAAGCCGAC TTAAACTTTG GCAACGAAGG TGACGTGTTGCATTCCAACA AGCCAACCGT AACACCGCCT GCACCAACGC CAGAAGACCC AAAAAAACCTGAACCTAAAC AACCGCTAAA ACCGAAAAAA CCGTTGACGC CTACAAATCA TCAAGCACCAACGAACCCAG TCAATTTTGG AAAATCAGCA AGTAAAGGAA TTCATTTACC AATGACTAATACAACAGTAA ATCCACTTTA CATGATCGCA GGTTTAATTG TCCTTATAGT GGCTATTAGCTTTGCCATAA CAAAAAATAA AAAAAGAAAA AATTAGEF127-2 (SEQ ID NO:474)ME KKATKLLSTM VIVAGTVVGN FSPTLALAEE AVKAGDTEGM TNTVKVKDDSLADCKRILEG QATFPVQAGE TEPVDLVVVE DASGSFSDNF PHVRQAIDEV VQGLSDQDRVMLASYRGGKQ FMFPDGKTKI NSADYDMNVR VNTQLTYDKS QFVSGFGDVR TYGGTPTAPGLKLALDTYNQ THGDLTNRKT YFLLVTDGVA NTRLDGYLHK TNTNDSINEY PDPRHPLQVSVEYSNDYQGA AAEVLALNQE ITNQGYEMIN AYWESVESLS SVNSYFDKYK TEVGPFVKQELQQGSSTPED FITSQSIDDF TTQLKQIVKD RLAQSTPATA SLTIANQFDI QSATATDDAGNDVPVQINGQ TISATSTEGY VGNITIHYEV KENTAIDAAT LVSSGTHNQG TIAKEFPEATIPKNDNAHAC DVTPEDPTIT KDIENQEHLD LTNREDSFDW HVKTAFGNET STWTQASMVDDINKVLDIID VKVTDENGKD VTANGTVTQE NNKVTFEMNK QADSYDYLSG HTYTMTITTKIKTDATDEEL APYIEQGGIP NQADLNFGNE GDVLHSNKPT VTPPPVDPNI AKDVEGQEHLDLTNRDQEFK WNVKTAFGNE TSTWTQASMV DDINKVLDIT DVKVTDENGK DVTANGKVTQENNKVTFEMN XQADSYDYLS GHTYTMTITT KIKASATDEE LAPYIEQGGI PNQADLNFGNEGDVLHSNKP TVTPPAPTPE DPTITKDIEG QEHLDLTNRD QEFKWNVKTA FGNETSTWTQASMVDDINKV LDITDVKVXX ENGKDVTDNG IVTQENNKVT FTMNKKDDSY SYLAGHTYTMTITTKIKTDA TDEELAPYIE QGGTPNQADL NFGNEGDVLH SNKPTVTPPA PTPEDPKKPEPKQPLKPKKP LTPTNHQAPT NPVNFGKSAS KGIHLPMTNT TVNPLYMIAG LIVLIVAISFGITKNKKRKNEF127-3 (SEQ ID NO:475)GAATCAA GGAACAATTG CTAAGGAATT TCCAGAAGCGACGATTCCTA AAAATGACAA TGCGCATGCG TGTGACGTGA CGCCAGAAGA TCCAACGATTACAAAAGATA TCGAAAATCA AGAACACTTA GATTTAACCA ATCGTGAAGA TAGTTTCGATTGGCATGTCA AAACAGCCTT TGGCAACGAA ACCAGTACTT GGACCCAAGC CAGCATGGTGGATGACATTA ATAAAGTGCT AGATATCATT GATGTGAAAG TCACCGACGA AAATGGTAAAGATGTTACAG CTAACGGCAC AGTAACACAA GAAAATAACA AAGTAACTTT TGAAATGAACAAACAAGCAG ACAGCTATGA CTATTTAAGT GGTCATACGT ATACAATGAC TATCACCACTAAAATTAAAA CTGACGCAAC GGACGAAGAA TTAGCGCCTT ACATTGAACA AGGCGGGATTCCCAACCAAG CCGACTTAAA CTTTGGCAAT CAAGGTGACC TGTTACATTC CAACAAACCAACCGTAACAC CACCGCCAGT TGATCCAAAT ATTGCTAAAG ACGTAGAAGG ACAAGAACATTTAGATTTAA CCAACCGCGA TCAAGAATTT AAATGGAACG TCAAAACAGC TTTCGGTAACGAAACAAGCA CTTGGACCCA AGCCAGCATG GTAGATGACA TTAATEF127-4 (SEQ ID NO:476)NQG TIAKEF PEATIPKNDNAHAC DVTPEDPTIT KDIENQEHLD LTNREDSFDW HVKTAFGNET STWTQASMVDDINKVLDIID VKVTDENGKD VTANGTVTQE NNKVTFENNK QADSYDYLSG HTYTMTITTKIKTDATDEEL APYIEQGGIP NQADLNFGNE GDVLHSNKPT VTPPPVDPNI AKDVEGQEHLDLTNRDQEFK WNVKTAFGNE TSTWTQASMV DDINEF12S-1 (SEQ ED NO:477)TAGCGAAAGA AAATAGGGAG GATTAAAATG TTTAAGAAAG CAACGAAATT ATTATCGACAATGGTGATTG TCGCTGGAAC AGTTGTGGGA AATTTCAGTC CCACATTGGC TTTAGCTGAAGAAGCGGTTA AAGCAGGAGA TACAGAAGGA ATGACCAATA CGGTGAAAGT GAAAGACGACAGTCTGGCTG ATTGTAAACG GATATTGGAA GGACAAGCTA CTTTCCCAGT TCAAGCGGGTGAAACGGAAC CAGTCGATTT AGTACTTGTT GAAGATGCTA GTGGTAGTTT TTCAGATAATTTTCCACATG TAAGACAAGC GATTGATGAA GTGGTTCAAG GCTTATCTGA TCAAGACCGCGTCATGCTGG CTTCATATCG CGGCGGAAAA CAATTTATGT TTCCTGATGG AAAGACAAAAATTAATTCAG CTGATTATGA TATGAATGTG CGCGTCAATA CGCAATTGAC TTATGATAAAAGCCAATTTG TCTCTGGTTT TGGAGACGTT CGGACGTATG GTGGTACGCC AACCGCCCCAGGATTGAAAC TCGCTTTAGA TACGTACAAT CAAACACACG GAGATTTAAC GAATCGAAAAACGTATTTCC TATTAGTGAC AGATGGGGTC GCTAATACAC GTTTAGATGG TTACTTGCATAAGACCAATA CCAATGATTC AATCAATGAA TATCCAGATC CAAGACATCC TCTTCAAGTCTCAGTGGAAT ATAGTAATGA CTACCAAGGT GCAGCAGCAG AAGTTTTAGC GTTAAACCAAGAAATTACTA ACCAAGGCTA TCAAATGATT AATGCGTATT GGGAAAGTGT TGAATCTTTAAGTTCAGTGA ATTCATACTT TGATAAATAT AAAACAGAAG TGGGTCCTTT TGTAAAACAAGAGTTGCAAC AAGGGTCTAG CACACCAGAA GATTTTATTA CAAGCCAATC TATTGATGATTTTACAACCC AATTAAAACA AATTGTCAAA GATCGTCTGG CGCAATCGAC ACCAGCAACAGCTTCATTAA CGATTGCCAA TCAATTTGAT ATTCAATCTG CGACCGCTAC GGACGATGCTGGAAATGATG TGCCTGTTCA AATTAACGGA CAAACCATTT CAGCAACTAG TACAGAAGGTTACGTAGGAA ACATCACGAT TCACTACGAA GTCAAAGAAA ATACAGCGAT TGATGCAGCAACCCTTGTAA GTACTGGGAC AATGAATCAA GGAACAATTG CTAAGGAATT TCCAGAAGCGACGATTCCTA AAAATGACAA TGCGCATGCG TGTGACGTGA CGCCAGAAGA TCCAACGATTACAAAAGATA TCGAAAATCA AGAACACTTA GATTTAACCA ATCGTGAAGA TAGTTTCGATTGGCATGTCA AAACAGCCTT TGGCAACGAA ACCAGTACTT GGACCCAAGC CAGCATGGTGGATGACATTA ATAAAGTGCT AGATATCATT GATGTGAAAG TCACCGACCA AAATGGTAAAGATGTTACAG CTAACGGCAC AGTAACACAA GAAAATAACA AAGTAACTTT TGAAATGAACAAACAAGCAG ACAGCTATGA CTATTTAAGT GGTCATACGT ATACAATGAC TATCACCACTAAAATTAAAA CTGACGCAAC GGACGAAGAA TTAGCGCCTT ACATTGAACA AGGCGGGATTCCCAACCAAG CCGACTTAAA CTTTGGCAAT GAAGGTGACG TGTTACATTC CAACAAACCAACCGTAACAC CACCGCCAGT TGATCCAAAT ATTGCTAAAC ACGTAGAACG ACAAGAACATTTAGATTTAA CCAACCGCGA TCAAGAATTT AAATGGAACG TCAAAACAGC TTTCGGTAACGAAACAAGCA CTTGGACCCA AGCCAGCATG GTAGATGACA TTAATAAAGT GTTAGACATCACTGATGTAA AAGTCACAGA TGAAAATGGT AAAGATGTTA CAGCTAACGG CAAAGTAACACAAGAAAATA ACAAAGTAAC TTTTGAAATG AACAANCAAG CNGACAGCTA TGACTATTTAAGTGGTCATA CGTACACAAT GACCATTACT ACTAAAATCA AAGCTAGCGC AACGGACGAAGAATTAGCAC CTTATATTGA ACAAGGTGGC ATTCCCAACC AAGCCGACTT GAACTTTGGCAACGAAGGTG ACGTGTTGCA TTCCAACAAA CCAACCGTAA CACCACCTGC ACCAACGCCAGAAGATCCAA CGATTACAAA AGATATCGAA GGCCAAGAAC ATTTAGATTT AACCAACCGTGACCAAGAAT TTAAATGGAA CGTCAAAACA GCTTTCGGTA ACGAAACAAG CACATGGACCCAAGCCAGCA TGGTGGATGA CATTAATAAA GTGTTAGACA TCACAGACGT GAAAGTTNCTGANGAAAATG GCAAAGATGT TACAGATAAT GGCATAGTAA CACAAGAAAA TAACAAAGTAACTTTTACTA TGAACAAAAA AGATGACAGC TACTCTTACT TAGCTGGTCA TACATACACAATGACTATTA CCACTAAAAT TAAAACTGAC GCAACGGATG AAGAATTAGC GCCTTATATTGAACAAGGCG GGATTCCCAA CCAAGCCGAC TTAAACTTTG GCAACGAAGG TGACGTGTTGCATTCCAACA AGCCAACCGT AACACCGCCT GCACCAACGC CAGAAGACCC AAAAAAACCTGAACCTAAAC AACCGCTAAA ACCGAAAAAA CCGTTGACGC CTACAAATCA TCAAGCACCAACGAACCCAG TCAATTTTGG AAAATCAGCA AGTAAAGGAA TTCATTTACC AATGACTAATACAACAGTAA ATCCACTTTA CATGATCGCA GGTTTAATTG TCCTTATAGT GGCTATTAGCTTTGGCATAA CAAAAAATAA AAAAAGAAAA AATTAGEF128-2 (SEQ ID NO:478)MF KKATKLLSTM VIVAGTVVGN FSPTLALAEE AVKAGDTEGM TNTVKVKDDSLADCKRILEG QATFPVQAGE TEPVDLVVVE DASGSFSDNF PHVRQAIDEV VQGLSDQDRVMLASYRGGKQ FMFPDGKTKI NSADYDMNVR VNTQLTYDKS QFVSGFGDVR TYGGTPTAPGLKLALDTYNQ THGDLTNRKT YFLLVTDGVA NTRLDGYLHK TNTNDSINEY PDPRHPLQVSVEYSNDYQGA AAEVLALNQE ITNQGYEMTN AYWESVESLS SVNSYFDKYK TEVGPFVKQELQQGSSTPED FITSQSIDDF TTQLKQIVKD RLAQSTPATA SLTIANQFDI QSATATDDAGNDVPVQINGQ TISATSTEGY VGNITIHYEV KENTAIDAAT LVSSGTMNQG TIAKEFPEATIPKNDNAHAC DVTPEDPTIT KDTENQEHLD LTNREDSFDW HVKTAFGNET STWTQASMVDDINKVLDITD VKVTDENGKD VTANGTVTQE NNKVTFEMNK QADSYDYLSG HTYTMTITTKIKTDATDEEL APYTEQGGIP NQADLNFGNE GDVLHSNKPT VTPPPVDPNI AKDVEGQEHLDLTNRDQEFK WNVKTAFGNE TSTWTQASMV DDTNKVLDIT DVKVTDENGK DVTANGKVTQENNKVTFEMN XQADSYDYLS GHTYTMTITT KIKASATDEE LAPYIEQGGI PNQADLNFGNEGDVLHSNKP TVTPPAPTPE DPTITKDIEG QEHLDLTNRD QEFKWNVKTA FGNETSTWTQASMVDDINKV LDITDVKVXX ENGKDVTDNG IVTQENNKVT FTHNKKDDSY SYLAGHTYTMTITTKIKTDA TDEELAPYIE QGGIPNQADL NFGNEGDVLH SNKPTVTPPA PTPEDPKKPEPKQPLKPKKP LTPTNHQAPT NPVNFGKSAS KGTHLPMTNT TVNPLYMIAG LIVLIVAISFGITKNKKRKNEF128-3 (SEQ ID NO:479)AGA TCAAAATGGT AAAGATGTTA CAGCTAACGG CAAAGTAACACAAGAAAATA ACAAAGTAAC TTTTGAAATG AACAANCAAG CNGACAGCTA TGACTATTTAAGTGGTCATA CGTACACAAT GACCATTACT ACTAAAATCA AAGCTAGCGC AACGGACGAAGAATTAGCAC CTTATATTGA ACAAGGTGGC ATTCCCAACC AAGCCGACTT GAACTTTGGCAACGAAGGTG ACGTGTTGCA TTCCAACAAA CCAACCGTAA CACCACCTGC ACCAACGCCAGAAGATCCAA CGATTACAAA AGATATCGAA GGCCAAGAAC ATTTAGATTT AACCAACCGTGACCAAGAAT TTAAATGGAA CGTCAAAACA GCTTTCGGTA ACGAAACAAG CACATGGACCCAAGCCAGCA TGGTGGATGA CATTAATAAA GTGTTAGACA TCACAGACGT GAAAGTTNCTGANGAAAATG GCAAAGATGT TACAGATAAT GGCATAGTAA CACAAGAAAA TAACAAAGTAACTTTTACTA TGAACAAAAA AGATGACAGC TACTCTTACT TAGCTGGTCA TACATACACAATGACTATTA CCACTAAAAT TAAAACTGAC GCAACGGATG AAGAATTAGC GCCTTATATTGAACAAGGCG GGATTCCCAA CCAAGCCGAC TTAAACTTTG CCAACGAAGG TGACGTGTTGCATTCCAACA AGCCAACCGT AACACCGCCT GCACCAACGC CAGAAGACCC AAAAAAACCTGAACCTAAAC AACCGCTAAA ACCGAAAAAA CCGTTGACGC CTACAAATCA TCAAGCACCAACGAACCCAG TCAATTTTGG AAAATCAGCA AGTAAAGGAA TTCATEF128-4 (SEQ ID NO:480)DENGK DVTANGKVTQENNKVTFEMN XQADSYDYLS GHTYTMTITT KIKASATDEE LAPYIEQGGI PNQADLNFGNEGDVLHSNKP TVTPPAPTPE DPTITKDIEG QEHLDLTNRD QEFKWNVKTA FGNETSTWTQASMVDDJNKV LDITDVKVXX ENGKDVTDNG IVTQENNKVT FTMNKKDDSY SYLAGHTYTMTITTKIKTDA TDEELAPYIE QGGIPNQADL NFGNEGDVLH SNKPTVTPPA PTPEDPKKPEPKQPLKPKKP LTPTNHQAPT NPVNFGKSAS KGIHEF129-1 (SEQ ID NO:481)TGACAAGTGA AGAAACGTCT ATTTGCATCA GTATTACTAT GTTCATTAAC GCTATCAGCAATTGCTACCC CAAGCATCGC TTTGGCGGAC AATGTTGATA AAAAAATTGA AGAAAAAAATCAAGAAATTT CATCATTAAA AGCAAAACAA GGGGATTTAG CTTCACAAGT ATCTTCTTTAGAAGCAGAAG TATCTTCAGT ATTTGATGAA AGCATGGCTT TACGTGAACA AAAGCAAACACTAAAAGCAA AATCAGAACA ATTACAACAA GAAATTACAA ACTTGAATCA ACGTATTGAAAAACGTAACG AAGCAATCAA AAATCAAGCA CGTGATGTTC AAGTTAATGG ACAAAGCACAACAATGCTAG ATGCAGTTTT AGATGCGGAC TCAGTTGCAG ATGCAATCAG CCGTGTTCAAGCTGTTTCAA CAATCGTAAG TGCCAACAAC GACTTAATGC AACAACAAAA AGAAGACAAACAAGCCGTTG TTGATAAAAA AGCTGAAAAC GAGAAAAAAG TGAAACAACT TGAAGCAACAGAAGCTGAAT TAGAAACAAA ACGTCAAGAT TTACTTTCTA AACAATCTGA ATTAAACGTAATGAAAGCTT CATTAGCATT AGAACAATCA TCAGCTGAAA GTTCTAAAGC TGGCTTAGAAAAACAAAAAG CAGCTGCTGA AGCAGAGCAA GCACGCTTAG CTGCTGAACA AAAAGCTGCAGCTGAAAAAG CCAAACAAGC TGCTGCAAAA CCAGCTAAAG CTGAAGTGAA AGCAGAAGCACCAGTTGCCT CTTCATCAAC AACAGAAGCA CAAGCACCAG CAAGCTCAAG CTCAGCAACTGAATCAAGCA CGCAACAAAC AACTGAAACA ACTACACCAA GTACAGATAA TAGTGCAACAGAAAATACTG GCTCTTCTTC ATCAGAACAA CCAGTACAAC CTACAACACC AAGCGATAATGGAAATAATG GTGGCCAAAC TGGTGGTGGA ACAGTTACAC CAACACCAGA ACCAACACCAGCGCCTTCTG CTGATCCAAC AATCAATGCA TTGAACGTTC TACGTCAATC ATTAGGTTTACGTCCAGTAG TATGGGATGC AGGTTTGGCA GCTTCTGCAA CTGCTCGTGC AGCACAAGTTGAAGCAGGTG GCATTCCAAA TGATCACTGG TCTCGTGGAG ATGAAGTTAT CGCAATTATGTGGGCGCCAG GTAACTCAGT AATCATGGCG TGGTACAATG AAACAAACAT GGTAACAGCTTCAGGAAGCG GTCACCGTGA TTGGGAAATT AACCCAGGTA TTACGCGTGT CGGTTTTGGTTACTCAGGTA GCACAATCGT AGGACACTCA GCCTAAEF129-2 (SEQ ID NO:482)VKKRLFASV LLCSLTLSAI ATPSIALADN VDKKTEEKNQ EISSLKAKQG DLASQVSSLEAEVSSVFDES MALREQKQTL KAKSEQLQQE ITNLNQRTEK RNEAIKNQAR DVQVNGQSTTMLDAVLDADS VADAISRVQA VSTTVSANND LMQQQKEDKQ AVVDKKAENE KKVKQLEATEAELETKRQDL LSKQSELNVM KASLALEQSS AESSKAGLEK QKAAAEAEQA RLAAEQKAAAEKAKQAAAKP AKAEVKAEAP VASSSTTEAQ APASSSSATE SSTQQTTETT TPSTDNSATENTGSSSSEQP VQPTTPSDNG NNGGQTGGGT VTPTPEPTPA PSADPTINAL NVLRQSLGLRPVVWDACLAA SATARAAQVE AGGIPNDHWS RGDEVIAIMW APGNSVIMAW YNETNMVTASGSGHRDWEIN PGITRVGFGY SGSTIVGHSAEF129-3 (SEQ ID NO:483)GGAC AATGTTGATA AAAAAATTGA AGAAAAAAATCAAGAAATTT CATCATTAAA AGCAAAACAA GCGGATTTAG CTTCACAAGT ATCTTCTTTAGAAGCAGAAG TATCTTCAGT ATTTGATGAA AGCATGGCTT TACGTGAACA AAAGCAAACACTAAAAGCAA AATCAGAACA ATTACAACAA GAAATTACAA ACTTGAATCA ACGTATTGAAAAACGTAACG AAGCAATCAA AAATCAAGCA CGTGATGTTC AAGTTAATGG ACAAAGCACAACAATGCTAG ATGCAGTTTT AGATGCGGAC TCAGTTGCAG ATGCAATCAG CCGTGTTCAAGCTGTTTCAA CAATCGTAAG TGCCAACAAC GACTTAATGC AACAACAAAA AGAAGACAAACAAGCCGTTG TTGATAAAAA AGCTGAAAAC GAGAAAAAAG TGAAACAACT TGAAGCAACAGAAGCTGAAT TAGAAACAAA ACGTCAAGAT TTACTTTCTA AACAATCTGA ATTAAACGTAATGAAAGCTT CATTAGCATT AGAACAATCA TCAGCTGAAA GTTCTAAAGC TGGCTTAGAAAAACAAAAAG CAGCTGCTGA AGCAGAGCAA GCACGCTTAG CTGCTGAACA AAAAGCTGCAGCTGAAAAAG CCAAACAAGC TGCTGCAAAA CCAGCTAAAG CTGAAGTGAA AGCAGAAGCACCAGTTGCCT CTTCATCAAC AACAGAAGCA CAAGCACCAG CAAGCTCAAG CTCAGCAACTGAATCAAGCA CGCAACAAAC AACTGAAACA ACTACACCAA GTACAGATAA TAGTGCAACAGAAAATACTG GCTCTTCTTC ATCAGAACAA CCAGTACAAC CTACAACACC AAGCGATAATGGAAATAATG GTGGCCAAAC TGGTGGTGGA ACAGTTACAC CAACACCAGA ACCAACACCAGCGCCTTCTG CTGATCCAAC AATCAATGCA TTGAACGTTC TACGTCAATC ATTAGGTTTACGTCCAGTAG TATGGGATGC AGGTTTGGCA GCTTCTGCAA CTGCTCGTGC AGCACAAGTTGAAGCAGGTG GCATTCCAAA TGATCACTGG TCTCGTGGAG ATGAAGTTAT CGCAATTATGTGGGCGCCAG GTAACTCAGT AATCATGGCG TGGTACAATG AAACAAACAT GGTAACAGCTTCACGAAGCG GTCACCGTGA TTGGGAAATT AACCCAGGTA TTACGCGTGT CGGTTTTGGTTACTCAGGTA GCACAATCGT AGGACACTCA GCCEF129-4 (SEQ ID NO:484)DN VDKKIEEKNQ EISSLKAKQG DLASQVSSLEAEVSSVFDES MALREQKQTL KAKSEQLQQE ITNLNQRIEK RNEAIKNQAR DVQVNGQSTTMLDAVLDADS VADAISRVQA VSTIVSANND LMQQQKEDKQ AVVDKKAENE KKVKQLEATEAELETKRQDL LSKQSELNVM KASLALEQSS AESSKAGLEK QKAAAEAEQA RLAAEQKAAAEKAKQAAAKP AKAEVKAEAP VASSSTTEAQ APASSSSATE SSTQQTTETT TPSTDNSATENTGSSSSEQP VQPTTPSDNG NNGGQTGGGT VTPTPEPTPA PSADPTINAL NVLRQSLGLRPVVWDAGLAA SATARAAQVE AGGIPNDHWS RGDEVIAIMW APGNSVIMAW YNETNMVTASGSGHEDWEIN PGITRVGFGY SGSTIVGHSAEF130-1 (SEQ ID NO:485)TGATACATTA AAAGGAGGGA AAATATGCGC CCAAAAGAGA AAAAAAGAGG AAAAAATTGGTTAATCAACA GTTTATTAGT TTTACTATTT ATCATTGGCT TAGCCTTAAT TTTTAACAATCACATACGTA GTTGGGTGGT TCAACAAAAT AGCCGCTCGT ACGCCGTTAG CAAGTTCAAACCAGCTGATG TCAAGAAAAA TATGGCTCGT GAAACAACGT TTGACTTTGA TTCAGTTGAGTCCTTGAGCA CAGAAGCGGT GATGAAAGCC CAATTTGAAA ACAAAAACTT ACCTGTGATTGGTGCCATTG CGATACCAAG TGTCGAAATT AATTTGCCCA TTTTTAAAGG ATTGTCCAATGTCGCTTTAT TAACTGGTGC CGGGACCATG AAAGAAGATC AAGTCATGGG GAAAAACAATTATGCCTTCG CTAGTCATCG AACGGAAGAT GGCGTTTCCT TATTTTCACC TTTAGAAAGAACCAAAAAAG ACGAACTCAT TTATATCACT GATTTATCTA CTGTTTATAC ATACAAAATAACTTCTGTAG AAAAAATCGA ACCAACCCGT GTTGAGTTAA TTGATGACGT TCCTGGTCAAAATATGATTA CCTTAATTAC CTGTGGCGAT TTACAAGCAA CGACGCGAAT TGCTGTTCAAGGAACATTAG CAGCAACGAC GCCTATTAAA GACCCCAACG ACGATATGTT GAAGGCTTTCCAATTGCAGC AAAAAACTTT ACCCGATTGG GTGGCTTAAEF130-2 (SEQ ID NO:486)YIKRRENMRP KEKKRGKNWL INSLLVLLFT ICLALIFNNQ IRSWVVQQNS RSYAVSKLKPADVKKNMARE TTFDFDSVES LSTEAVMKAQ FENKNLPVIG AIAIPSVEIN LPIFKGLSNVALLTGAGTMK EDQVMGKNNY ALASHRTEDG VSLFSPLERT KKDELIYTTD LSTVYTYKITSVEKIEPTRV ELIDDVPGQN MITLITCGDL QATTRIAVQG TLAATTPIKD ANDDMLKAFQLEQKTLADWV AEF130-3 (SEQ ID NO:487)CGTTAG CAAGTTGAAACCAGCTGATG TGAAGAAAAA TATGGCTCGT GAAACAACGT TTGACTTTGA TTCAGTTGAGTCCTTGAGCA CAGAAGCGGT GATGAAAGCC CAATTTGAAA ACAAAAACTT ACCTGTGATTGGTGCCATTG CGATACCAAG TGTCGAAATT AATTTGCCCA TTTTTAAAGG ATTGTCCAATGTCGCTTTAT TAACTGGTGC CGGGACCATG AAAGAAGATC AAGTCATGGG GAAAAACAATTATGCCTTGG CTAGTCATCG AACGGAAGAT GGCGTTTCCT TATTTTCACC TTTAGAAAGAACCAAAAAAG ACGAACTCAT TTATATCACT GATTTATCTA CTGTTTATAC ATACAAAATAACTTCTGTAG AAAAAATCGA ACCAACCCGT GTTGAGTTAA TTGATGACGT TCCTGGTCAAAATATGATTA CCTTAATTAC CTGTGGCGAT TTACAAGCAA CGACGCGAAT TGCTGTTCAAGGAACATTAG CAGCAACGAC GCCTATTAAA GACGCCAACG ACGATATGTT GAAGGCTTTCCAATTGGAGC AAAAAACTTT AGCCGATTGG GTGGCTEF130-4 (SEQ ID NO:488)VSKLKPADVKKNMARE TTFDFDSVES LSTEAVMKAQ FENKNLPVIG AIAIPSVEIN LPILFKGLSNVALLTGAGTMK EDQVMGKNNY ALASHRTEDG VSLFSPLERT KKDELIYTTD LSTVYTYKITSVEKIEPTRV ELIDDVPGQN MITLITCGDL QATTRIAVQG TLAATTPIKD ANDDMLKAFQLEQKTLADWV AEF131-1 (SEQ ID NO:489)TAGGCGGAGG TAAGCGGTAT GCGTAAACGA CATGCAAAGA AAAGACATGG AGGAGTGAATTGGCTTTTTA TAGTATGTTT GTTGGTGGTG ATTGGTGGTA GTGGTTATTT AATAAAAACGTTCTTTTTCA OTAGAGATTO ACAAGTTAGT CAAGAATCGA AAGTGGTCTT GGAACAAGATCGCCGAAGTG ATAATTATGC GAATTTAACG AAAGAAATAG TTGCACCAGA TAGTGGCGAACTTGATCAAA AAATTCAAGA AACAAATTAT ATTGGTTCGG CTTTGATCAT TAAAGATGATCAGGTTTTAG TAAATAAAGG ATATGGCTTT GCCAATTTTG AAAAGCAACA AGCCAACACGCCAAACACAA GGTTTCAGAT TGGCTCAATT CAAAAATCTT TTACCACAAC CTTGATCTTAAAAGCAATTG AAGAAGGTAA ACTTACATTA GATACAAAAC TCGCTACGTT TTATCCGCAAATTCAAGGTG CTGAGGATAT TACGATTAGC GATATGTTGA ATATGACAAG TGGTTTAAAGTTATCAGCAA TGCCTAATAA TATCGTTACC GATGAAGAAA TTATTCAATT TGTTAAACAAAATACCATTC AAGTCAATAA AGGAAAATAC AATTATTCCC CAGTAAATTT TGTCCTTTTAGCAGGAATGT TAGAGAAAAT GTATCAACGT ACCTATCAAG AATTATTTAA TAATCTTTATCACAAAACGG CTGGTTTAAA GAATTTTGGC TTCTATGAAA CCTTATTGGA ACAGCCCAATAATTCAACAA GTTATAAATG GACAGAAGAT AATTCATATA ACCAAGTGCT CTCAATTCCTGCAGCTAGTT TTCCCCATGA ATTTGGGACT GGTAATGTGG ATATOAGGAC ACGTGATTTCTATTGGTACT TACATCAATT AACGAGTGGA CATTTAGTTT CCACCGCACT TTTGCAAAAATTATCCACGT CTTCTCAGCA AAGCTCTTAT CATGGCCGCA TCTATGTTCA TGATAATTATTTACGTTTAC ACGGCGTTGA AGCGGGTCAA CAAGCCCTGG TTTTATTTTC AAAAGATATGAAGACAGGGG TCATATTGCT AACTAACTGT GTGAATCCAG CCAAATACAA AGAATTAATTGGTTCGTTGT TCCATGATGT AACCAATTTA ACTGTTAAAT TTTAAEF131-2 (SEQ ID NO:490)MRKRH AKKRHGGVNW LFILVCLLVVI GGSGYLIKTF FFTRDSQVSQ ESKVVLEEDRRSDNYANLTK EIVAPDSGEL DQKIQETNYI GSALIIKDDQ VLVNKGYGFA NFEKQQANTPNTRFQIGSIQ KSFTTTLILK ATEEGKLTLD TKLATFYPQI QGAEDITISD MLNNTSGLKLSAMPNNIVTD EEIIQFVKQN TIQVNKGKYN YSPVNFVLLA GMLEKMYQRT YQELFNNLYHKTAGLKNFGF YETLLEQPNN STSYKWTEDN SYNQVLSIPA ASFAHEFGTG NVDNTTGDLYWYLHQLTSGH LVSTALLQKL WTSSQQSSYH GGIYVHDNYL RLHGVEACQQ ALVLFSKDMKTGVILLTNCV NPAKYKELIG SLFHDVTNLT VKFEF131-3 (SEQ ID NO:491)TTT AATAAAAACGTTCTTTTTCA CTAGAGATTC ACAAGTTACT CAAGAATCGA AACTGGTCTT GGAACAAGATCGCCGAAGTG ATAATTATGC GAATTTAACC AAAGAAATAC TTGCACCAGA TAGTGGCGAACTTGATCAAA AAATTCAAGA AACAAATTAT ATTCGTTCGG CTTTGATCAT TAAAGATGATCAGGTTTTAG TAAATAAAGG ATATGGCTTT GCCAATTTTG AAAAGCAACA AGCCAACACGCCAAACACAA GGTTTCAGAT TGGCTCAATT CAAAAATCTT TTACCACAAC CTTGATCTTAAAAGCAATTG AAGAAGGTAA ACTTACATTA GATACAAAAC TCGCTACGTT TTATCCGCAAATTCAAGGTG CTGAGGATAT TACGATTAGC GATATGTTGA ATATGACAAG TGGTTTAAAGTTATCAGCAA TCCCTAATAA TATCGTTACC GATGAAGAAA TTATTCAATT TGTTAAACAAAATACCATTC AAGTCAATAA AGGAAAATAC AATTATTCCC CAGTAAATTT TCTCCTTTTAGCAGGAATCT TAGAGAAAAT GTATCAACGT ACCTATCAAG AATTATTTAA TAATCTTTATCACAAAACGG CTGGTTTAAA GAATTTTGGC TTCTATGAAA CCTTATTGGA ACAGCCCAATAATTCAACAA GTTATAAATG GACAGAAGAT AATTCATATA ACCAAGTGCT CTCAATTCCTGCAGCTAGTT TTGCCCATGA ATTTGGGACT GGTAATGTGG ATATGACGAC AGGTGATTTGTATTGGTACT TACATCAATT AACGAGTCGA CATTTACTTT CCACCGCACT TTTCCAAAAATTATGGACGT CTTCTCAGCA AAGCTCTTAT CATGGCGGCA TCTATGTTCA TGATAATTATTTACCTTTAC ACGGCGTTGA AGCGGGTCAA CAAGCCCTGG TTTTATTTTC AAAAGATATGAAGACAGGCG TCATATTGCT AACTAACTGT CTGAATCCAG CGAAATACAA AGAATTAATTGGTTCGTTGT TCCATGATGT AACCAATTTA ACTGTTAAAT TTEF131-4 (SEQ ID NO:492)LIKTF FFTRDSQVSQ ESKVVLEEDRRSDNYANLTK EIVAPDSGEL DQKIQETNYI GSALIIKDDQ VLVNKGYGFA NFEKQQANTPNTRFQTGSIQ KSFTTTLILK AIEEGKLTLD TKLATFYPQI QGAEDITISD MLNMTSGLKLSAMPNNIVTD EEIIQFVKQN TIQVNKGKYN YSPVNFVLLA GMLEKMYQRT YQELFNNLYHKTAGLKNFGF YETLLEQPNN STSYKWTEDN SYNQVLSIPA ASFAHEFGTG NVDMTTGDLYWYLHQLTSGH LVSTALLQKL WTSSQQSSYH GGIYVHDNYL RLHGVEAGQQ ALVLFSKDMKTGVILLTNCV NPAKYKELIG SLFHDVTNLT VKFEF132-1 (SEQ ID NO:493)TAGTTTTCTAATCTCACCAAAACAAAAATTTTTAAGAAAGAAGGAGAGATCGTTATGATGAGAAAATGGAAAGTAGTAGTGGGAAGTCTCCGAATCTTGATTGCTCTTTTTATATTCGGGGCATGTTCAACAAATAGTAAAGACAAAGATACAGTGGCTTCGAACGAAAAATTAAAGGTAGTAGTTACTAATTCGATTTTAGCAGATATTACTGAAAATATAGCAAAAGATAAAATTGATTTACACAGTATCGTACCTATTGGGAAAGATCCCCACGAATATGAACCtTTGCCTGAAGATGTTCAAAAAACTTCAAAAGCAGATTTGATTTTTTATAACGGTGTTAACTTGGAmACTGGAGGAAATGCTTGGTTTACAAAATTAGThAAAmATGCCAACAAAGAGGAAAACAAAGACTATTTTGCAGCAAGTGATGGCATAGATGTTATTTACTTAGAGGGTCAGAGTGAGAAAGGGAAGGAAGATCCCCATGCTTGGTTAAATTTAGAAAACGGTATTATTTACGCTAAAAATATTGAAAAATGGTTAGCGGAAAAAGATCCTGATAATAAAAAATTCTATAAAGAAAATCTAGATAAGTATATTGAAAAGTTGGATTCTCTAGACAAAGAAGCTAAATCTAAATTTGCTTCAATTCCGAATGATAAAAAAATGATTCTTACAAGTGAAGGATGCTTtAAATATTTCTCGAAAGCGTATAATGTGCCTTCTGCTTACATTTGGGAAAtCAACACTGAAGAAGAAGGAACACCAGATCAAATAAAACACTTAGTTGAAAAATTACGCACAACAAAAGTTCCCTCCTTATTCGTAGAAAGTAGTGTGGACGATAGACCGATGAAAACAGTATCAAAAGATACCAATATTCCTATCTATTCAACGATTTTTACTGATTCAATTGCAGAAAAAGGACAAGATGGTGATAGTTACTATGCGATGATGAAATGGAACCTGGATAAAATTGCTGAAGGCCTTTCGAAATAAEF132-2 (SEQ ID NO:494)MNRKWKVVVGSLGMLIALFIFGACSTNSKDKDTVASNEKLKVVVTNSTLADITENIAKDKIDLHSIVPIGKDPHEYEPLPEDVQKTSKADLIFYNGVNLXTGGNAWFTKLVKXANKEENKDYFAASDGIDVIYLEGQSEKGKEDPHAWLNLENGIIYAKNIEKWLAEKDPDNKKFYKENLDKYIEKLDSLDKEAKSKFASIPNIDKKMVTSEGCFKYFSKAYNVPSAYIWEINTEEEGTPDQIKHLVEKLRTTKVPSLFVESSVDDRPMKTVSKDTNIPIYSTIFTDSIAEKGQDGDSYYAMMKWNLDKIAEGLSK.EF132-3 (SEQ ID NO:495)ATGTTCAACAAATAGTAAAGACAAAGATACAGTGGCTTCGAACGAAAAATTAAACGTAGTAGTTACTAATTCGATTTTAGCAGATATTACTGAAAATATAGCAAAAGATAAAATTGATTTACACAGTATCGTACCTATTCCGAAAGATCCCCACGAATATGAACCtTTGCCTGAAGATGTTCAAAAAACTTCAAAAGCAGATTTGATTTTTTATAACGGTGTTAACTTGGAmACTGGAGGAAATGCTTGGTTTACAAAATTAGTAAAAmATGCGAACAAAGAGGAAAACAAAGACTATTTTGCAGCAAGTGATGGCATAGATGTTATTTACTTAGAGGGTCAGAGTGAGAAAGGGAAGGAACATCCCCATGCTTGGTTAAATTTAGAAAACGGTATTATTTACGCTAAAAATATTGAAAAATGGTTAGCGGAAAAAGATCCTGATAATAAAAAATTCTATAAAGAAAATCTAGATAAGTATATTGAAAAGTTGGATTCTCTAGACAAAGAAGCTAAATCTAAATTTCCTTCAATTCCGAATCATAAAAAAATGATTGTTACAAGTGAAGGATGCTTtAAATATTTCTCGAAAGCGTATAATGTGCCTTCTGCTTACATTTGGGAAAtCAACACTGAAGAAGAAGGAACACCAGATCAAATAAAACACTTAGTTGAAAAATTACGCACAACAAAAGTTCCCTCCTTATTCGTAGAAAGTAGTGTGGACGATAGACCGATGAAAACAGTATCAAAAGATACCAATATTCCTATCTATTCAACGATTTTTACTGATTCAATTGCAGAAAAAGGACAAGATGGTGATAGTTACTATCCGATGATGAAATGGAACCTGGATAAAATTGCTGAAGGCCTTTCGAAAEF132-4 (SEQ ID NO:496)CSTNSKDKDTVASNEKLKVVVTNSILADITENIAKDKIDLHSIVPIGKDPHEYEPLPEDVQKTSKADLIFYNGVNLXTGGNAWFTKLVKXANKEENKDYFAASDGIDVIYLEGQSEKGKEDPHAWLNLENGIIYAKNIEKWLAEKDPDNKKFYKENLDKYIEKLDSLDKEAKSKFASEPNDKKNIVTSEGCFKYFSKAYNVPSAYIWEINTEEEGTPDQIKHLVEKLRTTKVPSLFVESSVDDRPMKTVSKDTNIPIYSTIFTDSIAEKGQDGDSYYANINKWNLDKTAEGLSK


[0268]

2





TABLE 2








Closest matching sequences between the polypeptides of the present invention and sequences in GenBank and Derwent databases.






















GenBank

BLAST
BLAST



Query
Access. No.
GenBank Gene Description
Score
P-Value







EF002-2
gi|2338759
(AF018073) periplasmic sorbitol-binding protein; SmoE
113
3.60E-18





[Rhodobacter



EF003-2
gi|1552773
hypothetical [Escherichia coli] >gnl|PID|d1012634 hypothetical
278
1.20E-53





29.4



EF003-2
gi|2196996
lipoprotein homolog [Treponema pallidum] >gi|2108234 29K
309
3.30E-44





protein



EF003-2
gi|146649
lipoprotein-28 precursor [Escherichia coli] >gi|290510
263
9.20E-40



EF003-2
gi|48838
28 3kDa membrane protein [Haemophilus influenzae]
197
2.10E-39



EF003-2
gi|1573614
28 kDa membrane protein (hlpA) [Haemophilus influenzae]
197
7.80E-39



EF003-2
gi|2314748
(AE000654) outer membrane protein [Helicobacter pylori]
263
4.60E-37



EF003-2
gi|349530
lipoprotein [Pasteurella haemolytica] >gi|150508 lipoprotein
189
4.10E-29



EF003-2
gnl|PID|e118435
similar to hypothetical proteins [Bacillus subtilis]
158
2.70E-26



EF003-2
gi|349532
lipoprotein [Pasteurella haemolytica] >pir|JN0753|JN0753 outer
200
1.20E-25



EF003-2
gi|1336657
lipoprotein [Bacillus subtilis]
182
2.70E-25



EF003-2
gnl|PID|e233873
hypothetical protein [Bacillus subtilis] >gnl|PID|e1182900
186
1.30E-23



EF003-2
gi|294071
lipoprotein 3 [Pasteurella haemolytica]
199
6.60E-23



EF003-2
gi|349531
lipoprotein [Pasteurella haemolytica] >pir|JN07521JN0752 outer
198
1.30E-20



EF003-2
gi|294070
lipoprotein 2 [Pasteurella haemolytica]
198
1.80E-20



EF005-2
gi|537235
Kenn Rudd identifies as gpmB [Escherichia coli] >gi|1790856
127
6.20E-12



EF006-2
gi|552773
hypothetical [Escherichia coli] >gnl|PID|d1012634 hypothetical
255
1.40E-60





29.4



EF006-2
gi|349532
lipoprotein [Pasteurella haemolytica] >pir|JN0753|JN0753 outer
221
6.40E-49



EF006-2
gi|2314748
(AE000654) outer membrane protein [Helicobacter pylori]
283
2.70E-48



EF006-2
gi|2196996
lipoprotein homolog [Treponema pallidum] >gi|2108234 29K
267
4.40E-47





protein



EF006-2
gnl|PID|e118435
similar to hypothetical proteins [Bacillus subtilis]
359
1.80E-44



EF006-2
gi|349531
lipoprotein [Pasteurella haemolytica] >pin|JN0752|JN0752 outer
218
3.80E-41



EF006-2
gi|294071
lipoprotein 3 [Pasteurella haemolytica]
220
2.30E-38



EF006-2
gi|146649
lipoprotein-28 precursor [Escherichia coli] >gi|290510
193
2.60E-38



EF006-2
gi|294070
lipoprotein 2 [Pasteurella haemolytica]
218
1.20E-36



EF006-2
gi|148838
28 3kDa membrane protein [Haemophilus influenzae]
112
8.50E-34



EF006-2
gi|1573614
28 kDa membrane protein (hlpA) [Haemophilus influenzae]
112
1.50E-33



EF006-2
gi|349530
lipoprotein [Pasteurella haemolytica] >gi|150508 lipoprotein
114
4.30E-29



EF006-2
gi|294069
lipoprotein 1 [Pasteurella haemolytica]
114
1.30E-27



EF006-2
gi|1336657
lipoprotein [Bacillus subtilis]
202
2.10E-26



EF006-2
gnl|PID|e233873
hypothetical protein [Bacillus subtilis] >gnl|PID|e1182900
200
6.50E-25



EF008-2
gi|493017
endocarditis specific antigen [Enterococcus faecalis]
1590
2.70E-211



EF008-2
gi|393269
adhesion protein [Streptococcus pneumoniae]
986
1.80E-129



EF008-2
gi|153834
adhesin specific for salivary pellicle of dental surfaces
973
1.00E-127



EF008-2
gi|1575030
surface adhesin A precursor [Streptococcus pneumoniae]
934
2.90E-126



EF008-2
gi|153826
adhesin B [Streptococcus sanguis] >pir|A43583|A43583 adhesin
916
3.90E-126





B



EF008-2
gi|1184932
ScbA [Streptococcus crista]
915
3.40E-125



EF008-2
gi|1117994
surface antigen A variant precursor [Streptococcus pneumoniae]
917
5.60E-124



EF008-2
gi|310633
adhesin [Streptococcus gordonii]
891
6.00E-122



EF008-2
gnl|PID|e255529
lipoprotein [Staphylococcus epidermidis]
476
1.20E-99



EF008-2
gi|1573330
adhesin B precursor (fimA) [Haemophilus influenzae]
380
1.60E-68



EF008-2
gi|1245464
YfeA [Yersinia pestis] >gi|1245464 YfeA [Yersinia pestis]
355
1.20E-64



EF008-2
gi|755075
periplasmic-binding protein [Synechocystis sp.]
321
1.70E-62





>gnl|PID|d1018652 Mn



EF008-2
gi|1335912
EwlA [Erysipelothrix rhusiopathiae]
232
4.40E-42



EF008-2
gnl|PID|e118595
similar to ABC transporter (membrane protein) [Bacillus
204
4.10E-38



EF008-2
gi|1777933
TroA [Treponema pallidum]
181
2.40E-35



EF009-2
gi|349531
lipoprotein [Pasteurella haemolytica] >pir|JN0752|JN0752 outer
391
4.00E-64



EF009-2
gi|1552773
hypothetical [Escherichia coli] >gnl|PID|d1012634 hypothetical
359
1.90E-63





29.4



EF009-2
gi|294070
lipoprotein 2 [Pasteurella haemolytica]
391
6.40E-63



EF009-2
gi|349532
lipoprotein [Pasteurella haemolytica] >pir|JN0753|JN0753 outer
386
1.10E-61



EF009-2
gi|148838
28 3kDa membrane protein [Haemophilus influenzae]
286
5.60E-60



EF009-2
gi|1573614
28 kDa membrane protein (hlpA) [Haemophilus influenzae]
286
7.60E-60



EF009-2
gi|294069
lipoprotein 1 [Pasteurella haemolytica]
122
4.70E-59



EF009-2
gi|146649
lipoprotein-28 precursor [Escherichia coli] >gi|290510
326
2.20E-58



EF009-2
gi|349530
lipoprotein [Pasteurella haemolytica] >gi|150508 lipoprotein
239
7.80E-57



EF009-2
gi|294071
lipoprotein 3 [Pasteurella haemolytica]
344
4.90E-56



EF009-2
gi|2314748
(AE000654) outer membrane protein [Helicobacter pylori]
319
4.20E-53



EF009-2
gi|2196996
lipoprotein homolog [Treponema pallidum] >gi|2108234 29K
312
2.60E-41





protein



EF009-2
gi|1336657
lipoprotein [Bacillus subtilis]
234
4.00E-32



EF009-2
gnl|PID|e233873
hypothetical protein [Bacillus subtilis] >gnl|PID|e1182900
242
1.40E-31



EF009-2
gnl|PID|e118435
similar to hypothetical proteins [Bacillus subtilis]
102
6.80E-22



EF011-2
gnl|PID|d100965
ferric anguibactin-binding protein precusor FatB of V.
579
3.10E-98



EF011-2
gnl|PID|d100965
ferric anguibactin-binding protein precusor FatB of V.
579
3.10E-98



EF011-2
gnl|PID|e185374
ceuE gene product [Campylobacter coli]
284
1.30E-89



EF011-2
gnl|PID|e185374
ceuE gene product [Campylobacter coli]
284
1.30E-89



EF011-2
gi|150756
40 kDa protein [Plasmid pJM1] >pir|A29928|A29928
222
2.80E-52





membrane-associated



EF011-2
gi|150756
40 kDa protein [Plasmid pJM1] >pir|A29928|A29928
222
2.80E-52





membrane-associated



EF012-2
gi|309662
pheromone binding protein [Plasmid pCF10]
266
8.70E-116





>pir|B53309|B53309



EF012-2
gi|388269
traC [Plasmid pAD1] >pir|A53310|A53310 pheromone cAD1
252
1.10E-109





binding



EF012-2
gnl|PID|d101185
TRAC [Enterococcus faecalis]
281
3.60E-103



EF012-2
gnl|PID|d100655
TraC [Enterococcus faecalis]
277
2.30E-102



EF012-2
gi|312940
threonine kinase [Streptococcus equisimilis]
227
1.90E-67





>pir|S28153|S28153



EF012-2
gi|48808
dciAE [Bacillus subtilis]
228
1.70E-46



EF012-2
pir|S16651|S166
dciAE protein - Bacillus subtilis
228
1.00E-45



EF012-2
gnl|PID|e118149
(AJ002571) DppE [Bacillus subtilis] >gnl|PID|e1183316
228
3.80E-45



EF012-2
gi|40005
OppA gene product [Bacillus subtilis]
281
3.90E-44



EF012-2
gi|143603
sporulation protein [Bacillus subtilis] >gnl|PID|e1183163
281
7.70E-44



EF012-2
gnl|PID|d101563
Periplasmic oligopeptide-binding protein precursor.
152
2.20E-43



EF012-2
gi|1574679
oligopeptide binding protein (oppA) [Haemophilus influenzae]
178
2.20E-42



EF012-2
gi|478020
Opp A (AA1-542) [Salmonella typhimurium] >gi|47808
128
1.00E-37





precursor



EF012-2
gi|882550
ORF_f535 [Escherichia coli] >gi|1789397 (AE000384) f535;
228
5.30E-36





This 535 aa



EF014-2
pir|D70070|D700
transcriptional regulator homolog ywtF-Bacillus subtilis
101
1.40E-27



EF014-2
gnl|PID|e116988
capsular polysaccharide synthesis protein [Streptococcus
121
9.50E-27



EF014-2
gi|2804769
(AF030373) putative regulatory protein [Streptococcus
121
9.50E-27







pneumoniae]





EF014-2
gnl|PID|e289126
unknown [Streptococcus pneumoniae]
121
1.00E-24



EF014-2
gi|2267239
ORF1 [Staphylococcus epidermidis]
234
1.50E-24



EF014-2
gi|485275
putative regulatory protein [Streptococcus pneumoniae]
121
3.90E-24



EF014-2
gi|2804735
(AF030367) putative regulatory protein [Streptococcus
121
3.90E-24







pneumoniae]





EF014-2
gi|2804747
(AF030369) putative regulatory protein [Streptococcus
121
3.90E-24







pneumoniae]





EF014-2
gi|1762327
putative transcriptional regulator [Bacillus subtilis]
185
2.80E-22



EF014-2
gi|143156
membrane bound protein [Bacillus subtilis] >gnl|PID|e1184471
116
1.10E-21



EF014-2
gnl|PID|d101895
membrane bound protein LytR [Synechocystis sp.]
113
6.20E-20



EF014-2
gi|1276874
EpsA [Streptococcus thermophilus]
103
4.00E-17



EF016-2
gnl|PID|e118566
similar to amino acid ABC transporter (binding protein)
194
3.70E-35



EF016-2
gi|40934
arginine binding protein [Escherichia coli] >gi|769794 artJ
121
1.60E-31



EF016-2
gnl|PID|d101527
Arginine-binding periplasmic protein 2 precursor [Escherichia
121
4.80E-31



EF016-2
gi|687652
FliY [Escherichia coli] >gnl|PID|d1016464 FliY protein
160
5.70E-31





precursor.



EF016-2
gi|2650410
(AE001090) glutamine ABC transporter, periplasmic glutamine-
122
3.30E-29





binding



EF016-2
gi|1649035
high-affinity periplasmic glutamine binding protein [Salmonella
104
1.80E-27



EF016-2
gi|1574634
glutamine-binding periplasmic protein (glnH) [Haemophilus
174
2.50E-27



EF016-2
gi|41569
GlnH precursor (AA −22 to 226) [Escherichia coli]
106
4.70E-27





>gnl|PID|d1015250



EF016-2
gnl|PID|d101527
Arginine-binding periplasmic protein 1 precursor [Escherichia
109
3.70E-26



EF016-2
gi|769791
artI [Escherichia coli] >gi|769791 artI [Escherichia coli]
127
2.30E-25



EF016-2
gnl|PID|d100892
homologous to Gln-binding periplasmic proteins [Bacillus
117
8.50E-24



EF016-2
gi|154125
J protein [Salmonella typhimurium] >gi|47718 reading frame
118
2.10E-23





hisJ



EF016-2
gnl|PID|d101688
HISTIDINE-BINDING PERIPLASMIC PROTEIN
117
4.50E-23





PRECURSOR (HBP).



EF016-2
gi|1166636
histidine-binding periplasmic protein HisJ [Escherichia coli]
117
6.60E-23



EF017-2
gi|388269
traC [Plasmid pAD1] >pir|A53310|A53310 pheromone cAD1
421
4.50E-128





binding



EF017-2
gnl|PID|d101185
TRAC [Enterococcus faecalis]
417
5.10E-124



EF017-2
gnl|PID|d100655
TraC [Enterococcus faecalis]
414
4.40E-123



EF017-2
gi|309662
pheromone binding protein [Plasmid pCF10]
415
2.40E-119





>pir|B53309|B53309



EF017-2
gi|40005
OppA gene product [Bacillus subtilis]
294
6.20E-82



EF017-2
gi|143603
sporulation protein [Bacillus subtilis] >gnl|PID|e1183163
290
2.80E-79



EF017-2
gi|312940
threonine kinase [Streptococcus equisimilis]
241
2.40E-71





>pir|S28153|S28153



EF017-2
gi|48808
dciAE [Bacillus subtilis]
270
1.10E-61



EF017-2
gnl|PID|e118149
(AJ002571) DppE [Bacillus subtilis] >gnl|PID|e1183316
270
1.50E-61



EF017-2
pir|S16651|S166
dciAE protein-Bacillus subtilis
270
3.10E-60



EF017-2
gi|304925
periplasmic oligopeptide binding protein [Escherichia coli]
171
2.60E-57



EF017-2
gi|147014
oligopeptide binding protein precursor [Escherichia coli]
171
8.70E-56



EF017-2
gi|47802
Opp A (AA1-542) [Salmonella typhimurium] >gi|47808
154
1.30E-52





precursor



EF017-2
gi|882550
ORF_f535 [Escherichia coli] >gi|1789397 (AE000384) f535;
135
5.50E-52





This 535 aa



EF017-2
gi|1574679
oligopeptide binding protein (oppA) [Haemophilus influenzae]
168
2.90E-43



EF019-2
gi|438458
likely N-terminal signal sequence; mature protein probably
104
2.30E-17



EF021-2
gnl|PID|e311492
unknown [Bacillus subtilis] >gnl|PID|e1184232 similar to ABC
317
2.50E-103



EF021-2
bbs|173803
CD4+ T cell-stimulating antigen [Listeria monocytogenes,
476
2.80E-81





85EO-1167,



EF021-2
gi|581809
tmbC gene product [Treponema pallidum] >pir|A43595|A43595
152
3.20E-71





membrane



EF021-2
gi|2688280
(AE001143) basic membrane protein C (bmpC) [Borrelia
101
5.50E-27







burgdorferi
]




EF021-2
gnl|PID|e117283
membrane protein A [Borrelia garinii]
142
6.50E-22



EF021-2
gnl|PID|e117283
membrane protein A [Borrelia burgdorferi]
141
9.20E-22



EF021-2
gnl|PID|e117283
membrane protein A [Borrelia burgdorferi] >gi|516592
141
9.20E-22





membrane



EF021-2
gnl|PID|e117283
bmpA(p39,ORF1) [Borrelia burgdorferi]
141
1.70E-21



EF021-2
gi|508421
antigen P39 [Borrelia burgdorferi] >gi|2688281 (AE001143)
141
1.70E-21





basic



EF021-2
gi|1753225
BmpA protein [Borrelia burgdorferi]
141
2.70E-20



EF021-2
gnl|PID|e117282
membrane protein A [Borrelia afzelii]
141
8.60E-20



EF021-2
gnl|PID|e117283
membrane protein A [Borrelia afzelii]
141
8.60E-20



EF021-2
gnl|PID|e117283
membrane protein A [Borrelia afzelii]
141
8.60E-20



EF021-2
gnl|PID|e117282
bmpA(p39,ORF1) [Borrelia burgdorferi]
141
1.50E-19



EF022-2
gi|312940
threonine kinase [Streptococcus equisimilis]
324
5.90E-66





>pir|S28153|S28153



EF022-2
gi|309662
pheromone binding protein [Plasmid pCF10]
307
5.60E-60





>pir|B53309|B53309



EF022-2
gnl|PID|d101185
TRAC [Enterococcus faecalis]
301
4.80E-59



EF022-2
gnl|PID|e118149
(AJ002571) DppE [Bacillus subtilis] >gnl|PID|e1183316
170
5.10E-59



EF022-2
gi|48808
dciAE [Bacillus subtilis]
170
5.20E-59



EF022-2
gnl|PID|d100655
TraC [Enterococcus faecalis]
299
2.80E-58



EF022-2
pir|S16651|S166
dciAE protein - Bacillus subtilis
170
1.60E-57



EF022-2
gi|388269
traC [Plasmid pAD1] >pir|A53310|A53310 pheromone cAD1
280
2.70E-53





binding



EF022-2
gi|40005
OppA gene product [Bacillus subtilis]
154
7.30E-48



EF022-2
gi|143603
sporulation protein [Bacillus subtilis] >gnl|PID|e1183163
154
3.10E-47



EF022-2
gi|2688227
(AE001139) oligopeptide ABC transporter, periplasmic
215
1.00E-36



EF022-2
gi|2281458
(AF000366) oligopeptide permease homolog AII [Borrelia
215
1.00E-36







burgdorferi
]




EF022-2
gi|304925
periplasmic oligopeptide binding protein [Escherichia coli]
131
1.30E-35



EF022-2
gi|147014
oligopeptide binding protein precursor [Escherichia coli]
131
1.80E-34



EF022-2
gi|47802
Opp A (AA1-542) [Salmonella typhimurium] >gi|47808
138
4.90E-34





precursor



EF023-2
gi|309662
pheromone binding protein [Plasmid pCF10]
231
4.70E-66





>pir|B53309|B53309



EF023-2
gi|388269
traC [Plasmid pAD1] >pir|A53310|A53310 pheromone cAD1
223
4.80E-62





binding



EF023-2
gnl|PID|d101185
TRAC [Enterococcus faecalis]
226
1.00E-58



EF023-2
gnl|PID|d100655
TraC [Enterococcus faecalis]
226
4.40E-58



EF023-2
gi|48808
dciAE [Bacillus subtilis]
157
1.20E-57



EF023-2
gnl|PID|e118149
(AJ002571) DppE [Bacillus subtilis] >gnl|PID|e1183316
157
1.20E-57



EF023-2
pir|S16651|S166
dciAE protein - Bacillus subtilis
157
3.80E-56



EF023-2
gi|40005
OppA gene product [Bacillus subtilis]
137
2.30E-53



EF023-2
gi|143603
sporulation protein [Bacillus subtilis] >gnl|PID|e1183163
133
6.90E-53



EF023-2
gi|47802
Opp A (AA1-542) [Salmonella typhimurium] >gi|47808
135
2.00E-41





precursor



EF023-2
gi|2688227
(AE004139) oligopeptide ABC transportcr, periplasmic
187
9.40E-41



EF023-2
gi|2281458
(AF000366) oligopeptide permease homolog AII [Borrelia
187
1.90E-40







burgdorferi
]




EF023-2
gi|882550
ORF_f535 [Escherichia coli] >gi|1789397 (AE000384) f535;
155
1.30E-38





This 535 aa



EF023-2
gi|304925
periplasmic oligopeptide binding protein [Escherichia coli]
130
9.00E-37



EF023-2
gi|147014
oligopeptide binding protein precursor [Escherichia coli]
130
3.70E-34



EF026-2
gi|2352482
(AF005097) unknown [Lactococcus lactis]
141
1.10E-23



EF027-2
gi|309662
pheromone binding protein [Plasmid pCF10]
198
6.20E-71





>pir|B53309|B53309



EF027-2
gnl|PID|d100655
TraC [Enterococcus faecalis]
202
1.50E-68



EF027-2
gnl|PID|d101185
TRAC [Enterococcus faecalis]
202
1.50E-68



EF027-2
gi|388269
traC [Plasmid pAD1] >pir|A53310|A53310 pheromone cAD1
213
8.30E-68





binding



EF027-2
gnl|PID|e118149
(AJ002571) DppE [Bacillus subtilis] >gnl|PID|e1183316
222
3.70E-41



EF027-2
gi|48808
dciAE [Bacillus subtilis]
222
4.90E-41



EF027-2
pir|S16651|S166
dciAE protein - Bacillus subtilis
222
1.10E-39



EF027-2
gi|40005
OppA gene product [Bacillus subtilis]
251
4.10E-39



EF027-2
gi|143603
sporulation protein [Bacillus subtilis]> gnl|PID|e1183163
247
5.80E-39



EF027-2
gi|312940
threonine kinase [Streptococcus equisimilis]
233
8.90E-33





>pir|S28153|S28153



EF027-2
gi|2688227
(AE001139) oligopeptide ABC transporter, periplasmic
131
2.40E-24



EF027-2
gi|2281458
(AF000366) oligopeptide permease homolog AII [Borrelia
131
2.40E-24





burgdorferi]



EF027-2
gi|2281468
(AF000948) OppAIV [Borrelia burgdorferi] >gi|2689891
117
3.00E-20





(AE000792)



EF027-2
gi|1574679
oligopeptide binding protein (oppA) [Haemophilus influenzae]
130
3.50E-20



EF028-2
gnl|PID|d102047


B. subtilis
alkaline phosphatase IIIA; P19405 secretory

996
3.60E-131



EF028-2
pir|B39096|B390
alkaline phosphatase (EC 3.1.3.1) III precursor - Bacillus
982
2.90E-129



EF028-2
gi|470383
alkaline phosphatase A [Bacillus subtilis] >gnl|PID|e1182942
803
4.80E-119



EF028-2
gi|143324
APase I [Bacillus licheniformis] >pir|A44828|A44828 alkaline
184
3.00E-54



EF028-2
gi|147243
alkaline phosphatase precursor (BC 3.1.3.1) [Escherichia coli]
183
8.30E-54



EF028-2
gi|147237
alkaline phosphatase precursor (BC 3.1.3.1) [Escherichia coli]
178
4.40E-53



EF028-2
gi|147239
alkaline phosphatase precursor (BC 3.1.3.1) [Escherichia coli]
178
4.40E-53



EF028-2
gi|147241
alkaline phosphatase precursor (BC 3.1.3.1) [Escherichia coli]
178
4.40E-53



EF028-2
gi|1277127
phoA gene product [Cloning vector pFW_phoA1] > gi|1277130
174
4.90E-53





phoA gene



EF028-2
gi|147229
alkaline phosphatase precursor (EC 3.1.3.1) [Escherichia coli]
178
8.40E-53



EF028-2
gi|818851
alkaline phosphatase [synthetic construct]
174
1.10E-52



EF028-2
gi|147245
alkaline phosphatase (phoA) (EC 3.1.3.1) [Escherichia
177
1.20E-52





fergusonii]



EF028-2
gi|147231
alkaline phosphatase precursor (EC 3.1.3.1) [Escherichia coli]
174
1.60E-52



EF028-2
gi|147235
alkaline phosphatase precursor (EC 3.1.3.1) [Escherichia coli]
174
1.60E-52



EF028-2
gi|1016010
alkaline phosphatase with N-terminal PelB-leader and C-
174
1.60E-52





terminal



EF029-2
gi|1750126
YncB [Bacillus subtilis] >gnl|PID|e1183421 similar to
257
3.50E-55





micrococcal



EF029-2
gnl|PID|e118360
similar to hypothetical proteins [Bacillus subtilis]
263
7.80E-53



EF029-2
gi|673492
nuclease [Staphylococcus aureus] >pir|A00790|NCSAF
320
2.20E-39





micrococcal



EF029-2
gi|532653
thermonuclease [Staphylococcus hyicus]
155
9.10E-39



EF029-2
gi|47146
thermonuclease [Staphylococcus intermedius]
145
4.90E-32





>pir|526079|S26079



EF030-2
gi|48808
dciAE [Bacillus subtilis]
149
1.10E-66



EF030-2
gnl|PID|e118149
(AJ002571) DppE [Bacillus subtilis] >gnl|PID|e1183316
149
1.50E-66



EF030-2
pir|S16651|S166
dciAE protein - Bacillus subtilis
149
5.90E-66



EF030-2
gi|309662
pheromone binding protein [Plasmid pCF10]
227
7.40E-52





>pir|B53309|B53309



EF030-2
gnl|PID|d101185
TRAC [Enterococeus faecalis]
237
7.40E-52



EF030-2
gnl|PID|d100655
TraC [Enterococcus faecalis]
233
9.70E-51



EF030-2
gi|388269
traC [Plasmid pAD1] >pir|A53310|A53310 pheromone cAD1
229
3.00E-48





binding



EF030-2
gi|312940
threonine kinase [Streptococcus equisimilis]
277
3.00E-45





>pir|S28153|S28153



EF030-2
gi|47802
Opp A (AA1-542) [Salmonella typhimurium] >gi|47808
125
8.50E-34





precursor



EF030-2
gi|2688227
(AE001139) oligopeptide ABC transporter, periplasmic
211
4.80E-31



EF030-2
gi|2281458
(AF000366) oligopeptide permease homolog AII [Borrelia
211
4.80E-31







burgdorferi
]




EF030-2
gi|40005
OppA gene product [Bacillus subtilis]
148
1.20E-30



EF030-2
gi|143603
sporulation protein [Bacillus subtilis] >gnl|PID|e1183163
144
4.80E-30



EF030-2
gi|2281468
(AF000948) OppAIV [Borrelia burgdorferi] >gi|2689891
210
2.10E-29





(AE000792)



EF030-2
gi|1574679
oligopeptide binding protein (oppA) [Haemophilus influenzae]
148 6.00E-29



EF033-2
gnl|PID|e118439
similar to iron-binding protein [Bacillus subtilis]
164
2.60E-14



EF033-2
pir|S54437|S544
hemin binding protein - Yersinia enterocolitica
108
1.40E-11



EF033-2
gi|1619623
hemin binding protein [Yersinia enterocolitica]
108
2.00E-11



EF036-2
gnl|PID|d101022
ORF108 [Bacillus subtilis] >gnl|PID|e1185766 alternate gene
544
1.20E-96



EF036-2
gi|2622858
(AE000929) phosphate-binding protein PstS
183
1.40E-45





[Methanobacterium



EF036-2
gi|2622859
(AE000929) phosphate-binding protein PstS homolog
158
2.40E-41





[Methanobacterium



EF036-2
gi|2688115
(AE001132) phosphate ABC transporter, periplasmic
117
1.10E-12





phosphate-binding



EF037-2
gi|2352482
(AF005097) unknown [Lactococcus lactis]
141
1.10E-23



EF040-2
gi|1657516
hypothetical protein [Escherichia coli] >gi|1786511 (AE000139)
208
1.90E-29



EF040-2
gi|293265
2-5A-dependent RNase [Mus musculus] >pir|B45771|B45771
105
1.00E-17



EF040-2
gi|287865
G9a [Homo sapiens] >pir|S30385|S30385 G9a protein - human
143
8.30E-14



EF040-2
gi|311817
erythroid ankyrin [Mus musculus] >pir|S37771|S37771 ankyrin,
119
4.80E-13



EF040-2
gi|191940
ankyrin [Mus musculus] >pir|I49502|I49502 ankyrin - mouse
119
4.90E-13



EF040-2
gi|747710
alt. ankyrin (variant 2.2) [Homo sapiens]
120
1.50E-12



EF040-2
gi|178646
ankyrin [Homo sapiens]
120
1.80E-12



EF040-2
gi|1845265
ankyrin [Homo sapiens]
120
1.80E-12



EF040-2
pir|A35049|A350
ankyrin 1, erythrocyte splice form 2-human
120
1.80E-12



EF040-2
pir|B35049|B350
ankyrin 1, erythrocyte splice form 3-human
120
1.80E-12



EF040-2
gi|28702
ankyrin (variant 2.1) [Homo sapiens] >pir|S08275|SJHUK
120
1.80E-12





ankyrin 1,



EF041-2
gi|388269
traC [Plasmid pAD1] >pir|A53310|A53310 pheromone cAD1
670
1.40E-87





binding



EF041-2
gnl|PID|d100655
TraC [Enterococcus faecalis]
662
1.50E-85



EF041-2
gnl|PID|d101185
TRAC [Enterococcus faecalis]
662
1.50E-85



EF041-2
gi|309662
pheromone binding protein [Plasmid pCF10]
648
1.20E-83





>pir|B53309|B53309



EF041-2
gi|48808
dciAE [Bacillus subtilis]
218
1.20E-57



EF041-2
gnl|PID|e118149
(AJ002571) DppE [Bacillus subtilis] >gnl|PID|e1183316
218
1.40E-57



EF041-2
pir|S16651|S166
dciAE protein - Bacillus subtilis
218
2.10E-56



EF041-2
gi|882550
ORF_f535 [Escherichia coli] >gi|1789397 (AE000384) f535;
146
7.30E-40





This 535 aa



EF041-2
gi|143603
sporulation protein [Bacillus subtilis] >gnl|PID|e1183163
278
1.00E-34



EF041-2
gi|40005
OppA gene product [Bacillus subtilis]
279
1.00E-34



EF041-2
gi|47802
Opp A (AA1-542) [Salmonella typhimurium] >gi|47808
141
6.60E-30





precursor



EF041-2
gi|304925
periplasmic oligopeptide binding protein [Escherichia coli]
160
1.90E-29



EF041-2
gi|1574679
oligopeptide binding protein (oppA) [Haemophilus influenzae]
163
1.00E-28



EF041-2
gi|147014
oligopeptide binding protein precursor [Escherichia coli]
160
1.50E-28



EF041-2
gi|2253286
(AF005657) plasminogen binding protein [Borrelia burgdorferi]
134
5.00E-27



EF045-2
gi|308854
oligopeptide binding protein [Lactococcus lactis]
437
3.20E-125





>pir|E53290|E53290



EF045-2
gi|495181
oligopeptide binding protein [Lactococcus lactis]
426
9.70E-124



EF045-2
gi|677945
AppA [Bacillus subtilis] >gnl|PID|e1183158 oligopeptide ABC
154
2.30E-31



EF045-2
gi|293014
peptide-binding protein [Lactococcus lactis]
158
2.40E-14




>pir|B47098|B47098



EF048-2
gi|1574060
hypothetical [Haemophilus influenzae] >pir|I64164|I64164
250
2.30E-41



EF048-2
dbj||AB0014882
(AB001488) SIMILAR TO C4-DICARBOXYLATE-
208
3.60E-34





BINDING PERIPLASMIC



EF048-2
gi|466717
No definition line found [Escherichia coli] >gi|1790004
199
1.30E-30





(AE000435)



EF048-2
gi|46006
periplasmic C4-dicarboxylate binding-protein [Rhodobacter
162
1.40E-25





capsulatus]



EF048-2
gi|1573102
hypothetical [Haemophilus influenzae] >pir|H641431|H64143
244
3.80E-25



EF048-2
gi|2182530
(AE000085) Y4mM [Rhizobium sp. NGR234]
114
5.60E-18



EF048-2
gi|1572999
hypothetical [Haemophilus influenzae] >pir|E64141|E64141
116
5.90E-15



EF049-2
gi|149581
maturation protein [Lactobacillus paracasei]
241
2.40E-55





>pir|A44858|A44858



EF049-2
gi|47198
ORF (AA 1 to 299) [Lactococcus lactis cremoris]
239
1.00E-54





>pir|S08083|S08083



EF049-2
gi|432402
maturation protein [Lactococcus lactis] >gi|623055 proteinase
239
6.20E-54



EF049-2
gi|472835
ORF1 [Lactococcus lactis cremoris]
241
1.50E-53



EF049-2
gi|39782
33kDa lipoprotein [Bacillus subtilis] >gnl|PID|e325181 33kDa
128
8.90E-40



EF051-2
gnl|PID|d101142
molybdate-binding periplasmic protein [Synechocystis sp.]
173
3.20E-50



EF051-2
gnl|PID|e118602
alternate gene name: yvsD; similar to molybdate-binding
314
5.90E-50



EF051-2
gi|1574546
lsg locus hypothetical [Haemophilus influenzae]
161
2.20E-43





>pir|A64175|A64175



EF051-2
gi|504498
periplasmic molybdate-binding protein [Escherichia coli]
148
1.40E-30





>gi|1147817



EF051-2
gi|148939
ORF 8 [Haemophilus influenzae] >pir|S27583|S27S83
150
8.10E-28





hypothetical



EF054-2
gi|150556
surface protein [Plasmid pCF10] >pir|A41826|A41826 probable
1490
1.80E-192



EF054-2
gnl|PID|e236571
cell wall anchoring signal [Enterococcus faecalis]
515
8.10E-64



EF054-2
gi|45738
ORFC [Enterococcus faecalis] >pir|JH0204|JH0204
372
1.60E-58





hypothetical 30.5K



EF054-2
gi|496520
orf iota [Streptococcus pyogenes] >pir|S68125|S45091
362
1.30E-43





hypothetical



EF054-2
gi|160693
sporozoite surface protein [Plasmodium yoelii]
286
4.30E-33





>pir|A45559|A45559



EF054-2
gi|1813523
PbTRAP [Plasmodium berghei]
305
1.30E-32



EF054-2
gnl|PID|e225687
zinc finger protein [Mus musculus] >gnl|PID|e225688 zinc
246
3.60E-26



EF054-2
gi|2290394
IgG and IgE immunoreactive antigen recognized by sera from
242
1.40E-25





patients



EF054-2
gi|2290392
IgG and IgE immunoreactive antigen recognized by sera from
237
7.80E-25





patients



EF054-2
gi|46523
B antigen [Streptococcus agalactiae]
232
2.80E-23



EF054-2
pir|S15330|FCSO
IgA Fc receptor precursor - Streptococcus agalactiae
228
1.00E-22



EF054-2
gi|1620100
Pro- and Glu-rich, PENPEV (10×); similar to Streptococcus B
210
3.10E-21



EF054-2
gi|63686
NF-M c-terminus [Gallus gallus]
222
6.90E-21



EF054-2
gi|63689
NF-M protein [Gallus gallus] >pir|S15762|S15762
222
8.50E-21





neurofilament triplet



EF054-2
gi|757867
TATA-box like sequence (Us11) [Human herpesvirus 1]
194
4.10E-19





>gi|291493 18



EF059-2
gnl|PID|e236571
cell wall anchoring signal [Enterococcus faecalis]
418
5.60E-95



EF059-2
gi|150556
surface protein [Plasmid pCF10] >pir A41826|A41826 probable
606
3.70E-87



EF059-2
gi|45738
ORFC [Enterococcus faecalis] >pir|JH0204|JH0204
366
9.30E-50





hypothetical 30.5K



EF059-2
gi|496520
orf iota [Streptococcus pyogenes] >pir|S68125|S545091
367
5.90E-44





hypothetical



EF059-2
gi|160693
sporozoite surface protein [Plasmodium yoelii]
344
1.10E-38





>pir|A45559|A45559



EF059-2
gi|1813523
PbTRAP [Plasmodium berghei]
295
2.50E-32



EF059-2
gi|2290394
IgG and IgE immunoreactive antigen recognized by sera from
251
3.00E-29





patients



EF059-2
gi|2290392
IgG and IgE immunoreactive antigen recognized by sera from
251
3.40E-29





patients



EF059-2
gi|162100
Pro- and Glu-rich, PENPEV (10×); similar to Streptococcus B
253
6.40E-27



EF059-2
gi|46521
Fc receptor [Streptococcus agalactiae] >pir|A60234|A60234 IgA
197
2.70E-26





Fc



EF059-2
gi|46523
B antigen [Streptococcus agalactiae]
232
9.30E-26



EF059-2
pir|S15330|FCSO
IgA Fc receptor precursor - Streptococcus agalactiae
232
9.30E-26



EF059-2
gnl|PID|e225687
zinc finger protein [Mus musculus] >gnl|PID|e225688 zinc
234
1.40E-22



EF059-2
gi|425356
zona pellucida protein [Pseudopleuronectes americanus]
229
1.00E-21



EF059-2
gi|457769
Collagen [Bombyx mori] >pir|S42886|S42886 collagen -
209
7.60E-19





silkworm



EF061-2
gnl|PID|e236571
cell wall anchoring signal [Enterococcus faecalis]
925
8.10E-118



EF061-2
gi|150556
surface protein [Plasmid pCF10] >pir|A41826|A41826 probable
350
1.50E-107



EF061-2
gi|496520
orf iota [Streptococcus pyogenes] >pir|S68125|S45091
308
1.40E-58





hypothetical



EF061-2
gi|45738
ORFC [Enterococcus faecalis] >pir|JH0204|JH0204
322
6.40E-50





hypothetical 30.5K



EF061-2
gi|1813523
PbTRAP [Plasmodium berghei]
263
1.00E-26



EF061-2
gi|160693
sporozoite surface protein [Plasmodium yoelii]
241
9.00E-25





>pir|A45559|A45559



EF061-2
gi|63686
NF-M c-terminus [Gallus gallus]
232
2.10E-22



EF061-2
gi|63689
NF-M protein [Gallus gallus] >pir|S15762|S15762
232
2.60E-22





neurofilament triplet



EF061-2
gi|2290392
IgG and IgE immunoreactive antigen recognized by sera from
176
2.40E-21





patients



EF061-2
gi|1620100
Pro- and Glu-rich, PENPEV (10×); similar to Streptococcus B
165
2.70E-20



EF061-2
gnl|PID|e225687
zinc finger protein [Mus musculus] >gnl|PID|e225688 zinc
197
7.80E-19



EF061-2
gi|160355
interspersed repeat antigen [Plasmodium falciparum]
199
8.20E-18



EF061-2
gi|410750
interspersed repeat antigen [Plasmodium falciparum]
199
8.90E-18



EF061-2
gi|2290388
IgG and IgE immunoreactive antigen recognized by sera from
182
1.40E-17





patients



EF061-2
gi|2290394
IgG and IgE immunoreactive antigen recognized by sera from
180
2.80E-17





patients



EF062-2
gi|47049
asal gene product (AA 1-1296) [Enterococcus faecalis]
3716
0



EF062-2
gi|43324
aggregation substance (ASP1) [Enterococcus faecalis]
4003
0



EF062-2
gi|2109266
aggregation substance [Enterococcus faecium]
5523
0



EF062-2
gi|150555
aggregation substance [Plasmid pCF10] >pir|H41662|H41662
6338
0





150K mating



EF062-2
gi|1100973
SspB precursor [Streptococcus gordonii]
110
9.90E-39



EF062-2
gi|47248
PAc protein precursor (AA −38 to 1527) [Streptococcus
107
1.70E-38





mutans]



EF062-2
gnl|PID|d101507
surface protein antigen precursor [Streptococcus sobrinus]
132
5.00E-36



EF062-2
gi|47267
cell surface antigen I/II [Streptococcus mutans]
107
6.50E-36





>pir|S06839|S06839



EF062-2
bbs|148453
SpaA=endocarditis immunodominant antigen [Streptococcus
132
1.20E-35







sobrinus
,




EF062-2
gi|47620
antigen I/II [Streptococcus sobrinus] >pir|A60338|A60338
132
2.90E-35





surface



EF062-2
pir|A35186|A351
salivary agglutinin receptor precursor - Streptococcus
109
2.10E-34



EF062-2
gi|1100971
SspA [Streptococcus gordonii]
110
3.80E-32



EF062-2
gi|1100975
SspA [Streptococcus gordonii]
110
2.30E-21



EF063-2
gi|47049
asal gene product (AA 1-1296) [Enterococcus faecalis]
3716
0



EF063-2
gi|43324
aggregation substance (ASP1) [Enterococcus faecalis]
4003
0



EF063-2
gi|2109266
aggregation substance [Enterococcus faecium]
5523
0



EF063-2
gi|150555
aggregation substance [Plasmid pCF10] >pir|H41662|H41662
6338
0





150K mating



EF063-2
gi|1100973
SspB precursor [Streptococcus gordonii]
110
9.90E-39



EF063-2
gi|47248
PAc protein precursor (AA −38 to 1527) [Streptococcus
107
1.70E-38





mutans]



EF063-2
gnl|PID|d101507
surface protein antigen precursor [Streptococcus sobrinus]
132
5.00E-36



EF063-2
gi|47267
cell surface antigen I/II [Streptococcus mutans]
107
6.50E-36





>pir|S06839|S06839



EF063-2
bbs|148453
SpaA=endocarditis immunodominant antigen [Streptococcus
132
1.20E-35







sobrinus
,




EF063-2
gi|47620
antigen I/II [Streptococcus sobrinus] >pir|A60338|A60338
132
2.90E-35





surface



EF063-2
pir|A35186|A351
salivary agglutinin receptor precursor - Streptococcus
109
2.10E-34



EF063-2
gi|1100971
SspA [Streptococcus gordonii]
110
3.80E-32



EF063-2
gi|1100975
SspA [Streptococcus gordonii]
110
2.30E-21



EF064-2
gi|47049
asal gene product (AA 1-1296) [Enterococcus faecalis]
3716
0



EF064-2
gi|43324
aggregation substance (ASP1) [Enterococcus faecalis]
4003
0



EF064-2
gi|2109266
aggregation substance [Enterococcus faecium]
5523
0



EF064-2
gi|150555
aggregation substance [Plasmid pCF10] >pir|H41662|H41662
6338
0





150K mating



EF064-2
gi|1100973
SspB precursor [Streptococcus gordonii]
110
9.90E-39



EF064-2
gi|47248
PAc protein precursor (AA −38 to 1527) [Streptococcus
107
1.70E-38





mutans]



EF064-2
gnl|PID|d101507
surface protein antigen precursor [Streptococcus sobrinus]
132
5.00E-36



EF064-2
gi|47267
cell surface antigen I/II [Streptococcus mutans]
107
6.50E-36





>pir|S06839|S06839



EF064-2
bbs|148453
SpaA=endocarditis immunodominant antigen [Streptococcus
132
1.20E-35







sobrinus
,




EF064-2
gi|47620
antigen I/II [Streptococcus sobrinus] >pir|A60338|A60338
132
2.90E-35





surface



EF064-2
pir|A35186|A351
salivary agglutinin receptor precursor - Streptococcus
109
2.10E-34



EF064-2
gi|1100971
SspA [Streptococcus gordonii]
110
3.80E-32



EF064-2
gi|1100975
SspA [Streptococcus gordonii]
110
2.30E-21



EF068-2
gi|790398
T06D8.1 [Caenorhabditis elegans]
137
8.50E-17



EF068-2
gnl|PID|d102084
membrane glycoprotein [Equine herpesvirus 1]
210
5.80E-16



EF068-2
gi|2286204
(AF011339) unknown [Acinetobacter calcoaceticus]
121
8.40E-16



EF068-2
gi|330862
membrane glycoprotein [Equine herpesvirus 1]
208
1.10E-15





>pir|H36802|VGBEX1



EF068-2
gi|1707247
partial CDS [Caenorhabditis elegans]
131
3.70E-15



EF068-2
gnl|PID|d102084
membrane glycoprotein [Equine herpesvirus 1]
203
6.20E-15



EF068-2
gi|213392
antifreeze glycoprotein [Notothenia coriiceps]
102
4.60E-13





>pir|A38420|A38420



EF068-2
gnl|PID|e125464
(AL022022) PGRS-family protein [Mycobacterium
145
1.50E-12







tuberculosis
]




EF068-2
gi|951460
FIM-C.1 gene product [Xenopus laevis] >pir|A45155|A45155
109
2.70E-12





mucin



EF069-2
gi|790398
T06D8.1 [Caenorhabditis elegans]
137
8.50E-17



EF069-2
gnl|PID|d102084
membrane glycoprotein [Equine herpesvirus 1]
210
5.80E-16



EF069-2
gi|2286204
(AF011339) unknown [Acinetobacter calcoaceticus]
121
8.40E-16



EF069-2
gi|330862
membrane glycoprotein [Equine herpesvirus1]
208
1.10E-15





>pir|H36802|VGBEX1



EF069-2
gi|1707247
partial CDS [Caenorhabditis elegans]
131
3.70E-15



EF069-2
gnl|PID|d102084
membrane glycoprotein [Equine herpesvirus 1]
203
6.20E-15



EF069-2
gi|213392
antifreeze glycoprotein [Notothenia coriiceps]
102
4.60E-13





>pir|A38420|A38420



EF069-2
gnl|PID|e125464
(AL022022) PGRS-family protein [Mycobacterium
145
1.50E-12







tuberculosis
]




EF069-2
gi|951460
FIM-C.1 gene product [Xenopus laevis] >pir|A45155|A45155
109
2.70E-12





mucin



EF070-2
gi|790398
T06D8.1 [Caenorhabditis elegans]
137
8.50E-17



EF070-2
gnl|PID|d102084
membrane glycoprotein [Equine herpesvirus 1]
210
5.80E-16



EF070-2
gi|2286204
(AF011339) unknown [Acinetobacter calcoaceticus]
121
8.40E-16



EF070-2
gi|330862
membrane glycoprotein [Equine herpesvirus 1]
208
1.10E-15





>pir|H36802|VGBEX1



EF070-2
gi|1707247
partial CDS [Caenorhabditis elegans]
131
3.70E-15



EF070-2
gnl|PID|d102084
membrane glycoprotein [Equine herpesvirus 1]
203
6.20E-15



EF070-2
gi|213392
antifreeze glycoprotein [Notothenia coriiceps]
102
4.60E-13





>pir|A38420|A38420



EF070-2
gnl|PID|e125464
(AL022022) PGRS-family protein [Mycobacterium
145
1.50E-12







tuberculosis
]




EF070-2
gi|951460
FIM-C.1 gene product [Xenopus laevis] >pir|A45155|A45155
109
2.70E-12





mucin



EF071-2
gnl|PID|e306428
unnamed protein product [Bacteriophage rlt] >gi|1353566
127
2.00E-37





Lysin



EF071-2
gi|853751
N-acetylmuramoyl-L-alanine amidase [Bacteriophage A511]
273
2.60E-36



EF073-2
gi|143830
xpaC [Bacillus subtilis] > gnl|PID|d1005803 hydrolysis of
173
7.10E-16



EF074-2
gi|1256698
chitinase [Serratia marcescens] >gi|1256698 chitinase [Serratia
618
2.60E-104



EF074-2
gi|1763985
chitinase A [Vibrio harveyi]
526
2.80E-84



EF075-2
gi|143156
membrane bound protein [Bacillus subtilis] >gnl|PID|e1184471
593
1.70E-91



EF075-2
pir|D70070|D700
transcriptional regulator homolog ywtF-Bacillus subtilis
118
1.90E-59



EF075-2
gi|1762327
putative transcriptional regulator [Bacillus subtilis]
148
9.60E-53



EF075-2
gi|1276874
EpsA [Streptococcus thermophilus]
239
2.20E-33



EF075-2
gnl|PID|e289126
unknown [Streptococcus pneumoniae]
150
1.20E-27



EF075-2
gi|485275
putative regulatory protein [Streptococcus pneumoniae]
150
2.50E-27



EF075-2
gi|2804735
(AF030367) putative regulatory protein [Streptococcus
150
2.50E-27







pneumoniae
]




EF075-2
gi|2804747
(AF030369) putative regulatory protein [Streptococcus
150
2.50E-27







pneumoniae
]




EF075-2
gnl|PID|e116988
capsular polysaccharide synthesis protein [Streptococcus
148
5.30E-27



EF075-2
gi|2804769
(AF030373) putative regulatory protein [Streptococcus
148
5.30E-27







pneumoniae
]




EF075-2
gi|1147744
PSR [Enterococcus hirae]
109
2.10E-23



EF075-2
gi|790435
PSR [Enterococcus faecium] >pir|S54177|S54177 PSR protein -
102
4.40E-19



EF075-2
gi|2267239
ORF1 [Staphylococcus epidermidis]
109
8.50E-19



EF075-2
gnl|PID|d101895
membrane bound protein LytR [Synechocystis sp.]
121
2.80E-16



EF077-2
gnl|PID|d101135
cadmium-transporting ATPase [Synechocystis sp.]
396
2.30E-113



EF077-2
gi|150719
cadmium resistance protein [Plasmid pI258]
373
8.60E-112





>pir|A32561|A32561



EF077-2
gi|143753
cadmium-efflux ATPase [Bacillus firmus] >pir|D42707|D42707
361
8.10E-111





probable



EF077-2
gi|152978
E1-E2 cadmium efflux adenosine triphosphatase
381
4.30E-110





[Staphylococcus



EF077-2
gnl|PID|e248808
unknown [Mycobacterium tuberculosis]
298
3.50E-107



EF077-2
gi|495646
ATPase [Transposon Tn5422]
361
2.10E-106



EF077-2
gnl|PID|e118497
similar to heavy metal-transporting ATPase [Bacillus
286
3.50E-104



EF077-2
gi|1699049
cadmium resistance protein [Lactococcus lactis]
352
3.60E-100



EF077-2
gnl|PID|e118603
similar to heavy metal-transporting ATPase [Bacillus
254
9.90E-100



EF077-2
gnl|PID|e306540
unknown [Mycobacterium tuberculosis]
352
5.20E-88



EF077-2
gnl|PID|e263525
P-type ATPase [Mycobacterium tuberculosis]
199
5.50E-86





>gnl|PID|e249413



EF077-2
gnl|PID|e264090
unknown [Mycobacterium tuberculosis]
250
3.00E-84



EF077-2
gnl|PID|d101135
cadmium-transporting ATPase [Synechocystis sp.]
260
1.00E-81



EF077-2
gi|1773166
probable copper-transporting atpase [Escherichia coli]
212
4.70E-80





>gi|1786691



EF077-2
gi|1354935
probable copper-transporting atpase [Escherichia coli]
212
8.50E-79



EF078-2
gi|143331
alkaline phosphatase regulatory protein [Bacillus subtilis]
257
5.50E-58



EF078-2
gi|410142
ORFX18 [Bacillus subtilis] >gnl|PID|e1185580 two-component
235
8.20E-51





sensor



EF078-2
gnl|PID|d101196
homologous to sp:PHOR_BACSU [Bacillus subtilis]
219
4.20E-44



EF078-2
gi|1575578
histidine protein kinase [Thermotoga maritima]
191
7.10E-44



EF078-2
gi|2182990
histidine kinase [Lactococcus lactis cremoris]
169
6.40E-40



EF078-2
gi|2182992
histidine kinase [Lactococcus lactis cremoris]
152
1.10E-39



EF078-2
gnl|PID|d101134
sensory transduction histidine kinase [Synechocystis sp.]
259
3.90E-38



EF078-2
gi|149296
phosphate regulatory protein phoR (gtg start codon) [Klebsiella
228
7.60E-33



EF078-2
gi|581188
phoR gene product (AA 1-431) [Escherichia coli] >gi|1657596
226
1.60E-32



EF078-2
gnl|PID|d101087
sensory transduction histidine kinase [Synechocystis sp.]
138
3.70E-32



EF078-2
gnl|PID|e266592
unknown [Mycobacterium tuberculosis]
232
1.10E-31



EF078-2
gi|2182996
histidine kinase [Lactococcus lactis cremoris]
206
1.30E-31



EF078-2
gnl|PID|d101135
sensory transduction histidine kinase [Synechocystis sp.]
256
1.30E-31



EF078-2
gi|294893
phosphate regulatory protein phoR (gtg start codon) [Shigella
225
1.60E-31



EF078-2
gi|288420
drug sensory protein A [Synechocystis PCC6803]
106
2.50E-31





>gnl|PID|d1017420



EF079-2
gi|2098719
putative fimbrial-associated protein [Actinomyces naeslundii]
183
8.60E-26



EF081-2
gi|467806
penicillin-binding protein [Enterococcus faecalis]
1356
2.10E-178



EF081-2
gi|790429
low affinity penicillin-binding protein 5 (PBP5) [Enterococcus
607
1.00E-78



EF081-2
gnl|PID|e208365
penicillin-binding protein 5 [Enterococcus faecium]
604
1.10E-78



EF081-2
gi|790433
low affinity penicillin-binding protein 5 (PBP5) [Enterococcus
604
2.70E-78





lysin



EF084-2
gi|2293312
(AF008220) YtfP [Bacillus subtilis] >gnl|PID|e1185879 similar
438
1.70E-140





to



EF084-2
gi|2367234
(AE000425) hypothetical 43.8 kD protein in rhsB-pit intergenic
167
2.20E-51



EF084-2
gi|912464
No definition line found [Escherichia coli]
167
6.00E-51



EF084-2
gnl|PID|d101127
hypothetical protein [Synechocystis sp.] >pir|S76678|S76678
151
6.10E-42



EF084-2
gi|1573954
hypothetical [Haemophilus influenzae] >pir|G64161|G64161
142
2.90E-40



EF085-2
gi|1209527
protein histidine kinase [Enterococcus faecalis]
2023
8.00E-279



EF085-2
gi|467057
phoR; B2168_C3_247 [Mycobacterium leprae]
226
8.80E-23





>pir|S72905|S72905



EF085-2
gnl|PID|e119229
SenX3 [Mycobacterium bovis BCG]
222
3.10E-22



EF085-2
gnl|PID|e255152
unknown [Mycobacterium tuberculosis] >gnl|PID|e321546
222
3.10E-22





SenX3



EF085-2
gi|1778485
PcoS homolog [Escherichia coli] >gi|1786783 (AE000162) f480;
111
3.80E-16





This



EF085-2
gi|149296
phosphate regulatory protein phoR (gtg start codon) [Klebsiella
110
1.40E-14



EF085-2
gi|581188
phoR gene product (AA 1-431) [Escherichia coli] >gi|1657596
103
5.30E-14



EF085-2
gi|143331
alkaline phosphatase regulatory protein [Bacillus subtilis]
118
4.90E-13



EF085-2
gi|537239
alternate gene name phoM; CG Site No. 395 [Escherichia coli]
126
9.50E-13



EF085-2
gi|147251
phoM [Escherichia coli] >gi|809670 phoM protein (1 is 3rd
126
9.50E-13





base in



EF085-2
gi|2182992
histidine kinase [Lactococcus lactis cremoris]
109
5.90E-12



EF086-2
gi|437706
alternative truncated translation product from E. coli
221
3.00E-54





[Streptococcus



EF086-2
gi|437705
hyaluronidase [Streptococcus pneumoniae]
221
1.60E-53



EF086-2
gi|595847
hyaluronate lyase [Streptococcus agalactiae]
203
3.30E-44





>pir|A55137|A55137



EF086-2
gi|705406
hyaluronate lyase [Staphylococcus aureus]
191
3.40E-42



EF086-2
gi|562086
hyaluronidase [Propionibacterium acnes]
198
6.00E-27



EF087-2
gi|437706
alternative truncated translation product from E. coli
221
3.00E-54





[Streptococcus



EF087-2
gi|437705
hyaluronidase [Streptococcus pneumoniae]
221
1.60E-53



EF087-2
gi|595847
hyaluronate lyase [Streptococcus agalactiae]
203
3.30E-44





>pir|A55137|A55137



EF087-2
gi|705406
hyaluronate lyase [Staphylococcus aureus]
191
3.40E-42



EF087-2
gi|562056
hyaluronidase [Propionibacterium acnes]
198
6.00E-27



EF088-2
gi|437706
alternative truncated translation product from E.coli
221
3.00E-54





[Streptococcus



EF088-2
gi|437705
hyaluronidase [Streptococcus pneumoniae]
221
1.60E-53



EF088-2
gi|595847
hyaluronate lyase [Streptococcus agalactiae]
203
3.30E-44





>pir|A55137|A55137



EF088-2
gi|705406
hyaluronate lyase [Staphylococcus aureus]
191
3.40E-42



EF088-2
gi|562086
hyaluronidase [Propionibacterium acnes]
198
6.00E-27



EF091-2
gi|556016
similar to plant water stress proteins; ORF2 [Bacillus subtilis]
198
5.50E-21



EF091-2
gi|2353333
(AF016513) Ce-LEA [Caenorhabditis elegans]
189
2.40E-17



EF091-2
gnl|PID|e353216
seed maturation protein homolog [Arabidopsis thaliana]
146
3.60E-11



EF091-2
gi|1161171
late embryogenesis abundant protein [Picea glauca]
132
5.70E-11



EF091-2
pir|S04909|S049
embryonic protein DC8 (clone 8/10) - carrot
127
6.50E-11



EF092-2
gi|2689898
(AE000792) PTS system, cellobiose-specific IIB component
145
4.00E-27





(celA)



EF092-2
gnl|PID|d102048


B. subtilis
, cellobiose phosphotransferase system, celA;

116
1.40E-26



EF096-2
gi|147329
transport protein [Escherichia coli] >gnl|PID|d1015409
532
2.10E-91



EF096-2
gi|1573475
spermidine/putrescine-binding periplasmic protein precursor
527
1.10E-79





(potD)



EF096-2
gi|1574803
spermidine/putrescine-binding periplasmic protein precursor
468
1.60E-75





(potD)



EF096-2
gi|1142681
Lpp38 [Pasteurella haemolytica]
446
4.40E-72



EF096-2
gnl|PID|d101526
Putrescine transport protein PotF [Escherichia coli]
216
1.50E-54



EF096-2
gi|147334
periplasmic putrescine binding protein [Escherichia coli]
216
2.10E-53



EF096-2
gi|2688565
(AB001165) spermidine/putrescine ABC transporter,
240
2.00E-48



EF096-2
gi|1881733
PotD [Salmonella typhimurium]
253
2.70E-28



EF096-2
gnl|PID|d101926
spermidine/putrescine-binding periplasmic protein
243
4.20E-26



EF096-2
gnl|PID|e152543
potF gene product [Clostridium perfringens]
204
3.30E-21



EF097-2
gi|622991
mannitol transport protein [Bacillus stearothermophilus]
547
4.90E-93



EF097-2
gi|42034
mannitol permease [Escherichia coli] >gi|466737 mannitol-
535
5.50E-85





specific



EF097-2
gi|633650
enzyme II(mannitol) [Staphylococcus carnosus]
516
2.10E-82





>pir|S68193|S22385



EF097-2
gi|882462
protein-N(pi)-phosphohistidine-sugar phosphotransferase
509
3.00E-76





[Escherichia



EF097-2
gi|312763
protein-N(pi)-phosphohistidine-sugar phosphotransferase
357
7.50E-70





[Escherichia



EF097-2
gnl|PID|d100966
homologue of mannitol transport protein of B.
492
3.10E-62



EF097-2
gnl|PID|d100792
mannitol-specific phophotransferase enzyme II [Bacillus
484
5.20E-61



EF097-2
gi|1673855
(AE000020) Mycoplasma pneumoniae, PTS system mannitol-
232
3.50E-59





specific



EF097-2
gnl|PID|d100651
phosphotransferase enzymeII, mannitol-specific [Mycoplasma
158
8.20E-18



EF097-2
pir|S77757|S777
phosphotransferase system enzyme II (EC 2.7.1.69),
103
2.00E-13



EF100-2
gi|2058546
Com YC [Streptococcus gordonii]
193
7.30E-27



EF100-2
gi|2058546
Com YC [Streptococcus gordonii]
193
7.30E-27



EF100-2
gi|142708
comG3 gene product [Bacillus subtilis] >gnl|PID|e1185739
150
2.90E-22





comGC



EF100-2
gi|142708
comG3 gene product [Bacillus subtilis] >gnl|PID|e1185739
150
2.90E-22





comGC



EF100-2
gi|148437
secretory component [Erwinia chrysanthemi]
134
4.40E-15





>pir|E47021|E47021 pectic



EF100-2
gi|148437
secretory component [Erwinia chrysanthemi]
134
4.40E-15





>pir|E47021|E47021 pectic



EF100-2
gi|606262
ORF_o145 [Escherichia coli] >gi|693706 HopG [Escherichia
136
9.10E-13







coli
]




EF100-2
gi|606262
ORF_o145 [Escherichia coli] >gi|693706 HopG [Escherichia
136
9.10E-13







coli
]




EF100-2
gi|38828
ExeG gene product [Aeromonas hydrophila]
132
3.50E-12





>pir|S22910|149905 protein



EF100-2
gi|38828
ExeG gene product [Aeromonas hydrophila]
132
3.50E-12





>pir|S22910|149905 protein



EF100-2
gnl|PID|e117259
etpG [Escherichia coli]
131
5.10E-12



EF100-2
gnl|PID|e117259
etpG [Escherichia coli]
131
5.10E-12



EF100-2
gi|42189
outG gene product [Erwinia carotovora] >pir|S32861|S32861
130
9.90E-12





outG



EF100-2
gi|42189
outG gene product [Erwinia carotovora] >pir|S32861|S32861
130
9.90E-12





outG



EF100-2
gi|609628
putative [Vibrio cholerae]
128
1.60E-11



EF100-2
gi|609628
putative [Vibrio cholerae]
128
1.60E-11



EF101-2
gnl|PID|d102573
bacG [Enterococcus faecalis]
106
3.60E-17



EF101-2
gnl|PID|e321943
hypothetical protein [Enterococcus faecalis] >gnl|PID|e321943
105
1.80E-16



EF101-2
gnl|PID|e118502
similar to hypothetical proteins from B. subtilis [Bacillus
113
1.80E-15



EF110-2
gi|43338
Staphylococcal serine proteinase homologue [Enterococcus
1462
2.30E-195







faecalis
]




EF110-2
gnl|PID|d100108
glutamic acid specific protease prepropeptide [Staphylococcus
106
3.70E-14



EF110-2
gi|46687
preproenzyme (AA −68 to 268) [Staphylococcus aureus]
106
6.70E-14



EF111-2
gi|606018
ORF_o783 [Escherichia coli] >gi|1789462 (AE000390)
477
8.10E-80





hypothetical 88.3



EF121-2
gi|2626826
YfkN [Bacillus subtilis] >gnl|PID|e1182774 similar to
143
1.30E-96



FE121-2
gi|2313187
(AE000532) 2′,3′-cyclic-nucleotide 2′-phosphodiesterase (cpdB)
413
2.60E-82



EF121-2
gi|48453
5′-nucleotidase [Vibrio parahaemolyticus] >gnl|PID|d1001218
279
8.50E-47



EF121-2
gi|757842
UDP-sugar hydrolase [Escherichia coli]
239
1.60E-44



EF121-2
gi|1773162
UDP-sugar hydrolase precursor [Escherichia coli] >gi|1786687
239
1.60E-44



EF121-2
gi|47950
precursor polypeptide (AA −25 to 525) [Salmonella
229
2.10E-41







typhimurium
]




EF121-2
gi|747913
2′,3′-cyclic-nucleotide 2′-phosphodiesterase [Yersinia
115
4.70E-36



EF121-2
gi|62772
5′-nucleotidase [Discopyge ommata] >pir|S19564|S19564 5′-
137
5.80E-35





nucleotidase



EF121-2
gi|1573573
2′,3′-cyclic-nucleotide 2′-phosphodiesterase (cpdB)
114
8.90E-34





[Haemophilus



EF121-2
gi|537054
2′,3′-cyclic-nucleotide 2′-phosphodiesterase [Escherichia coli]
110
1.10E-31



EF121-2
bbs|135915
5′-nucleotidase=glycosylphosphatidylinositol-anchored protein
128
7.70E-29





{EC



EF121-2
gi|1737443
5′-nucleotidase [Boophilus microplus]
104
1.60E-28



EF121-2
gi|202551
5′-nucleotidase precursor (EC 3.1.3.5) [Rattus norvegicus]
138
6.10E-28



EF121-2
gi|349783
ecto-5′-nucleotidase [Mus musculus] >pir|JC2001|JC2001
136
1.10E-27



EF121-2
gi|23897
5′-nucleotidase [Homo sapiens] >pir|S10032|S11032 5′-
133
1.60E-27





nucleotidase (EC



EF122-2
gi|2626826
YfkN [Bacillus subtilis] >gnl|PID|e1182774 similar to
143
1.30E-96



EF122-2
gi|2313187
(AE000532) 2′,3′-cyclic-nucleotide 2′-phosphodiesterase (cpdB)
413
2.60E-82



EF122-2
gi|48453
5′-nucleotidase [Vibrio parahaemolyticus] >gnl|PID|d1001218
279
8.50E-47



EF122-2
gi|757842
UDP-sugar hydrolase [Escherichia coli]
239
1.60E-44



EF122-2
gi|1773162
UDP-sugar hydrolase precursor [Escherichia coli] >gi|1786687
239
1.60E-44



EF122-2
gi|47950
precursor polypeptide (AA −25 to 525) [Salmonella
229
2.10E-41







typhimurium
]




EF122-2
gi|747913
2′,3′-cyclic-nucleotide 2′-phosphodiesterase [Yersinia
115
4.70E-36



EF122-2
gi|62772
5′-nucleotidase [Discopyge ommata] >pir|S19564|S19564 5′-
137
5.80E-35





nucleotidase



EF122-2
gi|1573573
2′,3′-cyclic-nucleotide 2′-phosphodiesterase (cpdB)
114
8.90E-34





[Haemophilus



EF122-2
gi|537054
2′,3′-cyclic-nucleotide 2′-phosphodiesterase [Escherichia coli]
110
1.10E-31



EF122-2
bbs|135915
5′-nucleotidase=glycosylphosphatidylinositol-anchored protein
128
7.70E-29





{EC



EF122-2
gi|1737443
5′-nucleotidase [Boophilus microplus]
104
1.60E-28



EF122-2
gi|202551
5′-nucleotidase precursor (EC 3.1.3.5) [Rattus norvegicus]
138
6.10E-28



EF122-2
gi|349783
ecto-5′-nucleotidase [Mus musculus] >pir|C2001|JC2001
136
1.10E-27



EF122-2
gi|23897
5′-nucleotidase [Homo sapiens] >pir|S11032|S11032 5′-
133
1.60E-27





nucleotidase (EC



EF129-2
gi|43334
P54 protein [Enterococcus faecium] >pir|S05542|S05542
630
9.40E-79





hypothetical



EF129-2
gi|512521
usp 45 gene product [Lactococcus lactis] >pir|JN0097|JN0097
374
1.30E-42





secreted



EF129-2
gi|149525
secreted protein [Lactococcus lactis]
371
3.60E-42



EF129-2
gnl|PlD|e313022
hypothetical protein [Bacillus subtilis] >gnl|PID|e1186168
317
2.30E-33



EF130-2
gi|488339
alpha-amylase [unidentified cloning vector]
621
6.70E-81



EF130-2
gi|488336
ORF [unidentified cloning vector]
242
8.00E-27



EF130-2
bbs|112518
alpha-amylase {N-terminal region} [Artificial sequence, Peptide
237
4.80E-26



EF130-2
gnl|PlD|e289144
ywpE [Bacillus subtilis] >gnl|PID|e1184540 ywpE [Bacillus
129
5.40E-11



EF131-2
gnl|PID|e118528
penicillin-binding protein [Bacillus subtilis]
277
7.40E-43



EF131-2
gi|488330
alpha-amylase [unidentified cloning vector]
280
1.30E-31



EF131-2
gi|509249
No definition line found [Lactobacillus plantarum]
274
1.10E-30



EF131-2
gnl|PID|d102491
(AB009635) Fmt [Staphylococcus aureus]
170
5.60E-20



EF131-2
gi|515050
DD-peptidase precursor [Streptomyces lividans]
131
2.30E-14





>pir|S48220|S48220



EF131-2
gi|153448
serine DD-peptidase [Streptomyces lividans]
131
1.20E-12



EF132-2
gi|153826
adhesin B [Streptococcus sanguis] >pir|A43583|A43583 adhesin
1257
2.30E-166





B



EF132-2
gi|1184932
ScbA [Streptococcus crista]
1248
3.70E-165



EF132-2
gi|310633
adhesin [Streptococcus gordonii]
1247
5.10E-165



EF132-2
gi|393269
adhesion protein [Streptococcus pneumoniae]
1204
3.40E-163



EF132-2
gi|1575030
surface adhesin A precursor [Streptococcus pneumoniae]
1220
2.40E-161



EF132-2
gi|153834
adhesin specific for salivary pellicle of dental surfaces
1203
4.80E-159



EF132-2
gi|1117994
surface antigen A variant precursor [Streptococcus pneumoniae]
1191
2.00E-157



EF132-2
gi|493017
endocarditis specific antigen [Enterococcus faecalis]
931
3.70E-122



EF132-2
gnl|PID|e255529
lipoprotein [Staphylococcus epidermidis]
453
3.20E-92



EF132-2
gi|1245464
YfeA [Yersinia pestis] >gi|1245464 YfeA [Yersinia pestis]
364
3.60E-64



EF132-2
gi|1573330
adhesin B precursor (fimA) [Haemophilus influenzae]
349
3.50E-63



EF132-2
gi|755075
periplasmic-binding protein [Synechocystis sp.]
326
6.80E-62





>gnl|PID|d1018652 Mn



EF132-2
gnl|PID|e118595
similar to ABC transporter (membrane protein) [Bacillus
174
3.10E-32



EF132-2
gi|1777933
TroA [Treponema pallidum]
171
3.40E-32



EF132-2
gi|790546
Tromp1 [Treponema pallidum]
171
5.10E-32








Derwent

BLAST
BLAST



Query
Access. No.
Derwent Gene Description
Score
P-Value







EF003-2
W20909


H. pylori
outer membrane protein 14ge10705orf5.

268
4.20E-39



EF003-2
W20166


Helicobacter pylori
outer membrane protein, 16225006.aa.

241
3.00E-27



EF006-2
W20909


H. pylori
outer membrane protein 14ge10705orf5.

283
1.20E-48



EF006-2
W20166


Helicobacter pylori
outer membrane protein, 16225006.aa.

266
1.10E-30



EF008-2
R37495


Pneumococcal fimbrial
protein A.

967
1.20E-127



EF008-2
W26367


Staphylococcus aureus
saliva binding protein.

467
7.50E-100



EF008-2
R79722
ROM precursor TROMP1.
181
8.00E-36



EF008-2
W22134


Treponema pallidum
rare outer membrane protein (TROMP-1).

181
8.00E-36



EF009-2
W20909


H. pylori
outer membrane protein 14ge10705orf5.

319
1.40E-53



EF009-2
W20166


Helicobacter pylori
outer membrane protein, 16225006.aa.

278
2.50E-32



EF012-2
R48035
Hyaluronic acid synthase of Streptococcus equisimilis.
227
3.20E-69



EF014-2
W14070


S. thermophilus
exopolysaccharide biosynthesis protein EpsR.

103
5.90E-19



EF014-2
W22169


S. thermophilus
exopolysaccharide synthesis operon epsA gene

103
7.30E-18





product.



EF016-2
W15799
Adherence factor 104R of Lactobacillus fermentum.
157
9.60E-22



EF016-2
W15793
Adherence factor consensus sequence.
103
1.00E-11



EF017-2
R48035
Hyaluronic acid synthase of Streptococcus equisimilis.
241
8.90E-71



EF021-2
R31013
P39-alpha.
141
1.60E-19



EF021-2
R33280
P39-beta.
134
7.00E-14



EF022-2
R48035
Hyaluronic acid synthase of Streptococcus equisimilis.
324
2.20E-65



EF023-2
R48035
Hyaluronic acid synthase of Streptococcus equisimilis.
155
9.90E-33



EF023-2
R70152


Streptococcus pneumoniae
strain SPRU98 PlpA.

125
5.90E-17



EF027-2
R48035
Hyaluronic acid synthase of Streptococcus equisimilis.
233
2.20E-34



EF028-2
W17830
Thermophilic alkaline phosphatase.
202
7.70E-59



EF028-2
W11568


E. coli
alkaline phosphatase mutant D153H/Q329A.

182
7.90E-56



EF028-2
W11570


E. coli
alkaline phosphatase mutant D153H/K328H/Q329A.

182
7.90E-56



EF028-2
W26300


E. coli
alkaline phosphatase mutant

182
1.10E-55





D153H/K328H/Q329A/D330H.



EF028-2
W11565


E. coli
alkaline phosphatase mutant D153H/K328H/D330A.

182
3.10E-55



EF028-2
W11557


E. coli
alkaline phosphatase mutant D153H/D330N.

182
4.30E-55



EF028-2
W11561


E. coli
alkaline phosphatase mutant D153H/D330A.

182
4.30E-55



EF028-2
W11555


E. coli
alkaline phosphatase mutant D153H/K328H/D330N.

182
4.70E-55



EF028-2
W11566


E. coli
alkaline phosphatase mutant D153H/K328H/D330L.

182
1.20E-54



EF028-2
W11569


E. coli
alkaline phosphatase mutant K328H/Q329A.

180
1.70E-54



EF028-2
W11562


E. coli
alkaline phosphatase mutant D153H/D330L.

182
1.70E-54



EF028-2
R26980
Fv(FRP5)-phoA recombinant antibody.
174
1.90E-54



EF028-2
W11567


E. coli
alkaline phosphatase mutant Q329A.

179
2.30E-54



EF028-2
W11558


E. coli
alkaline phosphatase mutant K328H/D330N.

176
6.40E-54



EF028-2
W11563


E. coli
alkaline phosphatase mutant K328H/D330A.

176
6.40E-54



EF029-2
R10044
Plasmid pOW360 encoded Human Growth Hormone (HGH) -
320
3.50E-40





nuclease A



EF029-2
R10041
Plasmid pOW350 nuclease A product.
320
4.30E-40



EF029-2
R73997


Staphylococcus aureus
(Foggi) nuclease signal and mature

320
5.60E-40





sequences.



EF029-2
R10043
Plasmid pOW360 encoding Human Growth Hormone (HGH) -
320
2.90E-38





nuclease



EF030-2
R48035
Hyaluronic acid synthase of Streptococcus equisimilis.
277
6.10E-47



EF040-2
R59077
2-5A-dependent RNA-ase.
105
1.90E-18



EF040-2
W12703
Mouse 2-5A-dependent RNase.
105
1.90E-18



EF040-2
R82661
Partial murine 2-5A-dependent RNase.
105
1.90E-18



EF041-2
R48035
Hyaluronic acid synthase of Streptococcus equisimilis.
225
6.30E-26



EF054-2
R26042


P. yoelii
SSP2 antigen.

286
8.00E-34



EF054-2
R85782
Group B Streptococcal mutant beta antigen without IgA binding
232
3.30E-24





domain.



EF054-2
R85781
Group B Streptococcal wild-type beta antigen.
232
5.20E-24



EF054-2
P91941
Sequence of preprospasmolysin.
204
3.10E-19



EF054-2
W32519
Collagen-like polypeptide SEQ ID NO:2.
180
7.50E-18



EF054-2
W12324
Silver halide emulsion protein monomeric repeat unit #2.
180
7.50E-18



EF054-2
W32522
Collagen-like polypeptide SEQ ID NO:5.
192
1.60E-17



EF054-2
W12327
Silver halide emulsion protein monomeric repeat unit #5.
192
1.60E-17



EF054-2
W32520
Collagen-like polypeptide SEQ ID NO:3.
189
2.40E-17



EF054-2
W32532
Collagen-like polypeptide SEQ ID NO:15.
189
2.40E-17



EF054-2
W12325
Silver halide emulsion protein monomeric repeat unit #3.
189
2.40E-17



EF054-2
W12337
Silver halide emulsion protein monomeric repeat unit #15.
189
2.40E-17



EF054-2
W12341
Silver halide emulsion FLAG(RTM)-tagged protein #2.
189
2.60E-17



EF054-2
W02098
S. mutans antigen I/II.
161
5.40E-15



EF054-2
W02096
S. mutans antigen I/II fragment (aa803-1114).
161
1.90E-13



EF059-2
R26042


P. yoelii
SSP2 antigen.

344
1.90E-39



EF059-2
R85782
Group B Streptococcal mutant beta antigen without IgA binding
232
1.10E-26





domain.



EF059-2
R85781
Group B Streptococcal wild-type beta antigen.
232
1.70E-26



EF059-2
P91941
Sequence of preprospasmolysin.
200
1.50E-18



EF059-2
P60570
Sequence of the Falciparum Interspersed Repeat Antigen
186
4.60E-18



EF059-2
W02096
S. mutans antigen I/II fragment (aa803-1114).
167
8.20E-16



EF059-2
W02098
S. mutans antigen I/II.
167
4.90E-15



EF059-2
R79625
Endocarditis specific antigen region.
147
4.40E-12



EF059-2
R26049
MSF precursor.
143
1.30E-11



EF059-2
R28150
Sugar beet chitinase 1.
148
1.70E-11



EF059-2
R26842
Protease from S. Aureus ATCC12600.
147
2.10E-11



EF059-2
R79643
Immunodominant antigen of Streptococcus sobrinus.
151
2.10E-11



EF059-2
W07539
Collagen like protein (CLP).
146
3.00E-11



EF061-2
R26042


P. yoelii
SSP2 antigen.

241
1.70E-25



EF061-2
P60570
Sequence of the Falciparum Interspersed Repeat Antigen
199
1.60E-18



EF061-2
R85782
Group B Streptococcal mutant beta antigen without IgA binding
153
2.40E-14





domain.



EF061-2
R85781
Group B Streptococcal wild-type beta antigen.
153
3.60E-14



EF061-2
P91941
Sequence of preprospasmolysin.
163
9.70E-14



EF061-2
P83194
Sequence of a bioadhesive precursor protein encoded by cDNA
156
7.90E-13





clone



EF061-2
R28150
Sugar beet chitinase 1.
156
9.10E-13



EF061-2
W02096
S. mutans antigen I/II fragment (aa803-1114).
148
1.20E-12



EF061-2
P82971
Bioadhesive precursor protein from cDNA 52.
148
9.70E-12



EF061-2
W02098
S. mutans antigen I/II.
148
1.50E-11



EF062-2
W02098
S. mutans antigen I/II.
107
1.20E-36



EF062-2
R79643
Immunodominant antigen of Streptococcus sobrinus.
132
3.00E-36



EF063-2
W02098
S. mutans antigen I/II.
107
1.20E-36



EF063-2
R79643
Immunodominant antigen of Streptococcus sobrinus.
132
3.00E-36



EF064-2
W02098
S. mutans antigen I/II.
107
1.20E-36



EF064-2
R79643
Immunodominant antigen of Streptococcus sobrinus.
132
3.00E-36



EF071-2
R85294
Phage R1-t LytR lysin.
127
3.70E-38



EF071-2
R91515
Listeria phage lysin PLY511.
273
4.70E-37



EF075-2
W14070


S. thermophilus
exopolysaccharide biosynthesis protein EpsR.

239
4.20E-36



EF075-2
W22169


S. thermophilus
exopolysaccharide synthesis operon epsA gene

239
4.00E-34





product.



EF077-2
R97280
Helicobacter-specific ATPase 439.
258
4.10E-74



EF077-2
R48036
Mycobacterium BCG immunogen.
192
2.20E-67



EF077-2
W06712
Helicobacter-specific ATPase 948 (ORF-4).
220
2.50E-67



EF077-2
R70419
Rat homologue of human Wilson disease gene ATP7B.
186
9.80E-54



EF077-2
R72343
Wilson disease protein ATP7B.
176
6.70E-40



EF077-2
R06376
Product of the ssc 1 gene.
166
3.10E-28



EF077-2
R75396
Flea sodium pump alpha subunit.
146
2.40E-25



EF077-2
W20891


H. pylori
transporter protein, 14ce20219orf1.

156
8.60E-14



EF078-2
R56667


Bacteroides fragilis
RprX regulatory response protein.

148
8.30E-18



EF078-2
R74630
Tomato TGETR1 ethylene response protein.
130
7.80E-13



EF078-2
R69849
Ethylene response (ETR) gene product.
128
1.70E-11



EF078-2
R69850
Ethylene response (ETR) mutant protein etr1-1.
128
1.70E-11



EF078-2
R69851
Ethylene response (ETR) mutant protein etr1-2.
128
1.70E-11



EF078-2
R69852
Ethylene response (ETR) mutant protein etr1-3.
128
1.70E-11



EF078-2
R69853
Ethylene response (ETR) mutant protein etr1-4.
128
1.70E-11



EF078-2
R24296
Regulatory protein VanS involved in glycopeptide resistance.
142
2.70E-11



EF081-2
R27253
Penicillin binding protein PBP2A-epi.
101
4.70E-16



EF081-2
R27256
Penicillin binding protein PBP2A-27R.
101
6.00E-15



EF081-2
R27257
Penicillin binding protein derivative #1.
101
6.20E-15



EF081-2
R27258
Penicillin binding protein derivative #2.
101
6.20E-15



EF081-2
R27259
Penicillin binding protein derivative #3.
101
6.20E-15



EF081-2
R27260
Penicillin binding protein derivative #4.
101
6.20E-15



EF081-2
R27261
Penicillin binding protein derivative #5.
101
6.20E-15



EF081-2
R27263
Penicillin binding protein derivative #7.
101
6.20E-15



EF081-2
R27264
Penicillin binding protein derivative #8.
101
6.20E-15



EF081-2
R27262
Penicillin binding protein derivative #6.
101
6.50E-15



EF081-2
R30845
Sequence encoded by the mec A gene.
101
6.90E-15



EF081-2
R27255
Penicillin binding protein PBP2A-27R.
101
6.90E-15



EF081-2
R31216
Penicillin binding protein PBP2A-27R.
101
7.00E-15



EF110-2
R91042
V8 mature protease (aa1-213).
106
6.60E-16



EF110-2
R91043
V8 mature protease (aa1-214).
106
7.20E-16



EF110-2
R91044
V8 mature protease (aa1-215).
106
7.80E-16



EF110-2
R26842
Protease from S. Aureus ATCC12600.
106
6.70E-15



EF110-2
R29644
Protease from S. Aureus.
106
1.20E-14



EF110-2
W22218
Protein encoded by pV8RPT(−) construct.
106
7.60E-14



EF110-2
R91033
Beta-galactosidase-V8 protease fusion protein.
106
7.60E-14



EF110-2
R91034
Beta-galactosidase-V8 protease fusion protein.
106
1.70E-13



EF110-2
W22219
Protein encoded by pV8D construct.
106
7.60E-13



EF110-2
R91035
Recombinant V8 protease V8D fusion protein.
106
7.60E-13



EF110-2
W22220
Protein encoded by pV8F construct.
106
7.90E-13



EF129-2
R14530
Usp45 protein.
374
2.40E-43



EF129-2
R14150
MSP encoded by pUCRS (DSM 5803).
372
4.70E-43



EF131-2
R37495


Pneumococcal fimbrial
protein A.

1185
6.80E-163



EF131-2
W26367


Staphylococcus aureus
saliva binding protein.

418
3.70E-85



EF131-2
R79722
ROM precursor TROMP1.
171
9.00E-31



EF131-2
W22134


Treponema pallidum
rare outer membrane protein (TROMP-1).

171
9.00E-31











[0269]

3





TABLE 3








Conservative Amino Acid Substitutions.


















Aromatic
Phenylalanine




Tryptophan




Tyrosine



Hydrophobic
Leucine




Isoleucine




Valine



Polar
Glutamine




Asparagine



Basic
Arginine




Lysine




Histidine



Acidic
Aspartic Acid




Glutamic Acid



Small
Alanine




Serine




Threonine




Methionine




Glycine











[0270]

4





TABLE 4








Residues Comprising Antigenic Epitope-Bearing Portion.
















EF001-2
from about Asp-150 to about Lys-152, from about Ser-256 to



about Tyr-259, from about Lys-360 to about Lys-363, from



about Asn-406 to about Asp-408.


EF002-2
from about Asp-80 to about Asp-83, from about Asp-281 to



about Gly-283.


EF003-2
from about Asn-263 to about Gly-266.


EF004-2
from about Asn-23 to about Asn-26, from about Lys-83 to



about Ser-87, from about Tyr-154 to about Asp-159.


EF005-2
from about Lys-249 to about Glu-252.


EF006-2
from about Gly-23 to about Asp-28.


EF008-2
from about Thr-92 to about Gly-94, from about Pro-161 to



about Asp-165, from about Gly-287 to about Thr-289.


EF010-2
from about Pro-129 to about Asn-131.


EF012-2
from about Asp-77 to about Asp-79, from about Asp-94 to



about Lys-98, from about Asp-256 to about Thr-258, from



about Glu-461 to about Asn-468.


EF013-2
from about Thr-30 to about Asp-32, from about Glu-73 to



about Ala-75, from about Gln-164 to about Asn-166, from



about Lys-193 to about Gly-195.


EF014-2
from about Ser-203 to about Asp-206, from about Gln-314



to about Gly-316


EF015-2
from about Pro-66 to about Gly-69.


EF016-2
from about Lys-236 to about Asn-239.


EF017-2
from about Ser-90 to about Gly-93, from about Thr-197 to



about Lys-199, from about Lys-230 to about Asn-233, from



about Ser-428 to about Gly-431.


EF018-2
from about Lys-159 to about Tyr-161, from about Asn-165



to about Ser-167, from about Asn-250 to about Arg-256,



from about Asn-392 to about Gly-395, from about Lys-416



to about Tyr-418, from about Asn-428 to about Arg-430.


EF019-2
from about Arg-209 to about Ser-211, from about Lys-287



to about Ser-290.


EF020-2
from about Lys-57 to about Asn-62.


EF021-2
from about Ser-33 to about Gly-35, from about Glu-77 to



about Gly-81, from about Asp-139 to about Lys-141, from



about Glu-255 to about Ser-258, from about Gln-271 to



about Tyr-277.


EF023-2
from about Lys-232 to about Asp-234, from about Arg-304



to about Gly-306, from about Thr-453 to about Arg-456,



from about Ser-478 to about Thr-480.


EF025-2
from about Arg-183 to about Asp-185.


EF026-2
from about Ser-25 to about Asp-30, from about Asp-90 to



about Asp-94, from about Gln-107 to about Asn-110.


EF027-2
from about Gln-72 to about Lys-74, from about Lys-229



to about Asp-231.


EF028-2
from about Asp-186 to about Gln-188.


EF029-2
from about Asp-118 to about Lys-122, from about Asp-124



to about Tyr-126.


EF031-2
from about Glu-30 to about Gly-33.


EF034-2
from about Glu-25 to about Gly-27, from about Glu-75 to



about Thr-77.


EF36-2
from about Gln-177 to about Ser-179.


EF037-2
from about Ser-25 to about Asp-30, from about Asp-90 to



about Asp-94, from about Gln-107 to about Asn-110.


EF038-2
from about Asn-77 to about Lys-79, from about Tyr-88 to



about Asn-92.


EF040-2
from about Lys-167 to about Gly-172, from about Lys-240



to about Asn-242.


EF044-2
from about Arg-192 to about Gly-194, from about Asn-200



to about Asn-203.


EF045-2
from about Asp-159 to about Asn-161, from about His-172



to about Gly-174, from about Tyr-261 to about Gly-264,



from about Lys-305 to about Glu-308.


EF046-2
from about Ser-18 to about Gly-23, from about Gln-41 to



about Ser-47, from about Thr-76 to about Asp-78.


EF047-2
from about Asn-28 to about Asp-30, from about Asp-273



to about Asn-277.


EF048-2
from about Asp-138 to about Lys-141, from about Asp-152



to about Gly-154.


EF051-2
from about Asp-73 to about Gly-76.


EF053-2
from about Ser-79 to about Gly-82.


EF055-2
from about Asp-26 to about Gly-28, from about Gln-67 to



about Asp-69, from about Arg-71 to about Gly-74, from



about Arg-87 to about Gly-89.


EF056-2
from about Arg-71 to about Gly-74, from about Arg-87 to



about Gly-89.


EF058-2
from about Lys-129 to about Gly-133, from about Gln-571



to about Tyr-573, from about Pro-586 to about Gly-591.


EF065-2
from about Ser-236 to about Tyr-239, from about Asp-350



to about Gly-352, from about Lys-415 to about Asn-418,



from about Arg-446 to about Asp-448, from about Asn-489



to about Lys-491, from about Ser-516 to about Asp-518,



from about Glu-639 to about Lys-642.


EF066-2
from about Ser-236 to about Tyr-239, from about Asp-350



to about Gly-352, from about Lys-415 to about Asn-418,



from about Arg-446 to about Asp-448, from about Asn-489



to about Lys-491, from about Ser-516 to about Asp-518,



from about Glu-639 to about Lys-642.


EF067-2
from about Ser-236 to about Tyr-239, from about Asp-350



to about Gly-352, from about Lys-415 to about Asn-418,



from about Arg-446 to about Asp-448, from about Asn-489



to about Lys-491, from about Ser-516 to about Asp-518,



from about Glu-639 to about Lys-642.


EF073-2
from about Met-98 to about Arg-100, from about Arg-110



to about Asp-112.


EF074-2
from about Ser-53 to about Tyr-59, from about Ser-86 to



about Gly-88, from about Pro-97 to about Gln-100, from



about Gln-230 to about Gly-232.


EF076-2
from about Asn-38 to about Tyr-40, from about Asp-48 to



about Asn-53, from about Lys-79 to about Gly-81.


EF077-2
from about Arg-411 to about Gly-413.


EF078-2
from about Thr-294 to about Gly-296, from about Asp-366



to about Gln-368, from about Glu-524 to about Gly-526.


EF080-2
from about Glu-164 to about Gly-166, from about Ser-206



to about Tyr-208, from about Lys-239 to about Gly-243.


EF081-2
from about Asn-7 to about Ser-11, from about Lys-77 to



about Tyr-80, from about Lys-112 to about Asn-114,



from about Gly-162 to about Asp-164, from about Arg-181



to about Gly-183.


EF083-2
from about Gln-38 to about Arg-40.


EF084-2
from about Lys-140 to about Asp-142, from about Gly-164



to about Arg-166, from about Arg-262 to about Gly-264.


EF085-2
from about Asn-95 to about Asp-97, from about Arg-112



to about Asp-114, from about Asp-258 to about Ser-260,



from about Arg-401 to about Ser-403.


EF086-2
from about Pro-112 to about Gly-115, from about Ser-222



to about Ser-224, from about Asn-296 to about Gly-299,



from about Thr-346 to about Lys-348, from about Asp-428



to about Ser-432.


EF087-2
from about Pro-112 to about Gly-115, from about Ser-222



to about Ser-224, from about Asn-296 to about Gly-299,



from about Thr-346 to about Lys-348, from about Asp-428



to about Ser-432.


EF088-2
from about Pro-112 to about Gly-115, from about Ser-222



to about Ser-224, from about Asn-296 to about Gly-299,



from about Thr-346 to about Lys-348, from about Asp-428



to about Ser-432.


EF090-2
from about Arg-2 to about Arg-5.


EF091-2
from about Gln-40 to about Asp-43.


EF093-2
from about Lys-95 to about Gly-97.


EF094-2
from about Asp-314 to about Asp-316.


EF095-2
from about Ser-328 to about Thr-330, from about Asp-359



to about Asp-363, from about Glu-637 to about Gly-639,



from about Asn-744 to about Gly-746.


EF096-2
from about Pro-128 to about Asn-130, from about Ser-193



to about Asp-196.


EF097-2
from about Val-357 to about Gly-359.


EF099-2
from about Glu-44 to about Asp-47, from about Lys-154



to about Gly-156, from about Asn-286 to about Asp-289.


EF101-2
from about Lys-40 to about Asp-42, from about Pro-255



to about Asn-258, from about Lys-288 to about Gly-290.


EF102-2
from about Asp-314 to about Asp-316.


EF103-2
from about Asn-46 to about Gly-48.


EF104-2
from about Pro-232 to about Lys-237, from about Ala-362



to about Asn-366, from about Ser-421 to about Gly-423,



from about Lys-488 to about Ser-490, from about Asp-550



to about Asn-552, from about Pro-637 to about Lys-640,



from about Asp-727 to about Gly-729, from about Asn-751



to about Ser-754, from about Lys-771 to about Asn-774,



from about Ile-835 to about Asn-837, from about Pro-851



to about Gly-853.


EF105-2
from about Ser-40 to about Gly-43, from about Asn-94 to



about Gln-97, from about Gln-220 to about Gly-222, from



about Asn-263 to about Gly-265.


EF106-2
from about Asp-72 to about Gly-75, from about Thr-274



to about Asp-277, from about Asn-310 to about Arg-313.


EF107-2
from about Thr-155 to about Asn-157, from about Thr-189



to about Asp-191, from about Arg-270 to about Gly-272,



from about Thr-330 to about Lys-335, from about Asp-365



to about Asp-368, from about Pro-451 to about Asp-453,



from about Gly-485 to about Thr-488.


EF108-2
from about Lys-142 to about Trp-145, from about Thr-147



to about Tyr-150, from about Arg-212 to about Gly-214,



from about Ser-248 to about Asp-251, from about Asp-384



to about Asp-387, from about Pro-481 to about Arg-483,



from about Lys-491 to about Gly-494, from about Thr-619



to about Gly-624, from about Asp-656 to about Asp-659,



from about Lys-717 to about Asn-721, from about Ser-822



to about Gly-824, from about Tyr-1137 to about Thr-1141.


EF110-2
from about Pro-123 to about Gly-127, from about Thr-223



to about Gly-225.


EF111-2
from about Lys-207 to about Asn-209, from about Asp-245



to about Asn-248, from about Lys-396 to about Asp-398,



from about Glu-429 to about Ser-432, from about Thr-470



to about His-474.


EF119-2
from about Asp-90 to about Asn-92, from about Gln-142



to about Gly-144.


EF121-2
from about Asn-159 to about Asp-161, from about Asn-351



to about Lys-353, from about Pro-658 to about Gly-660,



from about Lys-786 to about Ser-789.


EF122-2
from about Asn-159 to about Asp-161, from about Asn-351



to about Lys-353, from about Pro-658 to about Gly-660,



from about Lys-786 to about Ser-789.


EF123-2
from about Asn-331 to about Arg-336, from about Asp-634



to about Gly-636, from about Glu-780 to about Ser-782,



from about Tyr-909 to about Asn-911, from about Lys-939



to about Glu-942, from about Asp-1074 to about Gly-1076,



from about Asp-1367 to about Gly-1369, from about



Pro-1433 to about Lys-1435, from about Gly-1516 to about



Asp-1518, from about Lys-1656 to about Asp-1660, from



about Lys-1860 to about Gln-1863, from about Ser-1916



to about Gln-1919, from about Pro-1940 to about Gly-1942.


EF124-2
from about Asn-331 to about Arg-336, from about Asp-634



to about Gly-636, from about Glu-780 to about Ser-782,



from about Tyr-909 to about Asn-911, from about Lys-939



to about Glu-942, from about Asp-1074 to about Gly-1076,



from about Asp-1367 to about Gly-1369, from about Pro-1433



to about Lys-1435, from about Gly-1516 to about Asp-1518,



from about Lys-1656 to about Asp-1660, from about



Lys-1860 to about Gln-1863, from about Ser-1916 to about



Gln-1919, from about Pro-1940 to about Gly-1942.


EF125-2
from about Asn-331 to about Arg-336, from about Asp-634



to about Gly-636, from about Glu-780 to about Ser-782, from



about Tyr-909 to about Asn-911, from about Lys-939 to



about Glu-942, from about Asp-1074 to about Gly-1076, from



about Asp-1367 to about Gly-1369, from about Pro-1433 to



about Lys-1435, from about Gly-1516 to about Asp-1518,



from about Lys-1656 to about Asp-1660, from about



Lys-1860 to about Gln-1863, from about Ser-1916 to about



Gln-1919, from about Pro-1940 to about Gly-1942.


EF126-2
from about Ser-236 to about Tyr-239, from about Asp-350 to



about Gly-352, from about Lys-415 to about Asn-418, from



about Arg-446 to about Asp-448, from about Asn-489 to



about Lys-491, from about Ser-516 to about Asp-518, from



about Glu-639 to about Lys-642.


EF127-2
from about Ser-236 to about Tyr-239, from about Asp-350 to



about Gly-352, from about Lys-415 to about Asn-418, from



about Arg-446 to about Asp-448, from about Asn-489 to



about Lys-491, from about Ser-516 to about Asp-518, from



about Glu-639 to about Lys-642.


EF128-2
from about Ser-236 to about Tyr-239, from about Asp-350



to about Gly-352, from about Lys-415 to about Asn-418,



from about Arg-446 to about Asp-448, from about Asn-489



to about Lys-491, from about Ser-516 to about Asp-518,



from about Glu-639 to about Lys-642.


EF129-2
from about Asn-300 to about Gly-302, from about Ser-316



to about Gly-319, from about Asn-385 to about His-387


EF131-2
from about Lys-201 to about Tyr-204, from about Glu-263



to about Ser-266.


EF132-2
from about Thr-26 to about Ser-28.










[0271]


Claims
  • 1. An isolated nucleic acid molecule comprising a polynucleotide having a nucleotide sequence selected from the group consisting of: (a) a nucleotide sequence encoding any one of the amino acid sequences of the polypeptides shown in Table 1; or (b) a nucleotide sequence complementary to any one of the nucleotide sequences in (a). (c) a nucleotide sequence at least 95% identical to any one of the nucleotide sequences shown in Table 1; or, (d) a nucleotide sequence at least 95% identical to a nucleotide sequence complementary to any one of the nucleotide sequences shown in Table 1.
  • 2. An isolated nucleic acid molecule of claim 1 comprising a polynucleotide which hybridizes under stringent hybridization conditions to a polynucleotide having a nucleotide sequence identical to a nucleotide sequence in (a) or (b) of claim 1.
  • 3. An isolated nucleic acid molecule of claim 1 comprising a polynucleotide which encodes an epitope-bearing portion of a polypeptide in (a) of claim 1.
  • 4. The isolated nucleic acid molecule of claim 3, wherein said epitope-bearing portion of a polypeptide comprises an amino acid sequence listed in Table 4.
  • 5. A method for making a recombinant vector comprising inserting an isolated nucleic acid molecule of claim 1 into a vector.
  • 6. A recombinant vector produced by the method of claim 5.
  • 7. A host cell comprising the vector of claim 6.
  • 8. A method of producing a polypeptide comprising: (a) growing the host cell of claim 7 such that the protein is expressed by the cell; and (b) recovering the expressed polypeptide.
  • 9. An isolated polypeptide comprising a polypeptide selected from the group consisting of: (a) a polypeptide consisting of one of the complete amino acid sequences of Table 1; (b) a polypeptide consisting of one the complete amino acid sequences of Table 1 except the N-terminal residue; (c) a fragment of the polypeptide of (a) having biological activity; and (d) a fragment of the polypeptide of (a) which binds to an antibody specific for the polypeptide of (a).
  • 10. An isolated antibody specific for the polypeptide of claim 9.
  • 11. A polypeptide produced according to the method of claim 8.
  • 12. An isolated polypeptide comprising an amino acid sequence at least 95% identical to a sequence selected from the group consisting of an amino acid sequence of any one of the polypeptides in Table 1.
  • 13. An isolated polypeptide antigen comprising an amino acid sequence of an E. faecalis epitope shown in Table 4.
  • 14. An isolated nucleic acid molecule comprising a polynucleotide with a nucleotide sequence encoding a polypeptide of claim 9.
  • 15. A hybridoma which produces an antibody of claim 10.
  • 16. A vaccine, comprising: (1) one or more E. faecalis polypeptides selected from the group consisting of a polypeptide of claim 9; and (2) a pharmaceutically acceptable diluent, carrier, or excipient; wherein said polypeptide is present, in an amount effective to elicit protective antibodies in an animal to a member of the Enterococcus genus.
  • 17. A method of preventing or attenuating an infection caused by a member of the Enterococcus genus in an animal, comprising administering to said animal a polypeptide of claim 9, wherein said polypeptide is administered in an amount effective to prevent or attenuate said infection.
  • 18. A method of detecting Enterococcus nucleic acids in a biological sample comprising: (a) contacting the sample with one or more nucleic acids of claim 1, under conditions such that hybridization occurs, and (b) detecting hybridization of said nucleic acids to the one or more Enterococcus nucleic acid sequences present in the biological sample.
  • 19. A method of detecting Enterococcus nucleic acids in a biological sample obtained from an animal, comprising: (a) amplifying one or more Enterococcus nucleic acid sequences in said sample using polymerase chain reaction, and (b) detecting said amplified Enterococcus nucleic acid.
  • 20. A kit for detecting Enterococcus antibodies in a biological sample obtained from an animal, comprising (a) a polypeptide of claim 9 attached to a solid support; and (b) detecting means.
  • 21. A method of detecting Enterococcus antibodies in a biological sample obtained from an animal, comprising (a) contacting the sample with a polypeptide of claim 9; and (b) detecting antibody-antigen complexes.
Parent Case Info

[0001] This application claims benefit of 35 U.S.C. section 119(e) based on copending U.S. Provisional Application No. 60/046,655, filed May 16, 1997; 60/044,031, filed May 16, 1997; and 60/066,099, filed Nov. 14, 1997. Provisional Application No. 60/066,099, filed Nov. 14, 1997 is herein incorporated by reference in its entirety.