Kevin B. Bacon, et al., Int. Arch. Allergy Immunol., 109:97-109, 1996. “Chemokines as Mediators of Allergic Inflammation”. |
J. Fernando Bazan, et al., Nature, 385:640-644, Feb. 13, 1997. “A new class of membrane-bound chemokine with a CX3C motif”. |
D. Beier, et al., Genbank Accession No. R75309, p. 1, Jun. 6, 1995. |
Mark S. Boguski, Trends Biochem. Sci. (TIBS), 20:295-296, 1995. “The turning point in genome research”. |
Myriam C. Capone et al., J. Immunol., 157:969-973, 1996. “Identification Through Bioinformatics of cDNAs Encoding Human Thymic Shared Ag-1/Stem Cell Ag-2: A New Member of the Human Ly-6 Family1,2”. |
Angela M. Gronenborn, et al., Protein Engineering, 4(3):263-269, 1991. “Modeling the Three-Dimensional Structure of the Monocyte Chemo-Attractant and Activating Protein MCAF/MCP-1 on the Basis of the Solution Structure of Interleukin-8”. |
L. Hillier, et al., Genbank Accession No. H06104, pp. 1-2, Jun. 21, 1995. |
Patricia J. Lodi, et al., Science, 263:1762-1767, 1994. “High-Resolution Solution Structure of the β Chemokine hMIP-1β by Multidimensional NMR,”. |
Kouji Matsushima, et al., Cytokine, 1(1):2-13, 1989. “Interleukin 8 and MCAF: Novel Inflammatory Cytokines Inducible by IL 1 and TNF”. |
Michael D. Miller, et al., Proc. Natl. Acad. Sci., 89:2950-2954, 1992. “The Human Cytokine I-309 is a Monocyte Chemoattractant”. |
Joost J. Oppenheim, et al., Annu. Rev. Immunol., 9:617-648, 1991. “Properties of the Novel Proinflammatory Supergene ‘Intercrine’ Cytokine Family”. |
Thomas J. Schall, The Cytokine Handbook, Angus W. Thompson, Ed., 2nd ed. The Academic Press Limited, Ch. 22, pp. 419-460, 1994. “The Chemokines”. |
Thomas J. Schall, et al., Current Opinion in Immunol., 6:865-873, 1994. “Chemokines, Leukocyte Trafficking, and Inflammation”. |
Thomas J. Schall, Cytokine, 3(3):165-183, 1991. “Biology of the RANTES/SIS Cytokine Family”. |
Mark Y. Stoeckle, et al., The New Biologist, 2(4):313-323, 1990. “Two Burgeoning Families of Platelet Factor 4-Related Proteins: Mediators of the Inflammatory Response”. |
Steven R. Wiley, et al., Immunity, 3: 673-682, 1995. “Identification and Characterization of a New Member of the TNF Family that Induces Apoptosis”. |
D. Rossi, et al., FASEB Journal, 10(6):A1049, Abstract No. 290, from Joint Meeting of the American Society for Biochemistry and Molecular Biology, The American Society for Investigative Pathology and the American Association of Immunologists, New Orleans, LA, USA Jun. 1996. “Identification of a γ or “C” chemokine from the chicken and a novel human and mouse chemokine”. |
L. Hillier, et al., EMBL Database Entry HS940163, Accession No. H14940, Jul. 3, 1995, XP002030088. “The WashU-Merck EST project”. |
C. Auffray, et al., EMBL Database Entry HSC20F041, Accession No. Z44443, Sep. 21, 1995, XP002030091. “Image: Integrated molecular analysis of the human genome and its expression”. |
Fiorenza Cocchi, et al., Science, 270:1811-1815, Dec. 15, 1995. “Identification of RANTES, MIP-1α, and MIP-1-β as the Major HIV-Suppressive Factors Produced by CD8+ T Cells”. |
Derwent Geneseq Patent Sequence Database, Accession No. 97P-W34307, citing: WO 9742224 A1 dated 971113, US 97-851160 dated 970505; US 96-643798 dated 960507; “Search record pertaining to human CX3C chemokine, performed in Jul. 1998”. |
Derwent Geneseq Patent Sequence Database, Accession No. 19P-W23345, citing: WO 9727299 A1 dated 970731; WO 97-US293 dated 970123; US 96-649006 dated 960516; US 96-590828 dated 960124; “Search record pertaining to human CX3C chemokine, performed in Jul. 1998”. |
Derwent Geneseq Patent Sequence Database, Accession No. 97P-W34308, citing: WO 9742224 A1 dated 971113; WO 97-US7737 dated 970506; US 97-851160 dated 970505; US 96-643798 dated 960507; “Search record pertaining to human CX3C chemokine, performed in Jul. 1998”. |
Derwent Geneseq Patent Sequence Database, Accession No. 19P-W23347, citing: WO 9727299 A1 dated 970731; WO 97-US293 dated 970123; US 96-649006 dated 960516; US 96-590828 dated 960124; “Search record pertaining to human CX3C chemokine, performed in Jul. 1998”. |
Derwent Geneseq Patent Sequence Database, Accession No. 19P-W23344, citing: WO 9727299 A1 dated 970731; WO 97-US293 dated 970123; US 96-6496006 dated 96016; US 96-590828 dated 960124; “Search record pertaining to human CX3C chemokine, performed in Jul. 1998”. |
Derwent Geneseq Patent Sequence Database, Accession No. 19P-W23346, citing: WO 9727299 A1 dated 970731; WO 97-US293 dated 970123; US 96-649006 dated 960516; US 96-590828 dated 960124; “Search record pertaining to human CX3C chemokine, performed in Jul. 1998”. |
Derwent Geneseq Patent Sequence Database, Accession No. 98P-W42072, citing: WO 9802459 A1 dated 980122; WO 97-US12349 dated 970715; US 96-683655 dated 960715; “Search record pertaining to human CX3C chemokine, performed in Jul. 1998”. |
Derwent Geneseq Patent Sequence Database, Accession No. 97P-W26655, citing: WO 9725427 A1 dated 970717; WO 97-US379 dated 970110; US 96-586395 dated 960112; “Search record pertaining to human CX3C chemokine, performed in Jul. 1998”. |
Derwent Geneseq Patent Sequence Database, Accession No. 97P-W3810, citing: WO 9741230 A2 dated 971106; WO 97-EP2217 dated 970430; DE 96-19617312 dated 960430; “Search record pertaining to human CX3C chemokine”. |
C. Auffray, et al., GenBank, Accession No. Z44443, Sep. 21, 1995. Definition: “H. sapiens partial cDNA sequence; clone c-20f04”. |
James U. Bowie, et al., Science, 247: 1306-1310, Mar. 16, 1990. “Deciphering the Message in Protein Sequences: Tolerance to Amino Acid Substitutions”. |
Claude Daniel, et al., Virology, 202:540-549, 1994. “Mapping of Linear Antigenic Sites on the S Glycoprotein of a Neurotropic Murine Coronavirus with Synthetic Peptides: A Combination of Nine Prediction Algorithms Fails to Identify Relevant Epitopes and Peptide Immunogenicity Is Drastically Influenced by the Nature of the Protein Carrier”. |
C. Frommel, et al., J. Mol. Evol., 21:233-257, 1985. “An Estimate on the Effect of Point Mutation and Natural Selection on the Rate of Amino Acid Replacement in Proteins”. |
David G. George, et al., Macromolecular Sequencing and Synthesis, David H. Schlesinger, Ed., Chapter 12, pp. 127-149, Alan R. Liss, Inc.: New York 1988. “Current Methods in Sequence Comparison and Analysis”. |
Minoru Kanehisa, Nucleic Acids Research, 12(1):203-213, 1984. “Use of statistical criteria for screening potential homologies in nucleic acid sequences”. |
J. Thomas Ngo, et al., The Protein Folding Problem and Tertiary Structure Prediction, K. Mertz, Jr. and S. Le Grand, Eds., Chapter 14, pp. 491-495, Birkhauser: Boston 1994. “Computational Complexity, Protein Structure Prediction and the Levinthal Paradox”. |
G. Opdenakker, et al., GenBank, Accession Nos. X72308 & S57464, Jul. 25, 1994. Definition: “H. sapiens MCP-3 mRNA for monocyte chemotactic protein-3”. |
Sambrook, et al., Molecular Cloning: A Laboratory Manual, 2nd Ed., Chapters 9 and 11, CSHL: Cold Spring Harbor, New York, 1989. |