Claims
- 1. An isolated polynucleotide from coryneform bacteria, comprising at least one polynucleotide sequence chosen from the group consisting of
a) polynucleotide which is identical to the extent of at least 70% to a polynucleotide which codes for polypeptides which comprise at least one of the amino acid sequences according to SEQ ID No. 3 or SEQ ID No. 5 or SEQ ID No. 8 or SEQ ID No. 10, b) polynucleotide which codes for polypeptides which comprise amino acid sequences which are identical to the extent of at least 70% to the amino acid sequences according to SEQ ID No.3 or SEQ ID No. 5 or according to SEQ ID No. 8 or SEQ ID No. 10, c) polynucleotide which is complementary to the polynucleotides of a) or b), or d) polynucleotide comprising at least 15 successive nucleotides of the polynucleotide sequences of a), b) or c).
- 2. A polynucleotide as claimed in claim 1, wherein the polynucleotide is a preferably recombinant DNA which is capable of replication in coryneform bacteria and additionally contains at least one of the nucleotide sequences which code for the genes ta1, tkt, zwf and devB.
- 3. A polynucleotide as claimed in claim 1, wherein the polynucleotide is an RNA.
- 4. A polynucleotide as claimed in claim 1, comprising the nucleotide sequence as shown in SEQ ID No. 4 or SEQ ID No. 9.
- 5. A DNA as claimed in claim 2 which is capable of replication, comprising
(i) one or more nucleotide sequences shown in SEQ ID No. 4 or SEQ ID No. 9, or (ii) at least one sequence which corresponds to sequence (i) within the range of the degeneration of the genetic code, or (iii) at least one sequence which hybridizes with the sequence complementary to sequence (i) or (ii), and optionally (iv) sense mutations of neutral function in (i).
- 6. A polynucleotide as claimed in claim 1, which codes for a polypeptide which comprises at least one of the amino acid sequences as shown in SEQ ID No. 3, SEQ ID No. 5, SEQ ID NO. 8 and SEQ ID No. 10.
- 7. A coryneform microorganism, in particular of the genus Corynebacterium, transformed by the introduction of the DNA, which is capable of replication, as claimed in one of claims 1 or 5.
- 8. A process for the preparation of L-amino acids, comprising the following steps:
a) fermentation of the bacteria which produce the desired L-amino acid, in which preferably at least the zwf gene and optionally one or more of the genes tkt gene or devB gene are amplified, in addition to the opcA gene. b) concentration of the desired product in the medium or in the cells of the bacteria and cells of the bacteria concentrated and c) isolation of the desired L-amino acid.
- 9. The process as claimed in claim 8, wherein one or more further gene(s) of the pentose phosphate cycle is or are amplified, in particular over-expressed, in addition to the genes mentioned.
- 10. The process as claimed in claims 8 and 9, wherein to achieve the amplification, the number of copies of the genes or nucleotide sequences is increased by transformation of the microorganisms with plasmid vectors which carry these genes or nucleotide sequences.
- 11. The process as claimed in claim 8, wherein for the preparation of amino acids, in particular lysine, bacteria in which, in addition to the opcA gene, one or more genes chosen from the group consisting of
11.1 the dapA gene which codes for dihydrodipicolinate synthase, 11.2 the lysC gene which codes for a feed back resistant aspartate kinase, 11.3 the gap gene which codes for glycerolaldehyde 3-phosphate dehydrogenase, 11.4 the pyc gene which codes for pyruvate carboxylase, 11.5 the tkt gene which codes for transketolase, 11.6 the gnd gene which codes for 6-phosphogluconate dehydrogenase, 11.7 the lysE gene which codes for lysine export protein, 11.8 the zwa1 gene, 11.9 the eno gene which codes for enolase, 11.10 the tal gene which codes for transaldolase, 11.11 in particular the zwf gene is or are amplified, in particular over-expressed, at the same time, are fermented.
- 12. The process as claimed in claim 8, wherein for the preparation of amino acids, in particular L-lysine, bacteria in which one or more genes chosen from the group consisting of
12.1 the pck gene which codes for phosphoenol pyruvate carboxykinase, 12.2 the pgi gene which codes for glucose 6-phosphate isomerase, 12.3 the poxB gene which codes for pyruvate oxidase or 12.4 the zwa2 gene is or are attenuated at the same time, are fermented.
- 13. The use of polynucleotide sequences as claimed in claim 1 as primers for the preparation of DNA of genes which display an effect corresponding to the opcA gene by the polymerase chain reaction.
- 14. The use of polynucleotide sequences as claimed in claim 1 as hybridization probes.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present application is a continuation-in-part of U.S. application Ser. No. 09/531,267 filed on Mar. 20, 2000, which, in turn, claims the benefit of U.S. Provisional Application No. 60/142,915 filed on Jul. 9, 1999. The contents of U.S. application Ser. No. 09/531,267 are incorporated herein by reference in their entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60142915 |
Jul 1999 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09531267 |
Mar 2000 |
US |
Child |
10137655 |
May 2002 |
US |