Claims
- 1. An isolated polynucleotide from corynebacteria which contains a polynucleotide sequence coding for the pknB gene and is selected from the group consisting of:
(a) a polynucleotide which is at least 70% identical to a polynucleotide coding for a polypeptide containing the amino acid sequence of SEQ ID No. 2, (b) a polynucleotide coding for a polypeptide containing an amino acid sequence which is at least 70% identical to the amino acid sequence of SEQ ID No. 2, (c) a polynucleotide which is complementary to the polynucleotide (a) or (b), and (d) a polynucleotide containing at least 15 consecutive nucleotides of the polynucleotide (a), (b), or (c).
- 2. The polynucleotide of claim 1, wherein the polypeptide has protein kinase B activity.
- 3. The polynucleotide of claim 1, which is a recombinant DNA replicatable in corynebacteria.
- 4. The polynucleotide of claim 1, which is an RNA.
- 5. The polynucleotide of claim 3, which contains the nucleic acid sequence as shown in SEQ ID No. 1.
- 6. The polynucleotide of claim 3, which contains:
(i) the nucleotide sequence shown in SEQ ID No. 1, or (ii) at least one sequence corresponding to sequence (i) within the degeneracy of the genetic code, or (iii) at least one sequence which hybridizes with the sequence complementary to sequence (i) or (ii), and, optionally (iv) neutral sense mutations in (i).
- 7. The polynucleotide of claim 6, wherein the hybridization is carried out under a stringency corresponding to at most 2× SSC.
- 8. The polynucleotide of claim 1, which codes for a polypeptide containing the amino acid sequence shown in SEQ ID No. 2.
- 9. The polynucleotide of claim 1, which is (a).
- 10. The polynucleotide of claim 1, which is (b).
- 11. The polynucleotide of claim 1, which is (c).
- 12. The polynucleotide of claim 1, which is (d).
- 13. Corynebacteria in which the pknB gene is amplified.
- 14. The Corynebacteria of claim 13, in which the pknB gene is overexpressed.
- 15. A fermentation process for the preparation of an L-amino acid, comprising:
(a) fermenting in a medium corynebacteria which produce the L-amino acid, wherein at least the pknB gene or nucleotide sequences coding therefor are amplified in the corynebacteria, (b) enriching the L-amino acid in the medium or in the cells of the corynebacteria, and (c) isolating the L-amino acid.
- 16. The process of claim 15, wherein the L-amino acid is L-lysine.
- 17. The process of claim 15, wherein the L-amino acid is selected from the group consisting of L-asparagine, L-threonine, L-serine, L-glutamate, L-glycine, L-alanine, L-cysteine, L-valine, L-methionine, L-isoleucine, L-leucine, L-tyrosine, L-phenylalanine, L-histidine, L-tryptophan, and L-arginine
- 18. The process of claim 15, wherein at least the pknB gene or nucleotide sequences coding therefor are overexpressed.
- 19. The process of claim 15, wherein at least one additional gene in the biosynthetic pathway of the L-amino acid is amplified in the corynebacteria.
- 20. The process of claim 15, wherein the metabolic pathways which reduce the formation of the L-amino acid are at least partially switched off in the corynebacteria.
- 21. The process of claim 15, wherein a strain transformed with a plasmid vector is used, and the plasmid vector carries the nucleotide sequence coding for the pknB gene.
- 22. The process of claim 15, wherein the expression of the polynucleotide(s) coding for the pknB gene is amplified.
- 23. The process of claim 15, wherein the expression of the polynucleotide(s) coding for the pknB gene is overexpressed.
- 24. The process of claim 15, wherein the catalytic properties of the polypeptide for which the pknB polynucleotide codes are enhanced.
- 25. The process of claim 15, wherein one or more genes s elected from the following group are simultaneously amplified or overexpressed in the corynebacteria:
the dapA gene coding for dihydrodipicolinate synthase, the gap gene coding for glyceraldehyde 3-phosphate dehydrogenase, the tpi gene coding for triose phosphate isomerase, the pgk gene coding for 3-phosphoglycerate kinase, the zwf gene coding for glucose-6-phosphate dehydrogenase, the pyc gene coding for pyruvate carboxylase, the lysC gene coding for a feedback-resistant aspartate kinase, the lysE gene coding for lysine export, the hom gene coding for homoserine dehydrogenase, the ilvA gene coding for threonine dehydratase or the ilvA(Fbr) allele coding for a feedback-resistant threonine dehydratase, the ilvBN gene coding for acetohydroxy acid synthase, the ilvD gene coding for dihydroxy acid dehydratase, and the zwa1 gene coding for the Zwa1 protein.
- 26. The process of claim 15, wherein one or more genes selected from the following group are simultaneously attenuated in the corynebacteria:
the pck gene coding for phosphoenol pyruvate carboxykinase, the pgi gene coding for glucose-6-phosphate isomerase, the poxB gene coding for pyruvate oxidase, and the zwa2 gene coding for the Zwa2 protein.
- 27. The process of claim 15, wherein the corynebacteria are Corynebacterium glutamicum.
- 28. The process of claim 27, wherein the Corynebacterium glutamicum is strain DSM 13994.
- 29. Corynebacteria which contain a vector carrying a polynucleotide as claimed in claim 1.
- 30. A method of identifying nucleic acids which code for protein kinase B or have a high degree of similarity to the sequence of the pknB gene, comprising:
contacting a sample with the polynucleotide of claim 1 under conditions suitable for the polynucleotide to hydridize to another nucleic acid which codes for protein kinase B or have a high degree of similarity to the sequence of the pknB gene.
- 31. The method of claim 30, wherein said another nucleic acid is RNA, cDNA, or DNA.
- 32. The method of claim 30, which is conducted on an array, micro-array, or DNA chip.
- 33. A DNA originating from corynebacteria and coding for protein kinase B, wherein the corresponding amino acid sequences between positions 581 and 587 in SEQ ID No. 2 are modified by amino acid exchange.
- 34. A DNA originating from corynebacteria and coding for protein kinase B, wherein the corresponding amino acid sequences contain any other proteogenic amino acid except L-proline in position 584 in SEQ ID No. 2.
- 35. A DNA originating from corynebacteria and coding for protein kinase B, wherein the corresponding amino acid sequences contain L-serine or L-threonine in position 584 in SEQ ID No. 2.
- 36. A DNA originating from corynebacteria and coding for protein kinase B, wherein the corresponding amino acid sequence contains L-serine in position 584, shown in SEQ ID No.4.
- 37. The DNA of claim 36, which contains the nucleobase thymine in position 2343, shown in SEQ ID No. 3.
- 38. Corynebacteria which contain a DNA as claimed in claim 33.
- 39. Corynebacteria which contain a DNA as claimed in claim 34.
- 40. Corynebacteria which contain a DNA as claimed in claim 35.
- 41. Corynebacteria which contain a DNA as claimed in claim 36.
- 42. Corynebacterium glutamicum DM1547 deposited as DSM13994 in the Deutsche Sammlung für Mikroorganismen und Zellkulturen (German Collection of Microorganisms and Cell Cultures), Brunswick, Germany.
Priority Claims (2)
Number |
Date |
Country |
Kind |
100 44 912.3 |
Sep 2000 |
DE |
|
101 20 095.1 |
Apr 2001 |
DE |
|
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application claims benefit to U.S. Provisional Application Ser. No. 60/297,250, filed on Jun. 12, 2001, and incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60297250 |
Jun 2001 |
US |