Claims
- 1. An isolated nucleic acid coding for a phospherine phosphatase, comprising a gene SerB selected from the sequences according to the SEQ ID No. 1 or 5 or an allele, homolog or derivative of these nucleotide sequences or nucleotide sequences hybridizing to these nucleotide sequences.
- 2. An isolated nucleic acid coding for a phopherine aminotransferase, comprising a gene serC selected from the sequences according to the SEQ ID No. 3 or 7 or an allele, homolog or derivative of these nucleotide sequences or nucleotide sequences hybridizing to these nucleotide sequences.
- 3. A nucleic acid as claimed in claim 1, said nucleic acid being isolated from coryneform bacteria, preferably of the genus Corynebacterium or Brevibacterium, particularly preferably of the species Corynebacterium glutamicum or Brevibacterium flavum.
- 4. A nucleic acid as claimed in claim 2, said nucleic acid being isolated from coryneform bacteria, preferably of the genus Corynebacterium or Brevibacterium, particularly preferably of the species Corynebacterium glutamicum or Brevibacterium flavum.
- 5. A phospherine phosphatase or a part thereof, encoded by a nucleic acid sequence as claimed in 1.
- 6. A phospherine phosphatase or part thereof encoded by a nucleic acid sequence as claimed in claim 3.
- 7. The phospherine phosphatase as claimed in claim 5, having an amino acid sequence selected from the sequences according to the SEQ ID No. 2 or 6 or a modified form of these polypeptide sequences or isoforms thereof or mixtures thereof.
- 8. A phosphoserine aminotransferase or a part thereof, encoded by a nucleotide sequence as claimed in claim 2.
- 9. A phospherine amino transferase or a part thereof encoded by a nucleotide sequence as claimed in claim 4.
- 10. The phosphoserine aminotransferase as claimed in claim 8, having an amino acid sequence selected from the sequences according to the SEQ ID No. 4 or 8 or a modified form of these polypeptide sequences or isoforms thereof or mixtures thereof.
- 11. The polypeptides as claimed in claim 5, said polypeptides being derived from Coryneform bacteria, preferably of the genus Corynebacterium or Brevibacterium, particularly preferably of the species Corynebacterium glutamicum or Brevibacterium flavum.
- 12 The polypeptides as claimed in claim 8, said polypeptides being derived from Coryneform bacteria, preferably of the genus Corynebacterium or Brevibacterium, particularly preferably of the species Corynebacterium glutamicum or Brevibacterium flavum.
- 13. A gene structure comprising at least one of the nucleotide sequence SEQ ID No. 1, 3, 5 and 7 and regulatory sequences operatively linked to such nucleotide sequence.
- 14. A vector comprising at least one of nucleotide sequences SEQ ID No. 1, 3, 5 and 7 or a gene structure of these sequences and additional nucleotide sequences for one of a selection, a replication in the host cell and an integration into the host cell genome.
- 15. A genetically modified microorganism comprising, in a replicable form, at least one nucleic acid as claimed in claim 1, whose expression is enhanced or whose copy number is increased, compared to the correspondingly genetically unmodified microorganism.
- 16. A genetically modified microorganism comprising, in a replicable form, at least one nucleic acid as claimed in claim 2, whose expression is enhanced or whose copy number is increased, compared to the correspondingly genetically unmodified microorganism.
- 17. The genetically modified microorganisms as claimed in claim 15, comprising, in a replicable form, a gene structure including the nucleotide sequence ID No. 1, 3, 5, and 7 and regulatory sequences operatively linked to said nucleotide sequence or a vector comprising one of the sequences.
- 18. The genetically modified microorganism as claimed in claim 15, for producing L-serine, comprising, in a replicable form, a nucleic acid coding for a phospherine phosphatase (serB) or a nucleic acid coding for a phospherine aminotransferase (serC) according to at least one of the SEQ ID No. 1, 3, 5 and 7 and a nucleic acid coding for the L-threonine export carrier (thrE) according to one of SEQ ID No. 9 and 11, whose expression is enhanced and/or whose copy number is increased, compared to the correspondingly genetically unmodified microorganism.
- 19. The genetically modified microorganism as claimed in claim 15, comprising at least one polypeptide which has an increased activity compared to the correspondingly genetically unmodified microorganism.
- 20. The genetically modified microorganism as claimed in claim 15, comprising polypeptides encoded by at least one of the genes serB, serC and thrE, which have an increased activity or lifespan or a lower final-product inhibition, compared to the correspondingly genetically unmodified microorganism.
- 21. The genetically modified microorganism as claimed in claim 15, said microorganism having at least an increased rate of L-serine production and an increased rate of L-serine or L-threonine secretion.
- 22. The genetically modified microorganism as claimed in claim 15, said microorganism being a coryneform bacterium, preferably of the genus Corynebacterium or Brevibacterium.
- 23. The genetically modified microorganism as claimed in claim 15, said microorganism being a bacterium of the species Corynebacterium glutamicum or Brevibacterium flavum.
- 24. The genetically modified microorganisms as claimed in claim 16, comprising, in a replicable form, a gene structure including the nucleotide sequence ID No. 1, 3, 5, and 7 and regulatory sequences operatively linked to said nucleotide sequence or a vector comprising one of the sequences.
- 25. The genetically modified microorganism as claimed in claim 16, for producing L-serine, comprising, in a replicable form, a nucleic acid coding for a phospherine phosphatase (serB) or a nucleic acid coding for a phospherine aminotransferase (serC) according to at least one of the SEQ ID No. 1, 3, 5 and 7 and a nucleic acid coding for the L-threonine export carrier (thrE) according to one of SEQ ID No. 9 and 11, whose expression is enhanced and/or whose copy number is increased, compared to the correspondingly genetically unmodified microorganism.
- 26. The genetically modified microorganism as claimed in claim 16, comprising at least one polypeptide which has an increased activity compared to the correspondingly genetically unmodified microorganism.
- 27. The genetically modified microorganism as claimed in claim 16, comprising polypeptides encoded by at least one of the genes serB, serC and thrE, which have an increased activity or lifespan or a lower final-product inhibition, compared to the correspondingly genetically unmodified microorganism.
- 28. The genetically modified microorganism as claimed in claim 16, said microorganism having at least an increased rate of L-serine production and an increased rate of L-serine or L-threonine secretion.
- 29. The genetically modified microorganism as claimed in claim 16, said microorganism being a coryneform bacterium, preferably of the genus Corynebacterium or Brevibacterium.
- 30. The genetically modified microorganism as claimed in claim 16, said microorganism being a bacterium of the species Corynebacterium glutamicum or Brevibacterium flavum.
- 31. A probe for identifying and for isolating genes coding for proteins involved in the biosynthesis of L-serine, said genes being prepared starting from one of the nucleic acid sequences according to the SEQ ID No. 1, 3, 5 and 7 and containing a label suitable for detection.
- 32. A method for isolating nucleic acids coding for one of a phospherine phosphatase and a phospherine amino transferase, comprising the step of generating a coryneform bacterium which has defects in the genes serB and serC, generated by transposon mutagenesis.
- 33. A method for the microbial production of L-serine comprising the steps of:
a) isolating at least one nucleic acid from a coryneform bacterium, transferring the isolated nucleic acid to a homologous microorganism and expressing it therein, and increasing the gene expression or activity of the correspondingly encoded polypeptide as compared to the corresponding genetically unmodified microorganism, b) using the genetically modified microorganism from step a for the fermentative production of L-serine in a culture medium, and c) isolating the L-serine correspondingly formed from the culture medium.
- 34. A method for the microbial production of L-serine, comprising the steps of
a) transferring at least one nucleic acid coding for a phopherine phosphatase (serB) or phospherine aminotransferase (serC) according to SEQ ID No. 1, 3, 5, or 7 and a nucleic acid coding for an L-threonine export carrier according to SEQ ID No. 9 or 11 or alleles thereof or derivatives therefrom, isolated from a coryneform bacterium, into a homologous microorganism and expressing then therein, and increasing the expression or lifespan of the nucleic acids or the activity or lifespan of the correspondingly encoded polypeptides as compared to the corresponding genetically unmodified microorganism, b) using this genetically modified microorganism from step a) for the fermentative production of L-serine, whereby L-serine is increasingly secreted into the culture medium, and c) isolating the L-serine correspondingly formed from the culture medium.
Priority Claims (2)
Number |
Date |
Country |
Kind |
100 09 799.5 |
Mar 2000 |
DE |
|
100 44 831.3 |
Sep 2000 |
DE |
|
Parent Case Info
[0001] This is a c-i-p application of international application PCT/EP01/02283 filed Mar. 1, 2001 and claiming the priority of German applications 100 09 799.5 filed Mar. 1, 2000 AND 100 44 831 3 filed Sep. 11, 2000.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
PCT/EP01/02283 |
Mar 2001 |
US |
Child |
10224574 |
Aug 2002 |
US |