Claims
- 1. An isolated polynucleotide comprising a nucleic acid at least 90% identical to a reference nucleotide sequence selected from the group consisting of:
(a) SEQ ID NO: 4, (b) SEQ ID NO: 5, (c) SEQ ID NO: 6, (d) SEQ ID NO: 7, (e) SEQ ID NO: 8, (f) SEQ ID NO: 9, (g) SEQ ID NO: 10, (h) SEQ ID NO: 11, (i) SEQ ID NO: 12, (j) SEQ ID NO: 13, (k) SEQ ID NO: 14, (l) SEQ ID NO: 15, (m) SEQ ID NO: 16, (n) SEQ ID NO: 17, (o) SEQ ID NO: 18, (p) SEQ ID NO: 19, (q) SEQ ID NO: 20, (r) SEQ ID NO: 21, and (s) SEQ ID NO: 22.
- 2. The polynucleotide of claim 1, wherein said polynucleotide regulates transcription of β-galactosidase in a bacterial host cell.
- 3. The polynucleotide of claim 1, wherein the sequence of said nucleic acid is identical to said reference nucleotide sequence.
- 4. The polynucleotide of claim 1, further comprising a second nucleic acid.
- 5. The polynucleotide of claim 4, wherein said second nucleic acid encodes a polypeptide.
- 6. The polynucleotide of claim 5, wherein said polypeptide is selected from the group consisting of:
(a) a polypeptide which is a component of an amino acid biosynthesis pathway; (b) a polypeptide which is a component of a purine nucleotide biosynthesis pathway; and (c) a heterologous polypeptide.
- 7. The polynucleotide of claim 6, wherein said polypeptide is a component of an amino acid biosynthesis pathway.
- 8. The polynucleotide of claim 7 wherein said amino acid biosynthesis pathway is a lysine biosynthesis pathway.
- 9. The polynucleotide of claim 7, wherein said polypeptide is selected from the group consisting of:
(a) aspartokinase, (b) diaminopimelate dehydrogenase, (c) diaminopimelate decarboxylase, (d) dihydrodipicolinate synthetase, (e) dihydrodipicolinate reductase, (f) aspartate beta-semialdehyde dehydrogenase, and (g) pyruvate carboxylase.
- 10. A method of producing a vector which comprises inserting the polynucleotide of claim 1 into a vector.
- 11. A vector comprising the polynucleotide of claim 1.
- 12. A vector comprising the polynucleotide of claim 4.
- 13. A vector comprising the polynucleotide of claim 6.
- 14. A host cell comprising the vector of claim 11.
- 15. The host cell of claim 14, wherein said host cell is a Corynebacterium species.
- 16. A host cell comprising the vector of claim 12.
- 17. A host cell comprising the vector of claim 13.
- 18. A method of producing a transformed Corynebacterium species host cell comprising:
(a) introducing into Corynebacterium species cells the vector of claim 17, and (b) selecting said host cell.
- 19. A method of production of a biosynthetic product, comprising culturing the host cell of claim 18 in or on a culture medium, and recovering said product.
- 20. An isolated polynucleotide comprising a nucleic acid which hybridizes to a reference nucleic acid, or the complement thereof, wherein the sequence of said reference nucleic acid is selected from the group consisting of:
(a) SEQ ID NO: 4, (b) SEQ ID NO: 5, (c) SEQ ID NO: 6, (d) SEQ ID NO: 7, (e) SEQ ID NO: 8, (f) SEQ ID NO: 9, (g) SEQ ID NO: 10, (h) SEQ ID NO: 11, (i) SEQ ID NO: 12, (j) SEQ ID NO: 13, (k) SEQ ID NO: 14, (l) SEQ ID NO: 15, (m) SEQ ID NO: 16, (n) SEQ ID NO: 17, (o) SEQ ID NO: 18, (p) SEQ ID NO: 19, (q) SEQ ID NO: 20, (r) SEQ ID NO: 21,and (s) SEQ ID NO: 22; wherein said first nucleic acid is at least 30 nucleotides in length.
- 21. The polynucleotide of claim 20, wherein said polynucleotide regulates transcription of β-galactosidase in a bacterial host cell.
- 22. An isolated polynucleotide comprising a nucleic acid, the sequence of which comprises 10 contiguous nucleotides of a reference sequence selected from the group consisting of:
(a) SEQ ID NO: 4, (b) SEQ ID NO: 5, (c) SEQ ID NO: 6, (d) SEQ ID NO: 7, (e) SEQ ID NO: 8, (f) SEQ ID NO: 9, (g) SEQ ID NO: 10, (h) SEQ ID NO: 11, (i) SEQ ID NO: 12, (j) SEQ ID NO: 13, (k) SEQ ID NO: 14, (l) SEQ ID NO: 15, (m) SEQ ID NO: 16, (n) SEQ ID NO: 17, (o) SEQ ID NO: 18, (p) SEQ ID NO: 19, (q) SEQ ID NO: 20, (r) SEQ ID NO: 21, and (s) SEQ ID NO: 22.
- 23. The polynucleotide of claim 22, wherein said polynucleotide regulates transcription of β-galactosidase in a bacterial host cell.
- 24. The polynucleotide of claim 22, wherein the sequence of said first nucleic acid comprises 20 contiguous nucleotides of any of said sequences.
- 25. The polynucleotide of claim 24, wherein the sequence of said first nucleic acid comprises 50 contiguous nucleotides of any of said sequences.
- 26. The polynucleotide of claim 25, wherein the sequence of said first nucleic acid comprises 150 contiguous nucleotides of any of said sequences.
- 27. The polynucleotide of claim 24, further comprising a second nucleic acid.
- 28. The polynucleotide of claim 27, wherein said second nucleic acid encodes a polypeptide.
- 29. The polynucleotide of claim 28, wherein said polypeptide is selected from the group consisting of:
(a) a polypeptide which is a component of an amino acid biosynthesis pathway; (b) a polypeptide which is a component of a purine nucleotide biosynthesis pathway; and (c) a heterologous polypeptide.
- 30. The polynucleotide of claim 29, wherein said polypeptide is a component of an amino acid biosynthesis pathway.
- 31. A method of producing a vector which comprises inserting the polynucleotide of claim 22 into a vector.
- 32. A vector comprising the polynucleotide of claim 22.
- 33. A vector comprising the polynucleotide of claim 27.
- 34. A host cell comprising the vector of claim 32.
- 35. The host cell of claim 34, wherein said host cell is a Corynebacterium species.
- 36. A host cell comprising the vector of claim 33.
- 37. A method of producing a transformed Corynebacterium species host cell comprising:
(a) introducing into Corynebacterium species cells the vector of claim 33, and (b) selecting said host cell.
- 38. A method of production of a biosynthetic product, comprising culturing the host cell of claim 36 in or on a culture medium, and recovering said product.
- 39. An isolated Corynebacterium species chromosome, comprising:
a first nucleic acid integrated into said chromosome, the sequence of which is at least 90% identical to SEQ ID NO: 1, and a second nucleic acid integrated into said chromosome, wherein said second nucleic acid encodes a polypeptide which functions as a component of an amino acid biosynthesis pathway; and wherein said first nucleic acid regulates transcription of said second nucleic acid.
- 40. The Corynebacterium species chromosome of claim wherein the sequence of said first nucleic acid is identical to SEQ ID NO: 1.
- 41. A host cell comprising the Corynebacterium species chromosome of claim 39.
- 42. A method of producing the Corynebacterium species host cell of claim 41, comprising:
(a) transforming Corynebacterium species cells with a vector comprising a first nucleic acid, the sequence of which is at least 90% identical to SEQ ID NO: 1, wherein said vector facilitates integration of said first nucleic acid into the chromosome of said Corynebacterium species cells, and (b) selecting said host cell.
- 43. A vector comprising the first and second polynucleotide of claim 39.
- 44. The vector of claim 43, wherein said second nucleic acid encodes a polypeptide which functions as a component of an amino acid biosynthesis pathway; and
wherein said first nucleic acid regulates transcription of said second nucleic acid.
- 45. A method of production of an amino acid, comprising culturing the host cell of claim 41 in or on a culture medium, and recovering said amino acid.
- 46. An isolated polynucleotide comprising:
a first nucleic acid, the sequence of which is at least 90% identical to SEQ ID NO: 2, and a second nucleic acid operably associated with said first nucleic acid, wherein said second nucleic acid encodes polypeptide which functions as a component of a lysine biosynthesis pathway; wherein said first nucleic acid regulates transcription of said second nucleic acid.
- 47. The isolated polynucleotide of claim 46, wherein the sequence of said first nucleic acid is identical to SEQ ID NO: 2.
- 48. A method of producing a vector, comprising inserting the polynucleotide of claim 47 into a vector.
- 49. A vector comprising the polynucleotide of claim 46.
- 50. A host cell comprising the vector of claim 49.
- 51. A method of producing a transformed Corynebacterium species host cell comprising:
(a) introducing into Corynebacterium species cells the vector of claim 49, and (b) selecting said host cell.
- 52. An isolated polynucleotide comprising:
a first nucleic acid, the sequence of which is at least 90% identical to SEQ ID NO: 3; and a second nucleic acid operably associated with said second nucleic acid, wherein said second nucleic acid encodes polypeptide which functions as a component of an amino acid biosynthesis pathway; wherein said first nucleic acid regulates transcription of said second nucleic acid.
- 53. The isolated polynucleotide of claim 52 wherein the sequence of said first nucleic acid is identical to SEQ ID NO: 3.
- 54. A method of producing a vector, comprising inserting the polynucleotide of claim 52 into a vector.
- 55. A vector comprising the polynucleotide of claim 52.
- 56. A host cell comprising the vector of claim 55.
- 57. A method of producing a transformed Corynebacterium species host cell comprising:
(a) introducing into Corynebacterium species cells the vector of claim 55, and (b) selecting said host cell.
- 58. A method of production of an amino acid, comprising culturing the host cell of claim 56 in or on a culture medium, and recovering said amino acid.
- 59. An isolated Corynebacterium species chromosome, comprising:
a first nucleic acid integrated into said chromosome, the sequence of which is at least 90% identical to SEQ ID NO: 23, and a second nucleic acid integrated into said chromosome in operable association with said first nucleic acid, wherein said second nucleic acid encodes polypeptide which functions as a component of an amino acid biosynthesis pathway; wherein said first nucleic acid regulates transcription of said second nucleic acid.
- 60. The Corynebacterium species chromosome of claim 59, wherein the sequence of said first nucleic acid is identical to SEQ ID NO: 23.
- 61. A Corynebacterium species host cell comprising the Corynebacterium species chromosome of claim 59.
- 62. A method of producing the Corynebacterium species host cell of claim 61, comprising:
(a) transforming Corynebacterium species cells with a vector comprising a first nucleic acid, the sequence of which is at least 90% identical to SEQ ID NO: 23, wherein said vector facilitates integration of said first nucleic acid into the chromosome of said Corynebacterium species cells, and (b) selecting said host cell.
- 63. A vector comprising the Corynebacterium species chromosome of claim 59.
- 64. A method of production of an amino acid, comprising culturing the host cell of claim 61 in or on a culture medium, and recovering said amino acid.
- 65. The method of claim 64, further comprising adding arabinose to said culture medium.
- 66. The method of claim 65, wherein said first polynucleotide facilitates enhanced production of said amino acid in the presence of arabinose.
- 67. An isolated Corynebacterium species chromosome, comprising:
a first nucleic acid integrated into said chromosome, the sequence of which is identical to a nucleotide sequence selected from the group consisting of
(a) SEQ ID NO: 26, and (b) SEQ ID NO: 27, a second nucleic acid integrated into said chromosome in operable association with said first nucleic acid, wherein said second nucleic acid encodes polypeptide which functions as a component of an amino acid biosynthesis pathway; and a third nucleic acid, the sequence of which is at least 90% identical to SEQ ID NO: 28; wherein said first nucleic acid regulates transcription of said second nucleic acid, and wherein said third nucleic acid encodes a lac repressor polypeptide, wherein said third nucleic acid is in operable association with said first nucleic acid.
- 68. The Corynebacterium species chromosome of claim 67, wherein the sequence of said third nucleic acid is identical to SEQ ID NO: 28.
- 69. The Corynebacterium species chromosome of claim 67, wherein said third nucleic acid is operably associated with a transcriptional regulatory region.
- 70. A Corynebacterium species host cell comprising the Corynebacterium species chromosome of claim 67.
- 71. A method of producing the Corynebacterium species host cell of claim 70, comprising:
(a) transforming Corynebacterium species cells with a vector comprising:
(i) a first nucleic acid, the sequence of which is selected from the group consisting of SEQ ID NO: 26 and SEQ ID NO: 27; and (ii) a third nucleic acid, the sequence of which is at least 90% identical to SEQ ID NO: 28, operably associated with a transcriptional regulatory region, wherein said third nucleic acid encodes a lac repressor polypeptide; and wherein said vector facilitates integration of said first and third nucleic acids into the chromosome of said Corynebacterium species cells, and (b) selecting said host cell.
- 72. A vector comprising the first, second and third nucleic acid of claim 67.
- 73. A method of production of an amino acid, comprising culturing the host cell of claim 70 in or on a culture medium, and recovering said amino acid.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Application 60/248,219, filed Nov. 15, 2000, which is incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60248219 |
Nov 2000 |
US |