Claims
- 1. A cell comprising lactyl-CoA dehydratase activity and 3-hydroxypropionyl-CoA dehydratase activity.
- 2. The cell of claim 1, wherein said cell comprises an activity selected from the group consisting of E1 activator activity, E2 α activity, and E2 β activity.
- 3. The cell of claim 1, wherein said cell comprises 3-hydroxypropionyl-CoA dehydratase activity.
- 4. The cell of claim 1 wherein said cell comprises CoA transferase activity.
- 5. The cell of claim 1, wherein said cell comprises an exogenous nucleic acid comprising:
(a) a sequence set forth in SEQ ID NO:1, 9, 17, 25, 33, 34, 36, 38, 40, 42, 129, 140, 142, 162, or 163; or (b) a nucleic acid sequence that shares at least 65 percent sequence identity with a sequence set forth in SEQ ID NO:1, 9, 17, 25, 33, 34, 36, 38, 40, 42, 129,140, 142, 162, or 163.
- 6. The cell of claim 1, wherein said cell comprises 3-hydroxypropionyl-CoA hydrolase activity or 3-hydroxyisobutryl-CoA hydrolase activity.
- 7. The cell of claim 1, wherein said cell comprises lipase activity.
- 8. The cell of claim 1, wherein said cell produces 3-HP.
- 9. The cell of claim 1, wherein said cell produces an ester of 3-HP.
- 10. The cell of claim 9, wherein said ester is selected from the group consisting of methyl 3-hydroxypropionate, ethyl 3-hydroxypropionate, propyl 3-hydroxypropionate, butyl 3-hydroxypropionate, and 2-ethylhexyl 3-hydroxypropionate.
- 11. The cell of claim 1, wherein said cell comprises CoA synthetase activity.
- 12. The cell of claim 1, wherein said cell comprises poly hydroxyacid synthase activity.
- 13. The cell of claim 1, wherein said cell produces polymerized 3-HP.
- 14. The cell of claim 1, wherein said cell is prokaryotic.
- 15. The cell of claim 1, wherein said cell is selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 16. A cell comprising CoA synthetase activity, lactyl-CoA dehydratase activity, and poly hydroxyacid synthase activity.
- 17. The cell of claim 16, wherein said cell comprises an activity selected from the group consisting of E1 activator activity, E2 α activity, and E2 β activity.
- 18. The cell of claim 16, wherein the cell produces polymerized acrylate.
- 19. The cell of claim 16, wherein said cell is prokaryotic.
- 20. The cell of claim 16, wherein said cell is selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 21. A cell comprising CoA transferase activity, lactyl-CoA dehydratase activity, and lipase activity.
- 22. The cell of claim 21, wherein said cell comprises an activity selected from the group consisting of E1 activator activity, E2 α activity, and E2 β activity.
- 23. The cell of claim 21, wherein said cell produces an ester of acrylate.
- 24. The cell of claim 23, wherein said ester is selected from the group consisting of methyl acrylate, ethyl acrylate, propyl acrylate, and butyl acrylate.
- 25. The cell of claim 21, wherein said cell is prokaryotic.
- 26. The cell of claim 21, wherein said cell is selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 27. An polypeptide comprising an amino acid sequence selected from the group consisting of.
(a) a sequence set forth in SEQ ID NO:2, 10, 18, 26, 35, 37, 39, 41, 141, 160, or 161; (b) a sequence having at least 10 contiguous amino acid residues of a sequence set forth in SEQ ID NO:2, 10, 18, 26, 35, 37, 39, 41, 141, 160, or 161; (c) a sequence that has at least 65 percent sequence identity with a sequence set forth in SEQ ID NO:2, 10, 18, 26, 35, 37, 39, 41, 141, 160, or 161; (d) a sequence that has at least65 percent sequence identity with at least 10 contiguous amino acid residues of a sequence set forth in SEQ ID NO:2, 10, 18, 26, 35, 37, 39, 41, 141, 160, or 161; and (e) a sequence set forth in SEQ ID NO:2, 10, 18, 26, 35, 37, 39, 41, 141, 160, or 161 that contains at least one conservative substitution.
- 28. A nucleic acid molecule comprising a nucleic acid sequence that encodes the polypeptide of claim 27.
- 29. A transformed cell comprising at least one exogenous nucleic acid molecule, wherein said molecule comprises a nucleic acid sequence that encodes the polypeptide of claim 27.
- 30. The cell of claim 29, wherein the cell produces 3-HP.
- 31. The cell of claim 29, wherein said exogenous nucleic acid molecule encodes an E2 α polypeptide of an enzyme having lactyl-CoA dehydratase activity.
- 32. The cell of claim 29, wherein said exogenous nucleic acid molecule encodes an E2 β polypeptide of an enzyme having said lactyl-CoA dehydratase activity.
- 33. The cell of claim 29, wherein said exogenous nucleic acid molecule encodes a polypeptide having 3-hydroxypropionyl-CoA dehydratase activity or CoA transferase activity.
- 34. The cell of claim 29, wherein said exogenous nucleic acid molecule encodes a polypeptide having 3-hydroxypropionyl-CoA hydrolase activity or 3-hydroxyisobutryl-CoA hydrolase activity.
- 35. The cell of claim 29, wherein the cell comprises lipase activity.
- 36. The cell of claim 29, wherein the cell produces an ester of 3-HP.
- 37. The cell of claim 36, wherein said ester is selected from the group consisting of methyl 3-hydroxypropionate, ethyl 3-hydroxypropionate, propyl 3-hydroxypropionate, butyl 3-hydroxypropionate, and 2-ethylhexyl 3-hydroxypropionate.
- 38. The cell of claim 29, wherein said cell comprises CoA synthetase activity.
- 39. The cell of claim 29, wherein said cell produces polymerized 3-HP.
- 40. The cell of claim 29, wherein said cell is prokaryotic.
- 41. The cell of claim 29, wherein said cell is selected from the group consisting of Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 42. The cell of claim 29, wherein the cell is a yeast cell.
- 43. A specific binding agent that specifically binds to the polypeptide of claim 27.
- 44. An isolated nucleic acid molecule comprising a nucleic acid sequence selected from the group consisting of:
(a) a sequence set forth in SEQ ID NO:1, 9, 17, 25, 33, 34, 36, 38, 40, 42, 129, 140, 142, 162, or 163; (b) a sequence having at least 10 contiguous nucleotides of a sequence set forth in SEQ ID NO:1, 9, 17, 25, 33, 34, 36, 38, 40, 42, 129, 140, 142, 162, or 163; (c) a sequence that has at least 65 percent sequence identity with a sequence set forth in SEQ ID NO:1, 9, 17, 25, 33, 34, 36, 38, 40, 42, 129, 140, 142, 162, or 163; (d) a sequence that has at least 65 percent sequence identity with at least 10 contiguous nucleotides of a sequence set forth in SEQ ID NO:1, 9, 17, 25, 33, 34, 36, 38, 40, 42, 129, 140, 142, 162, or 163; and (e) a sequence that hybridize under moderately stringent conditions a sequence set forth in SEQ ID NO:1, 9, 17, 25, 33, 34, 36, 38, 40, 42, 129, 140, 142, 162, or 163.
- 45. A production cell comprising an isolated nucleic acid molecule of claim 44 that is exogenous to said production cell.
- 46. The cell of claim 45, wherein said isolated nucleic acid molecule encodes a polypeptide having an enzymatic activity selected from the group consisting of CoA transferase activity, lactyl-CoA dehydratase activity, CoA synthase activity, CoA dehydratase activity, dehydrogenase activity, malonyl-CoA reductase activity, and 3-hydroxypropionyl-CoA dehydratase activity.
- 47. A method of producing a polypeptide, comprising culturing the cell of claim 45 under conditions that allow said cell to produce said polypeptide, wherein said polypeptide is produced.
- 48. A method for making 3-HP, said method comprising culturing at least one cell comprising at least one exogenous nucleic acid molecule that encodes at least one polypeptide that is capable of producing said 3-HP from PEP under conditions such that said 3-HP is produced.
- 49. The method of claim 48, wherein said cell is selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 50. The method of claim 48, wherein 3-HP is made by a biosynthetic route that utilizes a β-alanine intermediate.
- 51. The method of claim 48, wherein 3-HP is made by a biosynthetic route that utilizes a malonyl-CoA intermediate.
- 52. The method of claim 48, wherein 3-HP is made by a biosynthetic route that utilizes a lactate intermediate.
- 53. A method for making 3-HP, said method comprising culturing at least one cell comprising at least one exogenous nucleic acid molecule that encodes at least one polypeptide that is capable of producing said 3-HP from lactate under conditions such that said 3-HP is produced.
- 54. The method of claim 53, wherein said cells are selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 55. A method for making 3-HP, said method comprising culturing at least one cell under conditions wherein said cell produces said 3-HP, said cell comprising lactyl-CoA dehydratase activity and 3-hydroxypropionyl-CoA dehydratase activity.
- 56. The method of claim 55, wherein said cell is selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 57. The method of claim 55, wherein said cell comprises CoA transferase activity.
- 58. The method of claim 55, wherein said cell comprises 3-hydroxypropionyl-CoA hydrolase activity or 3-hydroxyisobutryl-CoA hydrolase activity.
- 59. A method for making 3-HP, said method comprising:
a) contacting lactate with a first polypeptide having CoA transferase activity to form lactyl-CoA, b) contacting said lactyl-CoA with a second polypeptide having lactyl-CoA dehydratase activity to form acrylyl-CoA, c) contacting said acrylyl-CoA with a third polypeptide having 3-hydroxypropionyl-CoA dehydratase activity to form 3-HP-CoA, and d) contacting said 3-HP-CoA with said first polypeptide to form said 3-HP or with a fourth polypeptide having 3-hydroxypropionyl-CoA hydrolase activity or 3-hydroxyisobutryl-CoA hydrolase activity to form said 3-HP.
- 60. A method for making polymerized 3-HP, said method comprising culturing a cell under conditions wherein said cell produces said polymerized 3-HP, said cell comprising lactyl-CoA dehydratase activity and 3-hydroxypropionyl-CoA dehydratase activity.
- 61. The method of claim 60, wherein said cell is selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 62. The method of claim 60, wherein said cell comprises CoA synthetase activity.
- 63. The method of claim 60, wherein said cell comprises poly hydroxyacid synthase activity.
- 64. A method for making polymerized 3-HP, said method comprising:
a) contacting lactate with a first polypeptide having CoA synthetase activity to form lactyl-CoA, b) contacting said lactyl-CoA with a second polypeptide having lactyl-CoA dehydratase activity to form acrylyl-CoA, c) contacting said acrylyl-CoA with a third polypeptide having 3-hydroxypropionyl-CoA dehydratase activity to form 3-hydroxypropionic acid-CoA, and d) contacting said 3-hydroxypropionic acid-CoA with a fourth polypeptide having poly hydroxyacid synthase activity to form said polymerized 3-HP.
- 65. A method for making an ester of 3-HP, said method comprising culturing a cell under conditions wherein said cell produces said ester, said cell comprising lactyl-CoA dehydratase activity and 3-hydroxypropionyl-CoA dehydratase activity.
- 66. The method of claim 65, wherein said cell is selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 67. The method of claim 65, wherein said cell comprises CoA transferase activity.
- 68. The method of claim 65, wherein said cell comprises 3-hydroxypropionyl-CoA hydrolase activity or 3-hydroxyisobutryl-CoA hydrolase activity.
- 69. A method for making an ester of 3-HP, said method comprising:
a) contacting lactate with a first polypeptide having CoA transferase activity to form lactyl-CoA, b) contacting said lactyl-CoA with a second polypeptide having lactyl-CoA dehydratase activity to form acrylyl-CoA, c) contacting said acrylyl-CoA with a third polypeptide having 3-hydroxypropionyl-CoA dehydratase activity to form 3-hydroxypropionic acid-CoA, d) contacting said 3-hydroxypropionic acid-CoA with said first polypeptide to form 3-HP or a fourth polypeptide having 3-hydroxypropionyl-CoA hydrolase activity or 3-hydroxyisobutryl-CoA hydrolase activity to form 3-HP, and e) contacting said 3-HP with a fifth polypeptide having lipase activity to form said ester.
- 70. A method for making polymerized acrylate, said method comprising culturing a cell under conditions wherein said cell produces said polymerized acrylate, said cell comprising CoA synthetase activity and lactyl-CoA dehydratase activity.
- 71. The method of claim 70, wherein said cell is selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 72. The method of claim 70, wherein said cell comprises poly hydroxyacid synthase activity.
- 73. A method for making polymerized acrylate, said method comprising:
a) contacting lactate with a first polypeptide having CoA synthetase activity to form lactyl-CoA, b) contacting said lactyl-CoA with a second polypeptide having lactyl-CoA dehydratase activity to form acrylyl-CoA, and c) contacting said acrylyl-CoA with a third polypeptide having poly hydroxyacid synthase activity to form said polymerized acrylate.
- 74. A method for making an ester of acrylate, said method comprising culturing a cell under conditions wherein said cell produces said ester, said cell comprising CoA transferase activity and lactyl-CoA dehydratase activity.
- 75. The method of claim 74, wherein said cell is selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 76. The method of claim 74, wherein said cell comprises lipase activity.
- 77. A method for making an ester of acrylate, said method comprising:
a) contacting lactate with a first polypeptide having CoA transferase activity to form lactyl-CoA, b) contacting said lactyl-CoA with a second polypeptide having lactyl-CoA dehydratase activity to form acrylyl-CoA, c) contacting said acrylyl-CoA with said first polypeptide to form acrylate, and d) contacting said acrylate with a third polypeptide having lipase activity to form said ester.
- 78. A method for making 3-HP, said method comprising culturing a cell under conditions wherein said cell produces said 3-HP, said cell comprising at least one exogenous nucleic acid that encodes at least one polypeptide such that said 3-HP is produced from acetyl-CoA and under conditions such that said 3-HP is produced.
- 79. The method of claim 78, wherein said cell is selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 80. A method for making 3-HP, said method comprising culturing a cell under conditions wherein said cell produces said 3-HP, said cell comprising at least one exogenous nucleic acid that encodes at least one polypeptide such that said 3-HP is produced from malonyl-CoA and under conditions such that said 3-HP is produced.
- 81. The method of claim 80, wherein said cell is selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 82. A method for making 3-HP, said method comprising culturing a cell under conditions wherein said cell produces said 3-HP, said cell comprising at least one exogenous nucleic acid that encodes at least one polypeptide such that said 3-HP is produced from P-alanine and under conditions such that said 3-HP is produced.
- 83. The method of claim 82, wherein said cell is selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 84. A method for making 3-HP, said method comprising culturing cells comprising an exogenous nucleic acid that encodes polypeptides that are capable of producing 3-HP from acetyl-CoA under conditions such that said 3-HP is produced.
- 85. The method of claim 84, wherein said cells are selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 86. A method for making 3-HP, said method comprising culturing cells comprising at least one exogenous nucleic acid that encodes polypeptides that are capable of producing said 3-HP from malonyl-CoA, and under conditions such that said 3-HP is produced.
- 87. The method of claim 86, wherein said cells are selected from the group consisting of yeast, Lactobacillus, Lactococcus, Bacillus, and Escherichia cells.
- 88. A method for making 3-HP, said method comprising:
a) contacting acetyl-CoA with a first polypeptide having acetyl-CoA carboxylase activity to form malonyl-CoA, and b) contacting said malonyl-CoA with a second polypeptide having malonyl-CoA reductase activity to form said 3-HP.
- 89. A method for making 3-HP, said method comprising contacting malonyl-CoA with a polypeptide having malonyl-CoA reductase activity to form said 3-HP.
- 90. A method for making 3-HP, said method comprising:
a) contacting β-alanine CoA with a first polypeptide having β-alanyl-CoA ammonia lyase activity to form acrylyl-CoA; b) contacting said acrylyl-CoA with a second polypeptide having 3-HP-CoA dehydratase activity to form said 3-HP-CoA; and c) contacting 3-HP-CoA with a third polypeptide having glutamate dehydrogenase to make 3-HP. a) contacting β-alanine CoA with a first polypeptide having β-alanyl-CoA ammonia lyase activity to form acrylyl-CoA; b) contacting said acrylyl-CoA with a second polypeptide having 3HP-CoA dehydratase activity to form said 3-HP-CoA; and c) contacting 3-HP-CoA with a third polypeptide having glutamate dehydrogenase to make 3-HP
- 91. The cell of claim 1, 8, 29, or 30, wherein the cell produces 1,3-propanediol.
- 92. A method for making 1,3-propanediol, comprising culturing the cell of claim 1, 8, 29, or 30 under conditions wherein the cell produces the 1,3-propanediol.
- 93. A method for making 1,3-propanediol from 3-HP, comprising:
making 3-HP using the method of any of claims 48-59 or 78-90; contacting the 3-HP with a polypeptide comprising oxidoreductase activity or a polypeptide comprising reductase activity.
- 94. A method for making 1,3-propanediol from 3-HP, comprising:
making 3-HP using the method of any of claims 48-59 or 78-90; contacting the 3-HP with a polypeptide comprising aldyhyde dehydrogenase activity and/or a polypeptide comprising alcohol dehydrogenase activity.
- 95. A method for making 1,3-propanediol, comprising:
transfecting the cell of claim 1, 8, 29, or 30 with a nucleic acid encoding a polypeptide comprising oxidoreductase activity or with a nucleic acid encoding a polypeptide comprising reductase activity; and culturing the transfected cell to allow the transfected cell to make 1,3-propanediol.
- 96. A method for making 1,3-propanediol, comprising:
transfecting the cell of claim 1, 8, 29, or 30 with a nucleic acid encoding a polypeptide comprising aldyhyde dehydrogenase activity and/or with a nucleic acid encoding a polypeptide comprising alcohol dehydrogenase activity; and culturing the transfected cell to allow the transfected cell to make 1,3-propanediol.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from the following U.S. Provisional Patent Applications, which are herein incorporated by reference: U.S. Provisional Patent Application Serial No. 60/252,123, filed Nov. 20, 2000; U.S. Provisional Patent Application Serial No. 60/285,478, filed Apr. 20, 2001; U.S. Provisional Patent Application Serial No. 60/306,727, filed Jul. 20, 2001; and U.S. Provisional Patent Application Serial No. 60/317,845, filed Sep. 7, 2001.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US01/43607 |
11/20/2001 |
WO |
|