Claims
- 1. An isolated nucleic acid molecule encoding a fagopyritol synthase.
- 2. The isolated nucleic acid molecule according to claim 1, wherein the fagopyritol synthase is from Fagopyrum esculentum.
- 3. The isolated nucleic acid molecule according to claim 2, wherein the nucleic acid molecule has a nucleotide sequence selected from the group consisting of SEQ ID NO: 1, SEQ ID NO: 3, and SEQ ID NO: 5.
- 4. The isolated nucleic acid molecule according to claim 2, wherein the nucleic acid sequence is at least 55% similar to either SEQ ID NO: 1, SEQ ID NO: 3, or SEQ ID NO: 5 by basic BLAST using default parameters analysis.
- 5. The isolated nucleic acid molecule according to claim 2, wherein the nucleic acid molecule hybridizes to the nucleotide sequence of SEQ ID NO: 1, SEQ ID NO: 3, or SEQ ID NO: 5 under stringent conditions characterized by a hybridization buffer comprising 5×SSC at a temperature of 55° C.
- 6. The isolated nucleic acid molecule according to claim 2, wherein the nucleic acid molecule encodes a protein or polypeptide comprising an amino acid sequence selected from the group consisting of SEQ ID NO: 2, SEQ ID NO: 4, and SEQ ID NO: 6.
- 7. The isolated nucleic acid molecule according to claim 2, wherein the nucleic acid molecule encodes a protein or polypeptide having a molecular mass of about 38 to 41 kilodaltons.
- 8. The isolated nucleic acid molecule according to claim 1, wherein the fagopyritol synthase is from Glycine max.
- 9. The isolated nucleic acid molecule according to claim 8, wherein the nucleic acid molecule has a nucleotide sequence of SEQ ID NO: 7.
- 10. The isolated nucleic acid molecule according to claim 8, wherein the nucleic acid molecule encodes a protein or polypeptide having an amino acid sequence of SEQ ID NO: 8.
- 11. An expression vector comprising transcriptional and translational regulatory nucleotide sequences operably linked to the nucleic acid molecule according to claim 1.
- 12. The expression vector according to claim 11, wherein the nucleic acid molecule is in proper sense orientation and correct reading frame.
- 13. The expression vector according to claim 11, wherein the fagopyritol synthase is from Fagopyrum esculentum.
- 14. The expression vector according to claim 11, wherein the fagopyritol synthase is from Glycine max.
- 15. A host cell transduced with the nucleic acid molecule according to claim 1.
- 16. The host cell according to claim 15, wherein the cell is selected from the group consisting of a bacterial cell, a virus, a yeast cell, an insect cell, a plant cell, and a mammalian cell.
- 17. The host cell according to claim 15, wherein the fagopyritol synthase is from Fagopyrum esculentum.
- 18. The host cell according to claim 15, wherein the fagopyritol synthase is from Glycine max.
- 19. The host cell according to claim 15, wherein the host cell contains an expression vector transformed with the nucleic acid molecule according to claim 1.
- 20. A transgenic plant transformed with the nucleic acid molecule according to claim 1.
- 21. The transgenic plant according to claim 20, wherein the fagopyritol synthase is from Fagopyrum esculentum.
- 22. The transgenic plant according to claim 21, wherein the nucleic acid molecule has a nucleotide sequence selected from the group consisting of SEQ ID NO: 1, SEQ ID NO: 3, and SEQ ID NO: 5.
- 23. The transgenic plant according to claim 21, wherein the nucleic acid sequence is at least 55% similar to either SEQ ID NO: 1, SEQ ID NO: 3, or SEQ ID NO: 5 by basic BLAST using default parameters analysis.
- 24. The transgenic plant according to claim 21, wherein the nucleic acid molecule hybridizes to the nucleotide sequence of SEQ ID NO: 1, SEQ ID NO: 3, or SEQ ID NO: 5 under stringent conditions characterized by a hybridization buffer comprising 5×SSC at a temperature of 55° C.
- 25. The transgenic plant according to claim 21, wherein the nucleic acid molecule encodes a protein or polypeptide comprising an amino acid sequence selected from the group consisting of SEQ ID NO: 2, SEQ ID NO: 4, and SEQ ID NO: 6.
- 26. The transgenic plant according to claim 21, wherein the nucleic acid molecule encodes a protein or polypeptide having a molecular mass of about 38 to 41 kilodaltons.
- 27. The transgenic plant according to claim 20, wherein the fagopyritol synthase is from Glycine max.
- 28. The transgenic plant according to claim 27, wherein the nucleic acid molecule has a nucleotide sequence of SEQ ID NO: 7.
- 29. The transgenic plant according to claim 27, wherein the nucleic acid molecule encodes a protein or polypeptide having an amino acid sequence of SEQ ID NO: 8.
- 30. The transgenic plant according to claim 20, wherein the plant is selected from the group consisting of Gramineae, Liliaceae, Iridaceae, Orchidaceae, Salicaceae, Ranunculaceae, Magnoliaceae, Cruciferae, Rosaceae, Leguminosae, Malvaceae, Umbelliferae, Labiatac, Solanaceae, Cucurbitaceae, Compositae, and Rubiaceae.
- 31. A transgenic plant seed transformed with the nucleic acid molecule according to claim 1.
- 32. The transgenic plant seed according to claim 31, wherein the fagopyritol synthase is from Fagopyrum esculentum.
- 33. The transgenic plant seed according to claim 32, wherein the nucleic acid molecule has a nucleotide sequence selected from the group consisting of SEQ ID NO: 1, SEQ ID NO: 3, and SEQ ID NO: 5.
- 34. The transgenic plant seed according to claim 32, wherein the nucleic acid sequence is at least 55% similar to either SEQ ID NO: 1, SEQ ID NO: 3, or SEQ ID NO: 5 by basic BLAST using default parameters analysis.
- 35. The transgenic plant seed according to claim 32, wherein the nucleic acid molecule hybridizes to the nucleotide sequence of SEQ ID NO: 1, SEQ ID NO: 3, or SEQ ID NO: 5 under stringent conditions characterized by a hybridization buffer comprising 5×SSC at a temperature of 55° C.
- 36. The transgenic plant seed according to claim 32, wherein the nucleic acid molecule encodes a protein or polypeptide comprising an amino acid sequence selected from the group consisting of SEQ ID NO: 2, SEQ ID NO: 4, and SEQ ID NO: 6.
- 37. The transgenic plant seed according to claim 32, wherein the nucleic acid molecule encodes a protein or polypeptide having a molecular mass of about 38 to 41 kilodaltons.
- 38. The transgenic plant seed according to claim 31, wherein the fagopyritol synthase is from Glycine max.
- 39. The transgenic plant seed according to claim 38, wherein the nucleic acid molecule has a nucleotide sequence of SEQ ID NO: 7.
- 40. The transgenic plant seed according to claim 38, wherein the nucleic acid molecule encodes a protein or polypeptide having an amino acid sequence of SEQ ID NO: 8.
- 41. The transgenic plant seed according to claim 31, wherein the plant seed is selected from the group consisting of Gramineae, Liliaceae, Iridaceae, Orchidaceae, Salicaceae, Ranunculaceae, Magnoliaceae, Cruciferae, Rosaceae, Leguminosae, Malvaceae, Umbelliferac, Labiatac, Solanaceae, Cucurbitaceae, Compositae, and Rubiaceae.
- 42. A method for producing a fagopyritol, an insulin mediator, an insulin mediator analogue, an insulin mediator homologue, or an insulin mediator inhibitor comprising:
providing a fagopyritol synthase; providing a substrate comprising a galactosyl donor and a galactosyl acceptor; and combining the fagopyritol synthase with the substrate under conditions effective produce a fagopyritol, an insulin mediator, an insulin mediator analogue, or an insulin mediator homologue.
- 43. The method according to claim 42, wherein the fagopyritol synthase is from Fagopyrum esculentum.
- 44. The method according to claim 43, wherein the nucleic acid molecule has a nucleotide sequence selected from the group consisting of SEQ ID NO: 1, SEQ ID NO: 3, and SEQ ID NO: 5.
- 45. The method according to claim 43, wherein the nucleic acid sequence is at least 55% similar to either SEQ ID NO: 1, SEQ ID NO: 3, or SEQ ID NO: 5 by basic BLAST using default parameters analysis.
- 46. The method according to claim 43, wherein the nucleic acid molecule hybridizes to the nucleotide sequence of SEQ ID NO: 1, SEQ ID NO: 3, or SEQ ID NO: 5 under stringent conditions characterized by a hybridization buffer comprising 5×SSC at a temperature of 55° C.
- 47. The method according to claim 43, wherein the nucleic acid molecule encodes a protein or polypeptide comprising an amino acid sequence selected from the group consisting of SEQ ID NO: 2, SEQ ID NO: 4, and SEQ ID NO: 6.
- 48. The method according to claim 43, wherein the nucleic acid molecule encodes a protein or polypeptide having a molecular mass of about 38 to 41 kilodaltons.
- 49. The method according to claim 42, wherein the fagopyritol synthase is from Glycine max.
- 50. The method according to claim 49, wherein the nucleic acid molecule has a nucleotide sequence of SEQ ID NO: 7.
- 51. The method according to claim 49, wherein the nucleic acid molecule encodes a protein or polypeptide having an amino acid sequence of SEQ ID NO: 8.
- 52. The method according to claim 42, wherein the galactosyl donor is UDP-galactose.
- 53. The method according to claim 42, wherein the galactosyl donor is UDP-galactosamine.
- 54. The method according to claim 42, wherein the galactosyl acceptor is selected from the group consisting of D-chiro-inositol, L-chiro-inositol, myo-inositol, bomesitol, and scyllo-inositol.
- 55. The method according to claim 54, wherein the galactosyl acceptor is D-chiro-inositol.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Patent Application Serial No. 60/379,373, filed May 9, 2002, which is hereby incorporated by reference in its entirety.
Government Interests
[0002] The present invention was developed with support under Cooperative State Research, Education and Extension Service, U.S. Department of Agriculture Project No. NYC-125323. The U.S. Government may have certain rights.
Provisional Applications (1)
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Number |
Date |
Country |
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60379373 |
May 2002 |
US |