Claims
- 1. A nucleic acid which comprises a polynucleotide that encodes a fusion polypeptide, wherein the fusion polypeptide comprises:
a) a catalytic domain of a glycosyltransferase; and b) a catalytic domain of an accessory enzyme which catalyzes a step in the formation of a nucleotide sugar which is a saccharide donor for the glycosyltransferase.
- 2. The nucleic acid of claim 1, wherein the glycosyltransferase is a eukaryotic glycosyltransferase.
- 3. The nucleic acid of claim 1, wherein the accessory enzyme is a eukaryotic accessory enzyme.
- 4. The method of claim 2, wherein the catalytic domain of the glycosyltransferase substantially lacks one or more of a cytoplasmic domain, a signal-anchor domain, and a stem region of the glycosyltransferase.
- 5. The nucleic acid of claim 1, wherein the glycosyltransferase is a prokaryotic glycosyltransferase.
- 6. The nucleic acid of claim 1, wherein the accessory enzyme is a prokaryotic accessory enzyme.
- 7. The nucleic acid of claim 1, wherein the fusion polypeptide further comprises a catalytic domain of a second accessory enzyme.
- 8. The nucleic acid of claim 1, wherein the glycosyltransferase is selected from the group consisting of sialyltransferases, N-acetylglucosaminyltransferases, N-acetylgalactosaminyltransferases, fucosyltransferases, galactosyltransferases, glucosyltransferases, glucuronosyltransferases, xylosyltransferases, and mannosyltransferases.
- 9. The nucleic acid of claim 1, wherein the accessory enzyme is selected from the group consisting of:
a GDP-mannose dehydratase, a GDP-mannose 3,5-epimerase, and a GDP-mannose 4-reductase; a UDP-glucose 4′ epimerase; a UDP-GalNAc 4′ epimerase; a CMP-sialic acid synthetase; a neuraminic acid aldolase; an N-acetylglucosamine 2′ epimerase; a phosphate kinase selected from the group consisting of a pyruvate kinase, a myokinase, a creatine phosphate kinase, an acetyl phosphate kinase, and a polyphosphate kinase; and a pyrophosphorylase selected from the group consisting of a UDP-Glc pyrophosphorylase, a UDP-Gal pyrophosphorylase, a UDP-GalNAc pyrophosphorylase, a GDP-mannose pyrophosphorylase, a GDP-fucose pyrophosphorylase, and a UDP-GlcNAc pyrophosphorylase.
- 10. The nucleic acid of claim 1, wherein the nucleotide sugar is selected from the group consisting of GDP-Man, UDP-Glc, UDP-Gal, UDP-GlcNAc, UDP-GalNAc, CMP-sialic acid, GDP-Fuc, and UDP-xylose.
- 11. The nucleic acid of claim 1, wherein the glycosyltransferase is a sialyltransferase and the nucleotide sugar is CMP-sialic acid.
- 12. The nucleic acid of claim 11, wherein the accessory enzyme is a CMP-sialic acid synthetase.
- 13. The nucleic acid of claim 11, wherein the accessory enzyme is a neuraminic acid aldolase or an N-acetylglucosamine 2′ epimerase.
- 14. The nucleic acid of claim 1, wherein the glycosyltransferase is a galactosyltransferase and the nucleotide sugar is UDP-galactose.
- 15. The nucleic acid of claim 14, wherein the accessory enzyme is a UDP-glucose 4′ epimerase.
- 16. The nucleic acid of claim 1, wherein the glycosyltransferase is a fucosyltransferase and the nucleotide sugar is GDP-fucose.
- 17. The nucleic acid of claim 16, wherein the accessory enzyme is selected from the group consisting of a GDP-mannose dehydratase, a GDP-mannose 3,5-epimerase, a GDP-fucose pyrophosphorylase, and a GDP-mannose 4-reductase.
- 18. The nucleic acid of claim 1, wherein the glycosyltransferase is an N-acetylgalactosaminyltransferase and the nucleotide sugar is UDP-GalNAc.
- 19. The nucleic acid of claim 18, wherein the accessory enzyme is a UDP-GalNAc 4′ epimerase.
- 20. The nucleic acid of claim 1, wherein the glycosyltransferase is an N-acetylglucosaminyltransferase and the nucleotide sugar is UDP-GlcNAc.
- 21. The nucleic acid of claim 20, wherein the accessory enzyme is a UDP-GalNAc 4′ epimerase.
- 22. The nucleic acid of claim 1, wherein the glycosyltransferase is a mannosyltransferase and the nucleotide sugar is GDP-Man.
- 23. The nucleic acid of claim 1, wherein the fusion polypeptide further comprises a linker peptide between the glycosyltransferase catalytic domain and the accessory enzyme catalytic domain.
- 24. The nucleic acid of claim 1, wherein the nucleic acid further comprises a polynucleotide that encodes a signal sequence which is linked to the fusion polypeptide.
- 25. The nucleic acid of claim 1, wherein the nucleic acid further comprises a polynucleotide that encodes a molecular tag which is linked to the fusion polypeptide.
- 26. An expression vector which comprises a nucleic acid of claim 1.
- 27. A host cell which comprises a nucleic acid of claim 1.
- 28. A fusion polypeptide encoded by a nucleic acid of claim 1.
- 29. A fusion polypeptide that comprises:
a) a catalytic domain of a glycosyltransferase; and b) a catalytic domain of an accessory enzyme which catalyzes a step in the formation of a nucleotide sugar which is a donor for the glycosyltransferase.
- 30. The fusion polypeptide of claim 29, wherein the catalytic domain of the glycosyltransferase is joined to the carboxy terminus of the accessory enzyme catalytic domain.
- 31. The fusion polypeptide of claim 29, wherein the glycosyltransferase is a galactosyltransferase and the accessory enzyme is a UDP-glucose 4′ epimerase.
- 32. The fusion polypeptide of claim 29, wherein the glycosyltransferase is a sialyltransferase and the accessory enzyme is a CMP-sialic acid synthetase.
- 33. A method of producing a fusion polypeptide that comprises:
a) a catalytic domain of a glycosyltransferase; and b) a catalytic domain of an accessory enzyme which catalyzes a step in the formation of a nucleotide sugar which is a donor for the glycosyltransferase; wherein the method comprises introducing a nucleic acid that encodes the fusion polypeptide into a host cell to produce a transformed host cell; and culturing the transformed host cell under conditions appropriate for expressing the fusion polypeptide.
- 34. The method of claim 33, wherein the fusion polypeptide is purified following its expression.
- 35. The method of claim 33, wherein the host cell is permeabilized following expression of the fusion polypeptide.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of, and claims benefit of, U.S. Provisional Application No. 60/069,443, filed Dec. 15, 1997, which application is incorporated herein by reference for all purposes.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60069443 |
Dec 1997 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09211691 |
Dec 1998 |
US |
Child |
10317773 |
Dec 2002 |
US |