Claims
- 1. An isolated enzyme comprising a variant of a parent galactose oxidase,
the parent having at least 70% sequence identity to SEQ ID NO:2, and the variant having a mutation in at least one amino acid residue positioned no more than 15 Å from a metal ion in the catalytic center of the parent, and an improved ability to oxidize D-glucose or a D-glucose derivative as compared to the parent.
- 2. The enzyme of claim 1, wherein the parent galactose oxidase is a Fusarium galactose oxidase.
- 3. The enzyme of claim 1, wherein the amino acid residue is positioned no more than 10 Å from a metal ion in the catalytic center of the parent.
- 4. The enzyme of claim 1, wherein the amino acid residue is positioned no more than 7 Å from a metal ion in the catalytic center of the parent.
- 5. The enzyme of claim 1, wherein the amino acid residue is an amino acid residue corresponding to a member of the group consisting of R330, Q406, W290, and Y329.
- 6. The enzyme of claim 5, wherein the mutation is a member of the group consisting of R330K, Q406S, Q406T, W290F, and Y329R.
- 7. The enzyme of claim 6, further comprising at least one mutation corresponding to a member of the group consisting of V494A, S10P, M70V, G195E, and N535D.
- 8. The enzyme of claim 1, wherein the improved ability to oxidize D-glucose is a higher activity for oxidizing the 6-hydroxyl group of D-glucose.
- 9. The enzyme of claim 1, having at least a 10-fold higher capability to oxidize D-glucose than the parent enzyme.
- 10. The enzyme of claim 1, having at least a 50-fold higher capability to oxidize D-glucose than the parent enzyme.
- 11. The enzyme of claim 1, having at least a 100-fold higher capability to oxidize D-glucose than the parent enzyme.
- 12. The enzyme of claim 6, having at least a 10-fold higher capability to oxidize D-glucose than the parent enzyme.
- 13. The enzyme of claim 6, having at least a 50-fold higher capability to oxidize D-glucose than the parent enzyme.
- 14. The enzyme of claim 6, having at least a 100-fold higher capability to oxidize D-glucose than the parent enzyme.
- 15. An isolated enzyme comprising a variant of a parent galactose oxidase,
the parent having at least 70% sequence identity to SEQ ID NO:2, and the variant having a mutation in at least one amino acid residue positioned no more than 15 Å from a metal ion in the catalytic center of the parent, and an improved ability to oxidize a secondary alcohol-group as compared to the parent.
- 16. The enzyme of claim 15, wherein the parent galactose oxidase is a Fusarium galactose oxidase.
- 17. The enzyme of claim 15, wherein the amino acid residue is positioned no more than 10 Å from a metal ion in the catalytic center of the parent.
- 18. The enzyme of claim 15, wherein the amino acid residue is positioned no more than 7 Å from a metal ion in the catalytic center of the parent.
- 19. The enzyme of claim 16, wherein the amino acid residue corresponds to a member of the group consisting of R330, Q406, W290, and Y329.
- 20. The enzyme of claim 19, wherein the mutation is a member of the group consisting of R330K, Q406S, Q406T, W290F, and Y329R.
- 21. The enzyme of claim 19, further comprising at least one mutation corresponding to a member of the group consisting of V494A, S10P, M70V, G195E, and N535D.
- 22. The enzyme of claim 16, wherein the secondary alcohol is an alcohol substituent of a substrate selected from the group consisting of 4-pyridylcarbinol, 2-propanol, 2-buten-2-ol, 2-octanol and 3,3 dimethyl 2-butanol.
- 23. A method of producing a glucose-6 oxidase comprising the steps of:
(a) constructing a library of variants of a parent galactose oxidase; and (b) selecting any variant having improved glucose-6 oxidation activity as compared to the parent galactose oxidase, wherein the library comprises variants having different mutations in a first amino acid residue positioned no more than 15 Å from a metal ion in the catalytic center of the parent galactose oxidase.
- 24. The method of claim 23, wherein the library is produced by saturation mutagenesis.
- 25. The method of claim 23, wherein the parent galactose oxidase has at least 70% sequence identity to SEQ ID NO:2.
- 26. The method of claim 23, wherein the parent galactose oxidase has at least 80% sequence identity to SEQ ID NO:2.
- 27. The method of claim 26, wherein the parent galactose oxidase has at least 90% sequence identity to SEQ ID NO:2.
- 28. The method of claim 23, wherein the first amino acid residue is positioned no more than 10 Å from the metal ion.
- 29. The method of claim 23, wherein the first amino acid residue is positioned no more than 7 Å from the metal ion.
- 30. The method of claim 23, wherein the first amino acid residue corresponds to an amino acid residue of Fusarium GAO selected from R330, Q406, F464, W290, and Y329.
- 31. The method of claim 23, further comprising recombining a selected first variant having a mutation in the first amino acid residue with a second variant of the parent galactose oxidase having a mutation in a second amino acid residue.
- 32. The method of claim 31, wherein the second variant has improved glucose-6 oxidation activity as compared to the parent galactose oxidase.
- 33. The method of claim 23, comprising selecting any variant having at least 10 times the glucose-6 oxidation activity of the parent galactose oxidase.
- 34. The method of claim 23, comprising selecting any variant having at least 100 times the glucose-6 oxidation activity of the parent galactose oxidase.
- 35. The method of claim 31, wherein the first and second amino acid residues correspond to Fusarium GAO amino acid residues which are members of the group consisting of R330, Q406, F464, W290, and Y329.
Parent Case Info
[0001] This application claims priority under 35 U.S.C. §119(e) to U.S. provisional patent applications No. 60/359,878, filed Feb. 27, 2002, and No. 60/400,417, filed Aug. 1, 2002, each of which is hereby incorporated by reference in its entirety.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60359878 |
Feb 2002 |
US |
|
60400417 |
Aug 2002 |
US |