Claims
- 1. A mutant Aequorea victoria green fluorescent protein (GFP), with a fluorescence spectrum that is sensitive to redox status, wherein at least one of the residues at position 147 or 149, and at least one of the residues at position 202 or 204, is mutated from the wild-type amino acid to cysteine.
- 2. The mutant GFP of claim 1, selected from the group consisting of GFPs in which:
residue 147 and residue 202 are cysteine; residue 147 and residue 204 are cysteine; residue 149 and residue 202 are cysteine; residue 149 and residue 204 are cysteine; and residues 147, 149, 202 and 204 are each cysteine.
- 3. The mutant GFP of claim 1, further comprising a mutation at position 65.
- 4. The mutant GFP of claim 3, wherein the mutation at position 65 is S65T.
- 5. The mutant GFP of claim 1, wherein the fluorescence spectrum is also pH sensitive.
- 6. The mutant GFP of claim 1, further comprising a mutation at position 48.
- 7. The mutant GFP of claim 6, wherein the mutation at position 48 is C48S.
- 8. The mutant GFP of claim 1, wherein said mutant protein comprises the following mutations compared to wild-type GFP: C48S, S65T, N149C, and S202C.
- 9. The mutant GFP of claim 1, wherein said mutant protein comprises the following mutations compared to wild-type GFP: C48S, S65T, N149C, and Q204C.
- 10. The mutant GFP of claim 1, wherein said mutant protein comprises the following mutations compared to wild-type GFP: C48S, S147C, and Q204C.
- 11. The mutant GFP of claim 1, wherein said mutant protein comprises the following mutations compared to wild-type GFP: C48S, S147C, and S202C.
- 12. The mutant GFP of claim 1, wherein said mutant protein comprises the following mutations compared to wild-type GFP: C48S, S65T, S147C, N149C, S202C, and Q204C.
- 13. The mutant GFP of claim 1, wherein said mutant protein comprises the following mutations compared to wild-type GFP: C48S, S147C, N149C, S202C, and Q204C.
- 14. An isolated nucleic acid molecule encoding the mutant GFP of claim 1.
- 15. An isolated nucleic acid molecule encoding the mutant GFP of any one of claims 2-13
- 16. The isolated nucleic acid molecule of claim 14, comprising an expression control sequence.
- 17. A recombinant nucleic acid comprising the nucleic acid molecule of claim 14 functionally linked to a promoter.
- 18. A host cell comprising a nucleic acid according to claim 14.
- 19 The host cell of claim 18 wherein the host cell is a bacterial cell, a plant cell, or an animal cell.
- 20. The host cell of claim 18 wherein said host cell is a mammalian cell.
- 21. A method of analyzing an oxidation-reduction condition of or in a cell comprising:
expressing the mutant GFP of claim 1 in the cell; and measuring a fluorescence signal from the mutant GFP.
- 23. The method of claim 21, wherein the mutant GFP is expressed as a fusion protein
- 24. The method of claim 21, further comprising analyzing a pH condition of or in the cell using the mutant GFP.
- 25. The mutant GFP of claim 1, comprising an amino acid sequence as shown in SEQ ID NO: 3, SEQ ID NO: 5, SEQ ID NO: 7, SEQ ID NO; 9, SEQ ID NO: 11, or SEQ ID NO: 13.
STATEMENT REGARDING GOVERNMENT FUNDING
[0001] Aspects of the research leading to this disclosure were supported by the following government agencies under the identified grants: National Institutes of Health Training Grant for GTH I/D Serial No.: GM07759-22; and National Institutes of Health Grant I/D Serial No.: GM42618-10. The government may have certain rights in this invention.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US02/07374 |
3/11/2002 |
WO |
|
Provisional Applications (3)
|
Number |
Date |
Country |
|
60275200 |
Mar 2001 |
US |
|
60293427 |
May 2001 |
US |
|
60302894 |
Jul 2001 |
US |