Claims
- 1. A method of making a chimeric zinc finger protein that binds to adjacent target sites, the method comprising the steps of:
(i) selecting a first and a second DNA-binding domain polypeptide of the chimeric zinc finger protein, wherein at least one of the domains comprises a zinc finger polypeptide, and wherein the first domain binds to a first target site and the second domain binds to a second target site, which target sites are adjacent; (ii) using structure-based design to determine the physical separation between the first and second domains when they are individually bound to the first and second target sites; (iii) selecting a flexible linker that is at least 1-2 Å longer than the physical separation between the first and second domains; and (iv) fusing the first and second domains with the flexible linker, thereby making a chimeric zinc finger protein that binds to adjacent target sites.
- 2. The method of claim 1, wherein the flexible linker is at least five amino acids in length.
- 3. The method of claim 1, wherein the flexible linker is at least 8 amino acids in length.
- 4. The method of claim 3, wherein the flexible linker has the amino acid sequence RQKDGERP.
- 5. The method of claim 1, wherein the flexible linker is at least 11 amino acids in length.
- 6. The method of claim 5, wherein the flexible linker has the amino acid sequence RQKDGGGSERP.
- 7. The method of claim 1, wherein the adjacent target sites are separated by at least one nucleotide.
- 8. The method of claim 1, wherein the adjacent target sites are separated by at least two nucleotides.
- 9. The method of claim 1, wherein the first and the second domains are zinc finger polypeptides.
- 10. The method of claim 9, wherein the zinc finger polypeptide is selected from the group consisting of Zif268 and NRE.
- 11. The method of claim 9, wherein the zinc finger polypeptides are heterologous.
- 12. The method of claim 9, wherein the chimeric zinc finger protein has femtomolar affinity for the adjacent target sites.
- 13. The method of claim 12, wherein the chimeric zinc finger protein has about 2-4 femtomolar affinity for the adjacent target sites.
- 14. The method of claim 1, wherein the first domain is a zinc finger polypeptide and the second domain comprises a heterologous DNA-binding domain polypeptide.
- 15. The method of claim 1, wherein the chimeric zinc finger protein further comprises a regulatory domain polypeptide.
- 16. A method of making a chimeric zinc finger protein that binds to adjacent target sites, the method comprising the steps of:
(i) selecting a first and a second DNA-binding domain polypeptide of the chimeric zinc finger protein, wherein at least one of the domains comprises a zinc finger polypeptide, and wherein the first domain binds to a first target site and the second domain binds to a second target site, which target sites are adjacent; (ii) selecting a flexible linker that is five or more amino acids in length; and (iv) fusing the first and second domains with the flexible linker, thereby making a chimeric zinc finger protein that binds to adjacent target sites.
- 17. The method of claim 16, wherein the adjacent target sites are separated by zero nucleotides and the flexible linker is five or six amino acids in length.
- 18. The method of claim 16, wherein the adjacent target sites are separated by one nucleotide and the flexible linker is seven, eight, or nine amino acids in length.
- 19. The method of claim 18, wherein the flexible linker has the amino acid sequence RQKDGERP.
- 20. The method of claim 16, wherein the adjacent target sites are separated by two nucleotides and the flexible linker is ten, eleven, or twelve amino acids in length.
- 21. The method of claim 20, wherein the flexible linker has the amino acid sequence RQKDGGGSERP.
- 22. The method of claim 16, wherein the adjacent target sites are separated by three nucleotides and the flexible linker is twelve or more amino acids in length.
- 23. The method of claim 16, wherein the first and the second domains are zinc finger polypeptides.
- 24. The method of claim 23, wherein the zinc finger polypeptide is selected from the group consisting of Zif268 and NRE.
- 25. The method of claim 23, wherein the zinc finger polypeptides are heterologous.
- 26. The method of claim 23, wherein the chimeric zinc finger protein has femtomolar affinity for the adjacent target sites.
- 27. The method of claim 25, wherein the chimeric zinc finger protein has about 2-4 femtomolar affinity for the adjacent target sites.
- 28. The method of claim 16, wherein the first domain is a zinc finger polypeptide and the second domain comprises a heterologous DNA-binding domain polypeptide.
- 29. The method of claim 16, wherein the chimeric zinc finger protein further comprises a regulatory domain polypeptide.
- 30. A chimeric zinc finger protein that binds to adjacent target sites, the chimeric zinc finger protein comprising:
(i) a first and a second DNA-binding domain polypeptide of the chimeric zinc finger protein, wherein at least one of the domains comprises a zinc finger polypeptide, and wherein the first domain binds to a first target site and the second domain binds to a second target site, which target sites are adjacent; and (ii) a flexible linker that is at least 1-2 Å longer than the physical separation between the first and second domains when they are individually bound to the first and second target sites, as determined by structure-based modeling; wherein the first and second domains are fused with the flexible linker.
- 31. The chimeric zinc finger protein of claim 30, wherein the flexible linker is at least five amino acids in length.
- 32. The chimeric zinc finger protein of claim 30, wherein the flexible linker is at least 8 amino acids in length.
- 33. The chimeric zinc finger protein of claim 32, wherein the linker has the amino acid sequence RQKDGERP.
- 34. The chimeric zinc finger protein of claim 30, wherein the flexible linker is at least 11 amino acids in length.
- 35. The chimeric zinc finger protein of claim 34, wherein the linker has the amino acid sequence RQKDGGGSERP.
- 36. The chimeric zinc finger protein of claim 30, wherein the first and the second domains are zinc finger polypeptides.
- 37. The chimeric zinc finger protein of claim 36, wherein the zinc finger polypeptide is selected from the group consisting of Zif268 and NRE.
- 38. The chimeric zinc finger protein of claim 36, wherein the zinc finger polypeptides are heterologous.
- 39. The chimeric zinc finger protein of claim 36, wherein the chimeric zinc finger protein has femtomolar affinity for the adjacent target sites.
- 40. The chimeric zinc finger protein of claim 39, wherein the chimeric zinc finger protein has about 2-4 femtomolar affinity for the adjacent target sites.
- 41. The chimeric zinc finger protein of claim 30, wherein the first domain is a zinc finger polypeptide and the second domain comprises a heterologous DNA-binding domain polypeptide.
- 42. The chimeric zinc finger protein of claim 30, wherein the chimeric zinc finger protein further comprises a regulatory domain polypeptide.
- 43. An isolated nucleic acid encoding the chimeric zinc finger protein of claim 30.
- 44. A chimeric zinc finger protein that binds to adjacent target sites, the chimeric zinc finger protein comprising:
(i) a first and a second DNA-binding domain polypeptide of the chimeric zinc finger protein, wherein at least one of the domains comprises a zinc finger polypeptide, and wherein the first domain binds to a first target site and the second domain binds to a second target site, which target sites are adjacent; and (ii) a flexible linker that is five or more amino acids in length; wherein the first and second domains are fused with the flexible linker.
- 45. The chimeric zinc finger protein of claim 44, wherein the adjacent target sites are separated by zero nucleotides and the flexible linker is five or six amino acids in length.
- 46. The chimeric zinc finger protein of claim 44, wherein the adjacent target sites are separated by one nucleotide and the flexible linker is seven, eight, or nine amino acids in length.
- 47. The chimeric zinc finger protein of claim 46, wherein the flexible linker has the amino acid sequence RQKDGERP.
- 48. The chimeric zinc finger protein of claim 44, wherein the adjacent target sites are separated by two nucleotides and the flexible linker is ten, eleven, or twelve amino acids in length.
- 49. The chimeric zinc finger protein of claim 48, wherein the flexible linker has the amino acid sequence RQKDGGGSERP.
- 50. The chimeric zinc finger protein of claim 44, wherein the adjacent target sites are separated by three nucleotides and the flexible linker is twelve or more amino acids in length.
- 51. The chimeric zinc finger protein of claim 44, wherein the first and the second domains are zinc finger polypeptides.
- 52. The chimeric zinc finger protein of claim 51, wherein the zinc finger polypeptide is selected from the group consisting of Zif268 and NRE.
- 53. The chimeric zinc finger protein of claim 51, wherein the zinc finger polypeptides are heterologous.
- 54. The chimeric zinc finger protein of claim 51, wherein the chimeric zinc finger protein has femtomolar affinity for the adjacent target sites.
- 55. The chimeric zinc finger protein of claim 54, wherein the chimeric zinc finger protein has about 2-4 femtomolar affinity for the adjacent target sites.
- 56. The chimeric zinc finger protein of claim 44, wherein the first domain is a zinc finger polypeptide and the second domain comprises a heterologous DNA-binding domain polypeptide.
- 57. The chimeric zinc finger protein of claim 44, wherein the chimeric zinc finger protein further comprises a regulatory domain polypeptide.
- 58. An isolated nucleic acid encoding the chimeric zinc finger protein of claim 44.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application claims priority from U.S. Ser. No. 60/076,454, filed Mar. 2, 1998, herein incorporated by reference in its entirety.
STATEMENT AS TO INVENTIONS MADE UNDER FEDERALLY SPONSORED RESEARCH AND DEVELOPMENT
[0002] Work described herein was supported by grants PO1-CA42063, CDR-8803014 and P30-CA14051 from the National Institutes of Health, National Science Foundation and National Cancer Institute, respectively. The U.S. Government has certain rights in the invention. Work described herein was also supported by the Howard Hughes Medical Institute.
Provisional Applications (1)
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Number |
Date |
Country |
|
60076454 |
Mar 1998 |
US |
Continuations (1)
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Number |
Date |
Country |
Parent |
09260629 |
Mar 1999 |
US |
Child |
10146221 |
May 2002 |
US |