Claims
- 1. An engineered optical probe for measuring a post-translational type modification, activity comprising:
a polypeptide comprising a first fluorescent moiety attached to the N or C terminus of said polypeptide, wherein said polypeptide comprises a recognition motif for a post-translational modification within said polypeptide, and a protease site located within said polypeptide; and wherein post translational type modification of said recognition motif modulates the rate of cleavage of said polypeptide by a protease with specificity for said protease site and said polypeptide is a non-naturally occurring polypeptide and said first fluorescent moiety permits detection of a polypeptide fragment.
- 2. The engineered optical probe of claim 1, wherein said polypeptide further comprises a second fluorescent moiety attached to said polypeptide, wherein said recognition motif and said protease site are located within said polypeptide between said first fluorescent moiety and said second fluorescent moiety.
- 3. The engineered optical probe of claim 1, wherein said polypeptide further comprises a luminescent moiety attached to said polypeptide, wherein said recognition motif and said protease site are located within said polypeptide between said first fluorescent moiety and said luminescent moiety.
- 4. The engineered optical probe of claim 1, wherein said polypeptide further comprises a quencher moiety attached to said polypeptide, wherein said recognition motif and said protease site are located within said polypeptide between said first fluorescent moiety and said quencher moiety.
- 5. The engineered fluorescent protein of claim 1, wherein said recognition motif is an engineered recognition motif.
- 6. The engineered fluorescent protein of claim 1, wherein said protease site is an engineered protease site.
- 7. The engineered optical probe of claim 1, wherein said polypeptide does not exceed 15 amino acids in length.
- 8. The engineered optical probe of claim 1, wherein said polypeptide does not exceed 50 amino acids in length.
- 9. The engineered optical probe of claim 5, wherein said polypeptide further comprises a quencher moiety, wherein said engineered recognition motif and said protease site are located within said polypeptide between said first fluorescent moiety and said quencher moiety.
- 10. The engineered optical probe of claim 5, wherein said polypeptide further comprises a second fluorescent moiety attached to said polypeptide, wherein said engineered recognition motif and said protease site are located within said polypeptide between said first fluorescent moiety and said second fluorescent moiety.
- 11. The engineered optical probe of claim 5, wherein said polypeptide further comprises a luminescent moiety attached to said polypeptide, wherein said engineered recognition motif and said protease site are located within said polypeptide between said first fluorescent moiety and said luminescent moiety.
- 12. The engineered optical probe of claim 10, wherein said post-translational type modification on is phosphorylation or dephosphorylation.
- 13. The engineered optical probe of claims 10, wherein said first fluorescent moiety comprises a first fluorescent protein or homolog thereof.
- 14. The engineered optical probe of claim 12, wherein said phosphorylation or dephosphorylation is phosphorylation a tyrosine kinase activity or dephosphorylation by a protein tyrosine phosphatase activity.
- 15. The engineered optical probe of claim 12, wherein said phosphorylation or said dephosphorylation is by a protein serine or threonine kinase activity or dephosphorylation by protein serine or threonine phosphatase activity.
- 16. The engineered optical probe of claim 12, wherein said phosphorylation or said dephosphorylation occurs at the P′1 position with respect to said protease.
- 17. The engineered optical probe of claim 12, wherein said phosphorylation or said dephosphorylation occurs at the P′2 position with respect to said protease.
- 18. The engineered optical probe of claim 13, wherein said fluorescent protein is an Aequorea green fluorescent protein.
- 19. A library of engineered optical probes comprising at least 5 different members, wherein each member of said library of engineered optical probes comprises,
i) a polypeptide comprising a recognition motif for a post-translational type modification within said polypeptide, and a protease site located within said polypeptide; ii) a first fluorescent moiety attached to the N or C terminus of said polypeptide, wherein post translational type modification of said recognition motif modulates the rate of cleavage of said polypeptide by a protease with specificity for said protease site, and wherein said recognition motif for said post-translational type modification is a preferred substrate for a defined sub-class or sub-family of post-translational enzyme activities.
- 20. The library of engineered optical probes of claim 19, wherein said library comprises at least 100 different members.
- 21. The library of engineered optical probes of claim 19, wherein said engineered optical probe further comprises a second fluorescent moiety attached to said polypeptide, wherein said recognition motif and said protease site are located within said polypeptide between said first fluorescent moiety and said second fluorescent moiety.
- 22. The library of engineered optical probes of claim 19, wherein said engineered optical probe further comprises a luminescent moiety attached to said polypeptide, wherein said recognition motif and said protease site are located within said polypeptide between said first fluorescent moiety and said luminescent moiety.
- 23. The library of engineered optical probes of claim 19, wherein said engineered optical probe further comprises a quencher moiety attached to said polypeptide, wherein said recognition motif and said protease site are located within said polypeptide between said first fluorescent moiety and said quencher moiety.
- 24. The library of engineered optical probes of claim 19, wherein said recognition motif is an engineered recognition motif.
- 25. The library of engineered optical probes of claim 19, wherein said protease site is an engineered protease site.
- 26. The library of engineered optical probes of claim 19, wherein said polypeptide does not exceed 15 amino acids in length.
- 27. The library of engineered optical probes of claim 19, wherein said polypeptide does not exceed 50 amino acids in length.
- 28. The library of engineered optical probes of claim 19, wherein said post-translational type modification is protein kinase mediated phosphorylation.
- 29. The library of engineered optical probes of claim 19, wherein said post-translational type modification is protein phosphatase mediated dephosphorylation.
- 30. The library of engineered optical probes of claim 28, wherein said protein kinase is a tyrosine kinase.
- 31. The library of engineered optical probes of claim 28, wherein said protein kinase is a serine or threonine kinase.
- 32. The library of engineered optical probes of claim 29, wherein said protein phosphatase is a tyrosine phosphatase activity.
- 33. The library of engineered optical probes of claim 29, wherein said protein phosphatase is a serine or threonine protein phosphatase.
- 34. The library of engineered optical probes of claim 19, wherein said library comprises at least one preferred recognition motif for a protein tyrosine kinase selected from the group consisting of PTK group 1 and PTK group 2 of Table 1.
- 35. The library of engineered optical probes of claim 34, wherein said library comprises at least one preferred recognition motif for a protein tyrosine kinase selected from the group consisting of PTK subgroup 1, PTK subgroup 2, PTK subgroup 3, PTK subgroup 4, PTK subgroup 5, PTK subgroup 6, PTK subgroup 7, PTK subgroup 8 and PTK subgroup 9 of Table 1.
- 36. The library of engineered optical probes of claim 34, wherein said library comprises at least one preferred recognition motif for a protein tyrosine kinase selected from the group consisting of PTK subgroup 10, PTK subgroup 11, PTK subgroup 12, PTK subgroup 13, PTK subgroup 14, PTK subgroup 15, PTK subgroup 16, PTK subgroup 17, PTK subgroup 18, PTK subgroup 19, PTK subgroup 20, PTK subgroup 21, PTK subgroup 22 and PTK subgroup 23 of Table 1.
- 37. The library of engineered optical probes of claim 31, wherein said library comprises at least one preferred recognition motif for a protein serine/threonine kinase selected from the group consisting of the AGC group, the CaMK group, the CMGC group and the OPK group of Table 1.
- 38. The library of engineered optical probes of claim 37, wherein said library comprises at least one preferred recognition motif for a protein serine/threonine kinase selected from the group consisting of AGC subgroup 1, AGC subgroup 2, AGC subgroup 3, AGC subgroup 4, AGC subgroup 5, AGC subgroup 6, AGC subgroup 7, AGC subgroup 8 and AGC subgroup 9.
- 39. The library of engineered optical probes of claim 37, wherein said library comprises at least one preferred recognition motif for a protein serine/threonine kinase selected from the group consisting of CaMK subgroup 1 and CaMK subgroup 2.
- 40. The library of engineered optical probes of claim 37, wherein said library comprises at least one preferred recognition motif for a protein serine/threonine kinase selected from the group consisting of CMGC subgroup 1, CMGC subgroup 2, CMGC subgroup 3, CMGC subgroup 4, CMGC subgroup 5 and CMGC subgroup 6.
- 41. The library of engineered optical probes of claim 37, wherein said library comprises at least one preferred recognition motif for a protein kinase selected from the group consisting of OPK subgroup 1, OPK subgroup 2, OPK subgroup 3, OPK subgroup 4, OPK subgroup 5, OPK subgroup 6, OPK subgroup 7, OPK subgroup 8, OPK subgroup 9, OPK subgroup 10, OPK subgroup 11, OPK subgroup 12, OPK subgroup 13 and OPK subgroup 14.
- 42. A system for spectroscopic measurements, comprising:
at least one reagent for an assay and a device, said device comprising a container and a platform, wherein said container comprises
a) an optical probe, comprising: a first probe moiety attached to a polypeptide,
wherein said polypeptide comprises a recognition motif for a post-translational modification activity, and a protease site located within said polypeptide; and wherein post translational type modification of said recognition motif within said polypeptide by said post-translational modification activity modulates the rate of a protease with specificity for said protease site to cleave said polypeptide, b) a sample, c) a protease with specificity for said protease site.
- 43. The system of claim 42, wherein said container comprises a multiwell plate.
- 44. The system of claim 42, wherein said system further comprises a detector for detecting at least one optical property of said optical probe.
- 45. The system of claim 44, wherein said first probe moiety comprises a first fluorescent moiety.
- 46. The system of claim 45, wherein said optical probe further comprises a second fluorescent moiety attached to said polypeptide, wherein said recognition motif and said protease site are located within said polypeptide between said first fluorescent moiety and said second fluorescent moiety.
- 47. The system of claim 45, wherein said optical probe further comprises a luminescent moiety attached to said polypeptide, wherein said recognition motif and said protease site are located within said polypeptide between said first fluorescent moiety and said luminescent moiety.
- 48. The system of claim 45, wherein said optical probe further comprises, a quencher moiety attached to said polypeptide, wherein said recognition motif and said protease site are located within said polypeptide between said first fluorescent moiety and said quencher moiety.
- 49. The system of claim 45, wherein said optical probe further comprises a bead attached to said polypeptide, wherein said recognition motif and said protease site are located within said polypeptide between said first fluorescent moiety and said bead.
- 50. The system of claim 44, wherein said optical property is fluorescence emission.
- 51. The system of claim 44, wherein said optical property is fluorescence anisotropy.
- 52. The system of claim 44, wherein said post-translational modification activity is protein kinase mediated phosphorylation.
- 53. The system of claim 44, wherein said post-translational modification activity is protein phosphatase mediated dephosphorylation.
- 54. The system of claim 52, wherein said protein kinase is a tyrosine kinase.
- 55. The system of claim 52, wherein said protein kinase is a serine or threonine kinase.
- 56. The system of claim 53, wherein said protein phosphatase is a tyrosine phosphatase activity.
- 57. The system of claim 53, wherein said protein phosphatase is a serine or threonine protein phosphatase.
RELATED APPLICATIONS
[0001] This application is a continuation of application U.S. Ser. No. 09/306,542, filed May 5, 1999, now allowed, the entire contents of which are hereby incorporated by reference herein.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09306542 |
May 1999 |
US |
Child |
10105735 |
Mar 2002 |
US |