Claims
- 1. A composition comprising a purified polypeptide, wherein said composition has the functional characteristics to bind calcium ions and to permit a measureable energy, said energy depending of the quantity of calcium bound and of the quantity of polypeptides in said composition in absence of any light excitation.
- 2. A purified polypeptide having the amino acid sequence of SEQ ID NO: 1.
- 3. A purified polypeptide having the amino acid sequence of SEQ ID NO: 2.
- 4. A purified polypeptide having the amino acid sequence of SEQ ID NO: 3.
- 5. A purified polypeptide having the amino acid sequence of SEQ ID NO: 4.
- 6. A purified polypeptide having the amino acid sequence of SEQ ID NO: 5.
- 7. A purified polypeptide having the amino acid sequence of SEQ ID NO: 6.
- 8. A purified polynucleotide having the sequence of SEQ ID NO: 7.
- 9. A purified polynucleotide having the sequence of SEQ ID NO: 8.
- 10. A purified polynucleotide having the sequence of SEQ ID NO: 9.
- 11. A purified polynucleotide having the sequence of SEQ ID NO: 10.
- 12. A purified polynucleotide having the sequence of SEQ ID NO: 11.
- 13. A purified polynucleotide having the sequence of SEQ ID NO: 12.
- 14. A polynucleotide linker having the polynucleotide sequence of SEQ ID No: 13.
- 15. A polynucleotide linker having the polynucleotide sequence of SEQ ID No: 14.
- 16. A polynucleotide linker having the polynucleotide sequence of SEQ ID No:15.
- 17. A polynucleotide linker having the polynucleotide sequence of SEQ ID No: 16.
- 18. A polynucleotide linker having the polynucleotide sequence of SEQ ID No: 17.
- 19. A polynucleotide linker according to any one of claims 14 to 18 having the function after translation to approach a donor site to an acceptor site in optimal conditions to permit a direct transfer of energy by Chemiluminescence Resonance Energy Transfer (CRET) in a purified polypeptide according to claim 1.
- 20. A peptidic linker of at least 5 amino acids and comprising the amino acid sequence of SEQ ID No: 18.
- 21. A peptidic linker of at least 5 amino acids and comprising the amino acid sequence of SEQ ID No: 19.
- 22. A peptidic linker of at least 5 amino acids and comprising the amino acid sequence of SEQ ID No: 20.
- 23. A peptidic linker of at least 5 amino acids and comprising the amino acid sequence of SEQ ID No: 21.
- 24. A peptidic linker of at least 5 amino acids and comprising the amino acid sequence of SEQ ID No: 22.
- 25. A peptide linker having the function to approach a donor site to an acceptor site in optimal conditions to permit a direct transfer of energy by chemiluminescence in a purified polypeptide according to claims 2 to 7.
- 26. A peptide linker according to any one of claims 20 to 25, having the function to approach a donor site to an acceptor site in optimal conditions to permit a direct transfer of energy in the presence of a purified polypeptide according to claim 1.
- 27. A peptide linker according to any one of claims 20 to 26, which has the capacity to stabilize a modified bioluminescent system in vivo and/or in vitro.
- 28. A modified bioluminescent system comprising two bioluminescent proteins and a peptide linker according to any one of claims 20 to 27.
- 29. A modified bioluminescent system according to claim 28, wherein said two bioluminescent proteins comprise at least an aequorin protein.
- 30. A modified bioluminescent system according to claims 28 or 29 comprising the following constituents: aequorin protein and a GFP protein.
- 31. A kit for measuring the transfer of energy in vivo or in vitro and containing at least one of the polypeptides according to claims 2 to 7 or the polynucleotide according to claims 8 to 13 and the reagents necessary for visualizing or detecting the said transfer in presence or in absence of a molecule of interest.
- 32. A fusion protein of the formula:
- 33. The fusion protein as claimed in claim 32, wherein the linker comprises 14-50 amino acids.
- 34. The fusion protein as claimed in claims 32 and 33, wherein the linker comprises the following amino acids:
- 35. The fusion protein as claimed in claim 34, wherein n is 1.
- 36. The fusion protein as claimed in claim 34, wherein n is 5.
- 37. A fusion protein for energy transfer from aequorin to green fluorescent protein by Chemiluminescence Resonance Energy Transfer (CRET) following activation of the aequorin in the presence of Ca++, wherein the fusion protein has the formula:
- 38. A fusion protein as claimed in claims 32 to 37, wherein the linker includes the amino acid sequence Ser Gly Leu Arg Ser [SEQ ID NO: 26].
- 39. A fusion protein as claimed in claims 32 to 38, which further comprises a peptide signal sequence for targeting the fusion protein to a cell or to a subcellular compartment.
- 40. A polynucleotide encoding a fusion protein as claimed in any one of claims 32 to 39.
- 41. A composition according to claim 1, wherein said purified polypeptide is a purified polypeptide according to any one of claims 2 to 7, or a modified bioluminescent system according to claims 28 to 30, or a fusion protein according to any one of claims 32 to 39.
- 42. A culture as deposited at the C.N.C.M. and containing the plasmid No. I-2507.
- 43. A culture as deposited at the C.N.C.M. and containing the plasmid No. I-2508.
- 44. A culture as deposited at the C.N.C.M. and containing the plasmid No. I-2509.
- 45. A culture as deposited at the C.N.C.M. and containing the plasmid No. I-2510.
- 46. A culture as deposited at the C.N.C.M. and containing the plasmid No. I-2511.
- 47. A culture as deposited at the C.N.C.M. and containing the plasmid No. I-2512.
- 48. A culture as deposited at the C.N.C.M. and containing the plasmid No. I-2513.
- 49. A method of screening in vivo a change in a physical, chemical, biochemical or biological, condition, the method comprising the steps of:
a) administering to a mammal a composition according to claim 1 or 41; b) detecting whether the light is produced; and c) optionally measuring the ionic concentration of calcium flux.
- 50. A method of screening in vitro a change in a physical, chemical, biochemical, or biological condition, wherein the method comprises:
(a) adding into a reaction system a composition according to claim 1 or 41 containing an analyte of interest in presence or in absence of a molecule of interest to be tested; and (b) visualising the emission of energy produced in step (a).
- 51. A method of screening of a product leading to a change in a physical, chemical, biochemical or biological condition in vivo, wherein the method comprises:
(a) administering to a vertebrate a pharmaceutically acceptable medium comprising a composition according to claim 1 or 41 in presence or in absence of a molecule of interest to be tested; (b) detecting the energy produced in presence of said composition; and (c) optionally, measuring the effective concentration of said molecule of interest necessary for the detection of the energy in step (b).
- 52. A method of screening in vitro a molecule capable of modulating the energy in a composition according to claim 1 or 41, wherein the method comprises:
(a) providing in a biological sample a composition according to claim 1 or 41 in a reaction system containing the molecule to be tested; (b) detecting a modulation of the energy by comparison with a control sample containing said composition according to claim 1 or 41 without the molecule to be tested; and (c) optionally, determining the effective minimal concentration of said molecule capable of inhibiting or increasing the energy transfer of said composition.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is based on and claims the benefit of U.S. Provisional Application Nos. 60/208,314, filed Jun. 1, 2000 (Attorney Docket No. 03495.6051), 60/210,526, filed Jun. 6, 2000 (Attorney Docket No. 03495.6052), and 60/255,111, filed Dec. 14, 2000 (Attorney Docket No. 03495.6059). The entire disclosure of each of these applications is relied upon and incorporated by reference herein.
Provisional Applications (3)
|
Number |
Date |
Country |
|
60208314 |
Jun 2000 |
US |
|
60210526 |
Jun 2000 |
US |
|
60255111 |
Dec 2000 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/EP01/07057 |
Jun 2001 |
US |
Child |
10307389 |
Dec 2002 |
US |