Claims
- 1. An alkyl-linked nucleotide composition comprising a general formula:
- 2. The alkyl-linked nucleotide composition of claim 1, wherein R2 comprises a general formula:
- 3. The alkyl-linked nucleotide composition of claim 2, wherein R1 comprises:
- 4. The alkyl-linked nucleotide composition of claim 3, wherein R1 comprises a general formula:
- 5. The alkyl-linked nucleotide composition of claim 1, wherein the heteroatom (K) is a nitrogen atom, an oxygen atom or a sulfur atom.
- 6. The alkyl-linked nucleotide composition of claim 1, wherein the heteroatom (K) is a nitrogen atom.
- 7. The alkyl-linked nucleotide composition of claim 1, wherein Y is a solid support.
- 8. The alkyl-linked nucleotide composition of claim 7, wherein the composition is a nucleotide affinity medium.
- 9. The nucleotide affinity medium of claim 8, wherein the solid support includes at least one member selected from the group consisting of an acrylamide, agarose, methacrylate, cellulose, nylon, silica, glass, ceramic, a magnetized particle, nitrocellulose, polystyrene, a thermoresponsive polymer, and derivatives thereof.
- 10. The nucleotide affinity medium of claim 9, wherein the solid support is a beaded agarose.
- 11. The nucleotide affinity medium of claim 8, wherein the solid support has a loading of an alkyl-linked nucleotide in a range of 5-25%.
- 12. The nucleotide affinity medium of claim 8, wherein the solid support has a loading of an alkyl-linked nucleotide in a range of 20-50%.
- 13. The nucleotide affinity medium of claim 8, wherein the solid support has a loading of an alkyl-linked nucleotide in a range of 40-65%.
- 14. The nucleotide affinity medium of claim 8, wherein the solid support has a loading of an alkyl-linked nucleotide in a range of 60-80%.
- 15. The nucleotide affinity medium of claim 8, wherein the solid support has a loading of an alkyl-linked nucleotide in a range of 75-100%.
- 16. The alkyl-linked nucleotide composition of claim 1, wherein the tag is biotin.
- 17. The alkyl-linked nucleotide composition of claim 1 wherein R7 is (P)n.
- 18. The alkyl-linked nucleotide composition of claim 17, wherein n is 1, 2, 3, or 4.
- 19. The alkyl-linked nucleotide composition of claim 1, wherein R2 is a linker selected from the group consisting of:
- 20. The alkyl-linked nucleotide composition of claim 1, wherein if m is more than one, then R2 is at least one linker selected from the group consisting of:
- 21. The alkyl-linked nucleotide composition of claim 17, wherein P is selected from the group consisting of
- 22. The alkyl-linked nucleotide composition of claim 1, wherein the nucleoside is selected from the group consisting of adenosine, guanosine, cytidine, thymidine, and uridine, or an analog thereof.
- 23. The alkyl-linked nucleotide composition of claim 22, wherein the nucleoside is an adenosine, said alkyl-linked nucleotide composition comprising a general structure:
- 24. The alkyl-linked nucleotide composition of claim 22, wherein the nucleoside is a guanosine, said alkyl-linked nucleotide composition comprising a general structure:
- 25. The alkyl-linked nucleotide composition of claim 22, wherein the nucleoside is a thymidine, said alkyl-linked nucleotide composition comprising a general structure:
- 26. The alkyl-linked nucleotide composition of claim 22, wherein the nucleoside is a cytidine, said alkyl-linked nucleotide composition comprising a general structure:
- 27. The alkyl-linked nucleotide composition of claim 22, wherein the nucleoside is a uridine, said alkyl-linked nucleotide composition comprising a general structure:
- 28. A method for synthesizing a nucleotide affinity medium comprising a general formula:
- 29. The method of claim 28, wherein R2 is a linker selected from the group consisting of:
- 30. The method of claim 28, wherein if m is more than one, then R2 is at least one linker selected from the group consisting of:
- 31. A method for screening a test compound comprising the steps of:
a) contacting a proteome with a nucleotide affinity medium comprising a general formula:[(Y)x&Parenopenst;R1—R2—K—R7—Z)m] Iwherein Y is a solid support or a tag; x=1; R1 is a covalent bond between Y and R2, or R1 is an acyl group, a substituted or a non-substituted alkyl group, a substituted or a non-substituted cycloalkyl group, a substituted or a non-substituted heteroalkyl group, a substituted or a non-substituted heterocycloalkyl group, a substituted or a non-substituted aryl group, a substituted or a non-substituted heteroaryl group, or a combination thereof; R2 is a substituted or a non-substituted alkyl group, a substituted or a non-substituted cycloalkyl group, a substituted or a non-substituted heteroalkyl group, a substituted or a non-substituted heterocycloalkyl, a substituted or a non-substituted heteroaryl group, or a combination thereof; K is a heteroatom; R7 is (P)n where P is a phosphate or thiophosphate and n is at least one or R7 is a phosphate group mimic, Z is a nucleotide or nucleoside derivative; and m is at least one. b) washing the nucleotide affinity medium with a buffer, whereby non-specifically bound components of the proteome are eluted from the nucleotide affinity medium and specific components of the proteome remain bound to the nucleotide affinity medium; c) contacting the nucleotide affinity medium bound with specific components of the proteome with at least one test compound; d) eluting from the nucleotide affinity medium components of the proteome that are specifically displaced by the test compound; and e) identifying the components of the proteome that are specifically displaced by the test compound from the nucleotide affinity medium.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Applications No. 60/453,697, filed Jan. 22, 2003, and No. 60/532,134, filed Dec. 23, 2003, each of which are hereby incorporated in its entirety by reference herein.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60453697 |
Jan 2003 |
US |
|
60532134 |
Dec 2003 |
US |