Claims
- 1. A composition comprising:
a) an electrode comprising:
i) a monolayer comprising conductive oligomers; and ii) a capture probe; b) a target sequence comprising a first portion that is capable of hybridizing to said capture probe, and a second portion that does not hybridize to said capture probe and comprises at least one covalently attached electron transfer moiety.
- 2. A composition comprising:
a) an electrode comprising:
i) a monolayer comprising conductive oligomers; and ii) a capture probe, b) a label probe comprising a first portion that is capable of hybridizing to a component of an assay complex, and a second portion comprising a recruitment linker that does not hybridize to a component of an assay complex and comprises at least one covalently attached electron transfer moiety.
- 3. A composition according to claim 2 wherein said ETM is ferrocene.
- 4. A composition according to claim 2 wherein said label probe comprises a plurality of ETMs.
- 5. A composition according to claim 2 wherein said first portion of said label probe further comprises a covalently attached ETM.
- 6. A composition according to claim 2 wherein said assay complex comprises an amplifier probe.
- 7. A composition according to claim 2 wherein said assay complex comprises a capture extender probe.
- 8. A composition according to claim 2 wherein said monolayer further comprises insulators.
- 9. A composition according to claim 2 wherein said capture probe is attached to said electrode via a conductive oligomer.
- 10. A composition according to claim 2 wherein said capture probe is attached to said electrode via an insulator.
- 11. A nucleic acid analog having a backbone comprising at least one metallocene.
- 12. A first nucleic acid covalently attached to a second nucleic acid via a metallocene.
- 13. A substituted metallocene comprising two aromatic rings, wherein the first aromatic ring has a first nucleic acid subtituent group and the second aromatic ring has a second nucleic acid substitutent group.
- 14. A composition comprising a phosphoramidite electron transfer moiety having the formula:
- 15. A composition according to claim 14 wherein said ETM is a metallocene.
- 16. A composition according to claim 15 having the formula:
- 17. A deoxyribonucleoside triphosphate comprising a covalently attached ETM.
- 18. A deoxyribonucleoside triphosphate according to claim 17 wherein said ETM is covalently attached to the base.
- 19. A deoxyribonucleoside triphosphate according to claim 17 having the formula:
- 20. A deoxyribonucleoside triphosphate according to claim 19 wherein said base is selected from the group consisting of adenine, uracil, thymine, cytosine, guanine, inosine, xathanine, hypoxathanine, isocytosine and isoguanine.
- 21. A deoxyribonucleoside triphosphate according to claim 17 wherein said ETM is covalently attached to the ribose.
- 22. A deoxyribonucleoside triphosphate according to claim 21 having the formula:
- 23. A deoxyribonucleoside triphosphate according to claim 17 wherein said ETM is ferrocene.
- 24. A nucleic acid comprising:
a) at least one ETM; and b) at least one branch point.
- 25. A nucleic acid comprising:
a) an ETM polymer; and b) at least one branch point.
- 26. A nucleic acid according to claim 25 wherein said ETM polymer is a metallocene polymer.
- 27. A nucleic acid according to claim 25 wherein said ETM polymer is a ferrocene polymer.
- 28. A method of detecting a target nucleic acid sequence in a test sample comprising:
a) attaching said target sequence to an electrode comprising a monolayer of conductive oligomers; b) directly or indirectly attaching at least one label probe to said target sequence to form an assay complex, wherein said label probe comprises a first portion capable of hybridizing to a component of said assay complex, and a second portion comprising a recruitment linker that does not hybridize to a component of said assay complex and comprises at least one covalently attached ETM; and c) detecting the presence of said ETM using said electrode.
- 29. A method according to claim 28 wherein said label probe comprises a plurality of ETMs.
- 30. A method according to claim 28 wherein said plurality comprises a metallocene polymer.
- 31. A method according to claim 28 wherein said label probe comprises a branch point.
- 32. A method according to claim 28 wherein said target sequence is attached to said electrode by hybridization to a capture probe.
- 33. A method according to claim 28 wherein said target sequence is attached to said electrode by hybridizing a first portion of said target sequence to a first capture extender probe, and hybridizing a second portion of said first capture extender probe to a capture probe on the electrode.
- 34. A method according to claim 28 wherein said target sequence is attached to said electrode by
a) hybridizing a first portion of said target sequence to a first portion of a first capture extender probe; b) hybridizing a second portion of said first capture extender probe to a first portion of an capture probe on the electrode; c) hybridizing a second portion of said target sequence to a first portion of a second capture extender probe; and d) hybridizing a second portion of said second capture extender probe to a second portion of said capture probe.
- 35. A method according to claim 28 wherein said label probe is attached to said target sequence by hybridizing said first portion of said label probe to a first portion of said target sequence.
- 36. A method according to claim 28 wherein said label probe is attached to said target sequence by
a) hybridizing a first portion of an amplifier probe to a first portion of said target sequence; and b) hybridizing at least one amplication sequence of said amplifier probe to said first portion of at least one label probe.
- 37. A method according to claim 28 wherein said label probe is attached to said target sequence by
a) hybridizing a first portion of a first label extender probe to a first portion of a target sequence; b) hybridizing a second portion of said first label extender probe to a first portion of an amplifier probe; c) hybridizing at least one amplication sequence of said amplifier probe to said first portion of at least one label probe.
- 38. A method according to claim 28 wherein said label probe is attached to said target sequence by
a) hybridizing a first portion of a first label extender probe to a first portion of a target sequence; b) hybridizing a second portion of said first label extender probe to a first portion of an amplifier probe; c) hybridizing a first portion of a second label extender probe to a second portion of a target sequence; d) hybridizing a second portion of said second label extender probe to a first portion of an amplifier probe; e) hybridizing at least one amplication sequence of said amplifier probe to said first portion of at least one label probe.
Parent Case Info
[0001] This application is a continuing application of U.S.S. Nos. 60/084,509, filed May 6, 1998; 60/084,425, filed May 6, 1998; and Ser. No. 09/135,183, filed Aug. 17, 1998.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60084425 |
May 1998 |
US |
|
60084509 |
May 1998 |
US |