Claims
- 1. An amplifiable probe comprising:
(a) an analyte reactive moiety; (b) at least one signal-generating nucleic acid, wherein each said at least one signal-generating nucleic acid further comprises at least one self-complementary unit, wherein each said at least one self-complementary unit comprises a first sequence element and a second sequence element, and wherein said first and said second sequence elements are complementary; and (c) one or more linkers that connect said analyte reactive moiety to said at least one said signal-generating nucleic acid.
- 2. The amplifiable probe of claim 1, wherein said signal-generating nucleic acid is extendable.
- 3. The amplifiable probe of claim 1, wherein said analyte reactive moiety is a polypeptide.
- 4. The amplifiable probe of claim 1, wherein said analyte reactive moiety is a nucleic acid molecule.
- 5. The amplifiable probe of claim 1, wherein said analyte reactive moiety interacts with one or more polypeptides.
- 6. The amplifiable probe of claim 1, wherein said analyte reactive moiety interacts with one or more nucleic acid molecules.
- 7. The amplifiable probe of claim 1, wherein said analyte reactive moiety interacts with one or more molecules selected from the group consisting of polypeptide, nucleic acid, carbohydrate, lipid, and hapten.
- 8. The amplifiable probe of claim 1, wherein an intervening sequence element is between said first and said second sequence elements of at least one said self-complementary unit, and wherein said intervening sequence element is not complementary to said first or said second sequence elements of said at least one self-complementary unit.
- 9. The amplifiable probe of claim 1 wherein said at least one signal-generating nucleic acid contains at least two self-complementary units, wherein an intervening sequence element is between at least two of said self-complementary units, and wherein said intervening sequence element is not complementary to said first or said second nucleotide sequence elements of said at least two self-complementary units.
- 10. The amplifiable probe of claim 1, wherein said at least one signal-generating nucleic acid has two or more 3′ ends.
- 11. A method of detecting the presence or absence of an analyte in a sample comprising:
(a) contacting said sample with an amplifiable probe under conditions whereby said analyte, if present, binds said amplifiable probe to form a probe/analyte complex, said amplifiable probe comprising:
(1) an analyte reactive moiety; (2) at least one extendable signal-generating nucleic acid, wherein each said at least one extendable signal-generating nucleic acid further comprises at least one self-complementary unit, wherein each said self-complementary unit comprises a first sequence element and a second sequence element, and wherein said first and said second nucleotide sequence elements are complementary; and (3) one or more linkers that connect said analyte reactive moiety to said at least one signal-generating nucleic acid; (b) extending said at least one extendable signal-generating nucleic acid in a reaction mixture comprising said probe/analyte complex; and (c) detecting the presence or absence of said extended signal-generating nucleic acid, wherein presence of said extended signal-generating nucleic acid correlates with the presence of said analyte.
- 12. The method of claim 11, wherein said reaction mixture further comprises at least one nucleotide triphosphate that is detectably labeled.
- 13. The method of claim 12, wherein said at least one nucleotide triphosphate is labeled with a radioisotope.
- 14. The method of claim 12, wherein said at least one nucleotide triphosphate is labeled with a non-radioactive label.
- 15. The method of claim 12, wherein said at least one nucleotide triphosphate is labeled with a fluorescent label.
- 16. The method of claim 11, wherein a non-radioactive dye is used to detect said extended nucleic acid molecule.
- 17. The method of claim 11, wherein said reaction mixture further comprises an isolated nucleic acid template, said nucleic acid template comprising at least one self-complementary unit, wherein each said self-complementary unit comprises a first hybridizing sequence element and a second hybridizing sequence element, wherein said first and said second hybridizing sequence elements are complementary to each other, and wherein said nucleic acid template is blocked at its 3′ and 5′ termini.
- 18. The method of claim 17, wherein said isolated nucleic acid template comprises a phosphorothioate backbone.
- 19. The method of claim 11, wherein said at least extendable signal-generating nucleic acid is isothermally extended.
- 20. The method of claim 11, wherein extending said at least extendable signal-generating nucleic acid comprises performing at least one cycle of extension.
- 21. The method of claim 20, wherein two or more cycles of extension are performed.
- 22. A method of detecting the presence or absence of an analyte in a sample comprising:
(a) contacting said sample with an amplifiable probe under conditions whereby said analyte, if present, reacts with said amplifiable probe to form a modified amplifiable probe, said amplifiable probe comprising:
(1) an analyte reactive moiety; (2) at least one extendable signal-generating nucleic acid, wherein each said at least one extendable signal-generating nucleic acid further comprises at least one self-complementary unit, wherein each said self-complementary unit comprises a first sequence element and a second sequence element, and wherein said first and said second sequence elements are complementary; and (3) one or more linkers that connect said analyte reactive moiety to said at least one signal-generating nucleic acid; (b) extending said at least one extendable signal-generating nucleic acid in a reaction mixture comprising said modified amplifiable probe; and (c) detecting the presence or absence of said extended signal-generating nucleic acid, wherein presence of said extended signal-generating nucleic acid correlates with the presence of said analyte.
- 23. The method of claim 22, wherein said at least extendable signal-generating nucleic acid is isothermally extended.
- 24. The method of claim 22, wherein extending said at least extendable signal-generating nucleic acid comprises performing at least one cycle of extension.
- 25. The method of claim 24, wherein two or more cycles of extension are performed.
- 26. An isolated nucleic acid template comprising at least one self-complementary unit, wherein each said self-complementary unit comprises a first hybridizing sequence element and a second hybridizing sequence element, wherein said first and said second hybridizing sequence elements are complementary to each other, and wherein said nucleic acid template is blocked at its 3′ terminus.
- 27. The nucleic acid template of claim 26, wherein said nucleic acid template comprises a phosphorothioate backbone.
- 28. The isolated nucleic acid template of claim 26, wherein said nucleic acid template is blocked at its 3′ and 5′ termini.
- 29. The isolated nucleic acid template of claim 26, wherein an intervening sequence element is between said first and said second hybridizing sequence elements of at least one said self-complementary unit, and wherein said intervening sequence element is not complementary to said first or said second hybridizing sequence elements of said at least one self-complementary unit.
- 30. The isolated nucleic acid template of claim 26, wherein said nucleic acid template contains at least two self-complementary units, wherein an intervening sequence element is between at least two of said self-complementary units, and wherein said intervening sequence element is not complementary to said first or said second hybridizing sequence elements of said at least two self-complementary units.
- 31. An amplifiable complex comprising:
(a) an amplifiable probe comprising:
(1) an analyte reactive moiety; (2) at least one extendable signal-generating nucleic acid, wherein each said extendable signal-generating nucleic acid further comprises at least one self-complementary unit, wherein each said self-complementary unit comprises a first sequence element and a second sequence element, and wherein said first and said second sequence elements are complementary; and (3) one or more linkers that connect said analyte reactive moiety to said at least one said signal-generating nucleic acid; and (b) an isolated nucleic acid template comprising at least one self-complementary unit, wherein each said self-complementary unit comprises a first hybridizing sequence element and a second hybridizing sequence element, wherein said first and said second hybridizing sequence elements are complementary, and wherein said nucleic acid template is blocked at its 3′ and 5′ termini; wherein said isolated nucleic acid template is hybridized to said at least one extendable signal-generating nucleic acid.
- 32. The amplifiable complex of claim 31, wherein said analyte reactive moiety is bound to an analyte.
- 33. A method of detecting the presence or absence of an analyte in a sample comprising:
(a) contacting said sample with an amplifiable probe under conditions whereby said analyte, if present, binds said amplifiable probe to form a probe/analyte complex, said amplifiable probe comprising:
(1) an analyte reactive moiety; (2) at least one signal-generating nucleic acid, wherein each said at least one signal-generating nucleic acid further comprises at least one self-complementary unit, wherein each said self-complementary unit comprises a first sequence element and a second sequence element, and wherein said first and said second nucleotide sequence elements are complementary; and (3) one or more linkers that connect said analyte reactive moiety to said at least one signal-generating nucleic acid; (b) contacting said probe/analyte complex with a cognate nucleic acid template; (c) extending said cognate nucleic acid template by performing an isothermal amplification reaction in a reaction mixture comprising said probe-analyte complex; and (d) detecting the presence or absence of said extended signal-generating nucleic acid, wherein presence of said extended signal-generating nucleic acid correlates with the presence of said analyte.
- 34. The method of claim 34, wherein said signal-generating nucleic acid is extendable.
- 35. A kit comprising an amplifiable probe, said amplifiable probe comprising;
(a) an analyte reactive moiety comprising: (b) at least one signal-generating nucleic acid, wherein each said at least one said signal-generating nucleic acid further comprises at least one self-complementary unit, wherein each said at least one self-complementary unit comprises a first sequence element and a second sequence element, and wherein said first and said second sequence elements are complementary; and (c) one or more linkers that connect said analyte reactive moiety to said at least one signal-generating nucleic acid.
- 36. The kit of claim 35, said kit further comprising a blocked template, said blocked template comprising at least one self-complementary unit, wherein each said self-complementary unit comprises a first hybridizing sequence element and a second hybridizing sequence element, wherein said first and said second hybridizing sequence elements are complementary, and wherein said nucleic acid template is blocked at its 3′ and 5′ termini.
- 37. The kit of claim 35, wherein said signal-generating nucleic acid is extendable.
- 38. The kit of claim 30, wherein said kit further comprises a cognate nucleic acid primer, said cognate nucleic acid primer comprising a hybridizing sequence element that is complementary to a sequence element on said signal generating molecule.
RELATED APPLICATIONS
[0001] This application claims the benefit of prior U.S. provisional application 60/298,767, filed Jun. 15, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60298767 |
Jun 2001 |
US |