Claims
- 1. A method for detecting the presence of a nucleic acid target sequence which contains a scissile linkage that is cleavable by a cleaving enzyme in a biological sample, said method comprising the steps of:
- (a) providing in a reaction mixture comprising at least 5% by volume glycerine a nucleic acid target sequence and an oligonucleotide which oligonucleotide comprises a nucleic acid sequence and a scissile linkage that is substantially complementary to a nucleic acid target sequence, said oligonucleotide having a detectable marker attached thereto;
- (b) adding to said reaction mixture the cleaving enzyme which is able to cleave the target sequence and oligonucleotide at the scissile linkage if said target sequence and said oligonucleotide hybridize thereby releasing a cleaved oligonucleotide having the detectable marker;
- (c) subjecting the reaction mixture to hybridizing conditions wherein the uncleaved oligonucleotide is hybridized to the cleaved target sequence, which is then cleaved by the cleaving enzyme Pst I to release additional cleaved oligonucleotide having the detectable marker; and
- (d) detecting the presence of the cleaved detectable marker to thereby detect the presence of the nucleic acid sequence.
- 2. The method according to claim 1, wherein said target sequence comprises a single-stranded DNA sequence.
- 3. The method according to claim 1, wherein said target sequence is a double-stranded DNA sequence.
- 4. The method according to claim 1, wherein said hybridization is carried out at a temperature to enhance the efficiency of said cleaving enzyme and the hybridization of the oligonucleotides.
- 5. The method according to claim 4, wherein said hybridization is carried out at 37.degree. C.
- 6. The method according to claim 4, wherein said hybridization is carried out between 1 to 4 hours.
- 7. The method according to claim 6, , wherein said hybridization is carried out for about 2 hours.
- 8. The method according to claim 1, wherein said reaction mixture further comprises a buffering system.
- 9. The method according to claim 8, wherein said buffering system comprises MgCl.sub.2, NaCl, tris (hydroxymethyl) aminomethane-hydrochloride (TRIS-HCl), dithiothreitol (DTT) and bovine serum albumin (BSA).
- 10. The method according to claim 9, wherein said buffering system comprises 100 mM NaCl, 10 mM tris(hydroxymethyl)aminomethane-hydrochloride (TRIS-HCl) pH 7.7, 10 mM MgCl.sub.2, 1 mM DTT and 100 .mu.g/ml BSA.
- 11. The method according to claim 1, wherein said detectable marker in said oligonucleotide is a radioactive marker.
- 12. The method according to claim 11, wherein said radioactive marker is selected from the group consisting of .sup.32 P, .sup.3 H, .sup.14 C and .sup.35 S.
- 13. The method according to claim 12, wherein said radioactive marker is .sup.32 P.
- 14. The method according to claim 1, wherein said detectable marker in said oligonucleotide is an enzyme marker.
- 15. The method according to claim 1, wherein said detectable marker in said oligonucleotide is a ligand which can serve as a specific binding pair member to a labeled compound selected from the group consisting of an antibody, fluorescer, chemiluminescer, enzymes, biotin and mixtures thereof.
- 16. The method according to claim 1, wherein said oligonucleotide is up to 100 mer.
- 17. The method according to claim 16, wherein said oligonucleotide is between about 10 mer to 40 mer.
- 18. The method according to claim 17, wherein said oligonucleotide is about 28 mer.
- 19. The method according to claim 1, further comprising the step of adding to said nucleic acid hybridization reaction mixture a terminating solution.
- 20. The method according to claim 19, wherein said terminating solution comprises 80% formamide, 15 mM tris (hydroxymethyl) aminomethane-hydrochloride ( TRIS-HCl) , pH 7.6, 1 mM EDTA, 0.1% w/v bromophenol blue and 0.1% w/v xylene cyanole FF.
- 21. The method according to claim 11, wherein said detecting step (d) comprises electrophoresing said reaction mixture and autoradiographing said electrophoresed reaction mixture.
- 22. The method according to claim 1, wherein said oligonucleotide is attached to a solid substrate.
- 23. A method for detecting the presence of a nucleic acid sequence which contains a scissile linkage that is cleavable by a cleaving enzyme in a biological sample, said method comprising the steps of:
- (a) hybridizing a nucleic acid sequence having a scissile linkage to an oligonucleotide probe that has a sequence complementary to said nucleic acid sequence and a detectable marker to provide a probe:nucleic acid sequence duplex in a solution comprising at least 5% by volume glycerine;
- (b) cleaving said duplex at the scissile linkage with the cleaving enzyme Pst I;
- (c) recycling the cleaved nucleic acid sequence by forming a cleavable duplex with uncleaved oligonucleotide probe, which cleavable duplex is then cleaved by said Pst I enzyme; and
- (d) detecting said cleaved oligonucleotide probe to thereby detect the presence of the nucleic acid sequence which contains a scissile linkage.
- 24. The method according to claim 23, wherein said target molecule comprises a single-stranded DNA sequence.
- 25. The method according to claim 23, wherein said nucleic acid sequence is single-stranded.
- 26. The method according to claim 23, wherein said hybridization is carried out at a temperature to enhance the efficiency of said cleaving enzyme and the hybridization of the oligonucleotides.
- 27. The method according to claim 26, wherein said hybridization is carried out at 37.degree. C.
- 28. The method according to claim 23, wherein said oligonucleotide is attached to a solid support.
- 29. The method according to claim 23, wherein said hybridization is carried out between 1 to 4 hours.
- 30. The method according to claim 29, wherein said hybridization is carried out for about 2 hours.
- 31. The method according to claim 23, wherein said cleaving step (b) is further carried out in a buffering system.
- 32. The method according to claim 31, wherein said buffering system comprises MgCl.sub.2, NaCl, tris (hydroxymethyl) aminomethane-hydrochloride (TRIS-HCl), dithiothreitol (DTT) and bovine serum albumin (BSA).
- 33. The method according to claim 32, wherein said buffering system comprises 100 mM NaCl, 10 mM tris(hydroxymethyl)aminomethane-hydrochloride (TRIS-HCl), pH 7.7, 10 mM MgCl.sub.2, 1 mM DTT and 100 .mu.g/ml BSA.
- 34. The method according to claim 23, wherein said detectable marker in said oligonucleotide is a radioactive marker.
- 35. The method according to claim 34, wherein said radioactive marker is selected from the group consisting of .sup.32 P, .sup.3 H, .sup.14 C and .sup.35 S.
- 36. The method according to claim 35, wherein said radioactive marker is .sup.32 P.
- 37. The method according to claim 23, wherein said detectable marker in said oligonucleotide is an enzyme marker.
- 38. The method according to claim 23, wherein said detectable marker in said oligonucleotide is a ligand which can serve as a specific binding pair member to a labeled compound selected from the group consisting of an antibody, fluorescer, chemiluminescer, enzymes, biotin and mixtures thereof.
- 39. The method according to claim 23, wherein said oligonucleotide is up to 100 mer.
- 40. The method according to claim 39, wherein said oligonucleotide is between about 10 mer to 40 mer.
- 41. The method according to claim 40, wherein said oligonucleotide is about 28 mer.
- 42. The method according to claim 23, further comprising the step of adding a terminating solution to said hybridization reaction mixture after step (c) and before step (d).
- 43. The method according to claim 42, wherein said terminating solution comprises 80% formamide, 15 mM tris(hydroxymethyl)aminomethane-hydrochloride (TRIS-HCl), pH 7.6, 1 mM EDTA, 0.1% w/v bromophenol blue and 0.1% w/v xylene cyanole FF.
- 44. The method according to claim 34, wherein said detecting step (e) comprises electrophoresing said reaction mixture and autoradiographing said electrophoresed reaction mixture.
RELATED APPLICATIONS
This is a continuation of application Ser. No. 07/998,644 filed Dec. 16, 1992, now abandoned, which was a continuation of application Ser. No. 07/790,174 filed Nov. 12, 1991, now abandoned, which was a continuation-in-part of application Ser. No. 07/519,146 filed May 4, 1990, now U.S. Pat. No. 5,102,784.
US Referenced Citations (10)
Foreign Referenced Citations (2)
| Number |
Date |
Country |
| 0017440 |
Sep 1984 |
EPX |
| WO8909284 |
Oct 1989 |
WOX |
Non-Patent Literature Citations (2)
| Entry |
| Krupp et al., FEBS Letters 212(2):271-275 (Feb. 1987). |
| "Human Papilloma Virus Type 16 DNA Sequence," Klaus Seedorf, et al., Virology, vol. 145, (1985) pp. 181-185. |
Continuations (2)
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Number |
Date |
Country |
| Parent |
998644 |
Dec 1992 |
|
| Parent |
790174 |
Nov 1991 |
|
Continuation in Parts (1)
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Number |
Date |
Country |
| Parent |
519146 |
May 1990 |
|