Claims
- 1. A method for detecting a target nucleic acid sequence in a sample, said method employing at least one pair of probes characterized by having sequences homologous to adjacent portions of said target nucleic acid sequence and having side chains which non-covalently bind to form a stem upon base pairing of said probes to said target nucleic acid sequence, at least one of said side chains having an activatable group, which upon activation during stem formation forms a covalent cross-link with the other side chain member of said stem, said method comprising:
combining said sample with said at least one pair of probes under conditions of base pairing between said probes and said target nucleic acid to produce an assay medium, whereby probes binding to said target nucleic acid form said stem; activating said activatable group, whereby a covalent cross-link occurs between said side chain members of said stem; and detecting the presence of cross-linked pairs of probes as indicative of the presence of said target sequence in said sample.
- 2. A method according to claim 1, wherein said activating is photoactivating.
- 3. A method according to claim 1, wherein said target nucleic acid is double stranded and two different pairs of probes are used, where each pair is homologous to one of the strands of said target nucleic acid.
- 4. A method for detecting a target nucleic acid sequence in a sample, said method employing at least one pair of probes characterized by having sequences homologous to adjacent portions of said target nucleic acid sequence and having side chains which non-covalently bind to form a stem upon base pairing of said probes to said target nucleic acid sequence, at least one of said side chains having a photoactivatable group, which upon activation during stem formation forms a covalent cross-link with the other side chain member of said stem, each of said side chains having at least two nucleotides capable of base pairing with the other side chain to form said stem, said method comprising:
combining said sample with said at least one pair of probes under conditions of base pairing between said probes and said target nucleic acid, wherein when said target nucleic acid is single stranded, at least a first pair of probes is added which is homologous to said single stranded nucleic acid, and if said target nucleic acid is double stranded, at least one of first and second pairs of probes are added, which pairs are homologous to one or the other strands of said double stranded target nucleic acid, whereby probes binding to said target nucleic acid form said stem; photoactivating said photoactivatable group, whereby a covalent cross-link is formed between said side chain members of said stem; melting double stranded nucleic acid; repeating the following cycle at least once: incubating for sufficient time for base pairing between homologous sequences to occur, with the proviso that when only said first pair of probes was added, another pair of probes is added having a sequence analogous to said target nucleic acid; photoactivating said photoactivatable group, whereby a covalent cross-link is formed between said side chain members of said stem; and melting double stranded DNA, which ends a cycle; and detecting the presence of cross-linked pairs of probes as indicative of the presence of said target sequence in said sample.
- 5. A method according to claim 4, wherein said target sequence has a gap of fewer than 2 nucleotides between the sequences homologous to said pair of probes and each of said side chains of said stem comprise at least three nucleotides or hybridizing analogs thereof which form base pairs.
- 6. A method according to claim 5, wherein said side chains have from 3 to 8 nucleotides or hybridizing analogs thereof which base pair to form said stem.
- 7. A method according to claim 4, wherein said photoactivatable group reacts with a nucleotide or analog thereof to form a covalent bond cross-link.
- 8. A method according to claim 7, wherein said photoactivatable group is a moiety comprising a coumarin or furocoumarin.
- 9. A method according to claim 4, wherein on one of said side chains said at least two nucleotides capable of base pairing with the other side chain to form said stem are separated from said photoactivatable group.
- 10. A method according to claim 4, wherein each of said side chains comprises different fluorophores, wherein the energy of emitted light of a first of said fluorophores is in the absorption band of a second of said fluorophores, wherein said detecting the presence of cross-linked probes comprises:
exciting said first fluorophore; and reading the fluorescence of said second fluorophore.
- 11. A method according to claim 4, wherein each of probes comprises a label, wherein one of said labels is a member of a specific binding pair and the other of said labels provides for a detectable signal, wherein said detecting the presence of cross-linked probes comprises:
separating said cross-linked probes from said sample on a solid support; and detecting the presence of said signal on said solid support.
- 12. A method according to claim 4, wherein at least three cycles are repeated.
- 13. A method for detecting a sequence of target dsDNA in a sample, said method employing first and second pairs of probes characterized by having sequences homologous to adjacent portions of first and second strands of said target dsDNA and having side chains which non-covalently bind to form a stem upon base pairing of said probes to said target first and second strands, respectively, at least one of said side chains in each pair having a photoactivatable group, which upon activation during stem formation forms a covalent cross-link with the other side chain member of said stem, each of said side chains having at least two nucleotides capable of base pairing with the other side chain to form said stem, said method comprising:
combining said sample with said first and second pairs of probes under conditions of base pairing between said probes and said target nucleic acid, which first and second pairs of probes are homologous to one or the other strands of said target dsDNA, whereby probes binding to said target nucleic acid form said stem; photoactivating said photoactivatable group, whereby a covalent cross-link is formed between said side chain members of said stem; melting double stranded nucleic acid; repeating the following cycle at least once: incubating for sufficient time for base pairing between homologous sequences to occur; photoactivating said photoactivatable group, whereby a covalent cross-link occurs between said side chain members of said stem; and melting double stranded DNA, which ends a cycle; and detecting the presence of cross-linked pairs of probes as indicative of the presence of said target dsDNA in said sample.
- 14. A method according to claim 13, wherein one of said side chains has a bulge in the side chain between the nucleotide base pairing with said target sequence and directly linked to said side chain and the first nucleotide base pairing with a nucleotide of the other side chain member of said stem.
- 15. A method according to claim 13, wherein said side chains have from 3 to 8 nucleotides which base pair to form said stem.
- 16. A method according to claim 13, wherein said photoactivatable group reacts with a nucleotide or analog thereof to form a covalent bond cross-link.
- 17. A method according to claim 13, wherein said photoactivatable group is a moiety comprising a coumarin or furocoumarin.
- 18. A method according to claim 13, wherein at least three cycles are repeated.
- 19. A method according to claim 13, wherein each of said side chains comprises different fluorophores, wherein the energy of emitted light of a first of said fluorophores is in the absorption band of a second of said fluorophores, wherein said detecting the presence of cross-linked probes comprises:
exciting said first fluorophore; and reading the fluorescence of said second fluorophore.
- 20. A method according to claim 13, wherein each of said probes comprises a label, wherein one of said labels is a member of a specific binding pair and the other of said labels provides for a detectable signal, wherein said detecting the presence of cross-linked probes comprises:
separating said cross-linked probes from said sample on a solid support; and detecting the presence of said signal on said solid support.
- 21. A method for detecting a target nucleic acid sequence in a sample, said method employing at least one pair of probes characterized by having sequences homologous to adjacent portions of said target nucleic acid sequence and having side chains which non-covalently bind to form a stem upon base pairing of said probes to said target nucleic acid sequence, at least one of said side chains having an activatable group, which upon activation during stem formation forms a covalent cross-link with the other side chain member of said stem, and at least one of said stems forming a hairpin or stem and loop by one portion of said side chain binding to a different portion of said chain or to the sequence of said probe homologous to said target, said method comprising:
combining said sample with said pair of probes under conditions of melting of said hairpin or stem and loop and of base pairing between said probes and said target nucleic acid to produce an assay medium, whereby probes binding to said target nucleic acid form said stem; activating said activatable group, whereby a covalent cross-link occurs between said side chain members of said stem; and detecting the presence of cross-linked pairs of probes as indicative of the presence of said target sequence in said sample.
- 22. A method according to claim 21, wherein said hairpin comprises a bulge, said bulge comprising said photoactivatable group.
- 23. A method according to claim 21, wherein one of said side chains comprises a terminal sequence complementary to the sequence homologous to said target sequence joined to said stem forming sequence by a linking group other than an oligonucleotide.
- 24. A kit comprising at least one pair of probes, said probes being characterized by having sequences homologous to adjacent portions of a target nucleic acid sequence and having side chains which non-covalently bind to form a stem upon base pairing of said probes to said target nucleic acid sequence, at least one of said side chains having an activatable group, which upon activation during stem formation forms a covalent cross-link with the other side chain member of said stem.
- 25. A kit according to claim 24, comprising at least two pairs of probes, where said target nucleic acid sequence is single or double stranded nucleic acid and the sequences of said probes homologous to one strand of said nucleic acid of one pair of probes are homologous to the sequences of the other pair of probes.
- 26. A kit according to claim 25, wherein each of the members of said stem have at least two nucleotides which base pair to form said stem and one member of each of said pairs of probes has a bulge in the side chain between the nucleotide base pairing with said target sequence and directly linked to said side chain and the first nucleotide base pairing with a nucleotide of the other side chain member of said stem.
- 27. A kit according to claim 24, wherein at least one of said side chains which comprises an activatable group forms a hairpin or stem and loop by one portion of said side chain binding to a different portion of said side chain or to the sequence of said probe homologous to said target.
- 28. A kit comprising at least one pair of probes, said probes being characterized by having sequences homologous to adjacent portions of a target nucleic acid sequence and having side chains which non-covalently bind to form a stem upon base pairing of said probes to said target nucleic acid sequence, each of the members of said stem have at least two nucleotides which base pair to form said stem, at least one of said side chains having a photoactivatable group, which upon activation during stem formation forms a covalent cross-link with the other side chain member of said stem.
- 29. A kit according to claim 28, wherein said photoactivatable group is coumarin or psoralen.
- 30. A nucleic acid compound comprising a nucleic acid sequence of at least 12 nucleotides defining a sequence of interest covalently linked at one end to a side chain characterized by having at least two nucleotides and not more than 8 nucleotides, and having a photoactivatable group other than a nucleotide.
- 31. A nucleic acid compound according to claim 30, wherein said photoactivatable group is a moiety comprising a coumarin or furocoumarin covalently bonded to a linking group in the backbone of said nucleic acid compound and comprising other than a nucleoside.
- 32. An oligonucleotide comprising from 2 to 60 nucleotides and a deoxyribosyl backbone having intervening in said backbone from 1 to 2 linkers comprising other than nucleosides and pendent from said linkers, a photoactivatable group other than a nucleotide, capable of forming a covalent bond with a nucleotide.
- 33. An oligonucleotide according to claim 32, wherein said oligonucleotide comprises member of a specific binding pair.
- 34. An oligonucleotide according to claim 32, wherein said oligonucleotide comprises a directly detectable label.
- 35. An oligonucleotide according to claim 34, wherein said directly detectable label is a fluorophore.
- 36. An oligonucleotide according to claim 32, wherein said photoactivatable group comprises coumarin.
- 37. An oligonucleotide compound comprising a first oligonucleotide unit comprising at least 14 nucleotides and a deoxyribosyl backbone having intervening in said backbone proximal to a first terminus of said first oligonucleotide unit from 1 to 2 linkers comprising other than nucleosides and pendent from said linkers, a photoactivatable group, other than a nucleotide, capable of forming a covalent bond with a nucleotide, said first terminus defining a side chain, and linked through said photoactivatable group a second oligonucleotide unit comprising at least 14 nucleotides and comprising a side chain having nucleotides complementary to and capable of base pairing with nucleotides in said first side chain at a second terminus opposite to said first terminus defining a complementary side chain, said first and second side chains forming a stem.
- 38. An automatic device for detecting a target nucleic acid sequence in a sample by a method employing at least one pair of probes characterized by having sequences homologous to adjacent portions of said target nucleic acid sequence and having side chains which non-covalently bind to form a stem upon base pairing of said probes to said target nucleic acid sequence, at least one of said side chains having an activatable group, which upon activation during stem formation forms a covalent cross-link with the other side chain member of said stem, where in said method said sample and said probes are combined in an assay medium under base-pairing conditions, said activatable groups are activated resulting in cross-linked pairs of probes and said cross-linked pairs of probes are detected as indicative of the presence of said target sequence in said sample, said device comprising:
a means for modulating the base pairing conditions of said assay medium; and a control circuit responsive to the base pairing conditions of said medium and configured to actuate an activator for said activatable group at a predetermined assay medium condition.
- 39. The device according to claim 38 wherein the base pairing conditions of said assay medium is the temperature of said medium.
- 40. The device according to claim 38, wherein said activatable group is a photoactivatable group and said activator is an irradiation source.
- 41. An automatic device for detecting a target nucleic acid sequence in a sample by a method employing at least one pair of probes characterized by having sequences homologous to adjacent portions of said target nucleic acid sequence and having side chains which non-covalently bind to form a stem upon base pairing of said probes to said target nucleic acid sequence, at least one of said side chains having an activatable group, which upon activation during stem formation forms a covalent cross-link with the other side chain member of said stem, where in said method said sample and said probes are combined in an assay medium under base-pairing conditions, said activatable groups are activated resulting in cross-linked pairs of probes and said cross-linked pairs of probes are detected as indicative of the presence of said target sequence in said sample, said device comprising:
a thermal cycler for modulating the temperature of said assay medium; a control circuit responsive to the temperature of said assay medium and configured to actuate an irradiation source for activating said activatable group when said temperature is below a first predetermined temperature; and an assay containment means for holding said assay medium.
- 42. The device according to claim 41, wherein said control circuit comprises a thermistor for transducing the temperature of said assay medium into an electrical signal.
- 43. The device according to claim 42, wherein said control circuit is configured so that said irradiation source is inactivated at a second predetermined temperature, wherein said second predetermined temperature is a temperature below said first predetermined temperature.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of 08/487,034, filed Jun. 7, 1995, which is a continuation-in-part of application Ser. No. 08/364,339 filed Dec. 27, 1994, the disclosure of which is herein incorporated by reference.
Divisions (1)
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Number |
Date |
Country |
| Parent |
08577121 |
Dec 1995 |
US |
| Child |
08985700 |
Dec 1997 |
US |
Continuations (1)
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Number |
Date |
Country |
| Parent |
08985700 |
Dec 1997 |
US |
| Child |
09757563 |
Jan 2001 |
US |
Continuation in Parts (2)
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Number |
Date |
Country |
| Parent |
08487034 |
Jun 1995 |
US |
| Child |
08577121 |
Dec 1995 |
US |
| Parent |
08364339 |
Dec 1994 |
US |
| Child |
08487034 |
Jun 1995 |
US |