Claims
- 1. A method of synthesizing a nucleic acid fragment comprising:
contacting a nucleic acid template with:
i) a primer sufficiently complementary to a portion of said template to hybridize therewith, ii) an enzyme that extends said primer so that a product complementary to said template is produced, and iii) four different nucleotides at least one of which, once incorporated into said nucleic acid, is resistant to enzymatic degradation, said contacting being effected under conditions such that said at least one nucleotide is recognized by said enzyme and is thereby incorporated into said extension product of said primer.
- 2. The method according to claim 1 wherein said at least one nucleotide is a borano-containing compound.
- 3. The method according to claim 2 wherein said borano-containing compound is an α-P-substituted nucleotide.
- 4. The method according to claim 3 wherein said α-P-substituted nucleotide is a 2′-deoxynucleoside 5′-α-borano-triphosphate.
- 5. The method according to claim 1 wherein said enzyme is a polymerase.
- 6. The method according to claim 5 wherein said polymerase is a heat stable polymerase.
- 7. The method according to claim 1 wherein said enzymatic degradation is 3′ exonuclease degradation.
- 8. The method according to claim 7 wherein said enzymatic degradation is 5′ exonuclease degradation.
- 9. A method of sequencing a nucleic acid comprising:
i) enzymatically amplifying said nucleic acid in the presence of (a) four nucleotides that, once incorporated into a product of said amplification, are susceptible to enzymatic degradation, and (b) a first modified nucleotide that is selectively incorporated into said product of said amplification in lieu of a first of said four nucleotides of (a), which first modified nucleotide, once incorporated into said product of said amplification is resistant to enzymatic degradation, and
repeating said enzymatic amplification in the presence of a second, third and fourth modified nucleotide, each of which second, third and fourth modified nucleotides is selectively incorporated into said product of said amplification in lieu of a second, third and fourth of said nucleotides of (a), each of said second, third and fourth modified nucleotides being resistant to enzymatic degradation once incorporated into said product of said amplification; ii) treating the products of said amplification of step (i) containing said first, second, third and fourth modified nucleotides with an enzyme that digests said products in the 3′ to 5′ direction, said digestions terminating at the sites of incorporation of said modified nucleotides; iii) separating the fragments resulting from the treatment of step (ii) and detecting the position of each of said modified nucleotides in the products of said amplification.
- 10. The method according to claim 9 wherein said amplification is effected by polymerase chain reaction.
- 11. The method according to claim 9 wherein said treatment of step (ii) is effected using exonuclease III.
- 12. The method according to claim 9 wherein said separation of step (iii) is effected by gel electrophoresis.
- 13. The method according to claim 9 wherein at least one of said modified nucleotides is a borano-containing compound.
- 14. The method according to claim 13 wherein said borano containing compound is a 2′-deoxynucleoside 5′-α-borano-phosphate.
- 15. A method of sequencing a nucleic acid comprising:
i) enzymatically amplifying said nucleic acid in the presence of (a) four nucleotides that, once incorporated into a product of said amplification, are susceptible to enzymatic degradation, and (b) a first modified nucleotide that is selectively incorporated into said product of said amplification in lieu of a first of said four nucleotides of (a), which first modified nucleotide, once incorporated into said product of said amplification is resistant to enzymatic degradation, and
repeating said enzymatic amplification in the presence of a second, third and fourth modified nucleotide, each of which second, third and fourth modified nucleotides is selectively incorporated into said product of said amplification in lieu of a second, third and fourth of said nucleotides of (a), each of said second, third and fourth modified nucleotides being resistant to enzymatic degradation once incorporated into said product of said amplification; ii) subjecting the products of said amplification of step (i) containing a first, second, third and fourth modified nucleotides to mass spectrometry and detecting the resulting fragment patterns and thereby the position of each of said modified nucleotides in the products of said amplification.
- 16. A method of producing a protein comprising introducing into a cell a nucleic acid sequence encoding said protein, which nucleic acid sequence includes a modified nucleotide that is resistant to enzymatic degradation, said introduction being effected under conditions such that said nucleic acid sequence is expressed and said protein thereby produced.
- 17. A method of sequencing a nucleic acid comprising:
i) enzymatically amplifying said nucleic acid in the presence of (a) four nucleotides that, once incorporated into a product of said amplification, are susceptible to enzymatic degradation, and (b) a first modified nucleotide that is selectively incorporated into said product of said amplification in lieu of a first of said four nucleotides of (a), which first modified nucleotide, once incorporated into said product of said amplification is resistant to enzymatic degradation, and
repeating said enzymatic amplification in the presence of a second, third and fourth modified nucleotide, each of which second, third and fourth modified nucleotides is selectively incorporated into said product of said amplification in lieu of a second, third and fourth of said nucleotides of (a), each of said second, third and fourth modified nucleotides being resistant to enzymatic degradation once incorporated into said product of said amplification; ii) degrading the products of said amplification of step (i) containing a first, second, third and fourth modified nucleotides so that the resulting fragment patterns reveal the position of each of said modified nucleotides in the products of said amplification.
- 18. The method according to claim 17 wherein said degradation step (ii) is effected using an exonuclease.
- 19. The method according to claim 18 wherein said exonuclease is a 3′ exonuclease.
- 20. The method according to claim 18 wherein said exonuclease is a 5′ exonuclease.
- 21. The method according to claim 17 wherein said products of step (i) are fragmented prior to step (ii).
- 22. The method according to claim 17 wherein said products of step (i) are greater than 1 kilobase in length.
- 23. A method of amplifying a DNA sequence comprising:
i) contacting said DNA sequence with a primer having a first part and a second part,
said first part having a nucleotide sequence such that said first part hybridizes to a portion of said DNA sequence, and said second part being 5′ to said first part, noncomplementary to said DNA sequence and having a nucleotide sequence that includes a restriction enzyme recognition site, wherein said contacting is effected under conditions such that said first part of said primer hybridizes to said DNA sequence; and ii) enzymatically extending said primer and said DNA sequence in the presence of a boronated deoxynucleoside triphosphate so that a boronated duplex extension product is produced, said boronated deoxynucleoside triphosphate being selected so that a boronated deoxynucleoside is inserted into the extended DNA sequence at the site of cleavage of said restriction enzyme; iii) contacting the duplex extension product with said restriction enzyme under conditions such that said second part of said primer is nicked; and iv) contacting said nicked duplex extension product resulting form step (iii) with a polymerase that effects strand displacement under conditions such that a nucleic acid is produced from the site of the nick that is complementary to said extended DNA sequence.
- 24. A method of bidirectionally sequencing a double-stranded nucleic acid comprising:
i) enzymatically amplifying each strand of said nucleic acid in the presence of (a) four nucleotides that, once incorporated into a product of said amplification, are susceptible to enzymatic degradation, and (b) a first modified nucleotide that is selectively incorporated into said product of said amplification in lieu of a first of said four nucleotides of (a), which first modified nucleotide, once incorporated into said product of said amplification is resistant to enzymatic degradation, and
repeating said enzymatic amplification in the presence of a second, third and fourth modified nucleotide, each of which second, third and fourth modified nucleotides is selectively incorporated into said product of said amplification in lieu of a second, third and fourth of said nucleotides of (a), each of said second, third and fourth modified nucleotides being resistant to enzymatic degradation once incorporated into said product of said amplification; wherein said enzymatic amplification is effected using a first primer complementary to a first strand of said nucleic acid, said first primer being linked at the 5′ end thereof to a first member of a binding pair, and a second primer complementary to a second strand of said nucleic acid, ii) contacting the products of said step (i) with a solid support having a second member of said binding pair linked thereto and under conditions such that products of said step (i) either linked to said first member of said binding pair or hybridized to products of step (i) linked to said first member of said binding pair, complex with said second member of said binding pair bound to said solid support; iii) digesting the complex resulting from step (ii) with an exonuclease, said digestions terminating at the sites of incorporation of said modified nucleotides; iv) denaturing the digests resulting from step (iii); v) separating fragments resulting from the treatment of step (iv) and detecting the position of each of said modified nucleotides in the products of said amplification.
- 25. A method of preparing an aptamer comprising:
i) synthesizing a shape library containing molecules of boronated ribonucleic acids or boronated deoxyribonucleic acids, ii) contacting said molecules with a target surface, and iii) selecting molecules of said shape library that bind to said target surface.
- 26. The method according to claim 25 wherein said selected molecules resulting from step (iii) are amplified and said selection step (iii) is repeated with the product of said amplification.
- 27. A method of synthesizing an oligonucleotide comprising an internucleotide boranophosphate linkage comprising:
i) synthesizing an oligonucleotide comprising an internucleotide H-phosphonate diester linkage, ii) converting said H-phosphonate diester linkage to a phosphite triester linkage, iii) boronating said phosphite triester linkage so that a boranophosphate triester linkage is formed; and iv) converting said boranophosphate triester linkage to a boranophosphate diester linkage so that said oligonucleotide comprising an internucleotide boranophosphate linkage is formed.
- 28. The method according to claim 27 wherein said conversion of step (ii) is effected by silylation or halogenation.
- 29. The method according to claim 27 wherein said conversion step (ii) is effected with bis(trimethylsily)acetamide.
- 30. The method according to claim 27 wherein said conversion of step (ii) is effected under anhydrous and anoxic conditions.
- 31. The method according to claim 27 wherein said boronation of step (iii) is effected using a boron complex.
- 32. The method according to claim 27 wherein said boronation of step (iii) is effected using an amine borane.
- 33. The method according to claim 27 wherein said boronation of step (iii) is effected using a pyridine borane complex.
- 34. The method according to claim 27 wherein said conversion of step (iv) is effected using alkaline conditions.
- 35. The method accordiance to claim 27 wherein said conversion step (iv) is effected using ammonia.
Parent Case Info
[0001] This is a continuation-in-part of application Ser. No. 08/300,265, filed Sep. 2, 1994, which is a continuation-in-part of application Ser. No. 08/115,690, filed Sep. 3, 1993, now abandoned, the entire contents of which applications are incorporated herein by reference.
Continuations (3)
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Number |
Date |
Country |
Parent |
09438836 |
Nov 1999 |
US |
Child |
09984566 |
Oct 2001 |
US |
Parent |
09098422 |
Jun 1998 |
US |
Child |
09438836 |
Nov 1999 |
US |
Parent |
08716718 |
Sep 1996 |
US |
Child |
09098422 |
Jun 1998 |
US |
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
08300265 |
Sep 1994 |
US |
Child |
08716718 |
Sep 1996 |
US |
Parent |
08115690 |
Sep 1993 |
US |
Child |
08300265 |
Sep 1994 |
US |