Claims
- 1. A propargylethoxyamino nucleotide having the structure: wherein:n is 1 or 2; R1 and R2 are independently selected from H, C1-C8 lower alkyl, and a protecting group, or R1 and R2 taken together is a protecting group; B is a 7-deazapurine, a purine, or a pyrimidine nucleoside base; when B is purine or 7-deazapurine, the sugar moiety is attached at the N9-position of the purine or 7-deazapurine, and when B is pyrimidine, the sugar moiety is attached at the N1-position of the pyrimidine; and when B is a purine, the adjacent triple-bonded carbon is attached to the 8-position of the purine, when B is 7-deazapurine, the adjacent triple-bonded carbon is attached to the 7-position of the 7-deazapurine, and when B is pyrimidine, the adjacent triple-bonded carbon is attached to the 5-position of the pyrimidine; W1 is H or OH; W2 is selected from H, OH, and a moiety which renders the nucleoside incapable of forming a phosphodiester bond at the 3′-position; and W3 is selected from OH, phosphate, diphosphate, triphosphate, an activated phosphate, and a phosphate analog.
- 2. The propargylethoxyamino nucleotide of claim 1 wherein R1 is H, and R2 is trifluoroacetyl.
- 3. The propargylethoxyamino nucleotide of claim 1 wherein R1 and R2 taken together is phthalimido.
- 4. The propargylethoxyamino nucleotide of claim 1 wherein W1 and W2 are each H.
- 5. The propargylethoxyamino nucleotide of claim 1 wherein W2 is selected from azido, amino, fluoro, and methoxy.
- 6. The propargylethoxyamino nucleotide of claim 1 wherein B is selected from adenine, guanine, cytosine, uracil, thymine, deazaadenine, and deazaguanosine.
- 7. A labelled propargylethoxyamino nucleotide having the structure: wherein:n is 1 or 2; L is a label; R1 is H or C1-C8 lower alkyl; B is selected from a 7-deazapurine, a purine, or a pyrimidine nucleoside base; when B is purine or 7-deazapurine, the sugar moiety is attached at the N9-position of the purine or 7-deazapurine, and when B is pyrimidine, the sugar moiety is attached at the N1-position of the pyrimidine; and when B is a purine, the adjacent triple-bonded carbon is attached to the 8-position of the purine, when B is 7-deazapurine, the adjacent triple-bonded carbon is attached to the 7-position of the 7-deazapurine, and when B is pyrimidine, the adjacent triple-bonded carbon is attached to the 5-position of the pyrimidine; W1 is H or OH; W2 is selected from H, OH, and a moiety which renders the nucleoside incapable of forming a phosphodiester bond at the 3′-position; and W3 is selected from OH, phosphate, diphosphate, triphosphate, and phosphate analog.
- 8. The labelled propargylethoxyamino nucleotide of claim 7 wherein L is a fluorescein-type dye selected from 6-carboxyfluorescein, 5-carboxyfluorescein, 6-carboxy-4,7,2′,7′-tetrachlorofluorescein, 6-carboxy-4,7,2′,4′,5′,7′-hexachlorofluorescein, 5-(and 6)carboxy-4′,5′-dichloro-2′7′-dimethoxyfluorescein, and 5-carboxy-2′,4′,5′,7′-tetrachlorofluorescein.
- 9. The labelled propargylethoxyamino nucleotide of claim 7 wherein L is a rhodamine-type dye selected from tetramethylrhodamine, 4,7-dichlorotetramethyl rhodamine, rhodamine ROX, rhodamine R6G, and rhodamine R110.
- 10. The labelled propargylethoxyamino nucleotide of claim 7 wherein W1 and W2 are each H.
- 11. The labelled propargylethoxyamino nucleotide of claim 7 wherein W2 is selected from azido, amino, fluoro, and methoxy.
- 12. The labelled propargylethoxyamino nucleotide of claim 7 wherein B is selected from adenine, guanine, cytosine, uracil, thymine, deazaadenine, and deazaguanosine.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation of application Ser. No. 09/583,068 filed Jun. 18, 1998 now U.S. Pat. No. 6,248,568, which is a divisional of application Ser. No. 08/696,808 filed Aug. 13, 1996 now U.S. Pat. No. 5,821,356, which is a continuation-in-part of Ser. No. 08/694,442 filed Aug. 12, 1996, abandoned, all of which are incorporated here in by reference.
US Referenced Citations (8)
Number |
Name |
Date |
Kind |
4318849 |
Bühler et al. |
Mar 1982 |
A |
4879214 |
Kornher et al. |
Nov 1989 |
A |
5047519 |
Hobbs, Jr. et al. |
Sep 1991 |
A |
5151507 |
Hobbs, Jr. et al. |
Sep 1992 |
A |
5171534 |
Smith et al. |
Dec 1992 |
A |
5188934 |
Menchen et al. |
Feb 1993 |
A |
5366860 |
Bergot et al. |
Nov 1994 |
A |
5821356 |
Khan et al. |
Oct 1998 |
A |
Foreign Referenced Citations (5)
Number |
Date |
Country |
0251786 |
Jan 1988 |
EP |
11-513388 |
Nov 1999 |
JP |
WO 9324511 |
Dec 1993 |
WO |
WO 9417092 |
Aug 1994 |
WO |
WO 9518139 |
Jul 1995 |
WO |
Non-Patent Literature Citations (2)
Entry |
Livak et al., “Detection of single base differences using biotinylated nucleotides with very long linker arms,” Nucleic Acids Research 20(18):4831-4837 (Aug. 1992). |
Kornher et al., “Mutation detection using mucleotide analogs that alter electrophoretic mobility,” Nucleic Acids Research 17(19) (1989). |
Continuations (1)
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Number |
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Parent |
09/583068 |
Jun 1998 |
US |
Child |
09/881898 |
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US |
Continuation in Parts (1)
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Number |
Date |
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08/694442 |
Aug 1996 |
US |
Child |
08/696808 |
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US |