Claims
- 1. A mononucleoside triphosphate having the formula I:
- P-Z-B-E (I)
- wherein
- P is a triphosphate group or a triphosphate analog group,
- Z is a sugar or sugar analog group,
- B is a nucleobase analog group, and
- E is an electrochemiluminescence group.
- 2. The triphosphate according to claim 1, wherein said triphosphate has the structural formula Ia: ##STR3## or alkali and earth alkali salts thereof, wherein
- X is hydrogen or OR.sup.1,
- R.sup.1 is selected from the group consisting of C.sub.1 -C.sub.6 alkyl group, a C.sub.1 -C.sub.6 alkylene group and hydrogen,
- B is selected from the group consisting of a purine, deazapurine and a pyrimidine group,
- A is a spacer group, and
- K is an electrochemiluminescent coordination complex.
- 3. The triphosphate according to claim 1, wherein the electrochemiluminescence group is a coordination complex of a metal ion and at least one organic ligand having an atomic weight greater than 500 g/mol.
- 4. The triphosphate according to claim 1, wherein the molecular weight of E is between 550 and 2000 g/mol.
- 5. A method for the extension of an oligonucleotide comprising the steps of:
- hybridizing an oligonucleotide to a first nucleic acid, and
- extending said oligonucleotide by a mononucleoside triphosphate having the formula I
- P-Z-B-A-K (I)
- at the 3'-end of said oligonucleotide using a polymerase,
- wherein
- P is a triphosphate group or a triphosphate analog group,
- Z is a sugar or a sugar analog group,
- B is a nucleobase or a nucleobase analog group, and
- K is an electrochemiluminescent coordination complex, and
- A is a spacer group,
- wherein the molecular weight of K is between 550 and 2000 g/mol.
- 6. The method according to claim 5, wherein said triphosphate has the structural formula Ia: ##STR4## or alkali and earth salts thereof, wherein
- X is hydrogen or OR.sup.1,
- R.sup.1 is selected from the group consisting of a C.sub.1 -C.sub.6 alkyl group, a C.sub.1 -C.sub.6 alkylene group and hydrogen,
- B is selected from the group consisting of a purine, deazapurine and a pyrimidine group,
- A is a spacer group, and
- K is an electrochemiluminescent coordination complex.
- 7. A method for the determination of a nucleic acid comprising the steps of
- hybridizing a primer to the nucleic acid to be determined,
- extending the 3'-end of said primer by attaching a mononucleoside triphosphate having the formula I:
- P-Z-B-A-K (I)
- wherein
- P is a triphosphate group or a triphosphate analog group,
- Z is a sugar or a sugar analog group,
- B is a nucleobase or a nucleobase analog group,
- K is an electrochemiluminescent coordination complex, and
- A is a spacer group,
- using a polymerase, to produce an extension product and determining any electrochemiluminescence group in the extension product as a measure of the nucleic acid to be determined.
- 8. The method according to claim 7, wherein the extension reaction is performed in a cyclic manner.
- 9. The method according to claim 7, wherein said triphosphate has the structural formula Ia: ##STR5## or alkali and earth salts thereof, wherein
- X is hydrogen or OR.sup.1,
- R.sup.1 is selected from the group consisting of a C.sub.1 -C.sub.6 alkyl group, a C.sub.1 -C.sub.6 alkylene group and hydrogen,
- B is selected from the group consisting of a purine, deazapurine and a pyrimidine group,
- A is a spacer group, and
- K is an electrochemiluminescent coordination complex.
Priority Claims (3)
Number |
Date |
Country |
Kind |
43 19 151 |
Jun 1993 |
DEX |
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43 39 086 |
Nov 1993 |
DEX |
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43 44 742 |
Dec 1993 |
DEX |
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Parent Case Info
This is a division of application Ser. No. 08/257,778 filed Jun. 9, 1994; now U.S. Pat. No. 5,639,609.
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|
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Entry |
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Divisions (1)
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Number |
Date |
Country |
Parent |
257778 |
Jun 1994 |
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