Claims
- 1. A method for chemospecifically and regiospecifically labeling DNA molecules through phosphodiester alkylation comprising the steps of:producing an independently tethered delivering oligonucleotide; appending said oligonucleotide to a DNA synthesizer, machine-ready core reagent; providing phosphate specficity through a guanidinium-phosphate complex; providing latent reactivity activated by photolysis to afford a quinone methide precursor; alkylating a phosphodiester with quinone methide resulting in situ release of said delivering oligonucleotide through lactonization; and forming a covalently stable trialkyiphosphate upon lactone formation by trapping an alkylated product thereby preventing reaction reversibility.
- 2. The method for chemospecifically and regiospecifically labeling DNA molecules through phosphodiester alkylation of claim 1 wherein said step for providing phosphate specificity through a guanidinium-phosphate complex comprises:a Rathke guanylation; ortho-bromination; and iodination.
- 3. The method for chemospecifically and regiospecifically labeling DNA molecules through phosphodiester alkylation of claim 1, further comprising the use of a photolabile protecting group for in situ activation of a latently reactive quinone methides.
- 4. The method for chemospecifically and regiospecifically labeling DNA molecules through phosphodiester alkylation of claim 1, further comprising the steps of:producing said trialkylphosphate as a covalent modification of said oligonucleotide.
- 5. A method for chemospecifically and regiospecifically labeling nucleic acid polymers comprising the steps of:producing an independently tethered delivering molecule for site-specific recognition of the nucleic acid polymer; appending said delivering molecule to a DNA synthesizer, machine-ready core reagent; providing phosphate specificity through a phosphate-binding functional group; providing latent reactivity through in situ activation; alkylating a phosphodiester resulting in the in situ release of said site-specific delivering molecule through intramolecular cleavage of the attaching tether; and, forming a covalently stable trialkylphosphate upon trapping an alkylated product preventing reaction reversibility.
- 6. The method as recited in claim 5, wherein latent reactivity is any means to send in a non-reactive alkylating agent and activating it only after it is bound to its target site.
- 7. The method as recited in claim 6, wherein the non-reactive alkylating agent is activated by at least one of photolysis, enzymatic activation, pH, salt, or other activating agent.
- 8. The method as recited in claim 7, wherein any natural or non-natural nucleic acid polymer is the target for covalent modification.
- 9. The method as recited in claim 5, further comprising the steps of:producing a quinone methide for phosphodiester alkylation; and, incorporating a group which will assist in quinione methide formation through proton removal and activate the quinone methide through electron withdrawal, prior to alkylating the phosphodiester.
- 10. The method as recited in claim 9, wherein the group which will assist in quinone methide formation and ensuing activation is any functional group which can accept and donate a proton or chelate with a Lewis acidic metal atom to activate the quinone methide oxygen.
CROSS-REFERENCE TO RELATED APPLICATIONS
This Application is a continuation-in-part of provisional application Ser. No. 60/041,883, filed Apr. 11, 1997, abandoned and Ser. No. 09/057,957, filed Apr. 9, 1998, abandoned which are hereby incorporated by reference.
US Referenced Citations (3)
Provisional Applications (1)
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Number |
Date |
Country |
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60/041883 |
Apr 1997 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09/057957 |
Apr 1998 |
US |
Child |
09/516700 |
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US |