CIS reactive oxygen quenchers integrated into linkers
The present invention provides methods and compositions for performing illuminated reactions, particularly sequencing reactions, while mitigating and/or preventing photodamage to reactants that can result from prolonged illumination. In particular, the invention provides methods and compositions for incorporating photoprotective agents into conjugates comprising reporter molecules and nucleoside polyphosphates.
1. A compound comprising a nucleoside polyphosphate, a photoprotective agent, and a dye, wherein said dye is directly coupled to a phosphate of said nucleoside polyphosphate, and wherein said photoprotective agent comprises a triplet state quencher.
2. The compound of claim 1 , wherein said nucleoside polyphosphate is a member selected from: nucleoside triphosphate, nucleoside tetraphosphate, nucleoside pentaphosphate, and nucleoside hexaphosphate.
3. The compound of claim 1 , wherein said dye is covalently bound to said phosphate of said nucleoside polyphosphate.
4. The compound of claim 1 , wherein said compound further comprises a linker, and wherein said photoprotective agent is covalently bound to said linker.
5. The compound of claim 4 , wherein said photoprotective agent is integrated within said linker or is attached to a side group of said linker.
6. The compound of claim 1 , wherein said dye comprises a fluorescent labeling group.
7. The compound of claim 1 , wherein said phosphate of said nucleoside polyphosphate is a terminal phosphate.
8. The compound of claim 1 , wherein said photoprotective agent is directly coupled to said dye, such that said dye is interposed between said photoprotective agent and said nucleoside polyphosphate.
9. The compound of claim 1 , wherein said triplet state quencher is a member selected from: ascorbic acid, dithiothreitol, mercaptoethylamine, β-mercaptoethanol, n-propyl gallate, p-phenyldiamene, hydroquinone, sodium azide, diazobicylooctance, and 3-nitrobenzoic acid.