Reversibly protected nucleotide reagents with high thermal stability
The present invention provides for stable nucleotide reagents used for nucleic acid amplification by PCR and RT-PCR (Reverse Transcriptase-PCR) that comprises modified nucleoside polyphosphates. The present invention also provides for methods for using the modified nucleoside polyphosphates for detecting the presence or absence of a target nucleic acid sequence in a sample in an amplification reaction.
1. A method of detecting the presence or absence of a target nucleic acid sequence in a sample comprising:
a) performing an amplifying step comprising contacting the sample with amplification reagents to produce an amplification product if the target nucleic acid sequence is present in the sample, and
b) detecting the amplification product,
wherein the amplification reagents comprise a modified nucleoside polyphosphate having a structure of:
where B=purine or pyrimidine base or an analog, L=linker or nothing, Z=label or nothing, R=OH or O − , R 1 and R 2 =H or OH, n=1-7, X=O, and Y is HO-CH 2 —CH 2 —S—S—CH 2 —CH 2 — and wherein Y can be removed chemically by a reducing agent.
2. The method of claim 1 wherein the reducing agent is selected from the group consisting of a phosphine derivative, sodium sulfite, (Na 2 SO 3 ), β-Mercaptoethanol and dithiothreitol.
3. The method of claim 2 wherein the phosphine derivative is tris-(2-carboyxyethyl) phosphine (TCEP).
4. A method of detecting the presence or absence of a target nucleic acid sequence in a sample comprising:
a) performing an amplifying step comprising contacting the sample with amplification reagents to produce an amplification product if the target nucleic acid sequence is present in the sample, and
b) detecting the amplification product,
wherein the amplification reagents comprise a modified nucleoside polyphosphate having a structure of:
where B=purine or pyrimidine base or an analog, L=linker or nothing, Z=label or nothing, R=OH or O − , R 1 and R 2 =H or OH, n=1-7, X=O, and Y is CH 3 C(O)—S—CH 2 —CH 2 — and and wherein Y can be removed enzymatically by an esterase.
5. The method of claim 4 wherein the esterase is a carboxylesterase.