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Influence of DNA Aptamer Structure on the Specificity of Binding to Taq DNA Polymerase

机译:DNA适体结构对Taq DNA聚合酶结合特异性的影响

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摘要

The secondary structure of DNA aptamer to Taq DNA polymerase was established as a hairpin. Both stem and loop structures of DNA ligand were shown to be involved in the interaction with Taq DNA polymerase. Moreover, the structure and sequence of DNA aptamer that was the most effective inhibitor of DNA polymerase activity were established. This crucial structure was evaluated as a GC-rich stem longer than 17 bp, and a loop consisting of 12 bases with strictly determined nucleotide sequence. It was demonstrated that nucleotide in position 23 counting from the 5'-end of DNA ligand was involved in direct contact with Taq DNA polymerase. The ability of optimized DNA aptamer TQ21-11 to form a complex with the enzyme was increased 5-fold in comparison to the initial aptamer.
机译:Taq DNA聚合酶的DNA适体的二级结构被确定为发夹。 DNA配体的茎和环结构都显示出与Taq DNA聚合酶的相互作用。此外,建立了DNA适体的结构和序列,该适体是最有效的DNA聚合酶活性抑制剂。该关键结构被评估为长于17 bp的富含GC的茎,以及一个由12个碱基组成且具有严格确定的核苷酸序列的环。已经证明,从DNA配体的5'-末端开始计数的23位核苷酸与Taq DNA聚合酶直接接触。与初始适体相比,优化的DNA适体TQ21-11与酶形成复合物的能力提高了5倍。

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