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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >DNA conformational changes at the primer-template junction regulate the fidelity of replication by DNA polymerase
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DNA conformational changes at the primer-template junction regulate the fidelity of replication by DNA polymerase

机译:引物-模板连接处的DNA构象变化通过DNA聚合酶调节复制的保真度

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Local conformational changes in primer-template (P/T) DNA are in-volved in the selective incorporation of dNTP by DNA polymerases (DNAP). Here we use near UV CD and fluorescence spectra of pairs of base analogue probes, substituted either at the primer terminus or in the coding region of the template strand, to monitor and in-terpret conformational changes at and near the coding base of the template in P/T DNA complexes with Klenow fragment (KF) DNAP as the polymerase moves through the nucleotide addition cycle. Incoming dNTPs and rNTPs encounter binary complexes in which the 3-end of the primer shuttles between the polymerization (pol) and exonuclease (exo) sites of DNAPs, even for perfectly com-plementary P/T DNA sequences. We have used spectral changes of probes inserted in both strands to monitor this two-state distribu-tion and determine how it depends on the formation of ternary complexes with both complementary ("correct") and noncomple-mentary ("incorrect") NTPs and on the local sequence of the P/T DNA. The results show that the relative occupancy of the exo and pol sites is coupled to conformational changes in the P/T DNA of the complex that are partially regulated by the incoming NTP. We find that the coding base on the template strand is unperturbed by the binding of incorrect dNTPs, while binding of complementary rNTPs induces a novel template conformation. We conclude that, in addition to its editing function, primer strand occupancy of the 3'-exo site may also serve as a regulatory checkpoint for accu-rate dNTP selection in DNA synthesis.
机译:引物模板(P / T)DNA的局部构象变化与DNA聚合酶(DNAP)选择性掺入dNTP有关。在这里,我们使用接近的UV CD和成对的碱基类似探针对的荧光光谱,这些探针在引物末端或模板链的编码区域中被取代,以监测和解释模板中编码碱基及其附近的构象变化。随着聚合酶在核苷酸添加循环中移动,P / T DNA与Klenow片段(KF)DNAP形成复合物。传入的dNTP和rNTP遇到二元复合物,其中引物的3末端在DNAP的聚合(pol)和核酸外切酶(exo)位点之间穿梭,即使对于完美互补的P / T DNA序列也是如此。我们已经使用了插入两条链中的探针的光谱变化来监视这种两种状态的分布,并确定它如何取决于具有互补(“正确”)和非互补(“不正确”)NTP的三元复合物的形成以及在P / T DNA的局部序列上。结果表明,exo和pol位点的相对占有率与复合物P / T DNA的构象变化有关,该构象变化部分受传入NTP的调节。我们发现,模板链上的编码基础不受不正确的dNTP结合的干扰,而互补rNTP的结合则诱导了新的模板构象。我们得出的结论是,除了其编辑功能外,3'-exo位点的引物链占有率还可能充当DNA合成中准确dNTP选择的监管检查点。

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