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首页> 外文期刊>Structure >Structural insights into DNA polymerase beta deterrents for misincorporation support an induced-fit mechanism for fidelity
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Structural insights into DNA polymerase beta deterrents for misincorporation support an induced-fit mechanism for fidelity

机译:对DNA聚合酶β阻遏剂错误掺入的结构见解支持保真度的诱导拟合机制

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摘要

DNA polymerases generally select the correct nucleotide from a pool of structurally similar molecules to preserve Watson-Crick base-pairing rules. We report the structure of DNA polymerase beta with DNA mismatches situated in the polymerase active site. This was achieved by using nicked product DNA that traps the mispair (template-primer, A-C or T-C) in the nascent base pair binding pocket. The structure of each mispair complex indicates that the bases do not form hydrogen bonds with one another, but form a staggered arrangement where the bases of the mispair partially overlap. This prevents closure/opening of the N subdomain that is believed to be required for catalytic cycling. The partially open conformation of the N subdomain results in distinct hydrogen bonding networks that are unique for each mispair. These structures define diverse molecular aspects of misinsertion that are consistent with the induced-fit model for substrate specificity.
机译:DNA聚合酶通常会从结构相似的分子库中选择正确的核苷酸,以保留Watson-Crick碱基配对规则。我们报告了DNA聚合酶β与位于聚合酶活性位点的DNA不匹配的结构。这是通过使用带切口的产物DNA来实现的,该产物将错误配对(模板引物,A-C或T-C)捕获在新生的碱基对结合口袋中。每个错配配合物的结构表明,碱基彼此之间不形成氢键,而是形成交错排列,错配的碱基部分重叠。这防止了据信催化循环所需的N亚结构域的关闭/打开。 N亚结构域的部分开放构象导致每个错配独特的独特氢键网络。这些结构定义了错误插入的各种分子方面,与底物特异性的诱导拟合模型一致。

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