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Single-molecule FRET reveals proofreading complexes in the large fragment of Bacillus stearothermophilus DNA polymerase I

机译:单分子FRET揭示了嗜热脂肪芽孢杆菌 DNA聚合酶I大片段中的校对复合物

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There is increasing interest in the use of DNA polymerases (DNA pols) in next-generation sequencing strategies. These methodologies typically rely on members of the A and B family of DNA polymerases that are classified as high-fidelity DNA polymerases. These enzymes possess the ability to selectively incorporate the correct nucleotide opposite a templating base with an error frequency of only 1 in 106 insertion events. How they achieve this remarkable fidelity has been the subject of numerous investigations, yet the mechanism by which these enzymes achieve this level of accuracy remains elusive. Several smFRET assays were designed to monitor the conformational changes associated with the nucleotide selection mechanism(s) employed by DNA pols. smFRET has also been used to monitor the movement of DNA pols along a DNA substrate as well as to observe the formation of proof-reading complexes. One member among this class of enzymes, the large fragment of Bacillus stearothermophilus DNA polymerase I (Bst pol I LF), contains both 5'→3' polymerase and 3'→5' exonuclease domains, but reportedly lacks exonuclease activity. We have designed a smFRET assay showing that Bst pol I LF forms proofreading complexes. The formation of proofreading complexes at the single molecule level is strongly influenced by the presence of the 3' hydroxyl at the primer-terminus of the DNA substrate. Our assays also identify an additional state, observed in the presence of a mismatched primer-template terminus, that may be involved in the transfer of the primer-terminus from the polymerase to the exonuclease active site.
机译:在下一代测序策略中对DNA聚合酶(DNA pols)的使用越来越引起人们的兴趣。这些方法通常依赖于被归类为高保真DNA聚合酶的DNA聚合酶A和B家族的成员。这些酶具有选择性地掺入与模板碱基相对的正确核苷酸的能力,错误频率仅为10 6 插入事件中的1个。它们如何实现这种出色的保真度一直是众多研究的主题,但是这些酶达到这种精确度水平的机制仍然难以捉摸。设计了几种smFRET检测方法来监测与DNA pol所采用的核苷酸选择机制相关的构象变化。 smFRET也已用于监测DNA pols沿DNA底物的移动以及观察校对复合物的形成。这类酶中的一个成员是嗜热脂肪芽孢杆菌DNA聚合酶I(Bst pol I LF)的大片段,同时包含5'→3'聚合酶和3'→5'核酸外切酶结构域,但据报道缺乏核酸外切酶活性。我们设计了一个smFRET检测方法,表明Bst pol I LF形成校对复合物。单分子水平的校对复合物的形成受到DNA底物引物末端3'羟基的存在的强烈影响。我们的测定法还鉴定了在不匹配的引物-模板末端存在下观察到的另一种状态,该状态可能与引物末端从聚合酶转移至核酸外切酶活性位点有关。

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