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高保真 DNA 聚合酶与错配核苷酸结合的结构揭示了核苷酸选择机制中的一种“半开”中间构象。

The structure of a high fidelity DNA polymerase bound to a mismatched nucleotide reveals an "ajar" intermediate conformation in the nucleotide selection mechanism.

机构信息

Department of Biochemistry, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

J Biol Chem. 2011 Jun 3;286(22):19758-67. doi: 10.1074/jbc.M110.191130. Epub 2011 Mar 19.

Abstract

To achieve accurate DNA synthesis, DNA polymerases must rapidly sample and discriminate against incorrect nucleotides. Here we report the crystal structure of a high fidelity DNA polymerase I bound to DNA primer-template caught in the act of binding a mismatched (dG:dTTP) nucleoside triphosphate. The polymerase adopts a conformation in between the previously established "open" and "closed" states. In this "ajar" conformation, the template base has moved into the insertion site but misaligns an incorrect nucleotide relative to the primer terminus. The displacement of a conserved active site tyrosine in the insertion site by the template base is accommodated by a distinctive kink in the polymerase O helix, resulting in a partially open ternary complex. We suggest that the ajar conformation allows the template to probe incoming nucleotides for complementarity before closure of the enzyme around the substrate. Based on solution fluorescence, kinetics, and crystallographic analyses of wild-type and mutant polymerases reported here, we present a three-state reaction pathway in which nucleotides either pass through this intermediate conformation to the closed conformation and catalysis or are misaligned within the intermediate, leading to destabilization of the closed conformation.

摘要

为了实现准确的 DNA 合成,DNA 聚合酶必须快速采样并区分错误的核苷酸。在这里,我们报告了一种高保真 DNA 聚合酶 I 与 DNA 引物-模板复合物的晶体结构,该复合物在结合错配(dG:dTTP)核苷三磷酸时被捕获。该聚合酶采用了一种介于先前建立的“开放”和“关闭”状态之间的构象。在这种“半开”构象中,模板碱基已进入插入位置,但相对于引物末端错配了一个不正确的核苷酸。模板碱基在插入位置处置换保守的活性位点酪氨酸被聚合酶 O 螺旋中的独特扭曲所容纳,导致部分打开的三元复合物。我们认为,在酶围绕底物关闭之前,半开构象允许模板探测进入的核苷酸的互补性。基于我们在这里报告的野生型和突变型聚合酶的溶液荧光、动力学和晶体学分析,我们提出了一个三态反应途径,其中核苷酸要么通过这个中间构象进入封闭构象和催化,要么在中间构象中错配,导致封闭构象的不稳定。

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