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人类DNA聚合酶β的自发复制错误与错配识别机制。

The spontaneous replication error and the mismatch discrimination mechanisms of human DNA polymerase β.

作者信息

Koag Myong-Chul, Nam Kwangho, Lee Seongmin

机构信息

Division of Medicinal Chemistry, College of Pharmacy, The University of Texas at Austin, Austin, TX 78712, USA.

Department of Chemistry and Computational Life Science Cluster (CLiC), Umeå University, 901 87 Umeå, Sweden

出版信息

Nucleic Acids Res. 2014;42(17):11233-45. doi: 10.1093/nar/gku789. Epub 2014 Sep 8.

Abstract

To provide molecular-level insights into the spontaneous replication error and the mismatch discrimination mechanisms of human DNA polymerase β (polβ), we report four crystal structures of polβ complexed with dG•dTTP and dA•dCTP mismatches in the presence of Mg2+ or Mn2+. The Mg(2+)-bound ground-state structures show that the dA•dCTP-Mg2+ complex adopts an 'intermediate' protein conformation while the dG•dTTP-Mg2+ complex adopts an open protein conformation. The Mn(2+)-bound 'pre-chemistry-state' structures show that the dA•dCTP-Mn2+ complex is structurally very similar to the dA•dCTP-Mg2+ complex, whereas the dG•dTTP-Mn2+ complex undergoes a large-scale conformational change to adopt a Watson-Crick-like dG•dTTP base pair and a closed protein conformation. These structural differences, together with our molecular dynamics simulation studies, suggest that polβ increases replication fidelity via a two-stage mismatch discrimination mechanism, where one is in the ground state and the other in the closed conformation state. In the closed conformation state, polβ appears to allow only a Watson-Crick-like conformation for purine•pyrimidine base pairs, thereby discriminating the mismatched base pairs based on their ability to form the Watson-Crick-like conformation. Overall, the present studies provide new insights into the spontaneous replication error and the replication fidelity mechanisms of polβ.

摘要

为了从分子水平深入了解人类DNA聚合酶β(polβ)的自发复制错误和错配识别机制,我们报告了在存在Mg2+或Mn2+的情况下,polβ与dG•dTTP和dA•dCTP错配形成的复合物的四个晶体结构。与Mg(2+)结合的基态结构表明,dA•dCTP-Mg2+复合物采用“中间”蛋白质构象,而dG•dTTP-Mg2+复合物采用开放蛋白质构象。与Mn(2+)结合的“化学前状态”结构表明,dA•dCTP-Mn2+复合物在结构上与dA•dCTP-Mg2+复合物非常相似,而dG•dTTP-Mn2+复合物则经历大规模构象变化,以采用类似沃森-克里克的dG•dTTP碱基对和封闭蛋白质构象。这些结构差异,连同我们的分子动力学模拟研究,表明polβ通过两阶段错配识别机制提高复制保真度,其中一个阶段处于基态,另一个阶段处于封闭构象状态。在封闭构象状态下,polβ似乎只允许嘌呤•嘧啶碱基对采用类似沃森-克里克的构象,从而根据错配碱基对形成类似沃森-克里克构象的能力来区分它们。总体而言,本研究为polβ的自发复制错误和复制保真度机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26e9/4176172/e1e44752361b/gku789fig1.jpg

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