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DinB损伤旁路DNA聚合酶催化片段的晶体结构揭示了一个经典的聚合酶催化结构域。

Crystal structure of a DinB lesion bypass DNA polymerase catalytic fragment reveals a classic polymerase catalytic domain.

作者信息

Zhou B L, Pata J D, Steitz T A

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520, USA.

出版信息

Mol Cell. 2001 Aug;8(2):427-37. doi: 10.1016/s1097-2765(01)00310-0.

Abstract

The UmuC/DinB family of bypass polymerases is responsible for translesion DNA synthesis and includes the human polymerases eta, iota, and kappa. We determined the 2.3 A resolution crystal structure of a catalytic fragment of the DinB homolog (Dbh) polymerase from Sulfolobus solfataricus and show that it is nonprocessive and can bypass an abasic site. The structure of the catalytic domain is nearly identical to those of most other polymerase families. Homology modeling suggests that there is minimal contact between protein and DNA, that the nascent base pair binding pocket is quite accessible, and that the enzyme is already in a closed conformation characteristic of ternary polymerase complexes. These observations afford insights into the sources of low fidelity and low processivity of the UmuC/DinB polymerases.

摘要

UmuC/DinB家族的跨损伤DNA合成聚合酶负责跨损伤DNA合成,其中包括人类聚合酶η、ι和κ。我们确定了来自嗜热栖热菌的DinB同源物(Dbh)聚合酶催化片段的2.3埃分辨率晶体结构,并表明它是非持续合成的,且能绕过无碱基位点。催化结构域的结构与大多数其他聚合酶家族的结构几乎相同。同源建模表明,蛋白质与DNA之间的接触极少,新生碱基对结合口袋相当容易接近,并且该酶已经处于三元聚合酶复合物特有的封闭构象。这些观察结果为深入了解UmuC/DinB聚合酶低保真性和低持续合成能力的根源提供了思路。

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