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人类 DNA 跨损伤聚合酶 η 绕过酶切和错配碱基位于 DNA 加合物 1,N- 烯丙基脱氧鸟苷的结构基础。

Enzymatic bypass and the structural basis of miscoding opposite the DNA adduct 1,N-ethenodeoxyguanosine by human DNA translesion polymerase η.

机构信息

Department of Biochemistry, School of Medicine, Vanderbilt University, Nashville, Tennessee, USA.

Department of Chemistry, College of Arts and Science, Vanderbilt University, Nashville, Tennessee, USA.

出版信息

J Biol Chem. 2021 Jan-Jun;296:100642. doi: 10.1016/j.jbc.2021.100642. Epub 2021 Apr 8.

Abstract

Etheno (ε)-adducts, e.g., 1,N-ε-guanine (1,N-ε-G) and 1,N-ε-adenine (1,N-ε-A), are formed through the reaction of DNA with metabolites of vinyl compounds or with lipid peroxidation products. These lesions are known to be mutagenic, but it is unknown how they lead to errors in DNA replication that are bypassed by DNA polymerases. Here we report the structural basis of misincorporation frequencies across from 1,N-ε-G by human DNA polymerase (hpol) η. In single-nucleotide insertions opposite the adduct 1,N-ε-G, hpol η preferentially inserted dGTP, followed by dATP, dTTP, and dCTP. This preference for purines was also seen in the first extension step. Analysis of full-length extension products by LC-MS/MS revealed that G accounted for 85% of nucleotides inserted opposite 1,N-ε-G in single base insertion, and 63% of bases inserted in the first extension step. Extension from the correct nucleotide pair (C) was not observed, but the primer with A paired opposite 1,N-ε-G was readily extended. Crystal structures of ternary hpol η insertion-stage complexes with nonhydrolyzable nucleotides dAMPnPP or dCMPnPP showed a syn orientation of the adduct, with the incoming A staggered between adducted base and the 5'-adjacent T, while the incoming C and adducted base were roughly coplanar. The formation of a bifurcated H-bond between incoming dAMPnPP and 1,N-ε-G and T, compared with the single H-bond formed between incoming dCMPnPP and 1,N-ε-G, may account for the observed facilitated insertion of dGTP and dATP. Thus, preferential insertion of purines by hpol η across from etheno adducts contributes to distinct outcomes in error-prone DNA replication.

摘要

乙撑亚胺(ε)-加合物,例如 1,N-ε-鸟嘌呤(1,N-ε-G)和 1,N-ε-腺嘌呤(1,N-ε-A),是通过 DNA 与乙烯基化合物的代谢物或脂质过氧化产物的反应形成的。这些损伤已知具有诱变作用,但尚不清楚它们如何导致 DNA 聚合酶绕过的 DNA 复制错误。在这里,我们报告了人类 DNA 聚合酶(hpol)η 在从 1,N-ε-G 对面的错配频率的结构基础。在与加合物 1,N-ε-G 相对的单核苷酸插入中,hpol η 优先插入 dGTP,其次是 dATP、dTTP 和 dCTP。这种对嘌呤的偏好也见于第一个延伸步骤。通过 LC-MS/MS 分析全长延伸产物表明,在单碱基插入中,G 占插入 1,N-ε-G 对面核苷酸的 85%,在第一个延伸步骤中,插入碱基的 63%。未观察到与正确核苷酸对(C)的延伸,但引物与 1,N-ε-G 配对的 A 很容易延伸。带有非水解核苷酸 dAMPnPP 或 dCMPnPP 的三元 hpol η 插入阶段复合物的晶体结构显示出加合物的顺式取向,进入的 A 在加合物碱基和 5'-相邻的 T 之间交错,而进入的 C 和加合物碱基大致共面。与进入的 dCMPnPP 和 1,N-ε-G 形成的单个氢键相比,进入的 dAMPnPP 与 1,N-ε-G 和 T 形成的分叉氢键可能解释了观察到的 dGTP 和 dATP 的易插入。因此,hpol η 在乙撑亚胺加合物对面优先插入嘌呤有助于易错 DNA 复制中的不同结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9fd/8121704/eae59df8e762/gr1.jpg

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