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体外O-烷基胸苷损伤的复制性绕过

Replicative Bypass of O-Alkylthymidine Lesions in Vitro.

作者信息

Williams Nicole L, Wang Pengcheng, Wang Yinsheng

机构信息

Environmental Toxicology Graduate Program and ‡Department of Chemistry, University of California , Riverside, California 92521-0403, United States.

出版信息

Chem Res Toxicol. 2016 Oct 17;29(10):1755-1761. doi: 10.1021/acs.chemrestox.6b00252. Epub 2016 Sep 26.

Abstract

DNA alkylation represents a major type of DNA damage and is generally unavoidable due to ubiquitous exposure to various exogenous and endogenous sources of alkylating agents. Among the alkylated DNA lesions, O-alkylthymidines (O-alkyldT) are known to be persistent and poorly repaired in mammalian systems and have been shown to accumulate in the esophagus, lung, and liver tissue of rats treated with tobacco-specific N-nitrosamines, i.e., 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK) and N'-nitrosonornicotine (NNN). In this study, we assessed the replicative bypass of a comprehensive set of O-alkyldT lesions, with the alkyl group being a Me, Et, nPr, iPr, nBu, iBu, or sBu, in template DNA by conducting primer extension assays with the use of major translesion synthesis DNA polymerases. The results showed that human Pol η and, to a lesser degree, human Pol κ, but not human polymerase ι or yeast polymerase ζ, were capable of bypassing all O-alkyldT lesions and extending the primer to generate full-length replication products. Data from steady-state kinetic measurements showed that human Pol η exhibited high frequencies of misincorporation of dCMP opposite those O-alkyldT lesions bearing a longer straight-chain alkyl group. However, the nucleotide misincorporation opposite branched-chain lesions was not selective, with dCMP, dGMP, and dTMP being inserted at similar efficiencies, though the total frequencies of nucleotide misincorporation opposite the branched-chain lesions differed and followed the order of O-iPrdT > O-iBudT > O-sBudT. Together, the results from the present study provided important knowledge about the effects of the length and structure of the alkyl group in the O-alkyldT lesions on the fidelity and efficiency of DNA replication mediated by human Pol η.

摘要

DNA烷基化是DNA损伤的一种主要类型,由于普遍暴露于各种外源性和内源性烷基化剂来源,通常难以避免。在烷基化的DNA损伤中,O-烷基胸苷(O-alkyldT)在哺乳动物系统中已知是持久的且修复不佳,并且已显示在接受烟草特异性N-亚硝胺(即4-(甲基亚硝胺)-1-(3-吡啶基)-1-丁酮(NNK)和N'-亚硝基降烟碱(NNN))处理的大鼠的食管、肺和肝组织中积累。在本研究中,我们通过使用主要的跨损伤合成DNA聚合酶进行引物延伸试验,评估了模板DNA中一系列O-alkyldT损伤(烷基为甲基、乙基、正丙基、异丙基、正丁基、异丁基或仲丁基)的复制绕过情况。结果表明,人类Pol η以及程度较轻的人类Pol κ,但不是人类聚合酶ι或酵母聚合酶ζ,能够绕过所有O-alkyldT损伤并延伸引物以产生全长复制产物。稳态动力学测量数据表明,人类Pol η在与那些带有较长直链烷基的O-alkyldT损伤相对的位置表现出较高频率的dCMP错掺入。然而,与支链损伤相对的核苷酸错掺入没有选择性,dCMP、dGMP和dTMP以相似的效率插入,尽管与支链损伤相对的核苷酸错掺入的总频率不同,且遵循O-iPrdT > O-iBudT > O-sBudT的顺序。总之,本研究的结果提供了关于O-alkyldT损伤中烷基的长度和结构对人类Pol η介导的DNA复制保真度和效率影响的重要知识。

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