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DNA聚合酶V可在体内绕过有毒的鸟嘌呤氧化产物。

DNA polymerase V allows bypass of toxic guanine oxidation products in vivo.

作者信息

Neeley William L, Delaney Sarah, Alekseyev Yuriy O, Jarosz Daniel F, Delaney James C, Walker Graham C, Essigmann John M

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

J Biol Chem. 2007 Apr 27;282(17):12741-8. doi: 10.1074/jbc.M700575200. Epub 2007 Feb 24.

Abstract

Reactive oxygen and nitrogen radicals produced during metabolic processes, such as respiration and inflammation, combine with DNA to form many lesions primarily at guanine sites. Understanding the roles of the polymerases responsible for the processing of these products to mutations could illuminate molecular mechanisms that correlate oxidative stress with cancer. Using M13 viral genomes engineered to contain single DNA lesions and Escherichia coli strains with specific polymerase (pol) knockouts, we show that pol V is required for efficient bypass of structurally diverse, highly mutagenic guanine oxidation products in vivo. We also find that pol IV participates in the bypass of two spiroiminodihydantoin lesions. Furthermore, we report that one lesion, 5-guanidino-4-nitroimidazole, is a substrate for multiple SOS polymerases, whereby pol II is necessary for error-free replication and pol V for error-prone replication past this lesion. The results spotlight a major role for pol V and minor roles for pol II and pol IV in the mechanism of guanine oxidation mutagenesis.

摘要

在呼吸和炎症等代谢过程中产生的活性氧和氮自由基与DNA结合,主要在鸟嘌呤位点形成许多损伤。了解负责将这些产物加工成突变的聚合酶的作用,可能会阐明将氧化应激与癌症联系起来的分子机制。利用经过工程改造以包含单个DNA损伤的M13病毒基因组和具有特定聚合酶(pol)敲除的大肠杆菌菌株,我们表明pol V是体内有效绕过结构多样、高度诱变的鸟嘌呤氧化产物所必需的。我们还发现pol IV参与了两种螺环亚氨基二氢尿嘧啶损伤的绕过。此外,我们报告一种损伤,即5-胍基-4-硝基咪唑,是多种SOS聚合酶的底物,其中pol II对于无错误复制是必需的,而pol V对于绕过该损伤进行易出错复制是必需的。这些结果突出了pol V在鸟嘌呤氧化诱变机制中的主要作用以及pol II和pol IV的次要作用。

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