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结核分枝杆菌 RecG 解旋酶在 DNA 修复和重组中的作用证据。

Evidence for the role of Mycobacterium tuberculosis RecG helicase in DNA repair and recombination.

机构信息

Department of Biochemistry, Indian Institute of Science, Bangalore, India.

出版信息

FEBS J. 2013 Apr;280(8):1841-60. doi: 10.1111/febs.12208. Epub 2013 Mar 21.

DOI:10.1111/febs.12208
PMID:23438087
Abstract

In order to survive and replicate in a variety of stressful conditions during its life cycle, Mycobacterium tuberculosis must possess mechanisms to safeguard the integrity of the genome. Although DNA repair and recombination related genes are thought to play key roles in the repair of damaged DNA in all organisms, so far only a few of them have been functionally characterized in the tubercle bacillus. In this study, we show that M. tuberculosis RecG (MtRecG) expression was induced in response to different genotoxic agents. Strikingly, expression of MtRecG in Escherichia coli ∆recG mutant strain provided protection against mitomycin C, methyl methane sulfonate and UV induced cell death. Purified MtRecG exhibited higher binding affinity for the Holliday junction (HJ) compared with a number of canonical recombinational DNA repair intermediates. Notably, although MtRecG binds at the core of the mobile and immobile HJs, and with higher binding affinity for the immobile HJ, branch migration was evident only in the case of the mobile HJ. Furthermore, immobile HJs stimulate MtRecG ATPase activity less efficiently than mobile HJs. In addition to HJ substrates, MtRecG exhibited binding affinity for a variety of branched DNA structures including three-way junctions, replication forks, flap structures, forked duplex and a D-loop structure, but demonstrated strong unwinding activity on replication fork and flap DNA structures. Together, these results support that MtRecG plays an important role in processes related to DNA metabolism under normal as well as stress conditions.

摘要

为了在生命周期中各种应激条件下生存和复制,分枝杆菌必须拥有保护基因组完整性的机制。虽然 DNA 修复和重组相关基因被认为在所有生物中对受损 DNA 的修复起着关键作用,但迄今为止,在结核分枝杆菌中仅对其中少数基因进行了功能特征分析。在本研究中,我们表明分枝杆菌 RecG(MtRecG)的表达在受到不同的遗传毒性试剂刺激时会被诱导。引人注目的是,MtRecG 在大肠杆菌 ∆recG 突变株中的表达为其提供了对丝裂霉素 C、甲基甲烷磺酸酯和 UV 诱导的细胞死亡的保护。纯化的 MtRecG 与许多经典重组 DNA 修复中间体相比,对霍利迪连接(HJ)具有更高的结合亲和力。值得注意的是,尽管 MtRecG 结合在移动和固定 HJ 的核心部位,并且对固定 HJ 的结合亲和力更高,但只有在移动 HJ 的情况下才会发生分支迁移。此外,固定 HJ 刺激 MtRecG ATP 酶活性的效率不如移动 HJ。除了 HJ 底物外,MtRecG 还表现出与多种分支 DNA 结构的结合亲和力,包括三链结、复制叉、凸起结构、分叉双链和 D-环结构,但对复制叉和凸起 DNA 结构具有很强的解旋活性。总之,这些结果表明 MtRecG 在正常和应激条件下与 DNA 代谢相关的过程中发挥着重要作用。

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