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在不存在DNA末端加工的情况下,枯草芽孢杆菌RecN蛋白被招募至DNA双链断裂处。

Recruitment of Bacillus subtilis RecN to DNA double-strand breaks in the absence of DNA end processing.

作者信息

Sanchez Humberto, Kidane Dawit, Castillo Cozar M, Graumann Peter L, Alonso Juan C

机构信息

Departamento de Biotecnología Microbiana, Centro Nacional de Biotecnología, C/Darwin 3, Campus Universidad Autónoma de Madrid, Cantoblanco, 28049 Madrid, Spain.

出版信息

J Bacteriol. 2006 Jan;188(2):353-60. doi: 10.1128/JB.188.2.353-360.2006.

Abstract

The recognition and processing of double-strand breaks (DSBs) to a 3' single-stranded DNA (ssDNA) overhang structure in Bacillus subtilis is poorly understood. Mutations in addA and addB or null mutations in recJ (DeltarecJ), recQ (DeltarecQ), or recS (DeltarecS) genes, when present in otherwise-Rec+ cells, render cells moderately sensitive to the killing action of different DNA-damaging agents. Inactivation of a RecQ-like helicase (DeltarecQ or DeltarecS) in addAB cells showed an additive effect; however, when DeltarecJ was combined with addAB, a strong synergistic effect was observed with a survival rate similar to that of DeltarecA cells. RecF was nonepistatic with RecJ or AddAB. After induction of DSBs, RecN-yellow fluorescent protein (YFP) foci were formed in addAB DeltarecJ cells. AddAB and RecJ were required for the formation of a single RecN focus, because in their absence multiple RecN-YFP foci accumulated within the cells. Green fluorescent protein-RecA failed to form filamentous structures (termed threads) in addAB DeltarecJ cells. We propose that RecN is one of the first recombination proteins detected as a discrete focus in live cells in response to DSBs and that either AddAB or RecQ(S)-RecJ are required for the generation of a duplex with a 3'-ssDNA tail needed for filament formation of RecA.

摘要

枯草芽孢杆菌中双链断裂(DSB)被识别并加工成3'单链DNA(ssDNA)突出端结构的过程目前还知之甚少。在其他方面为Rec⁺的细胞中,addA和addB基因发生突变,或者recJ(ΔrecJ)、recQ(ΔrecQ)或recS(ΔrecS)基因发生无效突变,会使细胞对不同DNA损伤剂的杀伤作用表现出中度敏感性。在addAB细胞中使一种RecQ样解旋酶(ΔrecQ或ΔrecS)失活显示出累加效应;然而,当ΔrecJ与addAB组合时,观察到强烈的协同效应,存活率与ΔrecA细胞相似。RecF与RecJ或AddAB不存在上位效应。诱导DSB后,addAB ΔrecJ细胞中形成了RecN-黄色荧光蛋白(YFP)焦点。形成单个RecN焦点需要AddAB和RecJ,因为在它们缺失时,细胞内会积累多个RecN-YFP焦点。绿色荧光蛋白-RecA在addAB ΔrecJ细胞中无法形成丝状结构(称为细丝)。我们提出,RecN是在活细胞中响应DSB时最早被检测为离散焦点的重组蛋白之一,并且AddAB或RecQ(S)-RecJ是生成具有RecA丝状形成所需的3'-ssDNA尾巴的双链体所必需的。

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