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在大肠杆菌RecA装载缺陷型recB突变体中引入双链断裂后,SOS诱导需要RecJ核酸酶。

RecJ nuclease is required for SOS induction after introduction of a double-strand break in a RecA loading deficient recB mutant of Escherichia coli.

作者信息

Vlasić Ignacija, Ivancić-Baće Ivana, Imesek Mirna, Mihaljević Boris, Brcić-Kostić Krunoslav

机构信息

Department of Molecular Biology, Ruder Bosković Institute, Bijenicka 54, 10000 Zagreb, Croatia.

出版信息

Biochimie. 2008 Sep;90(9):1347-55. doi: 10.1016/j.biochi.2008.04.002. Epub 2008 Apr 10.

Abstract

The SOS response is an important mechanism which allows Escherichia coli cells to maintain genome integrity. Two key proteins in SOS regulation are LexA (repressor) and RecA (coprotease). The signal for SOS induction is generated at the level of a RecA filament. Depending on the type of DNA damage, a RecA filament is produced by specific activities (helicase, nuclease and RecA loading) of either RecBCD, RecF or a hybrid recombination pathway. It was recently demonstrated that RecA loading activity is essential for the induction of the SOS response after UV-irradiation. In this paper we studied the genetic requirements for SOS induction after introduction of a double-strand break (DSB) by the I-SceI endonuclease in a RecA loading deficient recB mutant (recB1080). We monitored SOS induction by assaying beta-galactosidase activity and compared induction of the response between strains having one or more inactivated mechanisms of RecA loading and their derivatives. We found that simultaneous inactivation of both RecA loading functions (in recB1080 recO double mutant) partially impairs SOS induction after introduction of a DSB. However, we found that the RecJ nuclease is essential for SOS induction after the introduction of a DSB in the recB1080 mutant. This result indicates that RecJ is needed to prepare ssDNA for subsequent loading of RecA protein. It implies that an additional type of RecA loading could exist in the cell.

摘要

SOS反应是一种重要机制,可使大肠杆菌细胞维持基因组完整性。SOS调控中的两个关键蛋白是LexA(阻遏物)和RecA(共蛋白酶)。SOS诱导信号在RecA细丝水平产生。根据DNA损伤的类型,RecA细丝由RecBCD、RecF或混合重组途径的特定活性(解旋酶、核酸酶和RecA加载)产生。最近证明,RecA加载活性对于紫外线照射后SOS反应的诱导至关重要。在本文中,我们研究了在RecA加载缺陷型recB突变体(recB1080)中通过I-SceI内切酶引入双链断裂(DSB)后SOS诱导的遗传需求。我们通过检测β-半乳糖苷酶活性来监测SOS诱导,并比较了具有一种或多种RecA加载失活机制的菌株及其衍生物之间的反应诱导情况。我们发现,两种RecA加载功能同时失活(在recB1080 recO双突变体中)会部分损害引入DSB后的SOS诱导。然而,我们发现RecJ核酸酶对于在recB1080突变体中引入DSB后的SOS诱导至关重要。这一结果表明,RecJ是为随后加载RecA蛋白准备单链DNA所必需的。这意味着细胞中可能存在另一种类型的RecA加载。

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