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首页> 外文期刊>Nature >The Srs2 helicase prevents recombination by disrupting Rad51 nucleoprotein filaments
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The Srs2 helicase prevents recombination by disrupting Rad51 nucleoprotein filaments

机译:Srs2解旋酶通过破坏Rad51核蛋白丝防止重组

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Homologous recombination is a ubiquitous process with key functions in meiotic and vegetative cells for the repair of DNA breaks. It is initiated by the formation of single-stranded DNA on which recombination proteins bind to form a nucleoprotein filament that is active in searching for homology, in the formation of joint molecules and in the exchange of DNA strands(1). This process contributes to genome stability but it is also potentially dangerous to cells if intermediates are formed that cannot be processed normally and thus are toxic or generate genomic rearrangements. Cells must therefore have developed strategies to survey recombination and to prevent the occurrence of such deleterious events. In Saccharomyces cerevisiae, genetic data have shown that the Srs2 helicase negatively modulates recombination(2,3), and later experiments suggested that it reverses intermediate recombination structures(4-7). Here we show that DNA strand exchange mediated in vitro by Rad51 is inhibited by Srs2, and that Srs2 disrupts Rad51 filaments formed on single-stranded DNA. These data provide an explanation for the antirecombinogenic role of Srs2 in vivo and highlight a previously unknown mechanism for recombination control. [References: 24]
机译:同源重组是普遍存在的过程,在减数分裂和营养细胞中具有关键功能,可修复DNA断裂。它是由单链DNA的形成开始的,重组蛋白结合在单链DNA上形成核蛋白丝,该蛋白在寻找同源性,连接分子的形成和DNA链的交换中具有活性(1)。该过程有助于基因组的稳定性,但如果形成的中间体不能正常加工并因此有毒或产生基因组重排,则可能对细胞造成危险。因此,细胞必须制定出策略以调查重组并防止此类有害事件的发生。遗传数据表明,在酿酒酵母中,Srs2解旋酶对重组具有负调控作用(2,3),后来的实验表明它可以逆转中间重组结构(4-7)。在这里,我们显示由Rad51介导的体外DNA链交换受到Srs2的抑制,并且Srs2破坏了在单链DNA上形成的Rad51细丝。这些数据解释了Srs2在体内的抗重组作用,并突出了重组控制的先前未知的机制。 [参考:24]

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