首页> 外文期刊>international journal of molecular sciences >Bacillus subtilis RadA/Sms-Mediated Nascent Lagging-Strand Unwinding at Stalled or Reversed Forks Is a Two-Step Process: RadA/Sms Assists RecA Nucleation, and RecA Loads RadA/Sms
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Bacillus subtilis RadA/Sms-Mediated Nascent Lagging-Strand Unwinding at Stalled or Reversed Forks Is a Two-Step Process: RadA/Sms Assists RecA Nucleation, and RecA Loads RadA/Sms

机译:枯草芽孢杆菌 RadA/SMS 介导的新生滞后链在停滞或反转叉处的松弛是一个两步过程:RadA/SMS 协助 RecA 成核,RecA 加载 RadA/SMS

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Replication fork rescue requires Bacillus subtilis RecA, its negative (SsbA) and positive (RecO) mediators, and fork-processing (RadA/Sms). To understand how they work to promote fork remodeling, reconstituted branched replication intermediates were used. We show that RadA/Sms (or its variant, RadA/Sms C13A) binds to the 5 '-tail of a reversed fork with longer nascent lagging-strand and unwinds it in the 5 '-> 3 ' direction, but RecA and its mediators limit unwinding. RadA/Sms cannot unwind a reversed fork with a longer nascent leading-strand, or a gapped stalled fork, but RecA interacts with and activates unwinding. Here, the molecular mechanism by which RadA/Sms, in concert with RecA, in a two-step reaction, unwinds the nascent lagging-strand of reversed or stalled forks is unveiled. First, RadA/Sms, as a mediator, contributes to SsbA displacement from the forks and nucleates RecA onto single-stranded DNA. Then, RecA, as a loader, interacts with and recruits RadA/Sms onto the nascent lagging strand of these DNA substrates to unwind them. Within this process, RecA limits RadA/Sms self-assembly to control fork processing, and RadA/Sms prevents RecA from provoking unnecessary recombination.
机译:复制叉抢救需要枯草芽孢杆菌 RecA、其阴性 (SsbA) 和阳性 (RecO) 介质以及叉处理 (RadA/Sms)。为了了解它们如何促进分叉重塑,使用了重组的分支复制中间体。我们发现RadA / Sms(或其变体RadA / Sms C13A)与具有更长的新生滞后链的反向叉的5'尾部结合,并在5'-> 3'方向上展开,但RecA及其介质限制了展开。RadA/Sms 无法解开带有较长新生前导股的反向货叉或间隙失速货叉,但 RecA 会与松开并激活解卷。在这里,揭示了RadA/Sms与RecA在两步反应中展开反转或停滞叉的新生滞后链的分子机制。首先,RadA/Sms作为介质,有助于SsbA从叉子上置换,并将RecA成核到单链DNA上。然后,RecA 作为加载器,与这些 DNA 底物的新生滞后链相互作用并将 RadA/Sms 募集到这些 DNA 底物的新生滞后链上以解开它们。在此过程中,RecA 限制 RadA/Sms 自组装以控制分叉处理,而 RadA/Sms 可防止 RecA 引发不必要的重组。

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