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BLM helicase measures DNA unwound before switching strands and hRPA promotes unwinding reinitiation

机译:BLM解旋酶在链切换之前测量DNA的解链,hRPA促进解链重新初始化

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摘要

Bloom syndrome (BS) is a rare genetic disorder characterized by genomic instability and a high predisposition to cancer. The gene defective in BS, BLM, encodes a member of the RecQ family of 3′–5′ DNA helicases, and is proposed to function in recombinational repair during DNA replication. Here, we have utilized single-molecule fluorescence resonance energy transfer microscopy to examine the behaviour of BLM on forked DNA substrates. Strikingly, BLM unwound individual DNA molecules in a repetitive manner, unwinding a short length of duplex DNA followed by rapid reannealing and reinitiation of unwinding in several successions. Our results show that a monomeric BLM can ‘measure' how many base pairs it has unwound, and once it has unwound a critical length, it reverses the unwinding reaction through strand switching and translocating on the opposing strand. Repetitive unwinding persisted even in the presence of hRPA, and interaction between wild-type BLM and hRPA was necessary for unwinding reinitiation on hRPA-coated DNA. The reported activities may facilitate BLM processing of stalled replication forks and illegitimately formed recombination intermediates.
机译:Bloom综合征(BS)是一种罕见的遗传疾病,其特征在于基因组不稳定和易患癌症。 BS中的缺陷基因BLM编码3'-5'DNA解旋酶RecQ家族的成员,并被提议在DNA复制过程中起到重组修复的作用。在这里,我们已经利用单分子荧光共振能量转移显微镜来检查BLM在叉状DNA底物上的行为。令人惊讶的是,BLM以重复的方式解开单个DNA分子的链,解开较短长度的双链DNA,然后连续数次快速重新退火并重新开始解链。我们的结果表明,单体BLM可以“测量”其解链了多少个碱基对,一旦解链了关键长度,它就会通过链切换和在相对链上移位来逆转解链反应。即使在存在hRPA的情况下,重复解绕仍然持续,并且野生型BLM和hRPA之间的相互作用对于解开hRPA包被的DNA的重新初始化是必要的。报告的活动可能有助于BLM处理停滞的复制叉和非法形成的重组中间体。

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