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Human RECQ5β helicase promotes strand exchange on synthetic DNA structures resembling a stalled replication fork

机译:人RECQ5β解旋酶促进合成DNA结构上的链交换,类似于停滞的复制叉

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摘要

The role of the human RECQ5β helicase in the maintenance of genomic stability remains elusive. Here we show that RECQ5β promotes strand exchange between arms of synthetic forked DNA structures resembling a stalled replication fork in a reaction dependent on ATP hydrolysis. BLM and WRN can also promote strand exchange on these structures. However, in the presence of human replication protein A (hRPA), the action of these RecQ-type helicases is strongly biased towards unwinding of the parental duplex, an effect not seen with RECQ5β. A domain within the non-conserved portion of RECQ5β is identified as being important for its ability to unwind the lagging-strand arm and to promote strand exchange on hRPA-coated forked structures. We also show that RECQ5β associates with DNA replication factories in S phase nuclei and persists at the sites of stalled replication forks after exposure of cells to UV irradiation. Moreover, RECQ5β is found to physically interact with the polymerase processivity factor proliferating cell nuclear antigen in vitro and in vivo. Collectively, these findings suggest that RECQ5β may promote regression of stalled replication forks to facilitate the bypass of replication-blocking lesions by template-switching. Loss of such activity could explain the elevated level of mitotic crossovers observed in RECQ5β-deficient cells.
机译:人RECQ5β解旋酶在维持基因组稳定性中的作用仍然难以捉摸。在这里,我们表明RECQ5β促进了依赖于ATP水解的反应中停滞的复制叉类似的合成叉状DNA结构臂之间的链交换。 BLM和WRN也可以促进这些结构上的链交换。但是,在存在人类复制蛋白A(hRPA)的情况下,这些RecQ型解旋酶的作用强烈偏向于解开亲本双链体,这在RECQ5β中是没有的。 RECQ5β的非保守部分中的一个域被认为是重要的,因为它能够解开落后链臂并促进hRPA包覆的叉状结构上的链交换。我们还显示,RECQ5β与S期核中的DNA复制工厂相关联,并且在细胞暴露于紫外线照射后仍停留在停滞的复制叉的位置。此外,发现RECQ5β在体外和体内与聚合酶持续性因子增殖细胞核抗原发生物理相互作用。总体而言,这些发现表明,RECQ5β可能促进停滞的复制叉的消退,从而通过模板切换促进绕过复制阻滞性病变。这种活性的丧失可以解释在RECQ5β缺陷细胞中观察到的有丝分裂交换水平升高。

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