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RECQ1 is required for cellular resistance to replication stress and catalyzes strand exchange on stalled replication fork structures

机译:RECQ1是细胞对复制压力的抵抗力所必需的并催化停滞的复制叉结构上的链交换

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摘要

RECQ1 is the most abundant of the five human RecQ helicases, but little is known about its biological significance. Recent studies indicate that RECQ1 is associated with origins of replication, suggesting a possible role in DNA replication. However, the functional role of RECQ1 at damaged or stalled replication forks is still unknown. Here, for the first time, we show that RECQ1 promotes strand exchange on synthetic stalled replication fork-mimicking structures and comparatively analyze RECQ1 with the other human RecQ helicases. RECQ1 actively unwinds the leading strand of the fork, similar to WRN, while RECQ4 and RECQ5β can only unwind the lagging strand of the replication fork. Human replication protein A modulates the strand exchange activity of RECQ1 and shifts the equilibrium more to the unwinding mode, an effect also observed for WRN. Stable depletion of RECQ1 affects cell proliferation and renders human cells sensitive to various DNA damaging agents that directly or indirectly block DNA replication fork progression. Consequently, loss of RECQ1 activates DNA damage response signaling, leads to hyper-phosphorylation of RPA32 and activation of CHK1, indicating replication stress. Furthermore, depletion of RECQ1 leads to chromosomal condensation defects and accumulation of under-condensed chromosomes. Collectively, our observations provide a new insight into the role of RECQ1 in replication fork stabilization and its role in the DNA damage response to maintain genomic stability.
机译:RECQ1是五种人类RecQ解旋酶中含量最高的,但对其生物学意义知之甚少。最近的研究表明RECQ1与复制起点有关,这提示在DNA复制中可能发挥作用。但是,RECQ1在损坏或停滞的复制叉上的功能角色仍然未知。在这里,我们首次显示RECQ1促进合成停滞的复制叉状模仿结构上的链交换,并与其他人类RecQ解旋酶进行了比较分析。 RECQ1主动展开分支的前导链,类似于WRN,而RECQ4和RECQ5β只能展开复制分支的后链。人类复制蛋白A调节RECQ1的链交换活性,并使平衡更多地转移到解绕模式,这在WRN中也观察到。 RECQ1的稳定消耗会影响细胞增殖,并使人类细胞对直接或间接阻止DNA复制叉进程的各种DNA破坏剂敏感。因此,RECQ1的丢失激活了DNA损伤应答信号,导致RPA32的过度磷酸化和CHK1的激活,表明复制压力。此外,RECQ1的消耗会导致染色体凝缩缺陷和凝缩不足的染色体积聚。总的来说,我们的观察提供了对RECQ1在复制叉稳定中的作用及其在DNA损伤应答中维持基因组稳定性的作用的新见解。

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