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DNA helicases Sgs1 and BLM promote DNA double-strand break resection.

机译:DNA解旋酶Sgs1和BLM促进DNA双链断裂切除。

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摘要

A key cellular response to DNA double-strand breaks (DSBs) is 5'-to-3' DSB resection by nucleases to generate regions of ssDNA that then trigger cell cycle checkpoint signaling and DSB repair by homologous recombination (HR). Here, we reveal that in the absence of exonuclease Exo1 activity, deletion or mutation of the Saccharomyces cerevisiae RecQ-family helicase, Sgs1, causes pronounced hypersensitivity to DSB-inducing agents. Moreover, we establish that this reflects severely compromised DSB resection, deficient DNA damage signaling, and strongly impaired HR-mediated repair. Furthermore, we show that the mammalian Sgs1 ortholog, BLM--whose deficiency causes cancer predisposition and infertility in people--also functions in parallel with Exo1 to promote DSB resection, DSB signaling and resistance to DSB-generating agents. Collectively, these data establish evolutionarily conserved roles for the BLM and Sgs1 helicases in DSB processing, signaling, and repair.
机译:对DNA双链断裂(DSB)的关键细胞反应是通过核酸酶从5'到3'DSB切除以生成ssDNA区域,然后通过同源重组(HR)触发细胞周期检查点信号传导和DSB修复。在这里,我们揭示了在没有核酸外切酶Exo1活性的情况下,酿酒酵母RecQ家族解旋酶Sgs1的缺失或突变会导致对DSB诱导剂的超敏反应。此外,我们确定这反映了DSB切除严重受损,DNA损伤信号不足以及HR介导的修复严重受损。此外,我们显示哺乳动物Sgs1直系同源物BLM(其缺陷会导致人的癌症易感性和不育症)也与Exo1平行发挥作用,以促进DSB切除,DSB信号传导和对DSB产生剂的抗性。这些数据共同为BLM和Sgs1解旋酶在DSB处理,信号传导和修复中建立了进化保守的作用。

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