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The structure-specific endonuclease Mus81 contributes to replication restart by generating double-strand DNA breaks

机译:特定于结构的核酸内切酶Mus81通过产生双链DNA断裂来促进复制重启

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摘要

Faithful duplication of the genome requires structure-specific endonucleases such as the RuvABC complex in Escherichia coli. These enzymes help to resolve problems at replication forks that have been disrupted by DNA damage in the template. Much less is known about the identities of these enzymes in mammalian cells. Mus81 is the catalytic component of a eukaryotic structure-specific endonuclease that preferentially cleaves branched DNA substrates reminiscent of replication and recombination intermediates. Here we explore the mechanisms by which Mus81 maintains chromosomal stability. We found that Mus81 is involved in the formation of double-strand DNA breaks in response to the inhibition of replication. Moreover, in the absence of chromosome processing by Mus81, recovery of stalled DNA replication forks is attenuated and chromosomal aberrations arise. We suggest that Mus81 suppresses chromosomal instability by converting potentially detrimental replication-associated DNA structures into intermediates that are more amenable to DNA repair.
机译:忠实地复制基因组需要结构特异性核酸内切酶,例如大肠杆菌中的RuvABC复合物。这些酶有助于解决复制叉处的问题,这些问题已被模板中的DNA破坏所破坏。关于这些酶在哺乳动物细胞中的身份知之甚少。 Mus81是真核结构特异性核酸内切酶的催化成分,可优先裂解分支DNA底物,使人联想到复制和重组中间体。在这里,我们探讨了Mus81维持染色体稳定性的机制。我们发现Mus81参与了对复制抑制的响应中双链DNA断裂的形成。此外,在没有通过Mus81进行染色体加工的情况下,停滞的DNA复制叉的恢复减弱,并出现染色体畸变。我们建议,Mus81通过将潜在有害的复制相关的DNA结构转换成更适合DNA修复的中间体来抑制染色体的不稳定性。

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