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A role for Mus81 in the repair of chromium-induced DNA damage.

机译:Mus81在铬诱导的DNA损伤修复中的作用。

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摘要

Hexavalent chromium (Cr[VI]) is a toxic environmental contaminant that is capable of producing a broad spectrum of DNA damage. The ability of Cr[VI] to induce mutagenesis and neoplastic transformation has been attributed to its genotoxic action, however our understanding of molecular mechanisms involved in the repair of Cr[VI]-induced DNA damage remains incomplete. Here, we report that Mus81, an enzyme that participates with Eme1 in the resolution of replication fork damage caused by certain lesions, is involved in the repair of Cr[VI]-induced DNA damage. Mus81-deficient cells were found to be more susceptible to Cr[VI]-induced proliferation arrest and more sensitive to the long-term cytotoxic effects of Cr[VI] than isogenic wild-type cells. Following Cr[VI] exposure, Mus81-deficient cells displayed a lag in the disappearance of Rad51 foci, exhibited elevated replication-associated gamma-H2AX and showed an increased incidence of chromosomal instability compared to wild-type cells. Our findings support a role for Mus81 in the resolution of replication-associated DNA damage associated with this genotoxic agent, by converting Cr[VI]-DNA lesions into a form more amenable for homologous recombination.
机译:六价铬(Cr [VI])是一种有毒的环境污染物,能够产生广泛的DNA损伤。 Cr [VI]诱导诱变和肿瘤转化的能力已归因于它的遗传毒性作用,但是我们对涉及Cr [VI]诱导的DNA损伤修复的分子机制的理解仍然不完整。在这里,我们报告说,Mus81,一种与Eme1参与解决某些病变引起的复制叉损伤的酶,参与了Cr [VI]诱导的DNA损伤的修复。与同基因野生型细胞相比,发现Mus81缺陷型细胞对Cr [VI]诱导的增殖停滞更敏感,并且对Cr [VI]的长期细胞毒性作用更敏感。 Cr [VI]暴露后,与野生型细胞相比,Mus81缺陷型细胞在Rad51灶消失中表现出滞后性,与复制相关的γ-H2AX升高,并且染色体不稳定的发生率增加。我们的发现通过将Cr [VI] -DNA损伤转化为更适合同源重组的形式,支持了Mus81在解决与这种遗传毒性剂相关的复制相关的DNA损伤中的作用。

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