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The role of Holliday junction resolvases in the repair of spontaneous and induced DNA damage

机译:霍利迪结解决在自发性和诱导性DNA损伤修复中的作用

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摘要

DNA double-strand breaks (DSBs) and other lesions occur frequently during cell growth and in meiosis. These are often repaired by homologous recombination (HR). HR may result in the formation of DNA structures called Holliday junctions (HJs), which need to be resolved to allow chromosome segregation. Whereas HJs are present in most HR events in meiosis, it has been proposed that in vegetative cells most HR events occur through intermediates lacking HJs. A recent screen in yeast has shown HJ resolution activity for a protein called Yen1, in addition to the previously known Mus81/Mms4 complex. Yeast strains deleted for both YEN1 and MMS4 show a reduction in growth rate, and are very sensitive to DNA-damaging agents. In addition, we investigate the genetic interaction of yen1 and mms4 with mutants defective in different repair pathways. We find that in the absence of Yen1 and Mms4 deletion of RAD1 or RAD52 have no further effect, whereas additional sensitivity is seen if RAD51 is deleted. Finally, we show that yeast cells are unable to carry out meiosis in the absence of both resolvases. Our results show that both Yen1 and Mms4/Mus81 play important (although not identical) roles during vegetative growth and in meiosis.
机译:DNA双链断裂(DSB)和其他损伤在细胞生长和减数分裂中频繁发生。这些通常通过同源重组(HR)修复。 HR可能导致形成称为霍利迪结(HJs)的DNA结构,需要解析该结构以允许染色体分离。尽管减数分裂的大多数HR事件中都存在HJ,但已提出在营养细胞中大多数HR事件是通过缺乏HJ的中间体发生的。除了先前已知的Mus81 / Mms4复合物外,酵母中最近的筛选显示了一种名为Yen1的蛋白质的HJ分解活性。 YEN1和MMS4缺失的酵母菌株显示出生长速率降低,并且对DNA破坏剂非常敏感。此外,我们调查日元1和mms4与突变体在不同的修复途径中的遗传相互作用。我们发现,在缺少Yen1和Mms4的情况下,RAD1或RAD52的缺失没有进一步的作用,而如果删除RAD51,则可以看到其他敏感性。最后,我们显示了在没有两个分辨子的情况下酵母细胞无法进行减数分裂。我们的结果表明,Yen1和Mms4 / Mus81在营养生长和减数分裂中均起着重要(尽管不完全相同)的作用。

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