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首页> 外文期刊>Nucleic acids research >The role of Schizosaccharomyces pombe Rad32, the Mre11 homologue, and other DNA damage response proteins in non-homologous end joining and telomere length maintenance
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The role of Schizosaccharomyces pombe Rad32, the Mre11 homologue, and other DNA damage response proteins in non-homologous end joining and telomere length maintenance

机译:裂殖酵母Rad32,Mre11同源物和其他DNA损伤反应蛋白在非同源末端连接和端粒长度维持中的作用

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The Schizosaccharomyces pombe homologue of Mre11, Rad32, is required for repair of UV- and ionising radiation-induced DNA damage and meiotic recombination. In this study we have investigated the role of Rad32 and other DNA damage response proteins in non-homologous end joining (NHEJ) and telomere length maintenance in S.pombe. We show that NHEJ in S.pombe occurs by an error-prone mechanism, in contrast to the accurate repair observed in Saccharomyces cerevisiae. Deletion of the rad32 gene results in a modest reduction in NHEJ activity and the remaining repair events that occur are accurate. Mutations in two of the phosphoesterase motifs in Rad32 have no effect on the efficiency or accuracy of end joining, suggesting that the role of Rad32 protein may be to recruit another nuclease(s) for processing during the end joining reaction. We also analysed NHEJ in other DNA damage response mutants and showed that the checkpoint mutant rad3-d and two recombination mutants defective in rhp51 and rhp54 (homologues of S.cerevisiae RAD51 and RAD54, respectively) are not affected. However disruption of rad22, rqh1 and rhp9/crb2 (homologues of the S.cerevisiae RAD52, SGS1 and RAD9 genes) resulted in increased NHEJ activity. Telomere lengths in the rad32, rhp9 and rqh1 null alleles were reduced to varying extents intermediate between the lengths observed in wild-type and rad3 null cells.
机译:Mre11的粟酒裂殖酵母同源物Rad32是修复紫外线和电离辐射诱导的DNA损伤和减数分裂重组所必需的。在这项研究中,我们研究了Rad32和其他DNA损伤反应蛋白在粟酒裂殖酵母的非同源末端连接(NHEJ)和端粒长度维持中的作用。我们表明,S.pombe中的NHEJ是通过容易出错的机制发生的,与在酿酒酵母中观察到的精确修复相反。 rad32基因的删除导致NHEJ活性适度降低,并且发生的其余修复事件是准确的。 Rad32中两个磷酸酯酶基序的突变对末端连接的效率或准确性没有影响,表明Rad32蛋白的作用可能是募集另一种核酸酶以在末端连接反应过程中进行加工。我们还分析了其他DNA损伤反应突变体中的NHEJ,结果表明,检查点突变体rad3-d和rhp51和rhp54缺陷的两个重组突变体(分别为酿酒酵母RAD51和RAD54的同源物)不受影响。然而,rad22,rqh1和rhp9 / crb2(酿酒酵母RAD52,SGS1和RAD9基因的同源物)的破坏导致NHEJ活性增加。 rad32,rhp9和rqh1无效等位基因中的端粒长度减少到在野生型和rad3无效细胞中观察到的长度之间的不同程度。

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