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Genome-wide Screens for Sensitivity to Ionizing Radiation Identify the Fission Yeast Nonhomologous End Joining Factor Xrc4

机译:全基因组屏幕对电离辐射的敏感性确定了裂变酵母非同源末端连接因子Xrc4

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摘要

Nonhomologous end joining (NHEJ) is the main means for repairing DNA double-strand breaks (DSBs) in human cells. Molecular understanding of NHEJ has benefited from analyses in the budding yeast Saccharomyces cerevisiae and the fission yeast Schizosaccharomyces pombe. In human cells, the DNA ligation reaction of the classical NHEJ pathway is carried out by a protein complex composed of DNA ligase IV (LigIV) and XRCC4. In S. cerevisiae, this reaction is catalyzed by a homologous complex composed of and . Intriguingly, no homolog of XRCC4 has been found in S. pombe, raising the possibility that such a factor may not always be required for classical NHEJ. Here, through screening the ionizing radiation (IR) sensitivity phenotype of a genome-wide fission yeast deletion collection in both the vegetative growth state and the spore state, we identify Xrc4, a highly divergent homolog of human XRCC4. Like other fission yeast NHEJ factors, Xrc4 is critically important for IR resistance of spores, in which no homologous recombination templates are available. Using both extrachromosomal and chromosomal DSB repair assays, we show that Xrc4 is essential for classical NHEJ. Exogenously expressed Xrc4 colocalizes with the LigIV homolog Lig4 at the chromatin region of the nucleus in a mutually dependent manner. Furthermore, like their human counterparts, Xrc4 and Lig4 interact with each other and this interaction requires the inter-BRCT linker and the second BRCT domain of Lig4. Our discovery of Xrc4 suggests that an XRCC4 family protein is universally required for classical NHEJ in eukaryotes.
机译:非同源末端连接(NHEJ)是修复人类细胞中DNA双链断裂(DSB)的主要手段。对NHEJ的分子了解得益于对芽生啤酒酵母和裂殖酵母粟酒裂殖酵母的分析。在人类细胞中,经典NHEJ途径的DNA连接反应是由包含DNA连接酶IV(LigIV)和XRCC4的蛋白质复合物进行的。在酿酒酵母中,该反应由和组成的同源复合物催化。有趣的是,在粟酒裂殖酵母中未发现XRCC4的同源物,这增加了经典NHEJ不一定总是需要这种因子的可能性。在这里,通过筛选在营养生长状态和孢子状态下全基因组裂变酵母缺失集合的电离辐射(IR)敏感性表型,我们确定了Xrc4,这是人类XRCC4的高度异源同系物。像其他裂变酵母NHEJ因子一样,Xrc4对于孢子的IR抗性也至关重要,在这种情况下,没有同源重组模板。使用染色体外和染色体DSB修复测定,我们表明Xrc4是经典NHEJ必不可少的。外源表达的Xrc4与LigIV同系物Lig4在细胞核的染色质区域处以相互依赖的方式共定位。此外,与其人类对应物一样,Xrc4和Lig4彼此相互作用,这种相互作用需要BRCT间的连接子和Lig4的第二个BRCT域。我们对Xrc4的发现表明,真核生物中经典NHEJ通常需要XRCC4家族蛋白。

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