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Mutation of the mouse Rad17 gene leads to embryonic lethality and reveals a role in DNA damage-dependent recombination

机译:小鼠Rad17基因的突变导致胚胎致死率并揭示了在DNA损伤依赖性重组中的作用

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摘要

Genetic defects in DNA repair mechanisms and cell cycle checkpoint (CCC) genes result in increased genomic instability and cancer predisposition. Discovery of mammalian homologs of yeast CCC genes suggests conservation of checkpoint mechanisms between yeast and mammals. However, the role of many CCC genes in higher eukaryotes remains elusive. Here, we report that targeted deletion of an N-terminal part of mRad17, the mouse homolog of the Schizosaccharomyces pombe Rad17 checkpoint clamp-loader component, resulted in embryonic lethality during early/mid-gestation. In contrast to mouse embryos, embryonic stem (ES) cells, isolated from mRad175′Δ/5′Δ embryos, produced truncated mRad17 and were viable. These cells displayed hypersensitivity to various DNA-damaging agents. Surprisingly, mRad175′Δ/5′Δ ES cells were able to arrest cell cycle progression upon induction of DNA damage. However, they displayed impaired homologous recombination as evidenced by a strongly reduced gene targeting efficiency. In addition to a possible role in DNA damage-induced CCC, based on sequence homology, our results indicate that mRad17 has a function in DNA damage-dependent recombination that may be responsible for the sensitivity to DNA-damaging agents.
机译:DNA修复机制和细胞周期检查点(CCC)基因的遗传缺陷导致基因组不稳定和癌症易感性增加。酵母CCC基因的哺乳动物同源物的发现表明酵母和哺乳动物之间检查点机制的保守性。但是,许多CCC基因在高等真核生物中的作用仍然难以捉摸。在这里,我们报告的有针对性的删除mRad17的N末端部分,这是粟酒裂殖酵母Rad17检查点钳位加载器组件的小鼠同源物,在早期/中期妊娠期间导致胚胎致死率。与小鼠胚胎相反,从mRad17 5'Δ/5'Δ胚胎中分离出的胚胎干(ES)细胞产生了截短的mRad17,并具有活力。这些细胞对各种DNA破坏剂表现出超敏性。令人惊讶的是,mRad17 5'Δ/5'Δ ES细胞能够在诱导DNA损伤后阻止细胞周期进程。但是,它们显示出受损的同源重组,如基因靶向效率大大降低所证明。基于序列同源性,除了可能在DNA损伤诱导的CCC中发挥作用外,我们的结果还表明,mRad17在DNA损伤依赖性重组中具有功能,这可能是对DNA损伤剂的敏感性所致。

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