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Targeted deletion of mouse Rad1 leads to deficient cellular DNA damage responses

机译:针对小鼠RAD1的缺失导致细胞DNA损伤响应缺乏

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摘要

The Rad1 gene is evolutionarily conserved from yeast to human. The fission yeast Schizosaccharomyces pombe Rad1 ortholog promotes cell survival against DNA damage and is required for G2/M checkpoint activation. In this study, mouse embryonic stem (ES) cells with a targeted deletion of Mrad1 , the mouse ortholog of this gene, were created to evaluate its function in mammalian cells. Mrad1 ?/? ES cells were highly sensitive to ultraviolet-light (UV light), hydroxyurea (HU) and gamma rays, and were defective in G2/M as well as S/M checkpoints. These data indicate that Mrad1 is required for repairing DNA lesions induced by UV-light, HU and gamma rays, and for mediating G2/M and S/M checkpoint controls. We further demonstrated that Mrad1 plays an important role in homologous recombination repair (HRR) in ES cells, but a minor HRR role in differentiated mouse cells.
机译:RAD1基因进化地从酵母中保存给人。裂变酵母Schizosaccharomyces Pombe Rad1 Ortholog促进细胞存活率免受DNA损伤,并且是G 2 / m检查点激活所需的。在本研究中,产生具有MRAD1的靶向缺失的小鼠胚胎茎(ES)细胞,该基因的小鼠直肠道,以评估其在哺乳动物细胞中的功能。 mrad1 ?/α/ sup> ES细胞对紫外线(UV光),羟基脲(Hu)和γ射线非常敏感,并在G 2 / m以及s / m检查点。这些数据表明MRAD1需要修复UV光,胡和伽马射线的DNA病变,以及用于调解G 2 / m和S / M检查点控制。我们进一步证明MRAD1在ES细胞中的同源重组修复(HRR)中起重要作用,但在分化的小鼠细胞中的次要HRR作用。

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