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HMCES safeguards replication from oxidative stress and ensures error‐free repair

机译:HMCES保障氧化应激的复制并确保无差错的修复

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摘要

Replication across oxidative DNA lesions can give rise to mutations that pose a threat to genome integrity. How such lesions, which escape base excision repair, get removed without error during replication remains unknown. Our PCNA‐based screen to uncover changes in replisome composition under different replication stress conditions had revealed a previously unknown PCNA‐interacting protein, HMCES/C3orf37. Here, we show that HMCES is a critical component of the replication stress response, mainly upon base misincorporation. We further demonstrate that the absence of HMCES imparts resistance to pemetrexed treatment due to error‐prone bypass of oxidative damage. Furthermore, based on genetic screening, we show that homologous recombination repair proteins, such as CtIP, BRCA2, BRCA1, and PALB2, are indispensable for the survival of HMCES KO cells. Hence, HMCES, which is the sole member of the SRAP superfamily in higher eukaryotes known so far, acts as a proofreader on replication forks, facilitates resolution of oxidative base damage, and therefore ensures faithful DNA replication.
机译:氧化DNA病变的复制可以产生对基因组完整性构成威胁的突变。如何在复制期间逃避基本切除修复的这种病变,在没有错误的情况下删除仍然未知。我们基于PCNA的屏幕在不同复制应激条件下揭示普罗基型组合物的变化揭示了先前未知的PCNA相互作用蛋白质,HMCE / C3ORF37。在这里,我们表明HMCES是复制应力响应的关键组成部分,主要是基础MISINCORANTION。我们进一步证明,由于氧化损伤的易于易于绕过,缺乏HMCES赋予培养基治疗的抵抗力。此外,基于遗传筛查,我们表明,同源重组修复蛋白,例如CTIP,BRCA2,BRCA1和PALB2是对HMCE KO细胞的存活是必不可少的。因此,HMCES,这是超家族在高等真核生物中迄今已知的行动方案的唯一成员,充当上复制叉校对,方便的氧化基础伤害的分辨率,并且因此确保了忠实的DNA复制。

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