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MRNIP is a replication fork protection factor

机译:MRNIP是一种复制叉保护因子

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摘要

The remodeling of stalled replication forks to form four-way DNA junctions is an important component of the replication stress response. Nascent DNA at the regressed arms of these reversed forks is protected by RAD51 and the tumor suppressors BRCA1/2, and when this function is compromised, stalled forks undergo pathological MRE11-dependent degradation, leading to chromosomal instability. However, the mechanisms regulating MRE11 functions at reversed forks are currently unclear. Here, we identify the MRE11-binding protein MRNIP as a novel fork protection factor that directly binds to MRE11 and specifically represses its exonuclease activity. The loss of MRNIP results in impaired replication fork progression, MRE11 exonuclease–dependent degradation of reversed forks, persistence of underreplicated genomic regions, chemosensitivity, and chromosome instability. Our findings identify MRNIP as a novel regulator of MRE11 at reversed forks and provide evidence that regulation of specific MRE11 nuclease activities ensures protection of nascent DNA and thereby genome integrity.
机译:停滞复制叉的重塑以形成四路DNA结是复制应力响应的重要组成部分。这些反向叉的回归臂的新生DNA受rad51和肿瘤抑制剂BRCA1 / 2的保护,并且当该功能受到损害时,停滞叉经过病理的MRE11依赖性降解,导致染色体不稳定性。然而,在反向叉处调节MRE11功能的机制目前不清楚。在这里,我们将MRE11结合蛋白MRNIP鉴定为新的叉保护因子,其直接与MRE11结合并具体抑制其外切核酸酶活性。 MRNIP的丧失导致复制叉进展受损,MRE11逆转叉的依赖性降解,持续的基因组区域,化学敏感性和染色体不稳定性。我们的研究结果将MRNIP识别为逆转叉的MRE11的新型调节器,并提供了具体的MRE11核酸酶活性的证据,确保了对新生DNA的保护,从而确保了基因组完整性。

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