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首页> 外文期刊>Human Molecular Genetics >The DNA translocase activity of FANCM protects stalled replication forks
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The DNA translocase activity of FANCM protects stalled replication forks

机译:FANCM的DNA转移酶活性可保护停滞的复制叉

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摘要

FANCM is the most highly conserved protein within the Fanconi anaemia (FA) tumour suppressor pathway. However, although FANCM contains a helicase domain with translocase activity, this is not required for its role in activating the FA pathway. Instead, we show here that FANCM translocaseactivity is essential for promoting replication fork stability. We demonstrate that cells expressing translocase-defective FANCM show altered global replication dynamics due to increased accumulation of stalled forks that subsequently degenerate into DNA double-strand breaks, leading to ATM activation, CTBP-interacting protein (CTIP)-dependent end resection and homologous recombination repair. Accordingly, abrogation of ATM or CTIP function in FANCM-deficient cells results in decreased cell survival. We also found that FANCM translocase activity protects cells from accumulating 53BP1-OPT domains, which mark lesions resulting from problems arising during replication. Taken together, these data show that FANCM plays an essential role in maintaining chromosomal integrity by promoting the recovery of stalled replication forks and hence preventing tumourigenesis.
机译:FANCM是Fanconi贫血(FA)肿瘤抑制途径中最保守的蛋白质。但是,尽管FANCM包含具有跨酶活性的解旋酶结构域,但这并不是激活FAN途径所必需的。相反,我们在这里显示FANCM转移酶活性对于促进复制叉的稳定性至关重要。我们证明,表达转位酶缺陷型FANCM的细胞显示出变化的全局复制动力学,这是由于停滞的叉子积累增加,随后退化成DNA双链断裂,导致ATM激活,CTBP相互作用蛋白(CTIP)依赖性末端切除和同源重组修理。因此,FANCM缺陷细胞中ATM或CTIP功能的丧失导致细胞存活率降低。我们还发现FANCM的转位酶活性可以保护细胞免于积累53BP1-OPT结构域,该结构域标记了复制过程中出现的问题引起的损伤。综上所述,这些数据表明,FANCM通过促进停滞的复制叉的恢复并因此防止肿瘤发生,在维持染色体完整性方面起着至关重要的作用。

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