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BOD1L 对于抑制有丝分裂压力下受损复制叉的切除是必需的。

BOD1L Is Required to Suppress Deleterious Resection of Stressed Replication Forks.

机构信息

School of Cancer Sciences, University of Birmingham, Birmingham B15 2TT, UK.

The Weatherall Institute of Molecular Medicine, University of Oxford, Oxford OX3 9DS, UK.

出版信息

Mol Cell. 2015 Aug 6;59(3):462-77. doi: 10.1016/j.molcel.2015.06.007. Epub 2015 Jul 9.

Abstract

Recognition and repair of damaged replication forks are essential to maintain genome stability and are coordinated by the combined action of the Fanconi anemia and homologous recombination pathways. These pathways are vital to protect stalled replication forks from uncontrolled nucleolytic activity, which otherwise causes irreparable genomic damage. Here, we identify BOD1L as a component of this fork protection pathway, which safeguards genome stability after replication stress. Loss of BOD1L confers exquisite cellular sensitivity to replication stress and uncontrolled resection of damaged replication forks, due to a failure to stabilize RAD51 at these forks. Blocking DNA2-dependent resection, or downregulation of the helicases BLM and FBH1, suppresses both catastrophic fork processing and the accumulation of chromosomal damage in BOD1L-deficient cells. Thus, our work implicates BOD1L as a critical regulator of genome integrity that restrains nucleolytic degradation of damaged replication forks.

摘要

识别和修复受损的复制叉对于维持基因组稳定性至关重要,这是由范可尼贫血症和同源重组途径的联合作用协调的。这些途径对于保护停滞的复制叉免受失控的核酸酶活性至关重要,否则会导致不可修复的基因组损伤。在这里,我们确定 BOD1L 是叉保护途径的一个组成部分,它可以在复制压力后保护基因组稳定性。由于 BOD1L 不能稳定 RAD51 在这些叉上,因此失去 BOD1L 会使细胞对复制压力和受损复制叉的失控切除非常敏感。阻止 DNA2 依赖性切除,或下调解旋酶 BLM 和 FBH1,可以抑制灾难性的叉处理和 BOD1L 缺陷细胞中染色体损伤的积累。因此,我们的工作表明 BOD1L 是基因组完整性的关键调节剂,它限制了受损复制叉的核酸酶降解。

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