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首页> 外文期刊>The Biochemical Journal >Replication fork dynamics and the DNA damage responseTI Replication fork dynamics and the DNA damage response
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Replication fork dynamics and the DNA damage responseTI Replication fork dynamics and the DNA damage response

机译:复制叉动力学和DNA损伤响应TI复制叉动力学和DNA损伤响应

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摘要

Prevention and repair of DNA damage is essential for maintenance of genomic stability and cell survival. DNA replication during S-phase can be a source of DNA damage if endogenous or exogenous stresses impair the progression of replication forks. It has become increasingly clear that DNA-damage-response pathways do not only respond to the presence of damaged DNA, but also modulate DNA replication dynamics to prevent DNA damage formation during S-phase. Such observations may help explain the developmental defects or cancer predisposition caused by mutations in DNA-damage-response genes. The present review focuses on molecular mechanisms by which DNA-damage-response pathways control and promote replication dynamics in vertebrate cells. In particular, DNA damage pathways contribute to proper replication by regulating replication initiation, stabilizing transiently stalled forks, promoting replication restart and facilitating fork movement on difficult-to-replicate templates. If replication fork progression fails to be rescued, this may lead to DNA damage and genomic instability via nuclease processing of aberrant fork structures or incomplete sister chromatid separation during mitosis.
机译:预防和修复DNA损伤对于维持基因组稳定性和细胞存活至关重要。如果内源性或外源性应力阻碍复制叉的进行,则S期DNA的复制可能是DNA受损的原因。越来越清楚的是,DNA损伤反应途径不仅响应受损DNA的存在,而且还调节DNA复制动力学,以防止S期形成DNA损伤。这些观察结果可能有助于解释由DNA损伤反应基因突变引起的发育缺陷或癌症易感性。目前的审查集中在DNA损伤反应途径控制和促进脊椎动物细胞中复制动力学的分子机制。尤其是,DNA损伤途径通过调节复制起始,稳定短暂停滞的叉子,促进复制重启并促进叉子在难以复制的模板上的移动而有助于适当的复制。如果无法挽救复制叉的进展,则可能通过异常叉结构的核酸酶处理或有丝分裂期间姐妹染色单体的分离不完全而导致DNA损伤和基因组不稳定。

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