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Stalled replication forks: Making ends meet for recognition and stabilization

机译:停滞的复制叉:收支平衡以实现识别和稳定

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摘要

In bacteria, PriA protein, a conserved DEXH-type DNA helicase, plays a central role in replication restart at stalled replication forks. Its unique DNA-binding property allows it to recognize and stabilize stalled forks and the structures derived from them. Cells must cope with fork stalls caused by various replication stresses to complete replication of the entire genome. Failure of the stalled fork stabilization process and eventual restart could lead to various forms of genomic instability. The low viability of priA null cells indicates a frequent occurrence of fork stall during normal growth that needs to be properly processed. PriA specifically recognizes the 3′-terminus of the nascent leading strand or the invading strand in a displacement (D)-loop by the three-prime terminus binding pocket (TT-pocket) present in its unique DNA binding domain. Elucidation of the structural basis for recognition of arrested forks by PriA should provide useful insight into how stalled forks are recognized in eukaryotes.
机译:在细菌中,PriA蛋白(一种保守的DEXH型DNA解旋酶)在停滞的复制叉中的复制重启中起着核心作用。其独特的DNA结合特性使其能够识别并稳定失速的叉子及其衍生的结构。细胞必须应对因各种复制压力而导致的叉子停滞,以完成整个基因组的复制。停滞的叉稳定过程失败并最终重启可能会导致各种形式的基因组不稳定。 priA空细胞的低生存能力表明在正常生长期间叉失速频繁发生,需要适当处理。 PriA通过其独特的DNA结合结构域中存在的三个主要末端结合口袋(TT-口袋),特异性地识别了置换(D)环中新生的前导链或侵入链的3'末端。 PriA阐明识别被捕叉子的结构基础应为了解如何在真核生物中识别失速的叉子提供有用的见解。

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  • 来源
    《BioEssays》 |2010年第8期|p.687-697|共11页
  • 作者单位

    Genome Dynamics Project, Tokyo Metropolitan Institute of Medical Science, Tokyo, Japan;

    Genome Dynamics Project, Tokyo Metropolitan Institute of Medical Science, Tokyo, Japan;

    Division of Structural Biology, Medical Institute of Bioregulation, Kyushu University, Fukuoka, Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    DNA helicase; fork restart; genomic instability; PriA; stalled replication fork;

    机译:DNA解旋酶;前叉重启;基因组不稳定性;PriA;固定的复制叉;

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