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Ctf18-RFC and DNA Pol epsilon form a stable leading strand polymerase/clamp loader complex required for normal and perturbed DNA replication

机译:CTF18-RFC和DNA POL EPSILON形成正常和扰动DNA复制所需的稳定前导的链状聚合酶/夹具复合物

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摘要

The eukaryotic replisome must faithfully replicate DNA and cope with replication fork blocks and stalling, while simultaneously promoting sister chromatid cohesion. Ctf18-RFC is an alternative PCNA loader that links all these processes together by an unknown mechanism. Here, we use integrative structural biology combined with yeast genetics and biochemistry to highlight the specific functions that Ctf18-RFC plays within the leading strand machinery via an interaction with the catalytic domain of DNA Pol epsilon. We show that a large and unusually flexible interface enables this interaction to occur constitutively throughout the cell cycle and regardless of whether forks are replicating or stalled. We reveal that, by being anchored to the leading strand polymerase, Ctf18-RFC can rapidly signal fork stalling to activate the S phase checkpoint. Moreover, we demonstrate that, independently of checkpoint signaling or chromosome cohesion, Ctf18-RFC functions in parallel to Chl1 and Mrc1 to protect replication forks and cell viability.
机译:真核报额必须忠实地复制DNA并应对复制叉块和停滞,同时促进姐妹染色体内聚力。 CTF18-RFC是一种替代PCNA装载机,通过未知机制将所有这些过程链接在一起。在这里,我们使用综合结构生物学结合酵母遗传学和生物化学来突出CTF18-RFC通过与DNA POLεε催化结构域的相互作用在前导链机械内播放的具体功能。我们表明,一个大型和异常灵活的界面使得这种交互能够在整个细胞周期中形成组成型,但无论叉子是否复制或停止。我们揭示了,通过锚定向前导的链接聚合酶,CTF18-RFC可以快速地信号叉分流以激活S相检查点。此外,我们证明,独立于检查点信令或染色体凝聚,CTF18-RFC与CHL1和MRC1平行起作用以保护复制叉和细胞活力。

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  • 来源
    《Nucleic Acids Research》 |2020年第14期|共18页
  • 作者单位

    Univ Warwick Warwick Med Sch Coventry W Midlands England;

    Univ Warwick Warwick Med Sch Coventry W Midlands England;

    Univ Wurzburg Rudolf Virchow Ctr Integrat &

    Translat Bioimaging Inst Struct Biol Josef Schneider Str 2 D-97080 Wurzburg Germany;

    Univ Warwick Warwick Med Sch Coventry W Midlands England;

    Univ Wurzburg Rudolf Virchow Ctr Integrat &

    Translat Bioimaging Inst Struct Biol Josef Schneider Str 2 D-97080 Wurzburg Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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