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A Ctf4 trimer couples the CMG helicase to DNA polymerase α in the eukaryotic replisome

机译:Ctf4三聚体将CMG解旋酶与真核复制体中的DNA聚合酶α偶联

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摘要

Efficient duplication of the genome requires the concerted action of helicase and DNA polymerases at replication forks to avoid stalling of the replication machinery and consequent genomic instability. In eukaryotes, the physical coupling between helicase and DNA polymerases remains poorly understood. Here we define the molecular mechanism by which the yeast Ctf4 protein links the Cdc45-MCM-GINS (CMG) DNA helicase to DNA polymerase α (Pol α) within the replisome. We use X-ray crystallography and electron microscopy to show that Ctf4 self-associates in a constitutive disk-shaped trimer. Trime-rization depends on a β-propeller domain in the carboxy-terminal half of the protein, which is fused to a helical extension that protrudes from one face of the trimeric disk. Critically, Pol α and the CMG helicase share a common mechanism of interaction with Ctf4. We show that the amino-terminal tails of the catalytic subunit of Pol α and the Sld5 subunit of GINS contain a conserved Ctf4-binding motif that docks onto the exposed helical extension of a Ctf4 pro-tomer within the trimer. Accordingly, we demonstrate that one Ctf4 trimer can support binding of up to three partner proteins including the simultaneous association with both Pol α and GINS. Our findings indicate that Ctf4 can couple two molecules of Pol α to one CMG helicase within the replisome, providing a new model for lagging-strand synthesis in eukaryotes that resembles the emerging model for the simpler replisome of Escherichia coli. The ability of Ctf4 to act as a platform for multivalent interactions illustrates a mechanism for the concurrent recruitment of factors that act together at the fork.
机译:有效的基因组复制需要解旋酶和DNA聚合酶在复制叉处的协同作用,以避免复制机制的停滞和随之而来的基因组不稳定。在真核生物中,解旋酶和DNA聚合酶之间的物理偶联仍然知之甚少。在这里,我们定义了酵母Ctf4蛋白将Cdc45-MCM-GINS(CMG)DNA解旋酶与复制体中的DNA聚合酶α(Polα)连接的分子机制。我们使用X射线晶体学和电子显微镜来显示Ctf4在组成型盘状三聚体中自缔合。三角化取决于蛋白质羧基末端一半中的β-螺旋结构域,该结构域融合到从三聚体盘的一个表面突出的螺旋延伸部分上。至关重要的是,Polα和CMG解旋酶具有与Ctf4相互作用的共同机制。我们显示,Polα催化亚基和GINS的Sld5亚基的氨基末端尾巴包含保守的Ctf4结合基序,该基序对接在三聚体中Ctf4 pro-tomer的暴露螺旋延伸上。因此,我们证明一个Ctf4三聚体可以支持多达三个伴侣蛋白的结合,包括同时与Polα和GINS结合。我们的发现表明,Ctf4可以将两个分子的Polα偶联至复制体中的一个CMG解旋酶,从而为真核生物中的滞后链合成提供了一种新模式,类似于新兴的简单复制体模型。 Ctf4充当多价相互作用平台的能力说明了同时募集在分叉处共同起作用的因子的机制。

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  • 来源
    《Nature》 |2014年第7504期|293-297|共5页
  • 作者单位

    Department of Biochemistry, University of Cambridge, Cambridge CB2 1GA, UK;

    Clare Hall Laboratories, Cancer Research UK London Research Institute, London EN6 3LD, UK;

    Department of Biochemistry, University of Cambridge, Cambridge CB2 1GA, UK,Imperial College, South Kensington, London SW7 2AZ, UK;

    Cancer Research UK Manchester Institute, University of Manchester, Manchester M20 4BX, UK;

    MRC Protein Phosphorylation and Ubiquitylation Unit, College of Life Sciences, University of Dundee, Dundee DD1 5EH, UK;

    Department of Biochemistry, University of Cambridge, Cambridge CB2 1GA, UK,Cancer Research UK London Research Institute, London WC2A 3LY, UK;

    Department of Biochemistry, University of Cambridge, Cambridge CB2 1GA, UK;

    Clare Hall Laboratories, Cancer Research UK London Research Institute, London EN6 3LD, UK;

    Protein purification, Cancer Research UK London Research Institute, London WC2A 3LY, UK;

    Department of Chemistry, University of Cambridge, Cambridge CB2 1EW, UK;

    MRC Protein Phosphorylation and Ubiquitylation Unit, College of Life Sciences, University of Dundee, Dundee DD1 5EH, UK;

    Clare Hall Laboratories, Cancer Research UK London Research Institute, London EN6 3LD, UK;

    Department of Biochemistry, University of Cambridge, Cambridge CB2 1GA, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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