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The Cohesin Ring Uses Its Hinge to Organize DNA Using Non-topological as well as Topological Mechanisms

机译:Cohesin环使用其铰链来使用非拓扑以及拓扑机制组织DNA

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摘要

As predicted by the notion that sister chromatid cohesion is mediated by entrapment of sister DNAs inside cohesin rings, there is perfect correlation between co-entrapment of circular minichromosomes and sister chromatid cohesion. In most cells where cohesin loads without conferring cohesion, it does so by entrapment of individual DNAs. However, cohesin with a hinge domain whose positively charged lumen is neutralized loads and moves along chromatin despite failing to entrap DNAs. Thus, cohesin engages chromatin in non-topological, as well as topological, manners. Since hinge mutations, but not Smc-kleisin fusions, abolish entrapment, DNAs may enter cohesin rings through hinge opening. Mutation of three highly conserved lysine residues inside the Smc1 moiety of Smc1/3 hinges abolishes all loading without affecting cohesin's recruitment to CEN loading sites or its ability to hydrolyze ATP. We suggest that loading and translocation are mediated by conformational changes in cohesin's hinge driven by cycles of ATP hydrolysis.
机译:正如姐妹染色体凝聚力所介导的那样介导尼蛋白环内的姐妹DNA介导的观念,圆形微调的共夹和乳蛋白染色凝聚力之间存在完美的相关性。在大多数池内载荷而不赋予粘连的细胞中,它通过捕获个体DNA来实现。然而,具有铰链结构域的咖啡蛋白,其带正电的腔被中和的载荷载荷并沿染色质移动,尽管不能捕获DNA。因此,咖啡蛋白在非拓扑中和拓扑,举止的染色蛋白接合。由于铰链突变,但不是SMC-kleisin融合,废除夹带,DNA可以通过铰链开口进入Cohesin环。 SMC1 / 3铰链中SMC1部分中三种高度保守的赖氨酸残留物的突变消除了所有载荷,而不会影响CEN加载位点或其水解ATP的能力。我们建议通过ATP水解循环驱动的Cohesin铰链的构象变化来介导装载和易位。

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  • 来源
    《Cell》 |2018年第6期|共30页
  • 作者单位

    Univ Oxford Dept Biochem South Parks Rd Oxford OX1 3QU England;

    Univ Oxford Dept Biochem South Parks Rd Oxford OX1 3QU England;

    Univ Oxford Dept Biochem South Parks Rd Oxford OX1 3QU England;

    Univ Oxford Dept Biochem South Parks Rd Oxford OX1 3QU England;

    Univ Oxford Dept Biochem South Parks Rd Oxford OX1 3QU England;

    Univ Oxford Dept Biochem South Parks Rd Oxford OX1 3QU England;

    Univ Oxford Dept Biochem South Parks Rd Oxford OX1 3QU England;

    Univ Oxford Dept Biochem South Parks Rd Oxford OX1 3QU England;

    Univ Oxford Dept Biochem South Parks Rd Oxford OX1 3QU England;

    Univ Sussex Genome Ctr Sussex House Brighton BN1 9RH E Sussex England;

    Univ Sheffield Dept Mol Biol &

    Biotechnol Sheffield S10 2TN S Yorkshire England;

    IFOM DNA Metab Lab Via Adamello 16 I-21139 Milan Italy;

    Univ Oxford Dept Biochem South Parks Rd Oxford OX1 3QU England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

  • 入库时间 2022-08-19 23:27:51

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