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Autoinhibition Mechanism of the Ubiquitin-Conjugating Enzyme UBE2S by Autoubiquitination

机译:自动吸收泛素缀合酶Ube2s的自动抑制机制

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摘要

Ubiquitin-conjugating enzymes (E2s) govern key aspects of ubiquitin signaling. Emerging evidence suggests that the activities of E2s are modulated by posttranslational modifications; the structural underpinnings, however, are largely unclear. Here, we unravel the structural basis andmechanistic consequences of a conserved autoubiquitination event near the catalytic center of E2s, using the human anaphase-promoting complex/cyclosome-associated UBE2S as a model system. Crystal structures we determined of the catalytic ubiquitin carrier protein domain combined with MD simulations reveal that the active-site region is malleable, which permits an adjacent ubiquitin acceptor site, Lys(+5), to be ubiquitinated intramolecularly. We demonstrate by NMR that the Lys(+5)-linked ubiquitin inhibits UBE2S by obstructing its reloading with ubiquitin. By immunoprecipitation, quantitative mass spectrometry, and siRNA-and-rescue experiments we show that Lys(+5) ubiquitination of UBE2S decreases during mitotic exit but does not influence proteasomal turnover of this E2. These findings suggest that UBE2S activity underlies inherent regulation during the cell cycle.
机译:泛素 - 缀合酶(E2S)治理泛素信号传导的关键方面。新兴的证据表明E2S的活动由后期修改调节;然而,结构性下限在很大程度上不清楚。在这里,我们使用人类的促进复合/环体相关的UBE2S作为模型系统,揭开了E2s催化中心附近的保守自动侵袭事件的结构基因。我们确定催化泛素载体蛋白质结构域与MD模拟确定的晶体结构表明,活性部位区域是可展示的,这允许邻近的泛素受体位点(+5),染色体染色体。我们通过NMR证明了Lys(+5) - 链接泛素通过阻塞其重新加载与泛素来抑制UBE2S。通过免疫沉淀,定量质谱和siRNA和救援实验,我们表明百分比(+5)ube2s在有丝分裂出口期间降低但不会影响该E2的蛋白酶体转换。这些发现表明UBE2S活动在细胞周期内的固有规则下降。

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  • 来源
    《Structure》 |2019年第8期|共23页
  • 作者单位

    Univ Wurzburg Rudolf Virchow Ctr Expt Biomed D-97080 Wurzburg Germany;

    Tech Univ Dresden Biotechnol Ctr Cell Cycle D-01307 Dresden Germany;

    Univ Bayreuth Biopolymers D-95447 Bayreuth Germany;

    Inst Canc Res Funct Prote Grp London SW3 6JB England;

    Inst Canc Res Funct Prote Grp London SW3 6JB England;

    Univ Wurzburg Inst Pharm &

    Food Chem D-97074 Wurzburg Germany;

    Max Planck Inst Biophys Chem Dept Cellular Biochem D-37077 Gottingen Germany;

    Univ Wurzburg Inst Pharm &

    Food Chem D-97074 Wurzburg Germany;

    Max Planck Inst Biophys Chem Grp Bioanalyt Mass Spectrometry D-37077 Gottingen Germany;

    Inst Canc Res Funct Prote Grp London SW3 6JB England;

    Tech Univ Dresden Biotechnol Ctr Cell Cycle D-01307 Dresden Germany;

    Univ Wurzburg Rudolf Virchow Ctr Expt Biomed D-97080 Wurzburg Germany;

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

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