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Chain Assembly and Disassembly Processes Differently Affect the Conformational Space of Ubiquitin Chains

机译:链组件和拆卸过程不同地影响泛素链的构象空间

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摘要

Ubiquitination is the most versatile posttranslational modification. The information is encoded by linkage type as well as chain length, which are translated by ubiquitin binding domains into specific signaling events. Chain topology determines the conformational space of a ubiquitin chain and adds an additional regulatory layer to this ubiquitin code. In particular, processes that modify chain length will be affected by chain conformations as they require access to the elongation or cleavage sites. We investigated conformational distributions in the context of chain elongation and disassembly using pulsed electron-electron double resonance spectroscopy in combination with molecular modeling. Analysis of the conformational space of diubiquitin revealed conformational selection or remodeling as mechanisms for chain recognition during elongation or hydrolysis, respectively. Chain elongation to tetraubiquitin increases the sampled conformational space, suggesting that a high intrinsic flexibility of K48-linked chains may contribute to efficient proteasomal degradation.
机译:泛素化是最通用的翻译后改性。该信息由链接类型和链长编码,链长由ubiquitin绑定域转换为特定的信令事件。链拓扑决定了泛素链的构象空间,并向这种泛素代码添加了额外的调节层。特别地,修改链长度的过程将受到链构象的影响,因为它们需要进入伸长或切割位点。我们在链伸长率的背景下研究了构象分布,并使用脉冲电子 - 电子双共振光谱与分子建模结合使用。分析延伸或水解过程中的等金属蛋白构象空间的分析分别为链识别的机制。环氮素的链伸长率增加了采样的构象空间,表明K48连接链的高固有柔韧性可能有助于有效的蛋白酶体降解。

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  • 来源
    《Structure》 |2018年第2期|共14页
  • 作者单位

    Goethe Univ Inst Biophys Chem Max von Laue Str 9 D-60438 Frankfurt Germany;

    Goethe Univ Inst Phys &

    Theoret Chem Max von Laue Str 7 D-60438 Frankfurt Germany;

    Goethe Univ Inst Biophys Chem Max von Laue Str 9 D-60438 Frankfurt Germany;

    Helmholtz Assoc Max Delbruck Ctr Mol Med Robert Rossle Str 10 D-13125 Berlin Germany;

    Goethe Univ Inst Phys &

    Theoret Chem Max von Laue Str 7 D-60438 Frankfurt Germany;

    Goethe Univ Inst Biophys Chem Max von Laue Str 9 D-60438 Frankfurt Germany;

    Goethe Univ Inst Biochem 2 Med Sch Theodor Stern Kai 7 D-60590 Frankfurt Germany;

    Goethe Univ Inst Biochem 2 Med Sch Theodor Stern Kai 7 D-60590 Frankfurt Germany;

    Goethe Univ Inst Biophys Chem Max von Laue Str 9 D-60438 Frankfurt Germany;

    Helmholtz Assoc Max Delbruck Ctr Mol Med Robert Rossle Str 10 D-13125 Berlin Germany;

    Goethe Univ Inst Phys &

    Theoret Chem Max von Laue Str 7 D-60438 Frankfurt Germany;

    Goethe Univ Inst Biophys Chem Max von Laue Str 9 D-60438 Frankfurt 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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