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Insights into ubiquitin chain architecture using Ub-clipping

机译:使用UB剪辑洞察泛素链架构

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摘要

Protein ubiquitination is a multi-functional post-translational modification that affects all cellular processes. Its versatility arises from architecturally complex polyubiquitin chains, in which individual ubiquitin moieties may be ubiquitinated on one or multiple residues, and/or modified by phosphorylation and acetylation(1-3). Advances in mass spectrometry have enabled the mapping of individual ubiquitin modifications that generate the ubiquitin code; however, the architecture of polyubiquitin signals has remained largely inaccessible. Here we introduce Ub-clipping as a methodology by which to understand polyubiquitin signals and architectures. Ub-clipping uses an engineered viral protease, Lb(pro)*, to incompletely remove ubiquitin from substrates and leave the signature C-terminal GlyGly dipeptide attached to the modified residue; this simplifies the direct assessment of protein ubiquitination on substrates and within polyubiquitin. Monoubiquitin generated by Lb(pro)* retains GlyGly-modified residues, enabling the quantification of multiply GlyGly-modified branch-point ubiquitin. Notably, we find that a large amount (10-20%) of ubiquitin in polymers seems to exist as branched chains. Moreover, Ub-clipping enables the assessment of co-existing ubiquitin modifications. The analysis of depolarized mitochondria reveals that PINK1/parkin-mediated mitophagy predominantly exploits mono- and short-chain polyubiquitin, in which phosphorylated ubiquitin moieties are not further modified. Ub-clipping can therefore provide insight into the combinatorial complexity and architecture of the ubiquitin code.
机译:蛋白质泛素是一种多功能的翻译后改性,其影响所有细胞过程。它的多功能性来自建筑络合物络合链链,其中单个泛素部分可以染上一个或多个残基,和/或通过磷酸化和乙酰化(1-3)改性。质谱中的进展使得能够产生产生泛素代码的个体泛素修饰;然而,络合蛋白信号的结构仍然很大程度上无法进入。在这里,我们将UB剪辑作为一种方法来理解多边形信号和架构。 UB-Clipping使用工程化病毒蛋白酶LB(Pro)*,从底物中不完全除去泛素,并使附着于改性残余物的特征C末端三肽;这简化了蛋白质泛素对底物的直接评估和多泛素。由LB(Pro)*产生的Monoubiquitin保留甘氨酸改性的残基,从而能够定量乘法甘露出改性的泛素。值得注意的是,我们发现大量(10-20%)聚合物中的泛素似乎存在于支链中。此外,UB剪切能够评估共同存在的泛素修饰。去极化线粒体的分析表明,Pink1 / Parkin介导的乳化剂主要剥削单链和短链多粘合剂,其中不进一步修饰磷酸化的泛素部分。因此,UB剪辑可以深入了解遍在蛋白代码的组合复杂性和架构。

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  • 来源
    《Nature》 |2019年第7770期|533-537|共5页
  • 作者单位

    MRC Lab Mol Biol Cambridge England|Max Planck Inst Biochem Dept Mol Machines & Signaling Martinsried Germany;

    MRC Lab Mol Biol Cambridge England;

    MRC Lab Mol Biol Cambridge England;

    MRC Lab Mol Biol Cambridge England|Univ Calif San Francisco Dept Cellular & Mol Pharmacol San Francisco CA 94143 USA;

    MRC Lab Mol Biol Cambridge England|Harvard Med Sch Dept Biol Chem & Mol Pharmacol Boston MA 02115 USA;

    MRC Lab Mol Biol Cambridge England|Oregon Hlth & Sci Univ Dept Mol Microbiol & Immunol Portland OR 97201 USA;

    Med Univ Vienna Vienna Bioctr Max Perutz Labs Dept Med Biochem Vienna Austria;

    MRC Lab Mol Biol Cambridge England|Walter & Eliza Hall Inst Med Res Ubiquitin Signalling Div Parkville Vic Australia|Univ Melbourne Dept Med Biol Melbourne Vic Australia;

  • 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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  • 入库时间 2022-08-18 22:15:21

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