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The mechanism of OTUB1-mediated inhibition of ubiquitination

机译:OTUB1介导的泛素化抑制机制

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摘要

Histones are ubiquitinated in response to DNA double-strand breaks (DSB), promoting recruitment of repair proteins to chromatin. UBC13 (also known as UBE2N) is a ubiquitin-conjugating enzyme (E2) that heterodimerizes with UEV1 A (also known as UBE2V1) and synthesizes K63-linked polyubiquitin (K63Ub) chains at DSB sites in concert with the ubiquitin ligase (E3), RNF168 (ref. 3). K63Ub synthesis is regulated in a non-canonical manner by the deubiquitinating enzyme, OTUB1 (OTU domain-containing ubiquitin aldehyde-binding protein 1), which binds preferentially to the UBC13~Ub thiolester. Residues amino-terminal to the OTU domain, which had been implicated in ubiquitin binding, are required for binding to UBC13-Ub and inhibition of K63Ub synthesis. Here we describe structural and biochemical studies elucidating how OTUB1 inhibits UBC13 and other E2 enzymes. We unexpectedly find that OTUB1 binding to UBC13~Ub is allosterically regulated by free ubiquitin, which binds to a second site in OTUB1 and increases its affinity for UBC13~Ub, while at the same time disrupting interactions with UEV1A in a manner that depends on the OTUB1 N terminus. Crystal structures of an OTUB1-UBC13 complex and of OTUB1 bound to ubiquitin aldehyde and a chemical UBC13-Ub conjugate show that binding of free ubiquitin to OTUB1 triggers conforma-tional changes in the OTU domain and formation of a ubiquitin-binding helix in the N terminus, thus promoting binding of the conjugated donor ubiquitin in UBC13~Ub to OTUB1. The donor ubiquitin thus cannot interact with the E2 enzyme, which has been shown to be important for ubiquitin transfer. The N-terminal helix of OTUB1 is positioned to interfere with UEV1A binding to UBC13, as well as with attack on the thiolester by an acceptor ubiquitin, thereby inhibiting K63Ub synthesis. OTUB1 binding also occludes the RING E3 binding site on UBC13, thus providing a further component of inhibition. The general features of the inhibition mechanism explain how OTUB1 inhibits other E2 enzymes in a non-catalytic manner.
机译:组蛋白被泛素化以响应DNA双链断裂(DSB),从而促进修复蛋白向染色质的募集。 UBC13(也称为UBE2N)是一种泛素结合酶(E2),可与UEV1 A(也称为UBE2V1)异二聚化,并与泛素连接酶(E3)协同在DSB位点合成K63连接的多泛素(K63Ub)链, RNF168(参考3)。 K63Ub的合成受到去泛素化酶OTUB1(含OTU域的泛素醛结合蛋白1)的非规范调控,该酶优先结合UBC13〜Ub硫代酯。与泛素结合有关的OTU结构域的氨基末端残基是与UBC13-Ub结合并抑制K63Ub合成所必需的。在这里,我们描述了结构和生化研究,阐明了OTUB1如何抑制UBC13和其他E2酶。我们出乎意料地发现,与UBC13〜Ub结合的OTUB1受游离泛素的变构调节,后者与OTUB1的第二个位点结合并增加了其对UBC13〜Ub的亲和力,同时破坏了与UEV1A的相互作用,具体取决于OTUB1 N终点。 OTUB1-UBC13复合物的晶体结构以及与泛素醛和化学UBC13-Ub共轭物结合的OTUB1的晶体结构表明,游离泛素与OTUB1的结合触发OTU结构域的构象变化,并在N中形成泛素结合螺旋末端,从而促进UBC13_Ub中缀合的供体泛素与OTUB1的结合。因此,供体遍在蛋白不能与E2酶相互作用,这已被证明对遍在蛋白的转移很重要。 OTUB1的N末端螺旋被定位为干扰UEV1A与UBC13的结合,以及受受体泛素对硫醇酯的攻击,从而抑制K63Ub的合成。 OTUB1结合还阻塞了UBC13上的RING E3结合位点,因此提供了进一步的抑制作用。抑制机制的一般特征解释了OTUB1如何以非催化方式抑制其他E2酶。

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  • 来源
    《Nature》 |2012年第7391期|p.618-622|共5页
  • 作者单位

    Department of Biophysics and Biophysical Chemistry and the Howard Hughes Medical Institute, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA;

    Department of Biophysics and Biophysical Chemistry and the Howard Hughes Medical Institute, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA;

    Department of Biophysics and Biophysical Chemistry and the Howard Hughes Medical Institute, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA,National Institute of Allergy and Infectious Diseases, Vaccine Research Center, 40 Convent Drive, Bethesda, Maryland 20892, USA;

    Department of Biophysics and Biophysical Chemistry and the Howard Hughes Medical Institute, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA;

  • 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 02:54:06

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