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E2-RING相互作用在调控RNF4介导的底物泛素化中的作用

Role of E2-RING Interactions in Governing RNF4-Mediated Substrate Ubiquitination.

作者信息

DiBello Anthony, Datta Ajit B, Zhang Xiangbin, Wolberger Cynthia

机构信息

Department of Biophysics and Biophysical Chemistry, The Johns Hopkins School of Medicine, 725 North Wolfe Street, Baltimore, MD 21205, USA.

Department of Biophysics and Biophysical Chemistry, The Johns Hopkins School of Medicine, 725 North Wolfe Street, Baltimore, MD 21205, USA.

出版信息

J Mol Biol. 2016 Nov 20;428(23):4639-4650. doi: 10.1016/j.jmb.2016.09.018. Epub 2016 Sep 24.

Abstract

Members of the really interesting new gene (RING) E3 ubiquitin ligase family bind to both substrate and ubiquitin-charged E2 enzyme, promoting the transfer of ubiquitin from the E2 to substrate. Either a single ubiquitin or one of the several types of polyubiquitin chains can be conjugated to substrate proteins, with different types of ubiquitin modifications signaling the distinct outcomes. E2 enzymes play a central role in governing the nature of the ubiquitin modification, although the essential features of the E2 that differentiate mono- versus polyubiquitinating E2 enzymes remain unclear. RNF4 is a compact RING E3 ligase that directs the ubiquitination of polySUMO chains in concert with several different E2 enzymes. RNF4 monoubiquitinates polySUMO substrates in concert with RAD6B and polyubiquitinates substrates together with UBCH5B, a promiscuous E2 that can function with a broad range of E3 ligases. We find that the divergent ubiquitination activities of RAD6B and UBCH5B are governed by differences at the RING-binding surface of the E2. By mutating the RAD6B RING-binding surface to resemble that of UBCH5B, RAD6B can be transformed into a highly active UBCH5B-like E2 that polyubiquitinates SUMO chains in concert with RNF4. The switch in RAD6B activity correlates with increased affinity of the E2 for RNF4. These results point to an important role of the affinity between an E3 and its cognate E2 in governing the multiplicity of substrate ubiquitination.

摘要

真正有趣的新基因(RING)E3泛素连接酶家族的成员可同时结合底物和带泛素的E2酶,促进泛素从E2转移到底物上。单个泛素或几种类型的多聚泛素链之一可与底物蛋白缀合,不同类型的泛素修饰预示着不同的结果。E2酶在决定泛素修饰的性质方面起着核心作用,尽管区分单泛素化和多泛素化E2酶的E2基本特征仍不清楚。RNF4是一种紧密的RING E3连接酶,可与几种不同的E2酶协同指导多聚SUMO链的泛素化。RNF4与RAD6B协同对多聚SUMO底物进行单泛素化,并与UBCH5B一起对底物进行多泛素化,UBCH5B是一种可与多种E3连接酶起作用的通用E2。我们发现,RAD6B和UBCH5B不同的泛素化活性受E2的RING结合表面差异的控制。通过将RAD6B的RING结合表面突变为类似于UBCH5B的表面,RAD6B可转化为一种高活性的类似UBCH5B的E2,它可与RNF4协同对SUMO链进行多泛素化。RAD6B活性的转变与E2对RNF4亲和力的增加相关。这些结果表明,E3与其同源E2之间的亲和力在控制底物泛素化的多样性方面起着重要作用。

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