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Stabilization of an unusual salt bridge in ubiquitin by the extra C-terminal domain of the proteasome-associated deubiquitinase UCH37 as a mechanism of its exo specificity

机译:蛋白酶体相关的去泛素酶UCH37的额外C端结构域稳定泛素中不寻常的盐桥作为其exo特异性的机制

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摘要

Ubiquitination is countered by a group of enzymes collectively called deubiquitinases (DUBs) - about 100 of them can be found in the human genome. One of the most interesting aspects of these enzymes is the ability of some members to selectively recognize specific linkage types between ubiquitin in polyubiquitin chains and their endo and exo specificity. The structural basis of exo-specific deubiquitination catalyzed by a DUB is poorly understood. UCH37, a cysteine DUB conserved from fungi to humans, is a proteasome-associated factor that regulates the proteasome by sequentially cleaving polyubiquitin chains from their distal ends, i.e., by exo-specific deubiquitination. In addition to the catalytic domain, the DUB features a functionally uncharacterized UCH37-like domain (ULD), presumed to keep the enzyme in an inhibited state in its proteasome-free form. Herein we report the crystal structure of two constructs of UCH37 from Trichinella spiralis in complex with a ubiquitin-based suicide inhibitor, ubiquitin vinyl methyl ester (UbVME). These structures show that the ULD makes direct contact with ubiquitin stabilizing a highly unusual intra-molecular salt bridge between Lys48 and Glu51 of ubiquitin, an interaction that would be favored only with the distal ubiquitin but not with the internal ones in a Lys48-linked polyubiquitin chain. An inspection of 39 DUB-ubiquitin structures in the protein data bank reveals the uniqueness of the salt bridge in ubiquitin bound to UCH37, an interaction that disappears when the ULD is deleted, as revealed in the structure of the catalytic domain alone bound to UbVME. The structural data are consistent with previously reported mutational data on the mammalian enzyme, which, together with the fact that the ULD residues that bind to ubiquitin are conserved, points to a similar mechanism behind the exo specificity of the human enzyme. To the best of our knowledge, these data provide the only structural example so far of how the exo specificity of a DUB can be determined by its non-catalytic domain. Thus, our data show that, contrary to its proposed inhibitory role, the ULD actually contributes to substrate recognition and could be a major determinant of proteasome-associated function of UCH37. Moreover, our structures show that the unproductively oriented catalytic cysteine in the free enzyme is aligned correctly when ubiquitin binds, suggesting a mechanism for ubiquitin selectivity.
机译:泛素化作用被一组共同称为去泛素化酶(DUB)的酶所抵消-在人类基因组中可以发现约100种酶。这些酶最有趣的方面之一是某些成员选择性识别多聚泛素链中泛素及其内和外特异性之间的特定连接类型的能力。对DUB催化的exo特异性去泛素化的结构基础了解甚少。 UCH37是从真菌到人的保守半胱氨酸DUB,是一种蛋白酶体相关因子,可通过从末端依次切割多聚泛素链,即通过外切特异性去泛素化来调节蛋白酶体。除了催化结构域之外,DUB还具有功能上未表征的UCH37样结构域(ULD),据推测可以将酶保持在抑制状态,处于无蛋白酶体形式。本文中,我们报道了旋毛虫UCH37的两个构建体的晶体结构,该结构与基于泛素的自杀抑制剂泛素乙烯基甲基酯(UbVME)形成复合体。这些结构表明,ULD与遍在蛋白直接接触,从而稳定了Lys48和遍在蛋白的Glu51之间非常不寻常的分子内盐桥,这种相互作用仅受远端遍在蛋白的影响,而与Lys48连接的聚遍在蛋白的内部相互作用则不被支持。链。对蛋白质数据库中39个DUB泛素结构的检查揭示了与UCH37结合的泛素中盐桥的独特性,这种相互作用在ULD缺失时消失,如仅与UbVME结合的催化域的结构所揭示的。结构数据与先前报道的关于哺乳动物酶的突变数据相一致,再加上结合泛素的ULD残基被保守这一事实,指出了人类酶的exo特异性背后的相似机制。据我们所知,这些数据是迄今为止如何通过其非催化结构域确定DUB的外显子特异性的唯一结构性例子。因此,我们的数据表明,与拟议的抑制作用相反,ULD实际上有助于底物识别,并且可能是UCH37蛋白酶体相关功能的主要决定因素。此外,我们的结构表明,当泛素结合时,游离酶中非生产性取向的催化半胱氨酸正确对齐,表明泛素选择性的机制。

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