首页> 外文期刊>Journal of Molecular Biology >Solution Structure of the Ubp-M BUZ Domain, a Highly Specific Protein Module that Recognizes the C-terminal Tail of Free Ubiquitin.
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Solution Structure of the Ubp-M BUZ Domain, a Highly Specific Protein Module that Recognizes the C-terminal Tail of Free Ubiquitin.

机译:Ubp-M BUZ域的溶液结构,这是一种高度特异性的蛋白质模块,可识别游离泛素的C末端尾巴。

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The BUZ/Znf-UBP domain is a distinct ubiquitin-binding module found in the cytoplasmic deacetylase HDAC6, the E3 ubiquitin ligase BRAP2/IMP, and a subfamily of deubiquitinating enzymes. Here, we report the solution structure of the BUZ domain of Ubp-M, a ubiquitin-specific protease, and its interaction with ubiquitin. Unlike the BUZ domain from isopeptidase T (isoT) that contains a single zinc finger, the Ubp-M BUZ domain features three zinc-binding sites consisting of 12 residues. These zinc ligands form a pair of cross-braced ring fingers encapsulated within a third zinc finger in the primary structure. In contrast to isoT, which can form an N-terminal loop swapped dimer in the crystal state, the formation of additional zinc fingers in the Ubp-M BUZ domain restricts its N-terminal loop to intra-domain interactions. The ubiquitin-binding site of the Ubp-M BUZ domain is mapped to the highly conserved, concave surface formed by the alpha3 helix and the central beta-sheet. We further show that this site binds to the C-terminal tail of free ubiquitin, and corresponding peptides display essentially the same binding affinities as full-length ubiquitin does for the Ubp-M BUZ domain. However, modification of the G76(Ub) carboxylate group either by a peptide or isopeptide bond abolishes BUZ-domain interaction. The unique ubiquitin-recognition mode of the BUZ domain family suggests that they may function as "sensors" of free ubiquitin in cells to achieve regulatory roles in many aspects of ubiquitin-dependent processes.
机译:BUZ / Znf-UBP域是在细胞质脱乙酰基酶HDAC6,E3泛素连接酶BRAP2 / IMP和脱泛素化酶亚家族中发现的独特的泛素结合模块。在这里,我们报告了Ubp-M的BUZ域(一种泛素特异性蛋白酶)的溶液结构及其与泛素的相互作用。与来自异肽酶T(isoT)的BUZ结构域(包含单个锌指)不同,Ubp-M BUZ结构域具有三个由12个残基组成的锌结合位点。这些锌配体形成一对交叉支撑的无名指,该无名指封装在一级结构的第三个锌指中。与isoT可以在晶体状态下形成N末端环交换二聚体相反,Ubp-M BUZ域中额外锌指的形成将其N末端环限制于域内相互作用。 Ubp-M BUZ域的泛素结合位点被映射到由α3螺旋和中央β-折叠形成的高度保守的凹表面。我们进一步表明,该位点与游离泛素的C末端尾部结合,并且相应的肽显示出与全长泛素对Ubp-M BUZ域相同的结合亲和力。但是,通过肽或异肽键对G76(Ub)羧酸酯基的修饰消除了BUZ域相互作用。 BUZ域家族独特的泛素识别模式表明,它们可以充当细胞中游离泛素的“传感器”,从而在泛素依赖性过程的许多方面发挥调控作用。

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