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非典型半胱氨酸蛋白酶 USP1 通过与 USP1 相关的因子 1 对其活性位点的调节而被激活。

A noncanonical cysteine protease USP1 is activated through active site modulation by USP1-associated factor 1.

机构信息

Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, United States.

出版信息

Biochemistry. 2012 Apr 3;51(13):2829-39. doi: 10.1021/bi3000512. Epub 2012 Mar 22.

DOI:10.1021/bi3000512
PMID:22439892
Abstract

Ubiquitin-specific proteases (USPs) constitute the largest family of the human deubiquitinating enzymes. USP1 belongs to the cysteine protease family and contains a catalytic triad comprised of C90, H593, and D751. Notably, the catalytic activity of USP1 is stimulated through the formation of a tight complex with a WD40 repeat protein UAF1 (USP1-associated factor 1). Our kinetic analyses revealed a general base catalysis in USP1/UAF1, in contrast to an ion-pair mechanism as demonstrated for papain and cathepsin. The pK(a) value of the catalytic cysteine was determined to be 8.67 ± 0.07 in a pH-dependent inactivation study of USP1/UAF1 by iodoacetamide. A normal solvent kinetic isotope effect of 2.8 for k(cat) and 3.0 for k(cat)/K(m) was observed in the USP1/UAF1-catalyzed hydrolysis of ubiquitin-AMC substrate. Moreover, proton inventory analysis supported the transfer of a single solvent-derived proton in the transition state. Our study also revealed the molecular basis for the activation of USP1 by UAF1. Although the pK(a) of the catalytic cysteine in USP1 and USP1/UAF1 was almost identical, the pK(a) of the catalytic histidine in USP1/UAF1 was 0.43 pH unit lower than that in USP1, which facilitates general base catalysis at a neutral pH and contributes to the elevated catalytic efficiency. We ruled out that the higher catalytic efficiency is due to a tighter binding of ubiquitin. Our results support a regulatory mechanism in which UAF1 activates USP1 by modulating its active site conformation. This finding has a general implication for the regulation of USPs that form complex with partner proteins.

摘要

泛素特异性蛋白酶(USP)构成了人类去泛素化酶中最大的家族。USP1 属于半胱氨酸蛋白酶家族,包含由 C90、H593 和 D751 组成的催化三联体。值得注意的是,USP1 的催化活性通过与 WD40 重复蛋白 UAF1(USP1 相关因子 1)形成紧密复合物而得到刺激。我们的动力学分析表明,USP1/UAF1 中存在广义碱基催化,与木瓜蛋白酶和组织蛋白酶所证明的离子对机制相反。通过碘乙酰胺对 USP1/UAF1 的 pH 依赖性失活研究,确定了催化半胱氨酸的 pK(a)值为 8.67±0.07。在 USP1/UAF1 催化的泛素-AMC 底物水解反应中,观察到 kcat 和 kcat/Km 的正常溶剂动力学同位素效应分别为 2.8 和 3.0。此外,质子库存分析支持在过渡态中转移单个溶剂衍生质子。我们的研究还揭示了 UAF1 激活 USP1 的分子基础。尽管 USP1 和 USP1/UAF1 中催化半胱氨酸的 pK(a)几乎相同,但 USP1/UAF1 中催化组氨酸的 pK(a)比 USP1 低 0.43 pH 单位,这有利于在中性 pH 下进行广义碱基催化,并有助于提高催化效率。我们排除了更高的催化效率是由于泛素结合更紧密的原因。我们的结果支持一种调节机制,其中 UAF1 通过调节其活性位点构象来激活 USP1。这一发现对于与伴侣蛋白形成复合物的 USP 的调节具有普遍意义。

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