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首页> 外文期刊>The FEBS journal >Crystal structure of the catalytic domain of UCHL5, a proteasome-associated human deubiquitinating enzyme, reveals an unproductive form of the enzyme.
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Crystal structure of the catalytic domain of UCHL5, a proteasome-associated human deubiquitinating enzyme, reveals an unproductive form of the enzyme.

机译:蛋白酶体相关的人去泛素化酶UCHL5的催化域的晶体结构揭示了该酶的非生产形式。

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Ubiquitin carboxy-terminal hydrolase L5 (UCHL5) is a proteasome-associated deubiquitinating enzyme, which, along with RPN11 and USP14, is known to carry out deubiquitination on proteasome. As a member of the ubiquitin carboxy-terminal hydrolase (UCH) family, UCHL5 is unusual because, unlike UCHL1 and UCHL3, it can process polyubiquitin chain. However, it does so only when it is bound to the proteasome; in its free form, it is capable of releasing only relatively small leaving groups from the C-terminus of ubiquitin. Such a behavior might suggest at least two catalytically distinct forms of the enzyme, an apo form incapable of chain processing activity, and a proteasome-induced activated form capable of cleaving polyubiquitin chain. Through the crystal structure analysis of two truncated constructs representing the catalytic domain (UCH domain) of this enzyme, we were able to visualize a state of this enzyme that we interpret as its inactive form, because the catalytic cysteine appears to be in an unproductive orientation. While this work was in progress, the structure of a different construct representing the UCH domain was reported; however, in that work the structure reported was that of an inactive mutant [catalytic Cys to Ala; Nishio K et al. (2009) Biochem Biophys Res Commun 390, 855-860], which precluded the observation that we are reporting here. Additionally, our structures reveal conformationally dynamic parts of the enzyme that may play a role in the structural transition to the more active form
机译:泛素羧基末端水解酶L5(UCHL5)是与蛋白酶体相关的去泛素化酶,已知它与RPN11和USP14一起对蛋白酶体进行去泛素化。作为泛素羧基末端水解酶(UCH)家族的成员,UCHL5是不寻常的,因为与UCHL1和UCHL3不同,它可以加工聚泛素链。但是,只有当它与蛋白酶体结合时才这样做。它以游离形式只能从泛素的C末端释放相对较小的离去基团。这种行为可能暗示了该酶的至少两种催化上不同的形式,一种无链处理活性的载脂蛋白形式,以及一种蛋白酶体诱导的能够裂解多聚泛素链的活化形式。通过两个代表该酶催化结构域(UCH域)的截短构建体的晶体结构分析,我们能够可视化该酶的状态,我们将其解释为无活性形式,因为催化半胱氨酸似乎处于非生产性取向。在进行这项工作的同时,还报道了代表UCH域的不同构建体的结构。然而,在这项工作中,报道的结构是无活性的突变体[催化半胱氨酸催化丙氨酸; Nishio K等。 (2009)Biochem Biophys Res Commun 390,855-860],这排除了我们在此报告的观察结果。此外,我们的结构揭示了酶的构象动态部分,可能在结构转变为活性更高的形式中起作用

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