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泛素羧基末端水解酶L1对底物的识别与催化作用

Substrate recognition and catalysis by UCH-L1.

作者信息

Luchansky Sarah J, Lansbury Peter T, Stein Ross L

机构信息

Center for Neurologic Diseases, Harvard Medical School and Brigham and Women's Hospital and Laboratory for Drug Discovery in Neurodegeneration, Harvard Center for Neurodegeneration and Repair, Cambridge, Massachusetts 02139, USA.

出版信息

Biochemistry. 2006 Dec 12;45(49):14717-25. doi: 10.1021/bi061406c.

Abstract

Deubiquitinating enzymes regulate essential cellular processes, and their dysregulation is implicated in multiple disease states. Ubiquitin carboxy-terminal hydrolase L1 (UCH-L1) has garnered attention for its links with Parkinson's disease and cancer; however, the mechanism of action of this enzyme in cells remains poorly understood. In order to advance our understanding of UCH-L1 function, we have been developing small molecule modulators of the enzyme for use as tools to probe its role in cells. In support of these efforts, an investigation of the mechanism of UCH-L1 catalysis was previously reported. Here, we extend this mechanistic evaluation and examine substrate recognition by UCH-L1. We developed a panel of ubiquitin fusions to test the contribution of specific residues of ubiquitin to binding and catalysis by the enzyme, and determined the activation parameters of selected variants to gain additional mechanistic insight. Ubiquitin side chains critical for establishing the Michaelis complex and enabling catalysis were identified, and features of this complex that differ between UCH-L1 and a homologue, UCH-L3, were revealed. These data provide dramatic examples of differences in substrate specificity between these enzymes. The implications of our experiments with UCH-L1 for selective inhibitor design and the relationship to disease are discussed.

摘要

去泛素化酶调节细胞的基本过程,其失调与多种疾病状态有关。泛素羧基末端水解酶L1(UCH-L1)因其与帕金森病和癌症的关联而受到关注;然而,这种酶在细胞中的作用机制仍知之甚少。为了加深我们对UCH-L1功能的理解,我们一直在开发该酶的小分子调节剂,用作探究其在细胞中作用的工具。作为这些努力的支持,此前已有关于UCH-L1催化机制的研究报道。在此,我们扩展了这一机制评估,并研究了UCH-L1对底物的识别。我们构建了一组泛素融合体,以测试泛素特定残基对该酶结合和催化的贡献,并确定了选定变体的活化参数,以获得更多的机制见解。我们鉴定了对于建立米氏复合物和实现催化至关重要的泛素侧链,并揭示了UCH-L1与其同源物UCH-L3之间该复合物的差异特征。这些数据提供了这些酶之间底物特异性差异的显著例子。我们还讨论了针对UCH-L1的实验对选择性抑制剂设计的意义以及与疾病的关系。

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