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开发具有泛素 C 端水解酶去泛素化酶选择性的泛素变体。

Development of Ubiquitin Variants with Selectivity for Ubiquitin C-Terminal Hydrolase Deubiquitinases.

机构信息

Department of Medicinal Chemistry and Molecular Pharmacology, College of Pharmacy, Purdue University, 575 Stadium Mall Drive, West Lafayette, Indiana 47907, United States.

Department of Chemistry, College of Science, Purdue University, 560 Oval Drive, West Lafayette, Indiana 47907, United States.

出版信息

Biochemistry. 2020 Sep 22;59(37):3447-3462. doi: 10.1021/acs.biochem.9b01076. Epub 2020 Sep 8.

Abstract

Ubiquitin (Ub) is a highly conserved protein that is covalently attached to substrate proteins as a post-translational modification to regulate signaling pathways such as proteasomal degradation and cell cycle/transcriptional regulation in the eukaryotic cellular environment. Ub signaling is regulated by the homeostasis of substrate protein ubiquitination/deubiquitination by E3 ligases and deubiquitinating enzymes (DUBs) in healthy eukaryotic systems. One such DUB, ubiquitin C-terminal hydrolase L1 (UCHL1), is endogenously expressed in the central nervous system under normal physiological conditions, but overexpression and/or mutation has been linked to various cancers and neurodegenerative diseases. The lack of UCHL1 probing strategies suggests development of a selective Ub variant (UbV) for probing UCHL1's role in these disease states would be beneficial. We describe a computational design approach to investigate UbVs that lend selectivity, both binding and inhibition, to UCHL1 over the close structural homologue UCHL3 and members of other DUB families. A number of UbVs, mainly those containing Thr9 mutations, displayed appreciable binding and inhibition selectivity for UCHL1 over UCHL3, compared to wild-type Ub in assays. By appending reactive electrophiles to the C-terminus of the UbVs, we created the first activity-based probe (ABP) with demonstrated reaction selectivity for UCH family DUBs over other families in cell lysates. Further kinetic analysis of covalent inhibition by the UbV-ABP with UCHL1 and UCHL3 offers insight into the future design of UCHL1 selective UbV-ABP. These studies serve as a proof of concept of the viability of the design of ubiquitin variants for UCH family DUBs as a step toward the development of macromolecular UCHL1 inhibitors.

摘要

泛素(Ub)是一种高度保守的蛋白质,作为一种翻译后修饰,通过与底物蛋白共价结合,来调节信号通路,如真核细胞环境中的蛋白酶体降解和细胞周期/转录调控。Ub 信号受健康真核系统中 E3 连接酶和去泛素化酶(DUBs)对底物蛋白泛素化/去泛素化的动态平衡调控。UCHL1 是一种 DUB,在正常生理条件下内源性表达于中枢神经系统,但在各种癌症和神经退行性疾病中,其过表达和/或突变与这些疾病相关联。由于缺乏对 UCHL1 的探测策略,因此开发一种选择性的 Ub 变体(UbV)来探测 UCHL1 在这些疾病状态中的作用将是有益的。我们描述了一种计算设计方法,用于研究 UbVs,这些 UbVs 可以增加对 UCHL1 的结合和抑制选择性,同时保持与结构同源的 UCHL3 和其他 DUB 家族成员的相似性。在一系列 UbVs 中,主要是那些含有 Thr9 突变的 UbVs,与野生型 Ub 相比,在测定中对 UCHL1 表现出明显的结合和抑制选择性,而对 UCHL3 则没有。通过在 UbVs 的 C 末端附加反应性亲电试剂,我们在细胞裂解物中创建了第一个具有活性的探针(ABP),该探针对 UCH 家族 DUBs 具有反应选择性,而对其他家族没有选择性。进一步对 UCHL1 和 UCHL3 的共价抑制的动力学分析,为 UCHL1 选择性 UbV-ABP 的未来设计提供了思路。这些研究为泛素变体设计用于 UCH 家族 DUBs 的可行性提供了概念验证,为开发大分子 UCHL1 抑制剂迈出了一步。

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