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基于中子编码的双泛素组以分析去泛素化酶的连接选择性。

Neutron-encoded diubiquitins to profile linkage selectivity of deubiquitinating enzymes.

机构信息

Department of Cell and Chemical Biology, Chemical Biology and Drug Discovery, Leiden University Medical Center, 2333 ZC, Leiden, The Netherlands.

Center for Proteomics and Metabolomics, Leiden University Medical Center, 2333 ZA, Leiden, The Netherlands.

出版信息

Nat Commun. 2023 Mar 25;14(1):1661. doi: 10.1038/s41467-023-37363-6.

Abstract

Deubiquitinating enzymes are key regulators in the ubiquitin system and an emerging class of drug targets. These proteases disassemble polyubiquitin chains and many deubiquitinases show selectivity for specific polyubiquitin linkages. However, most biochemical insights originate from studies of single diubiquitin linkages in isolation, whereas in cells all linkages coexist. To better mimick this diubiquitin substrate competition, we develop a multiplexed mass spectrometry-based deubiquitinase assay that can probe all ubiquitin linkage types simultaneously to quantify deubiquitinase activity in the presence of all potential diubiquitin substrates. For this, all eight native diubiquitins are generated and each linkage type is designed with a distinct molecular weight by incorporating neutron-encoded amino acids. Overall, 22 deubiquitinases are profiled, providing a three-dimensional overview of deubiquitinase linkage selectivity over time and enzyme concentration.

摘要

去泛素化酶是泛素系统中的关键调节剂,也是新兴的一类药物靶点。这些蛋白酶可分解多泛素链,许多去泛素化酶对特定的多泛素连接具有选择性。然而,大多数生化见解源于对单个二泛素连接的单独研究,而在细胞中所有连接共存。为了更好地模拟这种二泛素底物竞争,我们开发了一种基于多重质谱的去泛素化酶测定法,该方法可以同时探测所有泛素连接类型,以在存在所有潜在二泛素底物的情况下定量去泛素化酶活性。为此,我们生成了所有 8 种天然二泛素,并通过引入中子编码氨基酸,为每种连接类型设计了独特的分子量。总的来说,我们对 22 种去泛素化酶进行了分析,提供了去泛素化酶连接选择性随时间和酶浓度变化的三维概述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d61e/10039891/3e4ee00e4735/41467_2023_37363_Fig1_HTML.jpg

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