Harvard Medical School (HMS) Library of Integrated Network-based Cellular Signatures (LINCS) Center, Cambridge, United States.
Department of Cancer Biology and the Linde Program in Cancer Chemical Biology, Dana-Farber Cancer Institute, Boston, United States.
Elife. 2022 Jun 23;11:e72879. doi: 10.7554/eLife.72879.
Deubiquitinating enzymes (DUBs), ~100 of which are found in human cells, are proteases that remove ubiquitin conjugates from proteins, thereby regulating protein turnover. They are involved in a wide range of cellular activities and are emerging therapeutic targets for cancer and other diseases. Drugs targeting USP1 and USP30 are in clinical development for cancer and kidney disease respectively. However, the majority of substrates and pathways regulated by DUBs remain unknown, impeding efforts to prioritize specific enzymes for research and drug development. To assemble a knowledgebase of DUB activities, co-dependent genes, and substrates, we combined targeted experiments using CRISPR libraries and inhibitors with systematic mining of functional genomic databases. Analysis of the Dependency Map, Connectivity Map, Cancer Cell Line Encyclopedia, and multiple protein-protein interaction databases yielded specific hypotheses about DUB function, a subset of which were confirmed in follow-on experiments. The data in this paper are browsable online in a newly developed DUB Portal and promise to improve understanding of DUBs as a family as well as the activities of incompletely characterized DUBs (e.g. USPL1 and USP32) and those already targeted with investigational cancer therapeutics (e.g. USP14, UCHL5, and USP7).
去泛素化酶(DUBs),约有 100 种存在于人类细胞中,是一类从蛋白质上去除泛素缀合物的蛋白酶,从而调节蛋白质周转。它们参与广泛的细胞活动,是癌症和其他疾病的治疗靶点。靶向 USP1 和 USP30 的药物分别处于癌症和肾病的临床开发阶段。然而,大多数由 DUBs 调控的底物和途径仍然未知,这阻碍了为研究和药物开发确定特定酶的优先级的努力。为了构建 DUB 活性、共依赖基因和底物的知识库,我们结合了 CRISPR 文库和抑制剂的靶向实验,以及系统挖掘功能基因组数据库。对依赖图谱、连接图谱、癌症细胞系百科全书以及多个蛋白质-蛋白质相互作用数据库的分析产生了关于 DUB 功能的具体假设,其中一些假设在后续实验中得到了证实。本文中的数据可在新开发的 DUB 门户中在线浏览,并有望提高对 DUB 作为一个家族的理解,以及对功能尚未完全确定的 DUB(例如 USPL1 和 USP32)和已用研究性癌症治疗药物靶向的 DUB(例如 USP14、UCHL5 和 USP7)的理解。