Accelerating inhibitor discovery for deubiquitinating enzymes

加速发现去泛素化酶抑制剂

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作者:Wai Cheung Chan # ,Xiaoxi Liu # ,Robert S Magin ,Nicholas M Girardi ,Scott B Ficarro ,Wanyi Hu ,Maria I Tarazona Guzman ,Cara A Starnbach ,Alejandra Felix ,Guillaume Adelmant ,Anthony C Varca ,Bin Hu ,Ariana S Bratt ,Ethan DaSilva ,Nathan J Schauer ,Isabella Jaen Maisonet ,Emma K Dolen ,Anthony X Ayala ,Jarrod A Marto ,Sara J Buhrlage

Abstract

Deubiquitinating enzymes (DUBs) are an emerging drug target class of ~100 proteases that cleave ubiquitin from protein substrates to regulate many cellular processes. A lack of selective chemical probes impedes pharmacologic interrogation of this important gene family. DUBs engage their cognate ligands through a myriad of interactions. We embrace this structural complexity to tailor a chemical diversification strategy for a DUB-focused covalent library. Pairing our library with activity-based protein profiling as a high-density primary screen, we identify selective hits against 23 endogenous DUBs spanning four subfamilies. Optimization of an azetidine hit yields a probe for the understudied DUB VCPIP1 with nanomolar potency and in-family selectivity. Our success in identifying good chemical starting points as well as structure-activity relationships across the gene family from a modest but purpose-build library challenges current paradigms that emphasize ultrahigh throughput in vitro or virtual screens against an ever-increasing scope of chemical space.

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