蛋白质组
可药性
小分子
配体(生物化学)
半胱氨酸
人类蛋白质组计划
化学生物学
化学
蛋白质配体
计算生物学
化学基因学
药物发现
蛋白质组学
生物化学
生物
受体
酶
基因
作者
Keriann M. Backus,Bruno E. Correia,Kenneth M. Lum,Stefano Forli,Benjamin D. Horning,Gonzalo E. González‐Páez,Sandip Chatterjee,Bryan Lanning,John R. Teijaro,Arthur J. Olson,Dennis W. Wolan,Benjamin F. Cravatt
出处
期刊:Nature
[Nature Portfolio]
日期:2016-06-14
卷期号:534 (7608): 570-574
被引量:972
摘要
Small molecules are powerful tools for investigating protein function and can serve as leads for new therapeutics. Most human proteins, however, lack small-molecule ligands, and entire protein classes are considered 'undruggable'. Fragment-based ligand discovery can identify small-molecule probes for proteins that have proven difficult to target using high-throughput screening of complex compound libraries. Although reversibly binding ligands are commonly pursued, covalent fragments provide an alternative route to small-molecule probes, including those that can access regions of proteins that are difficult to target through binding affinity alone. Here we report a quantitative analysis of cysteine-reactive small-molecule fragments screened against thousands of proteins in human proteomes and cells. Covalent ligands were identified for >700 cysteines found in both druggable proteins and proteins deficient in chemical probes, including transcription factors, adaptor/scaffolding proteins, and uncharacterized proteins. Among the atypical ligand-protein interactions discovered were compounds that react preferentially with pro- (inactive) caspases. We used these ligands to distinguish extrinsic apoptosis pathways in human cell lines versus primary human T cells, showing that the former is largely mediated by caspase-8 while the latter depends on both caspase-8 and -10. Fragment-based covalent ligand discovery provides a greatly expanded portrait of the ligandable proteome and furnishes compounds that can illuminate protein functions in native biological systems.
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