化学
适配器(计算)
小分子
抑制器
稳定器(航空)
计算生物学
信号转导衔接蛋白
合理设计
转录因子
组合化学
立体化学
生物化学
信号转导
基因
遗传学
生物
计算机科学
工程类
操作系统
机械工程
作者
X. Guillory,M. Wolter,S. Leysen,João Filipe Neves,Ave Kuusk,S. Genet,B. Somsen,John Kenneth Morrow,Emma L. Rivers,Lotte van Beek,Joe Patel,Robert A. Goodnow,Heike Schoenherr,Nathan O. Fuller,Qing Cao,Richard G. Doveston,Luc Brunsveld,Michelle R. Arkin,P. Castaldi,Helen Boyd
标识
DOI:10.1021/acs.jmedchem.9b01942
摘要
Stabilization of protein–protein interactions (PPIs) holds great potential for therapeutic agents, as illustrated by the successful drugs rapamycin and lenalidomide. However, how such interface-binding molecules can be created in a rational, bottom-up manner is a largely unanswered question. We report here how a fragment-based approach can be used to identify chemical starting points for the development of small-molecule stabilizers that differentiate between two different PPI interfaces of the adapter protein 14-3-3. The fragments discriminately bind to the interface of 14-3-3 with the recognition motif of either the tumor suppressor protein p53 or the oncogenic transcription factor TAZ. This X-ray crystallography driven study shows that the rim of the interface of individual 14-3-3 complexes can be targeted in a differential manner with fragments that represent promising starting points for the development of specific 14-3-3 PPI stabilizers.
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