化学
生物信息学
脱氮酶
虚拟筛选
小分子
药物发现
计算生物学
泛素
组合化学
生物化学
生物
基因
作者
Paola Di Lello,Richard Pastor,Jeremy Murray,Robert A. Blake,Frederick Cohen,Terry D. Crawford,Joy Drobnick,Jason Drummond,Lorna Kategaya,Tracy Kleinheinz,Till Maurer,Lionel Rougé,Xianrui Zhao,Ingrid E. Wertz,Chudi Ndubaku,Vickie Tsui
标识
DOI:10.1021/acs.jmedchem.7b01293
摘要
USP7 is a deubiquitinase implicated in destabilizing the tumor suppressor p53, and for this reason it has gained increasing attention as a potential oncology target for small molecule inhibitors. Herein we describe the biophysical, biochemical, and computational approaches that led to the identification of 4-(2-aminopyridin-3-yl)phenol compounds described by Kategaya ( Nature 2017 , 550 , 534 - 538 ) as specific inhibitors of USP7. Fragment based lead discovery (FBLD) by NMR combined with virtual screening and re-mining of biochemical high-throughput screening (HTS) hits led to the discovery of a series of ligands that bind in the "palm" region of the catalytic domain of USP7 and inhibit its catalytic activity. These ligands were then optimized by structure-based design to yield cell-active molecules with reasonable physical properties. This discovery process not only involved multiple techniques working in concert but also illustrated a unique way in which hits from orthogonal screening approaches complemented each other for lead identification.
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