KEAP1型
化学
药物发现
小分子
计算生物学
组合化学
生物化学
转录因子
基因
生物
作者
David L. Norton,William G. Bonnette,James F. Callahan,Maria G. Carr,Charlotte Griffiths-Jones,Tom D. Heightman,Jeffrey K. Kerns,Hong Nie,Sharna J. Rich,Caroline J. Richardson,William L. Rumsey,Yolanda Sánchez,Marcel L. Verdonk,Henriëtte M. G. Willems,William E. Wixted,Lawrence A. Wolfe,Alison J.‐A. Woolford,Zining Wu,Thomas G. Davies
标识
DOI:10.1021/acs.jmedchem.1c01351
摘要
The NRF2-mediated cytoprotective response is central to cellular homoeostasis, and there is increasing interest in developing small-molecule activators of this pathway as therapeutics for diseases involving chronic oxidative stress. The protein KEAP1, which regulates NRF2, is a key point for pharmacological intervention, and we recently described the use of fragment-based drug discovery to develop a tool compound that directly disrupts the protein-protein interaction between NRF2 and KEAP1. We now present the identification of a second, chemically distinct series of KEAP1 inhibitors, which provided an alternative chemotype for lead optimization. Pharmacophoric information from our original fragment screen was used to identify new hit matter through database searching and to evolve this into a new lead with high target affinity and cell-based activity. We highlight how knowledge obtained from fragment-based approaches can be used to focus additional screening campaigns in order to de-risk projects through the rapid identification of novel chemical series.
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