取代基
效力
联苯
蛋白酵素
半胱氨酸
蛋白酶
立体化学
结构-活动关系
半胱氨酸蛋白酶
背景(考古学)
选择性
生物化学
铅化合物
化学
组合化学
体外
酶
丝氨酸
蛋白酶抑制剂(药理学)
药物发现
结合位点
丝氨酸蛋白酶
作者
Emma Clyde-Allen,Mikołaj Żmudziński,Mohammad Afsar,Chloé James,Anindita Nayak,Digant Nayak,Priscila dos Santos Bury,Dirk Jochmans,Johan Neyts,Christopher J. Scott,Shaun K. Olsen,Marcin Drąg,Richard D. Williams
标识
DOI:10.1021/acsmedchemlett.5c00301
摘要
Starting from a simple scaffold hopping exercise based on our previous exploration of cysteine protease inhibitors against legumain, compound 6a was identified as a starting point for the development of a SARS-CoV-2 main protease (MPro) inhibitor. Compound 6a displayed submicromolar biochemical potency in the ultrasensitive assay developed by Drag and co-workers. Through an iterative structure-activity relationship campaign, we discovered an unexpected improvement in both biochemical and cellular potency through the incorporation of an ortho substituent within the P3 benzamide. X-ray crystallography revealed that incorporation of the ortho substituent caused a subtle but important binding enhancement of the P1 glutamate group within the MPro S1 pocket. While incorporation of the ortho substituent improved the potency, the off-target selectivity against a panel of cysteine proteases and cell activity remained suboptimal. Further scanning of the P2 core revealed that incorporation of the 3.1.0 proline could address these issues and afford compound 22e, a highly potent and cellularly active MPro inhibitor.
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