蛋白酵素
药效团
蛋白酶
小分子
活动站点
肽
酶
化学
生物化学
药物发现
立体化学
生物
作者
Shuhei Yoshida,Yusuke Sako,Eiji Nikaido,Taichi Ueda,Iori Kozono,Yusuke Ichihashi,Atsufumi Nakahashi,Motoyasu Onishi,Yukiko Yamatsu,T. Kato,Jun‐ichi Nishikawa,Yuki Tachibana
标识
DOI:10.1021/acsmedchemlett.3c00359
摘要
Viral proteases, the key enzymes that regulate viral replication and assembly, are promising targets for antiviral drug discovery. Herpesvirus proteases are enzymes with no crystallographically confirmed noncovalent active-site binders, owing to their shallow and polar substrate-binding pockets. Here, we applied our previously reported "Peptide-to-Small Molecule" strategy to generate novel inhibitors of β-herpesvirus proteases. Rapid selection with a display technology was used to identify macrocyclic peptide 1 bound to the active site of human cytomegalovirus protease (HCMVPro) with high affinity, and pharmacophore queries were defined based on the results of subsequent intermolecular interaction analyses. Membrane-permeable small molecule 19, designed de novo according to this hypothesis, exhibited enzyme inhibitory activity (IC50 = 10–6 to 10–7 M) against β-herpesvirus proteases, and the design concept was proved by X-ray cocrystal analysis.
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