异三聚体G蛋白
对接(动物)
前药
病毒
化学
聚合酶
计算生物学
RNA聚合酶
可药性
蛋白质亚单位
法维皮拉维
药物发现
奥司他韦
病毒学
生物化学
抄写(语言学)
酶
甲型流感病毒
生物
病毒复制
药品
结构-活动关系
抗药性
合理设计
结合位点
生物活性
同源建模
作者
Qibo Hu,Huiru Xie,Qiuhong Zhang,Lian Zhu,Jingjing Che,Lixia Chen,XingZhou Li
标识
DOI:10.1021/acsmedchemlett.5c00719
摘要
Influenza A virus continues to pose a significant global health threat, causing seasonal epidemics and occasional pandemics. Viral transcription and replication rely on the heterotrimeric polymerase complex where the PB2 subunit initiates RNA synthesis through binding to the host mRNA cap structure. In this study, we began with a structure–activity relationship analysis of the pioneering PB2 inhibitor VX-787. Through computer-aided drug design, combined with considerations of molecular docking scores, ADMET property predictions, and a prodrug esterification strategy, we ultimately designed eight novel compounds. Cytopathic effect assays demonstrated that all compounds exhibited superior inhibitory activity against both H1N1 and H3N2 strains compared to oseltamivir acid. In particular, compounds 11 and 15 displayed nanomolar-level activity against H1N1, while compound 18 showed activity against H3N2 superior to that of VX-787. These findings propose a rational design strategy that may offer new avenues for addressing the resistance and metabolic limitations associated with VX-787 and hold potential for advancing the development of next-generation PB2-targeted anti-influenza therapeutics.
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