铅化合物
血凝素(流感)
药物发现
化学
小分子
药品
点击化学
计算生物学
组合化学
生物
生物化学
药理学
基因
体外
作者
Seiya Kitamura,Ting-Hui Lin,Chang‐Chun D. Lee,Akihiro Takamura,Rameshwar U. Kadam,Ding Zhang,Xueyong Zhu,Lucas Dada,Emiko Nagai,Wenli Yu,Yao Yao,K. Barry Sharpless,Ian A. Wilson,Dennis W. Wolan
标识
DOI:10.1073/pnas.2310677121
摘要
Seasonal and pandemic-associated influenza strains cause highly contagious viral respiratory infections that can lead to severe illness and excess mortality. Here, we report on the optimization of our small-molecule inhibitor F0045(S) targeting the influenza hemagglutinin (HA) stem with our Sulfur-Fluoride Exchange (SuFEx) click chemistry–based high-throughput medicinal chemistry (HTMC) strategy. A combination of SuFEx- and amide-based lead molecule diversification and structure-guided design led to identification and validation of ultrapotent influenza fusion inhibitors with subnanomolar EC 50 cellular antiviral activity against several influenza A group 1 strains. X-ray structures of six of these compounds with HA indicate that the appended moieties occupy additional pockets on the HA surface and increase the binding interaction, where the accumulation of several polar interactions also contributes to the improved affinity. The compounds here represent the most potent HA small-molecule inhibitors to date. Our divergent HTMC platform is therefore a powerful, rapid, and cost-effective approach to develop bioactive chemical probes and drug-like candidates against viral targets.
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