Discovery of a novel inhibitor of macropinocytosis with antiviral activity

胞饮病 内吞作用 病毒进入 生物 病毒 传染性 病毒学 限制 病毒包膜 细胞生物学 病毒复制 细胞 生物化学 机械工程 工程类
作者
Bartłomiej Porębski,Wanda Christ,Alba Corman,Martin Haraldsson,Myriam Barz,Louise Lidemalm,Maria Häggblad,Juliana K. Ilmain,Shane C. Wright,Matilde Murga,Jan Schlegel,Malin Jarvius,Maris Lapins,Erdinç Sezgin,Gira Bhabha,Volker M. Lauschke,Jordi Carreras‐Puigvert,Miguel Lafarga,Jonas Klingström,Daniela Hühn,Óscar Fernández-Capetillo
出处
期刊:Molecular Therapy [Elsevier]
卷期号:32 (9): 3012-3024 被引量:1
标识
DOI:10.1016/j.ymthe.2024.06.038
摘要

Several viruses hijack various forms of endocytosis in order to infect host cells. Here, we report the discovery of a molecule with antiviral properties that we named virapinib, which limits viral entry by macropinocytosis. The identification of virapinib derives from a chemical screen using high-throughput microscopy, where we identified chemical entities capable of preventing infection with a pseudotype virus expressing the spike (S) protein from SARS-CoV-2. Subsequent experiments confirmed the capacity of virapinib to inhibit infection by SARS-CoV-2, as well as by additional viruses, such as mpox virus and TBEV. Mechanistic analyses revealed that the compound inhibited macropinocytosis, limiting this entry route for the viruses. Importantly, virapinib has no significant toxicity to host cells. In summary, we present the discovery of a molecule that inhibits macropinocytosis, thereby limiting the infectivity of viruses that use this entry route such as SARS-CoV2. Several viruses hijack various forms of endocytosis in order to infect host cells. Here, we report the discovery of a molecule with antiviral properties that we named virapinib, which limits viral entry by macropinocytosis. The identification of virapinib derives from a chemical screen using high-throughput microscopy, where we identified chemical entities capable of preventing infection with a pseudotype virus expressing the spike (S) protein from SARS-CoV-2. Subsequent experiments confirmed the capacity of virapinib to inhibit infection by SARS-CoV-2, as well as by additional viruses, such as mpox virus and TBEV. Mechanistic analyses revealed that the compound inhibited macropinocytosis, limiting this entry route for the viruses. Importantly, virapinib has no significant toxicity to host cells. In summary, we present the discovery of a molecule that inhibits macropinocytosis, thereby limiting the infectivity of viruses that use this entry route such as SARS-CoV2.

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