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Domain III from class II fusion proteins functions as a dominant-negative inhibitor of virus membrane fusion

机译:II类融合蛋白的结构域III作为病毒膜融合的主要阴性抑制剂

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Alphaviruses and flaviviruses infect cells through low pH-dependent membrane fusion reactions mediated by their structurally similar viral fusion proteins. During fusion, these class II viral fusion proteins trimerize and refold to form hairpin-like structures, with the domain III and stem regions folded back toward the target membrane-inserted fusion peptides. We demonstrate that exogenous domain III can function as a dominant-negative inhibitor of alphavirus and flavivirus membrane fusion and infection. Domain III binds stably to the fusion protein, thus preventing the foldback reaction and blocking the lipid mixing step of fusion. Our data reveal the existence of a relatively long-lived core trimer intermediate with which domain III interacts to initiate membrane fusion. These novel inhibitors of the class II fusion proteins show cross-inhibition within the virus genus and suggest that the domain III–core trimer interaction can serve as a new target for the development of antiviral reagents.
机译:alphaviruses和黄病毒通过由结构上类似的病毒融合蛋白介导的低pH依赖性膜融合反应感染细胞。在融合过程中,这些类别的II类病毒融合蛋白三聚化并重新折叠形成发夹状结构,域III和茎区域折叠回靶膜插入的融合肽。我们证明外源结构域III可以用作alphaVirus和黄病毒膜融合和感染的主要阴性抑制剂。结构域III稳定地与融合蛋白结合,从而防止折返反应并阻断融合的脂质混合步骤。我们的数据揭示了存在相对长的核心三聚体中间体,其中域III相互作用以引发膜融合。二级融合蛋白的这些新抑制剂在病毒属中显示出交叉抑制,并表明域III核微粒三聚物相互作用可以作为抗病毒试剂的开发的新靶标。

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