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The Membrane Fusion Step of Vaccinia Virus Entry Is Cooperatively Mediated by Multiple Viral Proteins and Host Cell Components

机译:痘苗病毒进入的膜融合步骤是由多种病毒蛋白和宿主细胞成分协同介导的

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For many viruses, one or two proteins allow cell attachment and entry, which occurs through the plasma membrane or following endocytosis at low pH. In contrast, vaccinia virus (VACV) enters cells by both neutral and low pH routes; four proteins mediate cell attachment and twelve that are associated in a membrane complex and conserved in all poxviruses are dedicated to entry. The aim of the present study was to determine the roles of cellular and viral proteins in initial stages of entry, specifically fusion of the membranes of the mature virion and cell. For analysis of the role of cellular components, we used well characterized inhibitors and measured binding of a recombinant VACV virion containing Gaussia luciferase fused to a core protein; viral and cellular membrane lipid mixing with a self-quenching fluorescent probe in the virion membrane; and core entry with a recombinant VACV expressing firefly luciferase and electron microscopy. We determined that inhibitors of tyrosine protein kinases, dynamin GTPase and actin dynamics had little effect on binding of virions to cells but impaired membrane fusion, whereas partial cholesterol depletion and inhibitors of endosomal acidification and membrane blebbing had a severe effect at the later stage of core entry. To determine the role of viral proteins, virions lacking individual membrane components were purified from cells infected with members of a panel of ten conditional-lethal inducible mutants. Each of the entry protein-deficient virions had severely reduced infectivity and except for A28, L1 and L5 greatly impaired membrane fusion. In addition, a potent neutralizing L1 monoclonal antibody blocked entry at a post-membrane lipid-mixing step. Taken together, these results suggested a 2-step entry model and implicated an unprecedented number of viral proteins and cellular components involved in signaling and actin rearrangement for initiation of virus-cell membrane fusion during poxvirus entry.
机译:对于许多病毒,一种或两种蛋白质允许细胞附着和进入,这是通过质膜或在低pH值内吞后发生的。相反,痘苗病毒(VACV)通过中性和低pH途径进入细胞。四种蛋白质介导细胞附着,而十二种与膜复合物相关并在所有痘病毒中保守的蛋白质专门用于进入。本研究的目的是确定细胞和病毒蛋白在进入初期的作用,特别是成熟病毒体和细胞膜的融合。为了分析细胞成分的作用,我们使用了特征明确的抑制剂,并测定了含有融合至核心蛋白的高斯荧光素酶的重组VACV病毒体的结合。病毒和细胞膜脂质与病毒颗粒膜中的自猝灭荧光探针混合;并通过表达萤火虫荧光素酶的重组VACV和电子显微镜观察核心。我们确定酪氨酸蛋白激酶,动力蛋白GTPase和肌动蛋白动力学的抑制剂对病毒体与细胞的结合几乎没有影响,但损害了膜融合,而胆固醇的部分耗竭和内体酸化和膜起泡的抑制剂在核心的后期具有严重的影响。条目。为了确定病毒蛋白的作用,从感染了十个条件致死诱导型突变体的一组成员的细胞中纯化出缺乏单个膜成分的病毒体。每个进入蛋白缺陷的病毒体都严重降低了感染力,除了A28,L1和L5大大削弱了膜融合。另外,有效的中和L1单克隆抗体在膜后脂质混合步骤中阻止了进入。综上所述,这些结果提出了一种两步进入模型,并暗示了空前数量的病毒蛋白和细胞成分参与了痘病毒进入过程中病毒和细胞膜融合的信号传导和肌动蛋白重排。

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