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Structural rearrangements in the membrane penetration protein of a non-enveloped virus

机译:非包膜病毒的膜渗透蛋白的结构重排

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Non-enveloped virus particles (those that lack a lipid-bilayer membrane) must breach the membrane of a target host cell to gain access to its cytoplasm. So far, the molecular mechanism of this membrane penetration step has resisted structural analysis. The spike protein VP4 is a principal component in the entry apparatus of rotavirus, a non-enveloped virus that causes gastroenteritis and kills 440,000 children each year(1). Trypsin cleavage of VP4 primes the virus for entry by triggering a rearrangement that rigidifies the VP4 spikes(2). We have determined the crystal structure, at 3.2 Angstrom resolution, of the main part of VP4 that projects from the virion. The crystal structure reveals a coiled-coil stabilized trimer. Comparison of this structure with the two-fold clustered VP4 spikes in a similar to12 Angstrom resolution image reconstruction from electron cryomicroscopy of trypsin-primed virions shows that VP4 also undergoes a second rearrangement, in which the oligomer reorganizes and each subunit folds back on itself, translocating a potential membrane-interaction peptide from one end of the spike to the other. This rearrangement resembles the conformational transitions of membrane fusion proteins of enveloped viruses(3-6).
机译:非包膜的病毒颗粒(没有脂质双层膜的病毒颗粒)必须破坏目标宿主细胞的膜才能进入其细胞质。到目前为止,该膜渗透步骤的分子机理已经阻碍了结构分析。刺突蛋白VP4是轮状病毒进入装置的主要成分,轮状病毒是一种非包膜病毒,每年引起肠胃炎并杀死440,000名儿童(1)。胰蛋白酶对VP4的切割会触发重新排列,从而强化VP4峰(2),从而引发病毒进入。我们已经确定了从病毒体伸出的VP4主要部分的晶体结构,分辨率为3.2埃。晶体结构显示出线圈卷曲稳定的三聚体。将该结构与两倍簇的VP4尖峰进行比较,在类似于胰蛋白酶启动的病毒体电子冷冻显微镜下的12埃分辨率图像重建中,VP4也经历了第二次重排,其中低聚物重新组织,每个亚基重新折叠。将潜在的膜相互作用肽从长钉的一端转移到另一端。这种重排类似于包膜病毒的膜融合蛋白的构象转变(3-6)。

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