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Structure and Function of a Genetically Engineered Mimic of a Nonenveloped Virus Entry Intermediate

机译:非包膜病毒进入中间体的基因工程模拟物的结构和功能

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摘要

Divalent metal ions are components of numerous icosahedral virus capsids. Flock House virus (FHV), a small RNA virus of the family Nodaviridae, was utilized as an accessible model system with which to address the effects of metal ions on capsid structure and on the biology of virus-host interactions. Mutations at the calcium-binding sites affected FHV capsid stability and drastically reduced virus infectivity, without altering the overall architecture of the capsid. The mutations also altered the conformation of gamma, a membrane-disrupting, virus-encoded peptide usually sequestered inside the capsid, by increasing its exposure under neutral pH conditions. Our data demonstrate that calcium binding is essential for maintaining a pH-based control on gamma exposure and host membrane disruption, and they reveal a novel rationale for the metal ion requirement during virus entry and infectivity. In the light of the phenotypes displayed by a calcium site mutant of FHV, we suggest that this mutant corresponds to an early entry intermediate formed in the endosomal pathway.
机译:二价金属离子是许多二十面体病毒衣壳的组成部分。 Flock House病毒(FHV)是Nodaviridae家族的一种小RNA病毒,被用作可访问的模型系统,用于解决金属离子对衣壳结构和病毒-宿主相互作用生物学的影响。钙结合位点的突变会影响FHV衣壳的稳定性并大大降低病毒的感染性,而不会改变衣壳的整体结构。突变还通过增加其在中性pH条件下的暴露程度,改变了通常被隔离在衣壳内部的,破坏膜的病毒编码肽gamma的构象。我们的数据表明,钙结合对于维持基于pH值的伽玛暴露和宿主膜破坏控制至关重要,并且它们揭示了病毒进入和感染过程中金属离子需求的新原理。根据FHV的钙位点突变体显示的表型,我们建议该突变体对应于在内体途径中形成的早期进入中间体。

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