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Structural basis for assembly of vertical single β-barrel viruses

机译:垂直单个β桶状病毒装配的结构基础

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摘要

The vertical double β-barrel major capsid protein (MCP) fold, fingerprint of the PRD1-adeno viral lineage, is widespread in many viruses infecting organisms across the three domains of life. The discovery of PRD1-like viruses with two MCPs challenged the known assembly principles. Here, we present the cryo-electron microscopy (cryo-EM) structures of the archaeal, halophilic, internal membrane-containing Haloarcula californiae icosahedral virus 1 (HCIV-1) and Haloarcula hispanica icosahedral virus 2 (HHIV-2) at 3.7 and 3.8?? resolution, respectively. Our structures reveal proteins located beneath the morphologically distinct two- and three-tower capsomers and homopentameric membrane proteins at the vertices that orchestrate the positioning of pre-formed vertical single β-barrel MCP?heterodimers. The cryo-EM based?structures together?with the?proteomics data provide insights into the assembly mechanism of this type of viruses and into those with membrane-less double β-barrel MCPs.
机译:垂直双桶状主要衣壳蛋白(MCP)折叠,即PRD1腺病毒谱系的指纹,广泛分布于生活三个领域的许多感染生物的病毒中。具有两个MCP的PRD1样病毒的发现挑战了已知的装配原理。在这里,我们介绍3.7和3.8的古细菌,嗜盐菌,内膜含Haloarcula californiae二十面体病毒1(HCIV-1)和Haloarcula hispanica二十面体病毒2(HHIV-2)的低温电子显微镜(cryo-EM)结构。 ??分辨率分别。我们的结构揭示了位于形态上截然不同的两塔和三塔capsomers和同五聚体膜蛋白下方的蛋白质,这些蛋白质协调了预先形成的垂直单β-桶MCP?异二聚体的位置。基于cryo-EM的结构以及蛋白质组学数据为深入了解此类病毒的组装机制以及具有无膜双β-桶MCP的病毒提供了见识。

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