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Subnanometer-resolution structures of the grass carp reovirus core and virion.

机译:草鱼呼肠孤病毒核心和病毒体的亚纳米分辨率结构。

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Grass carp reovirus (GCRV) is a member of the Aquareovirus genus of the family Reoviridae, a large family of double-stranded RNA (dsRNA) viruses infecting plants, insects, fishes and mammals. We report the first subnanometer-resolution three-dimensional structures of both GCRV core and virion by cryoelectron microscopy. These structures have allowed the delineation of interactions among the over 1000 molecules in this enormous macromolecular machine and a detailed comparison with other dsRNA viruses at the secondary-structure level. The GCRV core structure shows that the inner proteins have strong structural similarities with those of orthoreoviruses even at the level of secondary-structure elements, indicating that the structures involved in viral dsRNA interaction and transcription are highly conserved. In contrast, the level of similarity in structures decreases in the proteins situated in the outer layers of the virion. The proteins involved in host recognition and attachment exhibit the least similarities to other members of Reoviridae. Furthermore, in GCRV, the RNA-translocating turrets are in an open state and lack a counterpart for the sigma1 protein situated on top of the close turrets observed in mammalian orthoreovirus. Interestingly, the distribution and the organization of GCRV core proteins resemble those of the cytoplasmic polyhedrosis virus, a cypovirus and the structurally simplest member of the Reoviridae family. Our results suggest that GCRV occupies a unique structure niche between the simpler cypoviruses and the considerably more complex mammalian orthoreovirus, thus providing an important model for understanding the structural and functional conservation and diversity of this enormous family of dsRNA viruses.
机译:草鱼呼肠孤病毒(GCRV)是呼肠孤病毒科的水痘病毒属的成员,该病毒是感染植物,昆虫,鱼类和哺乳动物的双链RNA(dsRNA)病毒的大家族。我们通过冷冻电子显微镜报告了GCRV核心和病毒体的第一个亚纳米分辨率三维结构。这些结构允许在这个巨大的大分子机器中勾勒出1000多个分子之间的相互作用,并在二级结构水平上与其他dsRNA病毒进行了详细的比较。 GCRV核心结构显示,即使在二级结构元件的水平上,内部蛋白与正咽病毒也具有很强的结构相似性,表明与病毒dsRNA相互作用和转录有关的结构是高度保守的。相反,位于病毒体外层的蛋白质的结构相似度降低。参与宿主识别和附着的蛋白质与呼肠孤病毒科其他成员的相似性最小。此外,在GCRV中,转运RNA的转塔处于开放状态,并且缺少在哺乳动物正咽病毒中观察到的位于靠近转塔顶部的sigma1蛋白的对应物。有趣的是,GCRV核心蛋白的分布和组织类似于胞质多角体病毒,胞状病毒和呼肠孤病毒科结构最简单的成员。我们的结果表明,GCRV在简单的杯状病毒和复杂得多的哺乳动物正咽病毒之间占据独特的结构位,从而为理解这种巨大的dsRNA病毒家族的结构和功能保守性及多样性提供了重要的模型。

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