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双链RNA真菌病毒进化过程中外衣壳表面功能的获得

Acquisition of functions on the outer capsid surface during evolution of double-stranded RNA fungal viruses.

作者信息

Mata Carlos P, Luque Daniel, Gómez-Blanco Josué, Rodríguez Javier M, González José M, Suzuki Nobuhiro, Ghabrial Said A, Carrascosa José L, Trus Benes L, Castón José R

机构信息

Department of Structure of Macromolecules, Centro Nacional de Biotecnología (CNB-CSIC), Campus Cantoblanco, Madrid, Spain.

Centro Nacional de Microbiología/ISCIII, Majadahonda, Madrid, Spain.

出版信息

PLoS Pathog. 2017 Dec 8;13(12):e1006755. doi: 10.1371/journal.ppat.1006755. eCollection 2017 Dec.

Abstract

Unlike their counterparts in bacterial and higher eukaryotic hosts, most fungal viruses are transmitted intracellularly and lack an extracellular phase. Here we determined the cryo-EM structure at 3.7 Å resolution of Rosellinia necatrix quadrivirus 1 (RnQV1), a fungal double-stranded (ds)RNA virus. RnQV1, the type species of the family Quadriviridae, has a multipartite genome consisting of four monocistronic segments. Whereas most dsRNA virus capsids are based on dimers of a single protein, the ~450-Å-diameter, T = 1 RnQV1 capsid is built of P2 and P4 protein heterodimers, each with more than 1000 residues. Despite a lack of sequence similarity between the two proteins, they have a similar α-helical domain, the structural signature shared with the lineage of the dsRNA bluetongue virus-like viruses. Domain insertions in P2 and P4 preferential sites provide additional functions at the capsid outer surface, probably related to enzyme activity. The P2 insertion has a fold similar to that of gelsolin and profilin, two actin-binding proteins with a function in cytoskeleton metabolism, whereas the P4 insertion suggests protease activity involved in cleavage of the P2 383-residue C-terminal region, absent in the mature viral particle. Our results indicate that the intimate virus-fungus partnership has altered the capsid genome-protective and/or receptor-binding functions. Fungal virus evolution has tended to allocate enzyme activities to the virus capsid outer surface.

摘要

与细菌和高等真核宿主中的病毒不同,大多数真菌病毒通过细胞内传播,缺乏细胞外阶段。在这里,我们确定了罗塞尔链霉菌四联病毒1(RnQV1)的冷冻电镜结构,分辨率为3.7 Å,这是一种真菌双链(ds)RNA病毒。RnQV1是四联病毒科的模式种,具有由四个单顺反子片段组成的多分体基因组。虽然大多数dsRNA病毒衣壳基于单一蛋白质的二聚体,但直径约450 Å、T = 1的RnQV1衣壳由P2和P4蛋白异二聚体构成,每个异二聚体都有超过1000个残基。尽管这两种蛋白质之间缺乏序列相似性,但它们具有相似的α螺旋结构域,这是与dsRNA蓝舌病毒样病毒谱系共有的结构特征。P2和P4优先位点的结构域插入在衣壳外表面提供了额外功能,可能与酶活性有关。P2插入的折叠结构类似于凝溶胶蛋白和丝切蛋白,这两种肌动蛋白结合蛋白在细胞骨架代谢中发挥作用,而P4插入表明蛋白酶活性参与了成熟病毒颗粒中不存在的P2 383个残基C末端区域的切割。我们的结果表明,病毒与真菌的紧密伙伴关系改变了衣壳的基因组保护和/或受体结合功能。真菌病毒的进化倾向于将酶活性分配到病毒衣壳外表面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cc6/5738138/5c98acdef9df/ppat.1006755.g001.jpg

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