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异源二聚体作为真菌双链RNA坏死丝核菌四病毒1的T=1衣壳的结构单元

Heterodimers as the Structural Unit of the T=1 Capsid of the Fungal Double-Stranded RNA Rosellinia necatrix Quadrivirus 1.

作者信息

Luque Daniel, Mata Carlos P, González-Camacho Fernando, González José M, Gómez-Blanco Josué, Alfonso Carlos, Rivas Germán, Havens Wendy M, Kanematsu Satoko, Suzuki Nobuhiro, Ghabrial Said A, Trus Benes L, Castón José R

机构信息

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

Centro Nacional de Microbiología/ISCIII, Carretera de Majadahonda-Pozuelo, Majadahonda, Madrid, Spain.

出版信息

J Virol. 2016 Nov 28;90(24):11220-11230. doi: 10.1128/JVI.01013-16. Print 2016 Dec 15.

Abstract

UNLABELLED

Most double-stranded RNA (dsRNA) viruses are transcribed and replicated in a specialized icosahedral capsid with a T=1 lattice consisting of 60 asymmetric capsid protein (CP) dimers. These capsids help to organize the viral genome and replicative complex(es). They also act as molecular sieves that isolate the virus genome from host defense mechanisms and allow the passage of nucleotides and viral transcripts. Rosellinia necatrix quadrivirus 1 (RnQV1), the type species of the family Quadriviridae, is a dsRNA fungal virus with a multipartite genome consisting of four monocistronic segments (segments 1 to 4). dsRNA-2 and dsRNA-4 encode two CPs (P2 and P4, respectively), which coassemble into ∼450-Å-diameter capsids. We used three-dimensional cryo-electron microscopy combined with complementary biophysical techniques to determine the structures of RnQV1 virion strains W1075 and W1118. RnQV1 has a quadripartite genome, and the capsid is based on a single-shelled T=1 lattice built of P2-P4 dimers. Whereas the RnQV1-W1118 capsid is built of full-length CP, P2 and P4 of RnQV1-W1075 are cleaved into several polypeptides, maintaining the capsid structural organization. RnQV1 heterodimers have a quaternary organization similar to that of homodimers of reoviruses and other dsRNA mycoviruses. The RnQV1 capsid is the first T=1 capsid with a heterodimer as an asymmetric unit reported to date and follows the architectural principle for dsRNA viruses that a 120-subunit capsid is a conserved assembly that supports dsRNA replication and organization.

IMPORTANCE

Given their importance to health, members of the family Reoviridae are the basis of most structural and functional studies and provide much of our knowledge of dsRNA viruses. Analysis of bacterial, protozoal, and fungal dsRNA viruses has improved our understanding of their structure, function, and evolution, as well. Here, we studied a dsRNA virus that infects the fungus Rosellinia necatrix, an ascomycete that is pathogenic to a wide range of plants. Using three-dimensional cryo-electron microscopy and analytical ultracentrifugation analysis, we determined the structure and stoichiometry of Rosellinia necatrix quadrivirus 1 (RnQV1). The RnQV1 capsid is a T=1 capsid with 60 heterodimers as the asymmetric units. The large amount of genetic information used by RnQV1 to construct a simple T=1 capsid is probably related to the numerous virus-host and virus-virus interactions that it must face in its life cycle, which lacks an extracellular phase.

摘要

未标记

大多数双链RNA(dsRNA)病毒在具有T=1晶格的特殊二十面体衣壳中进行转录和复制,该晶格由60个不对称衣壳蛋白(CP)二聚体组成。这些衣壳有助于组织病毒基因组和复制复合体。它们还充当分子筛,将病毒基因组与宿主防御机制隔离开来,并允许核苷酸和病毒转录本通过。罗塞尔尼纳坏死丝核菌四联病毒1(RnQV1)是四联病毒科的模式种,是一种dsRNA真菌病毒,其多分体基因组由四个单顺反子片段(片段1至4)组成。dsRNA-2和dsRNA-4分别编码两种CP(P2和P4),它们共同组装成直径约450埃的衣壳。我们使用三维冷冻电子显微镜结合互补的生物物理技术来确定RnQV1病毒粒子株系W1075和W1118的结构。RnQV1具有四分体基因组,衣壳基于由P2-P4二聚体构建的单壳T=1晶格。虽然RnQV1-W1118衣壳由全长CP构建,但RnQV1-W1075的P2和P4被切割成几个多肽,维持了衣壳的结构组织。RnQV1异二聚体具有与呼肠孤病毒和其他dsRNA真菌病毒同二聚体相似的四级结构。RnQV1衣壳是迄今为止报道的第一个以异二聚体作为不对称单元的T=1衣壳,遵循dsRNA病毒的结构原则,即120亚基衣壳是支持dsRNA复制和组织的保守组装。

重要性

鉴于呼肠孤病毒科成员对健康的重要性,它们是大多数结构和功能研究的基础,并为我们提供了许多关于dsRNA病毒的知识。对细菌、原生动物和真菌dsRNA病毒的分析也增进了我们对其结构、功能和进化的理解。在这里,我们研究了一种感染罗塞尔尼纳坏死丝核菌的dsRNA病毒,罗塞尔尼纳坏死丝核菌是一种对子囊菌有致病性的子囊菌,可感染多种植物。通过三维冷冻电子显微镜和分析超速离心分析,我们确定了罗塞尔尼纳坏死丝核菌四联病毒1(RnQV1)的结构和化学计量。RnQV1衣壳是一个T=1衣壳,以60个异二聚体作为不对称单元。RnQV1用于构建简单T=1衣壳的大量遗传信息可能与其在生命周期中必须面对的众多病毒-宿主和病毒-病毒相互作用有关,其生命周期缺乏细胞外阶段。

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