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虫媒病毒样大分病毒的感染性颗粒具有脊且缺乏纤维复合物。

The infectious particle of insect-borne totivirus-like Omono River virus has raised ridges and lacks fibre complexes.

机构信息

The Laboratory of Molecular Biophysics, Department of Cell and Molecular biology, Uppsala University, Sweden.

National Institute for Physiological Sciences (NIPS), Japan.

出版信息

Sci Rep. 2016 Sep 12;6:33170. doi: 10.1038/srep33170.

Abstract

Omono River virus (OmRV) is a double-stranded RNA virus isolated from Culex mosquitos, and it belongs to a group of unassigned insect viruses that appear to be related to Totiviridae. This paper describes electron cryo-microscopy (cryoEM) structures for the intact OmRV virion to 8.9 Å resolution and the structure of the empty virus-like-particle, that lacks RNA, to 8.3 Å resolution. The icosahedral capsid contains 120-subunits and resembles another closely related arthropod-borne totivirus-like virus, the infectious myonecrosis virus (IMNV) from shrimps. Both viruses have an elevated plateau around their icosahedral 5-fold axes, surrounded by a deep canyon. Sequence and structural analysis suggests that this plateau region is mainly composed of the extended C-terminal region of the capsid proteins. In contrast to IMNV, the infectious form of OmRV lacks extensive fibre complexes at its 5-fold axes as directly confirmed by a contrast-enhancement technique, using Zernike phase-contrast cryo-EM. Instead, these fibre complexes are replaced by a short "plug" structure at the five-fold axes of OmRV. OmRV and IMNV have acquired an extracellular phase, and the structures at the five-fold axes may be significant in adaptation to cell-to-cell transmission in metazoan hosts.

摘要

奥罗诺河病毒(OmRV)是一种从库蚊中分离出来的双链 RNA 病毒,属于一组未被分配的昆虫病毒,似乎与 Totiviridae 有关。本文描述了完整 OmRV 病毒粒子的电子 cryoEM 结构,分辨率为 8.9 Å,以及缺乏 RNA 的空病毒样颗粒的结构,分辨率为 8.3 Å。二十面体衣壳包含 120 个亚基,类似于另一种密切相关的节肢动物传播的 totivirus-like 病毒,即来自虾的传染性肌坏死病毒(IMNV)。这两种病毒在它们的二十面体 5 重轴周围都有一个升高的高原,周围是一个深峡谷。序列和结构分析表明,这个高原区域主要由衣壳蛋白的延伸 C 端区域组成。与 IMNV 不同的是,OmRV 的感染形式缺乏广泛的纤维复合物在其 5 倍轴上,如直接证实使用 Zernike 位相对比 cryoEM 的对比增强技术。相反,这些纤维复合物在 OmRV 的五重轴上被一个短的“塞子”结构所取代。OmRV 和 IMNV 已经获得了细胞外阶段,而五重轴上的结构可能在适应后生动物宿主的细胞间传播方面具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aaa5/5018817/73c6637bd937/srep33170-f1.jpg

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