Department of Medicine, University of Cambridge, Addenbrooke's Hospital, Cambridge CB2 0QQ, UK.
Virus Res. 2020 Jan 15;276:197822. doi: 10.1016/j.virusres.2019.197822. Epub 2019 Nov 26.
Species A rotaviruses (RVAs) can package additional homologous genomic sequences which have emerged by partial duplication events (genome rearrangements). Due to the availability of a plasmid only-based reverse genetics system for RVs, various heterologous sequences have been rescued as fusion genes into viable RVAs. Using cryo-electron microscopy, the native structures of the dsRNA genome of Cytoplasmic Polyhedrosis Virus, a member of the Cypovirus genus of the Reoviridae, and partially of Rotavirus and Orbivirus, have been determined. These structural and some functional data were used to calculate the volume occupied by the viral genome in relation to the volume available in viral cores. The native dsRNA genomes were estimated to occupy only one to two thirds of the space available in core particles of the genera Cypovirus, Rotavirus, Orbivirus, Orthoreovirus, and Coltivirus in the Reoviridae family. The findings raise the captivating question of the upper limit of the recombinant RNA packaging capacity of reovirus particles.
A 种轮状病毒(RVAs)可以包装通过部分重复事件(基因组重排)产生的额外同源基因组序列。由于轮状病毒只有质粒的基于反向遗传系统,各种异源序列已作为融合基因被拯救到有活力的 RVA 中。利用冷冻电子显微镜,已确定了细胞质多角体病毒(Cypovirus 属的 Reoviridae 的一员)的 dsRNA 基因组的天然结构,以及轮状病毒和 orbivirus 的部分结构。这些结构和一些功能数据被用于计算病毒基因组在病毒核心中可用空间中所占的体积。天然 dsRNA 基因组估计仅占 Reoviridae 科的 Cypovirus、Rotavirus、Orbivirus、Orthoreovirus 和 Coltivirus 属的核心颗粒中可用空间的三分之一到三分之二。这些发现提出了一个引人入胜的问题,即 Reovirus 颗粒的重组 RNA 包装能力的上限。