Department of Physiology & Biophysics, Boston University School of Medicine, Boston, MA, 02118, United States.
Department of Biochemistry, University of Wisconsin, Madison, WI, 53706, United States.
Sci Rep. 2020 May 14;10(1):7939. doi: 10.1038/s41598-020-64531-1.
Enteroviruses support cell-to-cell viral transmission prior to their canonical lytic spread of virus. Poliovirus (PV), a prototype for human pathogenic positive-sense RNA enteroviruses, and picornaviruses in general, transport multiple virions en bloc via infectious extracellular vesicles, 100~1000 nm in diameter, secreted from host cells. Using biochemical and biophysical methods we identify multiple components in secreted microvesicles, including mature PV virions; positive-sense genomic and negative-sense replicative, template viral RNA; essential viral replication proteins; and cellular proteins. Using cryo-electron tomography, we visualize the near-native three-dimensional architecture of secreted infectious microvesicles containing both virions and a unique morphological component that we describe as a mat-like structure. While the composition of these mat-like structures is not yet known, based on our biochemical data they are expected to be comprised of unencapsidated RNA and proteins. In addition to infectious microvesicles, CD9-positive exosomes released from PV-infected cells are also infectious and transport virions. Thus, our data show that, prior to cell lysis, non-enveloped viruses are secreted within infectious vesicles that also transport viral unencapsidated RNAs, viral and host proteins. Understanding the structure and function of these infectious particles helps elucidate the mechanism by which extracellular vesicles contribute to the spread of non-enveloped virus infection.
肠道病毒在其典型的病毒裂解扩散之前支持细胞间的病毒传播。脊髓灰质炎病毒(PV)是人类致病性正链 RNA 肠道病毒的原型,而小核糖核酸病毒通常通过直径为 100~1000nm 的感染性细胞外囊泡整块运输多个病毒粒子,这些囊泡从宿主细胞分泌出来。我们使用生化和生物物理方法鉴定了分泌的微囊泡中的多种成分,包括成熟的 PV 病毒粒子;正链基因组和负链复制、模板病毒 RNA;必需的病毒复制蛋白;以及细胞蛋白。通过冷冻电子断层扫描,我们可视化了含有病毒粒子和我们描述为类似基质结构的独特形态成分的分泌感染性微囊泡的近天然三维结构。虽然这些类似基质结构的组成尚未可知,但根据我们的生化数据,预计它们由未包裹的 RNA 和蛋白质组成。除了感染性微囊泡外,PV 感染细胞释放的 CD9 阳性外泌体也是感染性的,并运输病毒粒子。因此,我们的数据表明,在细胞裂解之前,未包膜的病毒在携带病毒未包裹 RNA、病毒和宿主蛋白的感染性囊泡中分泌。了解这些感染性颗粒的结构和功能有助于阐明细胞外囊泡如何促进非包膜病毒感染的传播。