Immubiology of Dendritic Cells unit, Institut Pasteur, Paris, France.
Inserm U1223, Institut Pasteur, Paris, France.
PLoS One. 2020 Nov 12;15(11):e0241592. doi: 10.1371/journal.pone.0241592. eCollection 2020.
Superinfection exclusion (SIE) is a process by which a virally infected cell is protected from subsequent infection by the same or a closely related virus. By preventing cell coinfection, SIE favors preservation of genome integrity of a viral strain and limits its recombination potential with other viral genomes, thereby impacting viral evolution. Although described in virtually all viral families, the precise step(s) impacted by SIE during the viral life cycle have not been systematically explored. Here, we describe for the first time SIE triggered by chikungunya virus (CHIKV), an alphavirus of public health importance. Using single-cell technologies, we demonstrate that CHIKV excludes subsequent infection with: CHIKV; Sindbis virus, a related alphavirus; and influenza A, an unrelated RNA virus. We further demonstrate that SIE does not depend on the action of type I interferon, nor does it rely on host cell transcription. Moreover, exclusion is not mediated by the action of a single CHIKV protein; in particular, we observed no role for non-structural protein 2 (nsP2), making CHIKV unique among characterized alphaviruses. By stepping through the viral life cycle, we show that CHIKV exclusion occurs at the level of replication, but does not directly influence virus binding, nor viral structural protein translation. In sum, we characterized co-infection during CHIKV replication, which likely influences the rate of viral diversification and evolution.
超级感染排除(SIE)是一种病毒感染细胞被保护而免受同一或密切相关病毒再次感染的过程。通过防止细胞共感染,SIE 有利于保护病毒株基因组完整性,并限制其与其他病毒基因组的重组潜力,从而影响病毒进化。尽管几乎在所有病毒家族中都有描述,但 SIE 在病毒生命周期中受影响的确切步骤尚未系统探索。在这里,我们首次描述了基孔肯雅病毒(CHIKV)触发的 SIE,CHIKV 是一种具有公共卫生重要性的阿尔法病毒。使用单细胞技术,我们证明 CHIKV 排除了以下病毒的后续感染:CHIKV、与之相关的辛德比斯病毒(Sindbis virus)和与之无关的 RNA 病毒流感病毒(influenza A)。我们进一步证明 SIE 不依赖于 I 型干扰素的作用,也不依赖于宿主细胞转录。此外,排除不是由单个 CHIKV 蛋白的作用介导的;特别是,我们观察到非结构蛋白 2(nsP2)没有作用,这使得 CHIKV 在已鉴定的阿尔法病毒中独一无二。通过逐步进行病毒生命周期,我们表明 CHIKV 排除发生在复制水平,但不会直接影响病毒结合,也不会影响病毒结构蛋白翻译。总之,我们描述了 CHIKV 复制过程中的共感染情况,这可能影响病毒多样化和进化的速度。