Department of Plant Biology, Uppsala BioCenter, Swedish University of Agricultural Sciences, Uppsala 75007, Sweden.
Linnean Center for Plant Biology, Uppsala 75007, Sweden.
Plant Cell. 2022 Jul 30;34(8):3128-3147. doi: 10.1093/plcell/koac132.
Viral infections impose extraordinary RNA stress, triggering cellular RNA surveillance pathways such as RNA decapping, nonsense-mediated decay, and RNA silencing. Viruses need to maneuver among these pathways to establish infection and succeed in producing high amounts of viral proteins. Processing bodies (PBs) are integral to RNA triage in eukaryotic cells, with several distinct RNA quality control pathways converging for selective RNA regulation. In this study, we investigated the role of Arabidopsis thaliana PBs during Cauliflower mosaic virus (CaMV) infection. We found that several PB components are co-opted into viral factories that support virus multiplication. This pro-viral role was not associated with RNA decay pathways but instead, we established that PB components are helpers in viral RNA translation. While CaMV is normally resilient to RNA silencing, dysfunctions in PB components expose the virus to this pathway, which is similar to previous observations for transgenes. Transgenes, however, undergo RNA quality control-dependent RNA degradation and transcriptional silencing, whereas CaMV RNA remains stable but becomes translationally repressed through decreased ribosome association, revealing a unique dependence among PBs, RNA silencing, and translational repression. Together, our study shows that PB components are co-opted by the virus to maintain efficient translation, a mechanism not associated with canonical PB functions.
病毒感染会造成非同寻常的 RNA 压力,从而触发细胞 RNA 监测途径,如 RNA 去帽、无义介导的衰变和 RNA 沉默。病毒需要在这些途径中周旋,以建立感染并成功产生大量病毒蛋白。处理体(PBs)是真核细胞中 RNA 分类的重要组成部分,有几个不同的 RNA 质量控制途径集中进行选择性 RNA 调节。在这项研究中,我们研究了拟南芥 PBs 在花椰菜花叶病毒(CaMV)感染过程中的作用。我们发现,几个 PB 成分被共纳入支持病毒复制的病毒工厂。这种促进病毒的作用与 RNA 降解途径无关,而是我们确定 PB 成分是病毒 RNA 翻译的辅助因子。虽然 CaMV 通常对 RNA 沉默有抵抗力,但 PB 成分的功能障碍使病毒容易受到该途径的影响,这与先前对转基因的观察结果相似。然而,转基因经历 RNA 质量控制依赖性 RNA 降解和转录沉默,而 CaMV RNA 保持稳定,但通过减少核糖体结合而被翻译抑制,揭示了 PBs、RNA 沉默和翻译抑制之间的独特依赖性。总之,我们的研究表明,病毒共利用 PB 成分来维持高效的翻译,这种机制与经典 PB 功能无关。