Wang Xinxian, Bi Junlong, Yang Ying, Li Lijun, Zhang Runting, Li Yongneng, Cheng Meiling, Li Wenying, Yang Guishu, Lin Yingbo, Liu Jianping, Yin Gefen
College of Animal Veterinary Medicine, Yunnan Agricultural University, Kunming, 650201, Yunnan, China.
Department of Oncology-Pathology, Karolinska Institutet, Stockholm, 17176, Sweden.
Virology. 2023 Nov;588:109886. doi: 10.1016/j.virol.2023.109886. Epub 2023 Sep 29.
Porcine reproductive and respiratory syndrome (PRRS) is an acute infectious disease that spreads rapidly among pigs and seriously threatens the pig industry. Activation of ERK1/2 is a hallmark of most viral infections. RACK1 interacts with a variety of kinases and membrane receptors that closely associated with viral infections and the development and progression of cancer. However, no studies have clearly defined whether RACK1 can regulate PRRSV infection through ERK1/2 activation. In our study, using RT-qPCR, immunoblotting, indirect fluorescent staining, siRNA knockdown and protein overexpression techniques, we found that downregulation of cellular RACK1 inhibited ERK1/2 activation and subsequently suppressed PRRSV infection, while overexpression of RACK1 enhanced ERK1/2 activation and PRRSV infection. Bioinformatic and Co-immunoprecipitation experimental analysis revealed that cellular RACK1 could interact with viral N protein to exert its function. We elaborated that RACK1 promoted PRRSV replication in Marc-145 cells through ERK1/2 activation. Our study provides new insights into regulating the innate antiviral immune responses during PRRSV infection and contributes to further understanding of the molecular mechanisms underlying PRRSV replication.
猪繁殖与呼吸综合征(PRRS)是一种在猪群中迅速传播的急性传染病,严重威胁着养猪业。ERK1/2的激活是大多数病毒感染的一个标志。RACK1与多种激酶和膜受体相互作用,这些激酶和膜受体与病毒感染以及癌症的发生和发展密切相关。然而,尚无研究明确界定RACK1是否能通过激活ERK1/2来调节PRRSV感染。在我们的研究中,运用RT-qPCR、免疫印迹、间接荧光染色、siRNA敲低和蛋白质过表达技术,我们发现细胞RACK1的下调抑制了ERK1/2的激活,进而抑制了PRRSV感染,而RACK1的过表达增强了ERK1/2的激活和PRRSV感染。生物信息学和免疫共沉淀实验分析表明,细胞RACK1可与病毒N蛋白相互作用以发挥其功能。我们阐述了RACK1通过激活ERK1/2促进PRRSV在Marc-145细胞中的复制。我们的研究为调控PRRSV感染期间的先天性抗病毒免疫反应提供了新的见解,并有助于进一步了解PRRSV复制的分子机制。