Li Junping, Liang Libin, Jiang Li, Wang Qian, Wen Xia, Zhao Yuhui, Cui Pengfei, Zhang Yaping, Wang Guangwen, Li Qibing, Deng Guohua, Shi Jianzhong, Tian Guobin, Zeng Xianying, Jiang Yongping, Liu Liling, Chen Hualan, Li Chengjun
State Key Laboratory of Veterinary Biotechnology, Harbin Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Harbin, The People's Republic of China.
PLoS Pathog. 2021 Feb 11;17(2):e1009336. doi: 10.1371/journal.ppat.1009336. eCollection 2021 Feb.
Posttranslational modifications, such as SUMOylation, play specific roles in the life cycle of invading pathogens. However, the effect of SUMOylation on the adaptation, pathogenesis, and transmission of influenza A virus (IAV) remains largely unknown. Here, we found that a conserved lysine residue at position 612 (K612) of the polymerase basic protein 1 (PB1) of IAV is a bona fide SUMOylation site. SUMOylation of PB1 at K612 had no effect on the stability or cellular localization of PB1, but was critical for viral ribonucleoprotein (vRNP) complex activity and virus replication in vitro. When tested in vivo, we found that the virulence of SUMOylation-defective PB1/K612R mutant IAVs was highly attenuated in mice. Moreover, the airborne transmission of a 2009 pandemic H1N1 PB1/K612R mutant virus was impaired in ferrets, resulting in reversion to wild-type PB1 K612. Mechanistically, SUMOylation at K612 was essential for PB1 to act as the enzymatic core of the viral polymerase by preserving its ability to bind viral RNA. Our study reveals an essential role for PB1 K612 SUMOylation in the pathogenesis and transmission of IAVs, which can be targeted for the design of anti-influenza therapies.
翻译后修饰,如小泛素样修饰(SUMOylation),在入侵病原体的生命周期中发挥特定作用。然而,SUMOylation对甲型流感病毒(IAV)的适应性、致病性和传播的影响在很大程度上仍不清楚。在这里,我们发现IAV聚合酶基本蛋白1(PB1)第612位(K612)的保守赖氨酸残基是一个真正的SUMOylation位点。PB1在K612处的SUMOylation对PB1的稳定性或细胞定位没有影响,但对病毒核糖核蛋白(vRNP)复合物活性和体外病毒复制至关重要。在体内测试时,我们发现SUMOylation缺陷型PB1/K612R突变IAV在小鼠中的毒力高度减弱。此外,2009年大流行H1N1 PB1/K612R突变病毒在雪貂中的空气传播受损,导致恢复为野生型PB1 K612。从机制上讲,K612处的SUMOylation对于PB1通过保持其结合病毒RNA的能力来充当病毒聚合酶的酶核心至关重要。我们的研究揭示了PB1 K612 SUMOylation在IAV发病机制和传播中的重要作用,这可为抗流感疗法的设计提供靶点。