甲型流感病毒
先天免疫系统
生物
病毒学
STAT1
车站2
病毒
免疫
抗病毒蛋白
斯达
TLR3型
信号转导
免疫系统
干扰素
细胞生物学
基因
免疫学
车站3
核糖核酸
遗传学
Toll样受体
作者
Hui Yang,Yurui Dong,Ying Bian,Nuo Xu,Yuwei Wu,Fan Yang,Yinping Du,Tao Qin,Sujuan Chen,Daxin Peng,Xiufan Liu
标识
DOI:10.1038/s41467-022-33909-2
摘要
Abstract Influenza A virus (IAV) polymerase protein PB2 has been shown to partially inhibit the host immune response by blocking the induction of interferons (IFNs). However, the IAV PB2 protein that regulates the downstream signaling pathway of IFNs is not well characterized. Here, we report that IAV PB2 protein reduces cellular sensitivity to IFNs, suppressing the activation of STAT1/STAT2 and ISGs. Furthermore, IAV PB2 protein targets mammalian JAK1 at lysine 859 and 860 for ubiquitination and degradation. Notably, the H5 subtype of highly pathogenic avian influenza virus with I283M/K526R mutations on PB2 increases the ability to degrade mammalian JAK1 and exhibits higher replicate efficiency in mammalian (but not avian) cells and mouse lung tissues, and causes greater mortality in infected mice. Altogether, these data describe a negative regulatory mechanism involving PB2-JAK1 and provide insights into an evasion strategy from host antiviral immunity employed by IAV.
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