Dual modifying of MAVS at lysine 7 by SIRT3-catalyzed deacetylation and SIRT5-catalyzed desuccinylation orchestrates antiviral innate immunity

先天免疫系统 生物 SIRT3 免疫 乙酰化 内部收益率3 免疫系统 磷酸化 细胞生物学 锡尔图因 免疫学 遗传学 基因
作者
Xing Liu,Chunchun Zhu,Shuke Jia,Hongyan Deng,Jinhua Tang,Xueyi Sun,Xiaoli Zeng,Xiaoyun Chen,Zixuan Wang,Wen Liu,Qian Liao,Huangyuan Zha,Xiaolian Cai,Wuhan Xiao
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:121 (17) 被引量:2
标识
DOI:10.1073/pnas.2314201121
摘要

To effectively protect the host from viral infection while avoiding excessive immunopathology, the innate immune response must be tightly controlled. However, the precise regulation of antiviral innate immunity and the underlying mechanisms remain unclear. Here, we find that sirtuin3 (SIRT3) interacts with mitochondrial antiviral signaling protein (MAVS) to catalyze MAVS deacetylation at lysine residue 7 (K7), which promotes MAVS aggregation, as well as TANK-binding kinase I and IRF3 phosphorylation, resulting in increased MAVS activation and enhanced type I interferon signaling. Consistent with these findings, loss of Sirt3 in mice and zebrafish renders them more susceptible to viral infection compared to their wild-type (WT) siblings. However, Sirt3 and Sirt5 double-deficient mice exhibit the same viral susceptibility as their WT littermates, suggesting that loss of Sirt5 in Sirt3 -deficient mice may counteract the increased viral susceptibility displayed in Sirt3 -deficient mice. Thus, we not only demonstrate that SIRT3 positively regulates antiviral immunity in vitro and in vivo, likely via MAVS, but also uncover a previously unrecognized mechanism by which SIRT3 acts as an accelerator and SIRT5 as a brake to orchestrate antiviral innate immunity.
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