生物
先天免疫系统
内部收益率3
棕榈酰化
干扰素
免疫
钻机-I
细胞生物学
病毒学
免疫学
免疫系统
生物化学
酶
半胱氨酸
作者
Lang Bu,Li Wang,Shuishen Zhang,Yanmin Zhang,Miaowen Liu,Zhengkun Zhang,Xueji Wu,Qiwei Jiang,Li Wang,Wei Xie,Miao He,Zhengran Zhou,Chao Cheng,Jianping Guo
出处
期刊:Molecular Cell
[Elsevier]
日期:2024-09-01
卷期号:84 (18): 3513-3529.e5
被引量:1
标识
DOI:10.1016/j.molcel.2024.08.014
摘要
Innate immunity serves as the primary defense against viral and microbial infections in humans. The precise influence of cellular metabolites, especially fatty acids, on antiviral innate immunity remains largely elusive. Here, through screening a metabolite library, palmitic acid (PA) has been identified as a key modulator of antiviral infections in human cells. Mechanistically, PA induces mitochondrial antiviral signaling protein (MAVS) palmitoylation, aggregation, and subsequent activation, thereby enhancing the innate immune response. The palmitoyl-transferase ZDHHC24 catalyzes MAVS palmitoylation, thereby boosting the TBK1-IRF3-interferon (IFN) pathway, particularly under conditions of PA stimulation or high-fat-diet-fed mouse models, leading to antiviral immune responses. Additionally, APT2 de-palmitoylates MAVS, thus inhibiting antiviral signaling, suggesting that its inhibitors, such as ML349, effectively reverse MAVS activation in response to antiviral infections. These findings underscore the critical role of PA in regulating antiviral innate immunity through MAVS palmitoylation and provide strategies for enhancing PA intake or targeting APT2 for combating viral infections.
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