MDA5型
细胞生物学
信号转导衔接蛋白
生物
核糖核酸
泛素
变构调节
血浆蛋白结合
ATP水解
信号转导
泛素连接酶
生物化学
钻机-I
内体
作者
Bin Song,Yun Chen,Xin Liu,Fei Yuan,Eddie Yong Jun Tan,Yixuan Lei,Ning Song,Yinqi Han,Bruce D. Pascal,Patrick R. Griffin,Cheng Luo,Bin Wu,Dahai Luo,Jie Zheng
出处
期刊:Immunity
[Cell Press]
日期:2021-10-12
卷期号:54 (10): 2218-2230.e5
被引量:5
标识
DOI:10.1016/j.immuni.2021.09.008
摘要
The RNA sensor MDA5 recruits the signaling adaptor MAVS to initiate type I interferon signaling and downstream antiviral responses, a process that requires K63-linked polyubiquitin chains. Here, we examined the mechanisms whereby K63-polyUb chain regulate MDA5 activation. Only long unanchored K63-polyUbn (n ≥ 8) could mediate tetramerization of the caspase activation and recruitment domains of MDA5 (MDA5CARDs). Cryoelectron microscopy structures of a polyUb13-bound MDA5CARDs tetramer and a polyUb11-bound MDA5CARDs-MAVSCARD assembly revealed a tower-like formation, wherein eight Ubs tethered along the outer rim of the helical shell, bridging MDA5CARDs and MAVSCARD tetramers into proximity. ATP binding and hydrolysis promoted the stabilization of RNA-bound MDA5 prior to MAVS activation via allosteric effects on CARDs-polyUb complex. Abundant ATP prevented basal activation of apo MDA5. Our findings reveal the ordered assembly of a MDA5 signaling complex competent to recruit and activate MAVS and highlight differences with RIG-I in terms of CARD orientation and Ub sensing that suggest different abilities to induce antiviral responses.
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