Middleton Adam J, Barzak Fareeda M, Fokkens Thornton J, Nguyen Khanh, Day Catherine L
Department of Biochemistry, School of Biomedical Sciences, University of Otago, Dunedin 9054, New Zealand.
Department of Biochemistry, School of Biomedical Sciences, University of Otago, Dunedin 9054, New Zealand.
Structure. 2023 Oct 5;31(10):1208-1219.e5. doi: 10.1016/j.str.2023.07.007. Epub 2023 Aug 3.
Inflammation is essential for healthy immune function, wound healing, and resolution of infection. RIG-I is a key RNA sensor that initiates an immune response, with activation and termination of RIG-I signaling reliant on its modification with ubiquitin. The RING E3 ubiquitin ligase, RNF125, has a critical role in the attenuation of RIG-I signaling, yet it is not known how RNF125 promotes ubiquitin transfer or how its activity is regulated. Here we show that the E3 ligase activity of RNF125 relies on the first zinc finger (ZF1) as well as the RING domain. Surprisingly, ZF1 helps recruit the E2, while residues N-terminal to the RING domain appear to activate the E2∼Ub conjugate. These discoveries help explain how RNF125 brings about the termination of RIG-I dependent inflammatory responses, and help account for the contribution of RNF125 to disease. This study also reveals a new role for ZF domains in E3 ligases.
炎症对于健康的免疫功能、伤口愈合以及感染的消退至关重要。维甲酸诱导基因I(RIG-I)是一种关键的RNA传感器,可启动免疫反应,RIG-I信号的激活和终止依赖于其泛素化修饰。泛素连接酶RNF125在RIG-I信号的减弱中起关键作用,但尚不清楚RNF125如何促进泛素转移或其活性如何被调节。在此,我们表明RNF125的E3连接酶活性依赖于第一个锌指(ZF1)以及环状结构域。令人惊讶的是,ZF1有助于招募E2,而环状结构域N端的残基似乎激活E2~Ub共轭物。这些发现有助于解释RNF125如何导致依赖RIG-I的炎症反应的终止,并有助于说明RNF125对疾病的影响。这项研究还揭示了锌指结构域在E3连接酶中的新作用。