Department Molecular Cell Biology, Institute of Biochemistry and Pathobiochemistry, Ruhr University Bochum, Bochum, Germany.
Physical Chemistry I-Biophysical Chemistry, Department of Chemistry and Chemical Biology, TU Dortmund University, Dortmund, Germany.
Life Sci Alliance. 2023 Jan 31;6(4). doi: 10.26508/lsa.202201607. Print 2023 Apr.
The NF-κB essential modulator NEMO is the core regulatory component of the inhibitor of κB kinase complex, which is a critical checkpoint in canonical NF-κB signaling downstream of innate and adaptive immune receptors. In response to various stimuli, such as TNF or IL-1β, NEMO binds to linear or M1-linked ubiquitin chains generated by LUBAC, promoting its oligomerization and subsequent activation of the associated kinases. Here we show that M1-ubiquitin chains induce phase separation of NEMO and the formation of NEMO assemblies in cells after exposure to IL-1β. Phase separation is promoted by both binding of NEMO to linear ubiquitin chains and covalent linkage of M1-ubiquitin to NEMO and is essential but not sufficient for its phase separation. Supporting the functional relevance of NEMO phase separation in signaling, a pathogenic NEMO mutant, which is impaired in both binding and linkage to linear ubiquitin chains, does not undergo phase separation and is defective in mediating IL-1β-induced NF-κB activation.
NF-κB 必需调节剂 NEMO 是 IκB 激酶复合物抑制剂的核心调节成分,是先天和适应性免疫受体下游经典 NF-κB 信号的关键检查点。响应各种刺激,如 TNF 或 IL-1β,NEMO 与 LUBAC 产生的线性或 M1 连接泛素链结合,促进其寡聚化和随后相关激酶的激活。在这里,我们表明,在暴露于 IL-1β后,M1 泛素链诱导 NEMO 的相分离和 NEMO 组装体的形成。相分离通过 NEMO 与线性泛素链的结合和 M1-泛素与 NEMO 的共价连接来促进,对于其相分离是必需的但不是充分的。支持 NEMO 相分离在信号转导中的功能相关性,一种致病性 NEMO 突变体,其与线性泛素链的结合和连接均受损,不会发生相分离并且在介导 IL-1β 诱导的 NF-κB 激活中存在缺陷。