LUBAC assembles a signaling platform at mitochondria for signal amplification and shuttling of NF-ĸB to the nucleus

Author:

Wu Zhixiao,Berlemann Lena A.,Bader VerianORCID,Sehr Dominik,Eilers Eva,Covallero Alberto,Meschede Jens,Angersbach Lena,Showkat Cathrin,Michaelis Jonas B.,Münch ChristianORCID,Rieger Bettina,Namgaladze Dmitry,Herrera Maria Georgina,Fiesel Fabienne C.,Springer Wolfdieter,Mendes Marta,Stepien Jennifer,Barkovits Katalin,Marcus Katrin,Sickmann Albert,Dittmar GunnarORCID,Busch Karin B.,Riedel Dietmar,Brini Marisa,Tatzelt Jörg,Cali Tito,Winklhofer Konstanze F.ORCID

Abstract

SUMMARYMitochondria are increasingly recognized as cellular hubs to orchestrate signaling pathways that regulate metabolism, redox homeostasis, and cell fate decisions. Recent research revealed a role of mitochondria also in innate immune signaling, however, the mechanisms of how mitochondria affect signal transduction are poorly understood. Here we show that the NF-ĸB pathway activated by TNF employs mitochondria as a platform for signal amplification and shuttling of activated NF-ĸB to the nucleus. TNF induces the recruitment of HOIP, the catalytic component of the linear ubiquitin chain assembly complex (LUBAC), and its substrate NEMO to the outer mitochondrial membrane, where M1- and K63-linked ubiquitin chains are generated. NF-ĸB is locally activated and transported to the nucleus by mitochondria, resulting in an increase in mitochondria-nucleus contact sites in a HOIP-dependent manner. Notably, TNF-induced stabilization of the mitochondrial kinase PINK1 contributes to signal amplification by antagonizing the M1-ubiquitin-specific deubiquitinase OTULIN.

Publisher

Cold Spring Harbor Laboratory

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