Linear ubiquitination prevents lipodystrophy and obesity-associated metabolic syndrome

线性泛素化可预防脂肪营养不良和肥胖相关代谢综合征

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作者:Ximena Hildebrandt ,Önay Veli ,Armel Hyoubi ,Julia Zinngrebe,Ali T Abdallah,Julian Rodefeld ,Anne Hoffmann,Liane Gardeweg ,Öykü Kaya,Elena Wagner,Andreas Lindhorst,Matea Poggenberg,Yuan Wang ,Joëlle Dimmler ,Jutta Schillings ,Pegi Koci ,Francesca Bonechi,Lucas Valdez Capuccino ,Christine Kiefer,Konstantinos Kelepouras,Adhideb Ghosh,Falko Noé,Christian Wolfrum,Michael Singer,Gianmaria Liccardi,Tom Luedde,Aslihan Yavas,Ahmed Ghallab,Jan G Hengstler,Philipp Antczak ,Martin Gericke,Holger Winkels,Matthias Blüher,Henning Walczak,Alessandro Annibaldi,Pamela Fischer-Posovszky,Nieves Peltzer

Abstract

Adipocyte hypertrophy during obesity triggers chronic inflammation, leading to metabolic disorders. However, the role of adipocyte-specific inflammatory signaling in metabolic syndrome remains unclear. The linear ubiquitin chain assembly complex, LUBAC, is an E3-ligase that generates nondegradative linear ubiquitination (Lin-Ub). LUBAC regulates NF-κB/MAPK-driven inflammation and prevents cell death triggered by immune receptors like TNF receptor-1. Here, we show that mice lacking HOIP, the Lin-E3 ligase catalytic subunit of LUBAC, in adipocytes (HoipA-KO) display lipodystrophy and heightened susceptibility to obesity-induced metabolic syndrome, particularly metabolic dysfunction-associated steatotic liver disease (MASLD). Mechanistically, loss of HOIP attenuates TNF-induced NF-κB activation and promotes cell death in human adipocytes. Inhibiting caspase-8-mediated cell death is sufficient to prevent lipodystrophy and MASLD in HoipA-KO obese mice. HOIP expression in adipose tissue positively correlates with metabolic fitness in obese individuals. Overall, our findings reveal a fundamental developmental role for Lin-Ub in adipocytes by mitigating cell death-driven adipose tissue inflammation and protecting against obesity-related metabolic syndrome.

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