Hepatocyte-specific NEMO deletion promotes NK/NKT cell– and TRAIL-dependent liver damage

Author:

Beraza Naiara1,Malato Yann1,Sander Leif E.1,Al-Masaoudi Malika1,Freimuth Julia1,Riethmacher Dieter2,Gores Gregory J.3,Roskams Tania4,Liedtke Christian1,Trautwein Christian1

Affiliation:

1. Department of Internal Medicine III, University Hospital (RWTH) Aachen, Aachen 5205, Germany

2. Human Genetics Division, Southampton University School of Medicine, Southampton General Hospital, Southampton SO16, England, UK

3. Miles and Shirley Fiterman Center for Digestive Diseases, Mayo Clinic College of Medicine, Rochester, MN 55905

4. Department of Pathology, Catholic University of Leuven, Leuven B-3000, Belgium

Abstract

Nuclear factor κB (NF-κB) is one of the main transcription factors involved in regulating apoptosis, inflammation, chronic liver disease, and cancer progression. The IKK complex mediates NF-κB activation and deletion of its regulatory subunit NEMO in hepatocytes (NEMOΔhepa) triggers chronic inflammation and spontaneous hepatocellular carcinoma development. We show that NEMOΔhepa mice were resistant to Fas-mediated apoptosis but hypersensitive to tumor necrosis factor–related apoptosis-inducing ligand (TRAIL) as the result of a strong up-regulation of its receptor DR5 on hepatocytes. Additionally, natural killer (NK) cells, the main source of TRAIL, were activated in NEMOΔhepa livers. Interestingly, depletion of the NK1.1+ cells promoted a significant reduction of liver inflammation and an improvement of liver histology in NEMOΔhepa mice. Furthermore, hepatocyte-specific NEMO deletion strongly sensitized the liver to concanavalin A (ConA)–mediated injury. The critical role of the NK cell/TRAIL axis in NEMOΔhepa livers during ConA hepatitis was further confirmed by selective NK cell depletion and adoptive transfer of TRAIL-deficient−/− mononuclear cells. Our results uncover an essential mechanism of NEMO-mediated protection of the liver by preventing NK cell tissue damage via TRAIL/DR5 signaling. As this mechanism is important in human liver diseases, NEMOΔhepa mice are an interesting tool to give insight into liver pathophysiology and to develop future therapeutic strategies.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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