Publikation: Liver receptor homolog-1 (NR5A2) orchestrates hepatic inflammation and TNF-induced cell death
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The nuclear receptor liver receptor homolog-1 (LRH-1) has been shown to promote apoptosis resistance in various tissues and disease contexts; however, its role in liver cell death remains unexplored. Hepatocyte-specific deletion of LRH-1 causes mild steatosis and inflammation but unexpectedly shields female mice from tumor necrosis factor (TNF)-induced hepatocyte apoptosis and associated hepatitis. LRH-1-deficient hepatocytes show markedly attenuated estrogen receptor alpha and elevated nuclear factor κB (NF-κB) activity, while LRH-1 overexpression inhibits NF-κB activity. This inhibition relies on direct physical interaction of LRH-1’s ligand-binding domain and the Rel homology domain of NF-κB subunit RelA. Mechanistically, increased transcription of anti-apoptotic NF-κB target genes and the proteasomal degradation of pro-apoptotic BCL-2 interacting mediator of cell death prevent mitochondrial apoptosis and ultimately protect mice from TNF-induced liver damage. Collectively, our study emphasizes LRH-1 as a critical, sex-dependent regulator of cell death and inflammation in the healthy and diseased liver.
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LAMBRECHT, Rebekka, M. Eugenia DELGADO, Vincent GLOE, Karina SCHÜTZ, Anna Pia PLAZZO, Barbara FRANKE, Truong San PHAN, Jennifer R. FLEMING, Olga MAYANS, Thomas BRUNNER, 2023. Liver receptor homolog-1 (NR5A2) orchestrates hepatic inflammation and TNF-induced cell death. In: Cell Reports. Elsevier. 2023, 42(12), 113513. ISSN 2211-1247. Available under: doi: 10.1016/j.celrep.2023.113513BibTex
@article{Lambrecht2023-12Liver-68946, year={2023}, doi={10.1016/j.celrep.2023.113513}, title={Liver receptor homolog-1 (NR5A2) orchestrates hepatic inflammation and TNF-induced cell death}, number={12}, volume={42}, issn={2211-1247}, journal={Cell Reports}, author={Lambrecht, Rebekka and Delgado, M. Eugenia and Gloe, Vincent and Schütz, Karina and Plazzo, Anna Pia and Franke, Barbara and Phan, Truong San and Fleming, Jennifer R. and Mayans, Olga and Brunner, Thomas}, note={Article Number: 113513} }
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