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Loss of PPARα function promotes epigenetic dysregulation of lipid homeostasis driving ferroptosis and pyroptosis lipotoxicity in metabolic dysfunction associated Steatotic liver disease (MASLD)

Affiliation
Protein Chemistry, Proteomics and Epigenetic Signaling (PPES) ,Department of Biomedical Sciences ,University of Antwerp ,Antwerp ,Belgium
Theys, Claudia;
Affiliation
Center for Inflammation Research ,VIB ,Ghent ,Belgium
Vanderhaeghen, Tineke;
Affiliation
Center of Medical Genetics ,University of Antwerp ,Antwerp ,Belgium
Van Dijck, Evelien;
Affiliation
Laboratory of Experimental Medicine and Pediatrics ,Infla-Med Centre of Excellence ,University of Antwerp ,Antwerp ,Belgium
Peleman, Cedric;
Affiliation
Center of Medical Genetics ,University of Antwerp ,Antwerp ,Belgium
Scheepers, Anne;
Affiliation
Center of Medical Genetics ,University of Antwerp ,Antwerp ,Belgium
Ibrahim, Joe;
Affiliation
Center of Medical Genetics ,University of Antwerp ,Antwerp ,Belgium
Mateiu, Ligia;
Affiliation
Center for Inflammation Research ,VIB ,Ghent ,Belgium
Timmermans, Steven;
Affiliation
Center for Inflammation Research ,VIB ,Ghent ,Belgium
Vanden Berghe, Tom;
Affiliation
Laboratory of Experimental Medicine and Pediatrics ,Infla-Med Centre of Excellence ,University of Antwerp ,Antwerp ,Belgium
Francque, Sven M.;
Affiliation
Center of Medical Genetics ,University of Antwerp ,Antwerp ,Belgium
Van Hul, Wim;
Affiliation
Center for Inflammation Research ,VIB ,Ghent ,Belgium
Libert, Claude;
Affiliation
Protein Chemistry, Proteomics and Epigenetic Signaling (PPES) ,Department of Biomedical Sciences ,University of Antwerp ,Antwerp ,Belgium
Vanden Berghe, Wim

Metabolic Dysfunction Associated Steatotic Liver Disease (MASLD) is a growing epidemic with an estimated prevalence of 20%–30% in Europe and the most common cause of chronic liver disease worldwide. The onset and progression of MASLD are orchestrated by an interplay of the metabolic environment with genetic and epigenetic factors. Emerging evidence suggests altered DNA methylation pattern as a major determinant of MASLD pathogenesis coinciding with progressive DNA hypermethylation and gene silencing of the liver-specific nuclear receptor PPARα, a key regulator of lipid metabolism. To investigate how PPARα loss of function contributes to epigenetic dysregulation in MASLD pathology, we studied DNA methylation changes in liver biopsies of WT and hepatocyte-specific PPARα KO mice, following a 6-week CDAHFD (choline-deficient, L-amino acid-defined, high-fat diet) or chow diet. Interestingly, genetic loss of PPARα function in hepatocyte-specific KO mice could be phenocopied by a 6-week CDAHFD diet in WT mice which promotes epigenetic silencing of PPARα function via DNA hypermethylation, similar to MASLD pathology. Remarkably, genetic and lipid diet-induced loss of PPARα function triggers compensatory activation of multiple lipid sensing transcription factors and epigenetic writer-eraser-reader proteins, which promotes the epigenetic transition from lipid metabolic stress towards ferroptosis and pyroptosis lipid hepatoxicity pathways associated with advanced MASLD. In conclusion, we show that PPARα function is essential to support lipid homeostasis and to suppress the epigenetic progression of ferroptosis-pyroptosis lipid damage associated pathways towards MASLD fibrosis.

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License Holder: Copyright © 2024 Theys, Vanderhaeghen, Van Dijck, Peleman, Scheepers, Ibrahim, Mateiu, Timmermans, Vanden Berghe, Francque, Van Hul, Libert and Vanden Berghe.

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