Liver PPARα is crucial for whole-body fatty acid homeostasis and is protective against NAFLD

Archive ouverte

Montagner, Alexandra | Polizzi, Arnaud | Fouché, Edwin | Ducheix, Simon | Lippi, Yannick | Lasserre, Frédéric | Barquissau, Valentin | Régnier, Marion | Lukowicz, Céline | Benhamed, Fadila | Iroz, Alison | Bertrand-Michel, Justine | Al Saati, Talal | Cano, Patricia | Mselli-Lakhal, Laila | Mithieux, Gilles | Rajas, Fabienne | Lagarrigue, Sandrine | Pineau, Thierry | Loiseau, Nicolas | Postic, Catherine | Langin, Dominique | Wahli, Walter | Guillou, Hervé

Edité par CCSD ; BMJ Publishing Group -

Supplementary Data : http://gut.bmj.com/content/early/2016/01/31/gutjnl-2015-310798/suppl/DC1. International audience. OBJECTIVE:Peroxisome proliferator-activated receptor α (PPARα) is a nuclear receptor expressed in tissues with high oxidative activity that plays a central role in metabolism. In this work, we investigated the effect of hepatocyte PPARα on non-alcoholic fatty liver disease (NAFLD).DESIGN:We constructed a novel hepatocyte-specific PPARα knockout (Pparα(hep-/-)) mouse model. Using this novel model, we performed transcriptomic analysis following fenofibrate treatment. Next, we investigated which physiological challenges impact on PPARα. Moreover, we measured the contribution of hepatocytic PPARα activity to whole-body metabolism and fibroblast growth factor 21 production during fasting. Finally, we determined the influence of hepatocyte-specific PPARα deficiency in different models of steatosis and during ageing.RESULTS:Hepatocyte PPARα deletion impaired fatty acid catabolism, resulting in hepatic lipid accumulation during fasting and in two preclinical models of steatosis. Fasting mice showed acute PPARα-dependent hepatocyte activity during early night, with correspondingly increased circulating free fatty acids, which could be further stimulated by adipocyte lipolysis. Fasting led to mild hypoglycaemia and hypothermia in Pparα(hep-/-) mice when compared with Pparα(-/-) mice implying a role of PPARα activity in non-hepatic tissues. In agreement with this observation, Pparα(-/-) mice became overweight during ageing while Pparα(hep-/-) remained lean. However, like Pparα(-/-) mice, Pparα(hep-/-) fed a standard diet developed hepatic steatosis in ageing.CONCLUSIONS:Altogether, these findings underscore the potential of hepatocyte PPARα as a drug target for NAFLD.

Suggestions

Du même auteur

Hepatocyte-specific deletion of Pparα promotes NAFLD in the context of obesity

Archive ouverte | Régnier, Marion | CCSD

International audience. Peroxisome proliferator activated receptor α (PPARα) acts as a fatty acid sensor to orchestrate the transcription of genes coding for rate-limiting enzymes required for lipid oxidation in hep...

Integrative study of diet-induced mouse models of NAFLD identifies PPARα as a sexually dimorphic drug target

Archive ouverte | Smati, Sarra | CCSD

International audience. Objective We evaluated the influence of sex on the pathophysiology of non-alcoholic fatty liver disease (NAFLD). We investigated diet-induced phenotypic responses to define sex-specific regul...

Insights into the role of hepatocyte PPARα activity in response to fasting

Archive ouverte | Régnier, Marion | CCSD

The liver plays a central role in the regulation of fatty acid metabolism. Hepatocytes are highly sensitive to nutrients and hormones that drive extensive transcriptional responses. Nuclear hormone receptors are key transcription ...

Chargement des enrichissements...