Author:
Shymotiuk Ivanna,Froese Natali,Werlein Christopher,Naasner Lea,Szaroszyk Malgorzata,Kühnel Mark P.,Jonigk Danny D.,Blaner William S.,Wende Adam R.,Abel E. Dale,Bauersachs Johann,Riehle Christian
Abstract
BackgroundPerturbed mitochondrial energetics and vitamin A (VitA) metabolism are associated with the pathogenesis of diet-induced obesity (DIO) and type 2 diabetes (T2D).MethodsTo test the hypothesis that VitA regulates tissue-specific mitochondrial energetics and adverse organ remodeling in DIO, we utilized a murine model of impaired VitA availability and high fat diet (HFD) feeding. Mitochondrial respiratory capacity and organ remodeling were assessed in liver, skeletal muscle, and kidney tissue, which are organs affected by T2D-associated complications and are critical for the pathogenesis of T2D.ResultsIn liver, VitA had no impact on maximal ADP-stimulated mitochondrial respiratory capacity (VADP) following HFD feeding with palmitoyl-carnitine and pyruvate each combined with malate as substrates. Interestingly, histopathological and gene expression analyses revealed that VitA mediates steatosis and adverse remodeling in DIO. In skeletal muscle, VitA did not affect VADP following HFD feeding. No morphological differences were detected between groups. In kidney, VADP was not different between groups with both combinations of substrates and VitA transduced the pro-fibrotic transcriptional response following HFD feeding.ConclusionThe present study identifies an unexpected and tissue-specific role for VitA in DIO that regulates the pro-fibrotic transcriptional response and that results in organ damage independent of changes in mitochondrial energetics.
Funder
Deutsche Forschungsgemeinschaft
Deutsche Herzstiftung
Subject
Endocrinology, Diabetes and Metabolism
Cited by
1 articles.
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