1. Deletion of intestinal Hdac3 remodels the lipidome of enterocytes and protects mice from diet-induced obesity
- Author
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Andrew M. Scott, Cameron M. Scott, Analia Lesmana, Rebecca Nightingale, Lars Tögel, Holly Anderton, Irvin Ng, Suresh Mathivanan, Yann Gibert, Hina Kalra, Mercedes Dávalos-Salas, Paul Ioannidis, David S. Williams, Shivakumar Keerthikumar, Angela Rigopoulos, John M. Mariadason, Sylvia J. Gong, Kim S. Bell-Anderson, Camilla M. Reehorst, Sheren Al-Obaidi, Matthew J. Watt, Scott W. Hiebert, Prusoth Yoganantharaja, and Magdalene K. Montgomery
- Subjects
0301 basic medicine ,Science ,Peroxisome Proliferator-Activated Receptors ,General Physics and Astronomy ,Peroxisome proliferator-activated receptor ,Calorimetry ,Diet, High-Fat ,Article ,Histone Deacetylases ,General Biochemistry, Genetics and Molecular Biology ,Mice ,03 medical and health sciences ,0302 clinical medicine ,Intestinal mucosa ,Lipid oxidation ,Animals ,Obesity ,Intestinal Mucosa ,lcsh:Science ,Beta oxidation ,Triglycerides ,chemistry.chemical_classification ,Multidisciplinary ,Fatty Acids ,Lipid metabolism ,General Chemistry ,Gastrointestinal system ,Lipidome ,Lipid Metabolism ,HDAC3 ,Intestinal epithelium ,Mitochondria ,Cell biology ,Enterocytes ,030104 developmental biology ,Gene Expression Regulation ,chemistry ,030220 oncology & carcinogenesis ,Lipidomics ,lcsh:Q ,Lipid Peroxidation ,Fat metabolism ,Gene Deletion - Abstract
Histone deacetylase 3 (Hdac3) regulates the expression of lipid metabolism genes in multiple tissues, however its role in regulating lipid metabolism in the intestinal epithelium is unknown. Here we demonstrate that intestine-specific deletion of Hdac3 (Hdac3IKO) protects mice from diet induced obesity. Intestinal epithelial cells (IECs) from Hdac3IKO mice display co-ordinate induction of genes and proteins involved in mitochondrial and peroxisomal β-oxidation, have an increased rate of fatty acid oxidation, and undergo marked remodelling of their lipidome, particularly a reduction in long chain triglycerides. Many HDAC3-regulated fatty oxidation genes are transcriptional targets of the PPAR family of nuclear receptors, Hdac3 deletion enhances their induction by PPAR-agonists, and pharmacological HDAC3 inhibition induces their expression in enterocytes. These findings establish a central role for HDAC3 in co-ordinating PPAR-regulated lipid oxidation in the intestinal epithelium, and identify intestinal HDAC3 as a potential therapeutic target for preventing obesity and related diseases., Histone deacetylase 3 (HDAC3) is a regulator of lipid homeostasis in several tissues, however, its role in intestinal lipid metabolism was not yet known. Here the authors study intestine specific HDAC3 knock out mice and report that these animals have increased fatty acid oxidation and undergo remodeling of the intestinal epithelial cell lipidome.
- Published
- 2019
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