Direct Control of Brown Adipose Tissue Thermogenesis by Central Nervous System Glucagon-Like Peptide-1 Receptor Signaling

Author:

Lockie Sarah H.12,Heppner Kristy M.1,Chaudhary Nilika1,Chabenne Joseph R.3,Morgan Donald A.4,Veyrat-Durebex Christelle5,Ananthakrishnan Gayathri1,Rohner-Jeanrenaud Françoise5,Drucker Daniel J.6,DiMarchi Richard3,Rahmouni Kamal4,Oldfield Brian J.2,Tschöp Matthias H.1,Perez-Tilve Diego1

Affiliation:

1. Department of Internal Medicine, Metabolic Disease Institute, University of Cincinnati, Cincinnati, Ohio

2. Department of Physiology, Monash University, Melbourne, Australia

3. Department of Chemistry, Indiana University, Bloomington, Indiana

4. Department of Internal Medicine, University of Iowa Carver College of Medicine, Iowa City, Iowa

5. Department of Internal Medicine, Laboratory of Metabolism, Division of Endocrinology, Diabetology and Nutrition, University of Geneva, Geneva, Switzerland

6. Department of Medicine, Samuel Lunenfeld Research Institute, Mount Sinai Hospital, University of Toronto, Toronto, Ontario, Canada

Abstract

We studied interscapular brown adipose tissue (iBAT) activity in wild-type (WT) and glucagon-like peptide 1 receptor (GLP-1R)–deficient mice after the administration of the proglucagon-derived peptides (PGDPs) glucagon-like peptide (GLP-1), glucagon (GCG), and oxyntomodulin (OXM) directly into the brain. Intracerebroventricular injection of PGDPs reduces body weight and increases iBAT thermogenesis. This was independent of changes in feeding and insulin responsiveness but correlated with increased activity of sympathetic fibers innervating brown adipose tissue (BAT). Despite being a GCG receptor agonist, OXM requires GLP-1R activation to induce iBAT thermogenesis. The increase in thermogenesis in WT mice correlates with increased expression of genes upregulated by adrenergic signaling and required for iBAT thermogenesis, including PGC1a and UCP-1. In spite of the increase in iBAT thermogenesis induced by GLP-1R activation in WT mice, Glp1r−/− mice exhibit a normal response to cold exposure, demonstrating that endogenous GLP-1R signaling is not essential for appropriate thermogenic response after cold exposure. Our data suggest that the increase in BAT thermogenesis may be an additional mechanism whereby pharmacological GLP-1R activation controls energy balance.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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