The Link Between Nutritional Status and Insulin Sensitivity Is Dependent on the Adipocyte-Specific Peroxisome Proliferator–Activated Receptor-γ2 Isoform

Author:

Medina-Gomez Gema1,Virtue Sam1,Lelliott Christopher1,Boiani Romina2,Campbell Mark1,Christodoulides Constantinos1,Perrin Christophe3,Jimenez-Linan Mercedes1,Blount Margaret1,Dixon John4,Zahn Dirk4,Thresher Rosemary R.4,Aparicio Sam4,Carlton Mark4,Colledge William H.1,Kettunen Mikko I.5,Seppänen-Laakso Tuulikki6,Sethi Jaswinder K.1,O’Rahilly Stephen1,Brindle Kevin5,Cinti Saverio2,Orešič Matej6,Burcelin Remy3,Vidal-Puig Antonio1

Affiliation:

1. Department of Clinical Biochemistry, Histopathology, Physiology and Oncology, University of Cambridge/Addenbrooke’s Hospital, Cambridge, U.K.

2. Institute of Normal Human Morphology, Faculty of Medicine, Ancona University, Ancona, Italy

3. Centre National de la Recherche Scientifique-UMR 5018, Paul Sabatier University, Toulouse, France

4. Paradigm Therapeutics, Cambridge, U.K.

5. Department of Biochemistry, University of Cambridge, Cambridge, U.K.

6. VTT: Technical Research Centre of Finland, VTT Biotechnology, Espoo, Finland

Abstract

The nuclear receptor peroxisome proliferator–activated receptor-γ (PPARγ) is critically required for adipogenesis. PPARγ exists as two isoforms, γ1 and γ2. PPARγ2 is the more potent adipogenic isoform in vitro and is normally restricted to adipose tissues, where it is regulated more by nutritional state than PPARγ1. To elucidate the relevance of the PPARγ2 in vivo, we generated a mouse model in which the PPARγ2 isoform was specifically disrupted. Despite similar weight, body composition, food intake, energy expenditure, and adipose tissue morphology, male mice lacking the γ2 isoform were more insulin resistant than wild-type animals when fed a regular diet. These results indicate that insulin resistance associated with ablation of PPARγ2 is not the result of lipodystrophy and suggests a specific role for PPARγ2 in maintaining insulin sensitivity independently of its effects on adipogenesis. Furthermore, PPARγ2 knockout mice fed a high-fat diet did not become more insulin resistant than those on a normal diet, despite a marked increase in their mean adipocyte cell size. These findings suggest that PPARγ2 is required for the maintenance of normal insulin sensitivity in mice but also raises the intriguing notion that PPARγ2 may be necessary for the adverse effects of a high-fat diet on carbohydrate metabolism.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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