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Endocrinology, doi:10.1210/en.2006-0838
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Endocrinology Vol. 148, No. 4 1539-1549
Copyright © 2007 by The Endocrine Society

Overexpression of Adiponectin Targeted to Adipose Tissue in Transgenic Mice: Impaired Adipocyte Differentiation

Isabelle B. Bauche1, Samira Ait El Mkadem1, Anne-Marie Pottier, Maximin Senou, Marie-Christine Many, René Rezsohazy, Luc Penicaud, Norikazu Maeda, Tohru Funahashi and Sonia M. Brichard

Endocrinology and Metabolism Unit (I.B.B., S.A.E.M., A.-M.P., S.M.B.), Experimental Morphology Unit (M.S., M.-C.M.), University of Louvain, Faculty of Medicine, 1200 Brussels, Belgium; Unit of Veterinary Sciences (R.R.), Institut des Sciences de la Vie, University of Louvain, 1348 Louvain-la-Neuve, Belgium; Centre National de la Recherche Scientifique (CNRS) Unité Mixte de Recherche 5018 (L.P.), CNRS and Paul Sabatier University, 31062 Toulouse, France; and Department of Internal Medicine and Molecular Science (N.M., T.F.), Graduate School of Medicine, Osaka University, Osaka 560-0043, Japan

Address all correspondence and requests for reprints to: S. M. Brichard, Unité d’Endocrinologie et Métabolisme, University of Louvain/Endocrinology 5530, Avenue Hippocrate, 55, B-1200 Brussels, Belgium. E-mail: brichard{at}endo.ucl.ac.be.

Adiponectin (ApN) is an adipokine whose expression and plasma levels are inversely related to obesity and insulin-resistant states. Chronic repercussions of ApN treatment or overexpression on adiposity and body weight are still controversial. Here, we generated a transgenic (Tg) mouse model allowing persistent and moderate overexpression of native full-length ApN targeted to white adipose tissue. Adipose mass and adipocyte size of Tg mice were reduced despite preserved calorie intake. This reduction resulted from increased energy expenditure and up-regulation of uncoupling proteins, and from abrogation of the adipocyte differentiation program, as shown by the loss of a key lipogenic enzyme and of adipocyte markers. Adipose mass remodeling favors enhanced insulin sensitivity and improved lipid profile of Tg mice. Alteration of the adipocyte phenotype was likely to result from increased expression of the preadipocyte factor-1 and from down-regulation of the transcription factor, CCAAT/enhancer binding protein-{alpha}, which orchestrates adipocyte differentiation. We further found that recombinant ApN directly stimulated pre- adipocyte factor-1 mRNA and attenuated CCAAT/enhancer binding protein-{alpha} expression in cultured 3T3-F442A cells. Conversely, opposite changes in the expression of these genes were observed in white fat of ApN-deficient mice. Thus, besides enhanced energy expenditure, our work shows that impairment of adipocyte differentiation contributes to the anti-adiposity effect of ApN.




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