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This version published online on November 3, 2009
Endocrinology, doi:10.1210/en.2009-0488
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Submitted on April 23, 2009
Accepted on September 21, 2009

Effects of TWEAK (TNF Superfamily Member 12) on Differentiation, Metabolism, and Secretory Function of Human Primary Preadipocytes and Adipocytes

Gabriele Tiller, Pamela Fischer-Posovszky, Helmut Laumen, Andreas Finck, Thomas Skurk, Michaela Keuper, Ulrich Brinkmann, Martin Wabitsch, Dieter Link, and Hans Hauner*

Else Kröner-Fresenius-Zentrum für Ernährungsmedizin, Technische Universität München (G.T., H.L., T.S., H.H.), 85350 Freising, Germany; Division of Pediatric Endocrinology and Diabetes, Department of Pediatrics and Adolescent Medicine, University of Ulm (P.F.-P., M.K., M.W.), D-89075 Ulm, Germany; and Xantos Biomedicine AG (A.F., U.B., D.L.), 81377 München, Germany

* To whom correspondence should be addressed. E-mail: nutritional.medicine{at}wzw.tum.de.

Expansion of adipose tissue mass by hypertrophy and hyperplasia is the hallmark of obesity. An automated cDNA screen was established to identify secreted human proteins with an inhibitory effect on adipocyte differentiation and, thereby, a potential inhibitory effect on adipose tissue growth. A member of the TNF superfamily, TNF-like weak inducer of apoptosis (TWEAK; TNF superfamily 12) was identified by means of high-throughput screening with the lipophilic dye Nile Red as an inhibitor of murine adipocyte differentiation and, subsequently, also of human adipocyte differentiation. TWEAK inhibited lipid deposition in a dose-dependent manner without causing cytotoxic effects. This inhibitory action was mimicked by an agonistic antibody of the TWEAK receptor. The TWEAK receptor (fibroblast growth factor inducible 14; CD266) was expressed on human primary preadipocytes and mature adipocytes. Knockdown of TWEAK receptor by short-hairpin RNA abolished the inhibitory effect of TWEAK on cell differentiation, demonstrating that the effects of TWEAK are mediated by its specific receptor. Inhibition of differentiation was the result of interference at an early step of transcriptional activation as assessed by decreased peroxisome proliferator-activated receptor-{gamma}, CCAAT enhancer-binding protein {alpha} (C/EBP{alpha}), and CCAAT enhancer-binding protein {beta} (C/EBP{beta}) mRNA expression. In contrast to TNF{alpha}, basal and insulin-stimulated glucose uptake and lipolysis of terminally differentiated mature adipocytes and secretion of proinflammatory cytokines were not altered in the presence of TWEAK, and nuclear factor {kappa} B activity was only weakly induced. We conclude from our findings that TWEAK and the corresponding agonistic antibody have the potential to prevent adipose tissue growth without adversely influencing central metabolic pathways or proinflammatory cytokine secretion in adipose tissue.







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