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Norway

PMID:23499424  

Transcriptional cofactor TBLR1 controls lipid mobilization in white adipose tissue.

Maria Rohm | Anke Sommerfeld | Daniela Strzoda | Allan Jones | Tjeerd P Sijmonsma | Gottfried Rudofsky | Christian Wolfrum | Carsten Sticht | Norbert Gretz | Maximilian Zeyda | Lukas Leitner | Peter P Nawroth | Thomas M Stulnig | Mauricio Berriel Diaz | Alexandros Vegiopoulos | Stephan Herzig
Cell metabolism | 2013

Lipid mobilization (lipolysis) in white adipose tissue (WAT) critically controls lipid turnover and adiposity in humans. While the acute regulation of lipolysis has been studied in detail, the transcriptional determinants of WAT lipolytic activity remain still largely unexplored. Here we show that the genetic inactivation of transcriptional cofactor transducin beta-like-related 1(TBLR1) blunts the lipolytic response of white adipocytes through the impairment of cAMP-dependent signal transduction. Indeed, mice lacking TBLR1 in adipocytes are defective in fasting-induced lipid mobilization and, when placed on a high-fat-diet, show aggravated adiposity, glucose intolerance, and insulin resistance. TBLR1 levels are found to increase under lipolytic conditions in WAT of both human patients and mice, correlating with serum free fatty acids (FFAs). As a critical regulator of WAT cAMP signaling and lipid mobilization, proper activity of TBLR1 in adipocytes might thus represent a critical molecular checkpoint for the prevention of metabolic dysfunction in subjects with obesity-related disorders.

Pubmed ID: 23499424

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Charles River Laboratories (tool)

RRID:SCR_003792

Commercial organism provider selling mice, rats and other model animals. American corporation specializing in a variety of pre-clinical and clinical laboratory services for the pharmaceutical, medical device and biotechnology industries. It also supplies assorted biomedical products and research and development outsourcing services for use in the pharmaceutical industry. (Wikipedia)

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