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PMID: 12777391 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Peroxisome proliferator-activated receptor-gamma represses GLUT4 promoter activity in primary adipocytes, and rosiglitazone alleviates this effect.

The Journal of biological chemistry ·Vol. 278 ·No. 33 ·2003-08-15 ·Pages 30614-23

Armoni M, Kritz N, Harel C, Bar-Yoseph F, Chen H, Quon MJ, Karnieli E

Abstract

The synthetic thiazolidinedione ligands of peroxisome proliferator-activated receptor-gamma (PPARgamma) improve insulin sensitivity in type II diabetes and induce GLUT4 mRNA expression in fat and muscle. However, the molecular mechanisms involved are still unclear. We studied the regulatory effects of PPARgamma and its ligands on GLUT4 gene expression in primary rat adipocytes and CHO-K1 cells cotransfected with PPARgamma and the GLUT4 promoter reporter. PPARgamma1 and PPARgamma2 repressed the activity of the GLUT4 promoter in a dose-dependent manner. Whereas this repression was augmented by the natural ligand 15Delta-prostaglandin J2, it was completely alleviated by rosiglitazone (Rg). Ligand binding-defective mutants PPARgamma1-L468A/E471A and PPARgamma2-L496A/E499A retained the repression effect, which was unaffected by Rg, whereas the PPARgamma2-S112A mutant exhibited a 50% reduced capacity to repress GLUT4 promoter activity. The -66/+163 bp GLUT4 promoter region was sufficient to mediate PPARgamma inhibitory effects. The PPARgamma/retinoid X receptor-alpha heterodimer directly bound to this region, whereas binding was abolished in the presence of Rg. Thus, we show that PPARgamma represses transcriptional activity of the GLUT4 promoter via direct and specific binding of PPARgamma/retinoid X receptor-alpha to the GLUT4 promoter. This effect requires an intact Ser112 phosphorylation site on PPARgamma and is completely alleviated by Rg, acting via its ligand-binding domain. These data suggest a novel mechanism by which Rg exerts its antidiabetic effects via detaching PPARgamma from the GLUT4 gene promoter, thus leading to increased GLUT4 expression and enhanced insulin sensitivity.

MeSH Terms
Adipocytes/drug effects,physiology Animals CHO Cells Cricetinae Dimerization Fibroblasts/cytology Gene Expression Regulation/drug effects,physiology Genetic Complementation Test Glucose Transporter Type 4 Humans Hypoglycemic Agents/pharmacology Immunologic Factors/pharmacology Mice Monosaccharide Transport Proteins/genetics Muscle Proteins Promoter Regions, Genetic/physiology Prostaglandin D2/analogs & derivatives,pharmacology Protein Structure, Tertiary Rats Receptors, Cytoplasmic and Nuclear/chemistry,genetics,metabolism Receptors, Retinoic Acid/chemistry,genetics Retinoid X Receptors Rosiglitazone Suppression, Genetic Thiazoles/pharmacology Thiazolidinediones Transcription Factors/chemistry,genetics,metabolism Transcription, Genetic/drug effects,physiology
Chemicals
15-deoxy-delta(12,14)-prostaglandin J2 Glucose Transporter Type 4 Hypoglycemic Agents Immunologic Factors Monosaccharide Transport Proteins Muscle Proteins Receptors, Cytoplasmic and Nuclear Receptors, Retinoic Acid Retinoid X Receptors SLC2A4 protein, human Slc2a4 protein, mouse Slc2a4 protein, rat Thiazoles Thiazolidinediones Transcription Factors Rosiglitazone 2,4-thiazolidinedione Prostaglandin D2
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Armoni Michal
Institute of Endocrinology, Diabetes, and Metabolism, Rambam Medical Center and Rappaport Faculty of Medicine, Technion-Israel Institute of Technology, Haifa 31096, Israel. amichal@tx.technion.ac.il
Kritz Natalia
Harel Chava
Bar-Yoseph Fabiana
Chen Hui
Quon Michael J
Karnieli Eddy
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2003-08-15
Epub
2003-00-29
Pages
30614-23
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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