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1.
J Clin Invest ; 112(12): 1821-30, 2003 Dec.
Article in English | MEDLINE | ID: mdl-14679177

ABSTRACT

Insulin resistance arises from the inability of insulin to act normally in regulating nutrient metabolism in peripheral tissues. Increasing evidence from human population studies and animal research has established correlative as well as causative links between chronic inflammation and insulin resistance. However, the underlying molecular pathways are largely unknown. In this report, we show that many inflammation and macrophage-specific genes are dramatically upregulated in white adipose tissue (WAT) in mouse models of genetic and high-fat diet-induced obesity (DIO). The upregulation is progressively increased in WAT of mice with DIO and precedes a dramatic increase in circulating-insulin level. Upon treatment with rosiglitazone, an insulin-sensitizing drug, these macrophage-originated genes are downregulated. Histologically, there is evidence of significant infiltration of macrophages, but not neutrophils and lymphocytes, into WAT of obese mice, with signs of adipocyte lipolysis and formation of multinucleate giant cells. These data suggest that macrophages in WAT play an active role in morbid obesity and that macrophage-related inflammatory activities may contribute to the pathogenesis of obesity-induced insulin resistance. We propose that obesity-related insulin resistance is, at least in part, a chronic inflammatory disease initiated in adipose tissue.


Subject(s)
Adipose Tissue/metabolism , Inflammation , Insulin Resistance , Obesity/metabolism , Adipocytes/metabolism , Animals , Body Weight , Cells, Cultured , Down-Regulation , Gene Expression Regulation , Giant Cells/metabolism , Immunohistochemistry , In Situ Hybridization , Lymphocytes/metabolism , Macrophages/metabolism , Male , Mice , Mice, Inbred C57BL , Mice, Obese , Models, Biological , Neutrophils/metabolism , RNA/metabolism , RNA, Messenger/metabolism , Reverse Transcriptase Polymerase Chain Reaction , Rosiglitazone , Thiazolidinediones/pharmacology , Time Factors , Up-Regulation
2.
J Biol Chem ; 278(32): 30187-92, 2003 Aug 08.
Article in English | MEDLINE | ID: mdl-12777378

ABSTRACT

Insulin is the key hormone that controls glucose homeostasis. Dysregulation of insulin function causes diabetes mellitus. Among the two major forms of diabetes, type 2 diabetes accounts for over 90% of the affected population. The incidence of type 2 diabetes is highly related to obesity. To find novel proteins potentially involved in obesity-related insulin resistance and type 2 diabetes, a functional expression screen was performed to search for genes that negatively regulate insulin signaling. Specifically, a reporter system comprised of the PEPCK promoter upstream of alkaline phosphatase was used in a hepatocyte cell-based assay to screen an expression cDNA library for genes that reverse insulin-induced repression of PEPCK transcription. The cDNA library used in this study was derived from the white adipose tissue of ob/ob mice, which are highly insulin-resistant. The mitogen-activated dual specificity protein kinase phosphatase 4 (MKP-4) was identified as a candidate gene in this screen. Here we show that MKP-4 is expressed in insulin-responsive tissues and that the expression levels are up-regulated in obese insulin-resistant rodent models. Heterologous expression of MKP-4 in preadipocytes significantly blocked insulin-induced adipogenesis, and overexpression of MKP-4 in adipocytes inhibited insulin-stimulated glucose uptake. Our data suggest that MKP-4 negatively regulates insulin signaling and, consequently, may contribute to the pathogenesis of insulin resistance.


Subject(s)
Protein Tyrosine Phosphatases/chemistry , Protein Tyrosine Phosphatases/physiology , 3T3 Cells , Adipocytes/cytology , Adipocytes/metabolism , Alkaline Phosphatase/metabolism , Amino Acid Sequence , Animals , Blotting, Northern , Cell Differentiation , Cell Line , DNA, Complementary/metabolism , Dual-Specificity Phosphatases , Gene Expression Regulation, Enzymologic , Gene Library , Genes, Reporter , Genetic Vectors , Glucose/pharmacokinetics , Glutathione Peroxidase , Insulin/metabolism , Insulin Resistance , Mice , Molecular Sequence Data , Promoter Regions, Genetic , Protein Binding , Proteins/genetics , RNA/metabolism , Rats , Sequence Homology, Amino Acid , Signal Transduction , Tissue Distribution , Transcription, Genetic , Transfection , Tumor Cells, Cultured , Up-Regulation
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