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Regulation of adipocyte gene expression in differentiation and syndromes of obesity/diabetes


, : Regulation of adipocyte gene expression in differentiation and syndromes of obesity/diabetes. Journal of Biological Chemistry 268(10): 6823-6826



Accession: 002477006

PMID: 8463205

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Related references

Spiegelman, B.; Choy, L.H.tamisligil, G.; Graves, R.; Tontonoz, P., 1993: Regulation of adipocyte gene expression in differentiation and syndromes of obesity. Journal of biological chemistry 268(10): 6823-6826

He, J.; Tian, Y.; Li, J.J.; Shen, J.D.; Tao, Z.R.; Fu, Y.; Niu, D.; Lu, L.Z., 2012: Expression pattern of adipocyte fatty acid-binding protein gene in different tissues and its regulation of genes related to adipocyte differentiation in duck. Abundance of duck adipocyte fatty acid-binding protein (A-FABP) mRNA was detected in this study by quantitative real-time PCR. The results showed that duck A-FABP gene was expressed in muscular tissues and many organs, except pancreas, lung, and k...

Ntambi, J.M.; Kim YoungCheul; Gomez, F.E.; Fox, B.G., 2000: Regulation of stearoyl-CoA desaturase 1 gene expression in preadipocyte differentiation, diabetes and obesity. Stearoyl-CoA desaturase (SCD) mRNA is overexpressed in various animal models of obesity, type 2 diabetes and its expression is dramatically increased during the differentiation of preadipocytes into adipocytes. The thiazolidinediones (TZDs), ligan...

Taylor, A.I.; Frizzell, N.; McKillop, A.M.; Flatt, P.R.; Gault, V.A., 2010: Effect of RU486 on hepatic and adipocyte gene expression improves diabetes control in obesity-type 2 diabetes. Cortisol has wide-ranging actions, namely in gluconeogenesis and glycogenesis and exerts its effects through the glucocorticoid receptor. In the present study, we examined effects of glucocorticoid receptor blockade on type 2 diabetes control usin...

Spiegelman B.M.; Herrera R.; Tontonoz P.; Robinson G., 1990: Regulation of gene expression in adipocyte differentiation. FASEB Journal 4(7): A1850

Lu, X.; Ji, Y.; Zhang, L.; Zhang, Y.; Zhang, S.; An, Y.; Liu, P.; Zheng, Y., 2012: Resistance to obesity by repression of VEGF gene expression through induction of brown-like adipocyte differentiation. Adipose tissues are classified into white adipose tissue (WAT) and brown adipose tissue (BAT). WAT is responsible for energy storage, and malfunction is associated with obesity. BAT, on the contrary, consumes fat to generate heat through uncouplin...

Spiegelman, B.M.; Distel, R.J.; Ro, H.S.; Rosen, B.S.; Satterberg, B., 1988: fos protooncogene and the regulation of gene expression in adipocyte differentiation. Journal of Cell Biology 107(3): 829-832

Martino, J.J.; Chen, S., 1996: Temporal regulation of gene expression in adipocyte differentiation. Cells usually become 'committed' to differentiate long before any actual morphological change is apparent. In one model commitment is a decision which corresponds to the expression of a control gene, while differentiation is the ultimate...

Sul, H.S.ok; Moustaid, N.; Smas, C.; Yet, S.F.ng; Beyer, R.S.ott; Jerkins, A., 1994: Regulation of gene expression during fat synthesis and adipocyte differentiation. Journal of Cellular Biochemistry Supplement 0(18 PART A): 153

MacDougald, O.A.; Lane, M.D., 1995: Transcriptional regulation of gene expression during adipocyte differentiation. Cell culture models (e.g. 3T3-L1 cells) have been developed for studying the process of adipocyte differentiation. Differentiation can be induced by adding insulin-like growth factor I, glucocorticoid, fatty acids, and an agent that increases intr...