Journal of Animal Science · 2008 · 23 citations · 45 references
AdipokinesInsulin SignalingGastrointestinal Peptide HormoneObesityMetabolic SyndromeAdipor2 MrnaAdiponectin ReceptorsAdipor MrnaAdipose Tissue MetabolismHealth SciencesAnimal PhysiologyMolecular PhysiologyGrowth HormoneBiochemistryAdipose TissueVascular BiologyEndocrinologyPharmacologySignal TransductionAnimal SciencePhysiologyDiabetesMetabolic RegulationMetabolismMedicineAdiponectin Receptor
Adiponectin is an adipocyte-derived hormone that can improve insulin sensitivity. Its functions in regulating glucose utilization and fatty acid metabolism in mammals are mediated by 2 subtypes of adiponectin receptors (AdipoR1 and AdipoR2). This study was conducted to determine the effect of fasting on the expression of adiponectin and its receptors. The expression of adiponectin was not affected in s.c. adipose tissue, but adiponectin expression increased in visceral adipose tissue after fasting. In contrast, expression of both AdipoR mRNA was increased in the liver and s.c. adipose tissue of 24-h-fasted pigs compared with fed pigs, but the mRNA in muscle and visceral adipose tissue was not affected by fasting. A third putative adiponectin receptor, T-cadherin, was cloned and the mRNA expression was determined. T-Cadherin has been recognized to act as a vascular adiponectin receptor in vascular endothelial and smooth muscle cells. Our data showed that the expression of T-cadherin was decreased in the muscle of fasted pigs, suggesting that the expression of T-cadherin can be regulated by feeding status. In summary, in young pigs, adiponectin mRNA was up-regulated by fasting in visceral, but not s.c., adipose tissue, whereas AdipoR1 and AdipoR2 mRNA were increased in s.c., but not visceral, adipose tissue. The adiponectin receptor, T-cadherin, was expressed in s.c. and visceral adipose tissue and in muscle, but only muscle mRNA expression was decreased by fasting.
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A Novel Serum Protein Similar to C1q, Produced Exclusively in Adipocytes
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Cloning of adiponectin receptors that mediate antidiabetic metabolic effects
Toshimasa Yamauchi, Junji Kamon, Yusuke Ito et al. · Nature · 2003 · 3.1K citations