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Am J Physiol Gastrointest Liver Physiol (June 5, 2008). doi:10.1152/ajpgi.00514.2007
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Submitted on November 8, 2007
Accepted on June 3, 2008

PTP1B DEFICIENCY INCREASES GLUCOSE UPTAKE IN NEONATAL HEPATOCYTES: INVOLVEMENT OF IRA/GLUT2 COMPLEXES

Agueda Gonzalez-Rodriguez1, Carmen Nevado2, Fernando Escriva3, Giorgio Sesti4, Cristina M Rondinone5, Manuel Benito2, and Angela M Valverde1*

1 Instituto de Investigaciones Biomedicas Alberto Sols, Consejo Superior de Investigaciones Cientificas, Madrid, Spain
2 Departamento de Bioquimica y Biologia Molecular II, Universidad Complutense de Madrid, Madrid, Madrid, Spain
3 Departamento de Bioquimica y Biologia Molecular II, Universidad Complutense de Madrid, Madrid, Spain
4 Department of Experimental and Clinical Medicine, University Magna Graecia of Catanzaro, Catanzaro, Italy
5 Metabolic Diseases Research, Abbott Laboratories, Abbott Park, Illinois, United States

* To whom correspondence should be addressed. E-mail: avalverde{at}iib.uam.es.

The contribution of the liver to glucose utilization is essential to maintain glucose homeostasis. Previous data from protein tyrosine phosphatase (PTP) 1B-deficient mice demonstrated that the liver is a major site for PTP1B action in the periphery. In this study, we have investigated the consequences of PTP1B deficiency in glucose uptake in hepatocytes from neonatal and adult mice. The lack of PTP1B increased basal glucose uptake in hepatocytes from neonatal (3-5 day old), but not adult (10-12 week old) mice. This occurs without changes in hexokinase (HK), glucokinase (GK) and glucose 6-phosphatase (G6Pase) enzymatic activities. By contrast, the glucose transporter GLUT2 was up-regulated at the protein level in neonatal hepatocytes and livers from PTP1B-deficient neonates. These results were accompanied by a significant increase in the net free intrahepatic glucose levels in the livers of PTP1B-/- neonates. The association between GLUT2 and insulin receptor (IR) A isoform was increased in PTP1B-/- neonatal hepatocytes as compared to the wild-type. Indeed, PTP1B deficiency in neonatal hepatocytes shifted the ratio of isoforms A and B of the IR by increasing the amount of IRA and decreasing IRB. Moreover, overexpression of IRA in PTP1B-/- neonatal hepatocytes increased the amount of IRA/GLUT2 complexes. Conversely, hepatocytes from adult mice only expressed IRB. Since IRA plays a direct role in the regulation of glucose uptake in neonatal hepatocytes through its specific association with GLUT2, we propose the increase in IRA/GLUT2 complexes due to PTP1B deficiency as the molecular mechanism of the increased glucose uptake in the neonatal stage.







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