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Am J Physiol Endocrinol Metab 284: E514-E520, 2003. First published November 19, 2002; doi:10.1152/ajpendo.00503.2001
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Vol. 284, Issue 3, E514-E520, March 2003

Insulin modulates PC-1 processing and recruitment in cultured human cells

C. Menzaghi1,2, R. Di Paola2, G. Baj1,4, A. Funaro1,3, A. Arnulfo1,4, T. Ercolino2, N. Surico4, F. Malavasi1,3, and V. Trischitta2,5

1 Laboratory of Immunogenetics, Department of Genetics, Biology and Biochemistry, University of Torino Medical School, and 3 Experimental Medicine Center, 10126 Torino; 2 Unit of Endocrinology, Scientific Institute "Casa Sollievo della Sofferenza," San Giovanni Rotondo, 71013 Foggia; 4 Division of Obstetrics and Gynecology, Department of Medical Science, University A. Avogadro of Eastern Piedmont, 28100 Novara; and 5 Department of Clinical Science, University of Rome "La Sapienza," 00161 Rome, Italy

We evaluated whether insulin signaling modulates plasma cell glycoprotein (PC-1) plasma membrane recruitment, posttranslational processing, and gene expression in human cultured cell lines. Insulin induced a fourfold increase (P < 0.01) of membrane PC-1 expression by rapid and sensitive mechanism(s). This effect was reduced (P < 0.05-0.01) by inhibition of phosphatidylinositol 3-kinase (200 nmol/l wortmannin) and S6 kinase (50 nmol/l rapamycin) activities and intracellular trafficking (50 µmol/l monensin) and was not accompanied by PC-1 gene expression changes. Moreover, at Western blot, insulin elicited the appearance, in both plasma membrane and cytosol, of a PC-1-related 146-kDa band (in addition to bands of 163, 117, 106, and 97 kDa observed also in absence of insulin) that was sensitive to endoglycosidase H. Finally, inhibition of PC-1 translocation to plasma membrane, by wortmannin pretreatment, increases insulin-stimulated receptor autophosphorylation. Our data indicate that insulin stimulates PC-1 posttranslational processing and translocation to the plasma membrane, which in turn impairs insulin receptor signaling. Bidirectional cross talk between insulin and PC-1, therefore, takes place, which may be part of the hormone self-desensitization mechanism.

insulin receptor; insulin resistance; growth factor and ectoenzyme; insulin desensitization; plasma cell glycoprotein-1





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