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Role of SGK in hormonal regulation of epithelial sodium channel in A6 cells
Authors:Alvarez de la Rosa Diego  Canessa Cecilia M
Institution:Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, Connecticut 06520-8026, USA.
Abstract:The purpose of this study was to examinethe role of the serum- and glucocorticoid-induced kinase (SGK) in theactivation of the epithelial sodium channel (ENaC) by aldosterone,arginine vasopressin (AVP), and insulin. We used atetracycline-inducible system to control the expression of wild-type(SGK<UP><SUB>wt</SUB><SUP><IT>T</IT></SUP></UP>), constitutively active (S425Dmutation; SGK<UP><SUB>S425D</SUB><SUP><IT>T</IT></SUP></UP>), or inactive (K130Mmutation; SGK<UP><SUB>K130M</SUB><SUP><IT>T</IT></SUP></UP>) SGK in A6 cellsindependently of hormonal stimulation. The effect of SGK expression onENaC activity was monitored by measuring transepithelialamiloride-sensitive short-circuit current (Isc) of transfected A6 cell lines. Expression ofSGK<UP><SUB>wt</SUB><SUP><IT>T</IT></SUP></UP> orSGK<UP><SUB>S425D</SUB><SUP><IT>T</IT></SUP></UP> and aldosterone stimulation haveadditive effects on Isc. Although SGK could playsome role in the aldosterone response, our results suggest that othermechanisms take place. SGK<UP><SUB>S425D</SUB><SUP><IT>T</IT></SUP></UP> abrogatesthe responses to AVP and insulin; hence, in the signaling pathways ofthese hormones there is a shared step that is stimulated by SGK.Because AVP and insulin induce fusion of vesicles to the apicalmembrane, our results support the notion that SGK promotes incorporation of channels in the apical membrane.

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