The serine/threonine kinases SGK2 and SGK3 are potent stimulators of the epithelial Na+ channel α,β,γ-ENaC

被引:0
作者
B. Friedrich
Y. Feng
P. Cohen
T. Risler
A. Vandewalle
S. Bröer
J. Wang
D. Pearce
F. Lang
机构
[1] Physiologisches Institut der Universität Tübingen,MRC Protein Phosphorylation Unit, School of Life Sciences
[2] University of Dundee,Department of Internal Medicine III
[3] University of Tübingen,Div. of Biochemistry and Molecular Biology
[4] INSERM U478 Faculty of Medicine,Department of Medicine
[5] Xavier Bichat,undefined
[6] Australian National University,undefined
[7] University of California,undefined
来源
Pflügers Archiv | 2003年 / 445卷
关键词
Sodium channel; Sodium reabsorption; ENaC; Protein kinases; Kidney;
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摘要
The serum- and glucocorticoid-inducible kinase 1 (SGK1) has been identified as a signalling molecule up-regulated by aldosterone, which stimulates the renal epithelial Na+ channel ENaC. It is therefore thought to participate in the antinatriuretic action of this hormone. More recently, two isoforms, SGK2 and SGK3, have been cloned. The present study was performed to establish whether SGK2 and SGK3 influence ENaC activity similarly to SGK1. Dual-electrode voltage-clamp experiments in Xenopus laevis oocytes expressing α,ß,γ-ENaC with or without SGK1, SGK2 or SGK3 revealed a stimulatory effect of all three kinases on the amiloride-sensitive current (INa). To establish whether the SGK isoforms exert their effects through direct phosphorylation, we replaced the serine at the SGK consensus site of αENaC (αS622AENaC) by site-directed mutagenesis. αS622A,β,γ-ENaC was up-regulated similar to wild-type ENaC, suggesting that SGK isoforms do not act via direct phosphorylation of the transport proteins. In conclusion, SGK2 and SGK3 mimic the function of SGK1 and are likely to participate in the regulation of ENaC activity.
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页码:693 / 696
页数:3
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