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AS160 Modulates Aldosterone-stimulated Epithelial Sodium Channel Forward Trafficking

机译:AS160调节醛固酮刺激的上皮钠通道正向交易

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摘要

Aldosterone-induced increases in apical membrane epithelial sodium channel (ENaC) density and Na transport involve the induction of 14-3-3 protein expression and their association with Nedd4-2, a substrate of serum- and glucocorticoid-induced kinase (SGK1)-mediated phosphorylation. A search for other 14-3-3 binding proteins in aldosterone-treated cortical collecting duct (CCD) cells identified the Rab-GAP, AS160, an Akt/PKB substrate whose phosphorylation contributes to the recruitment of GLUT4 transporters to adipocyte plasma membranes in response to insulin. In CCD epithelia, aldosterone (10 nM, 24 h) increased AS160 protein expression threefold, with a time-course similar to increases in SGK1 expression. In the absence of aldosterone, AS160 overexpression increased total ENaC expression 2.5-fold but did not increase apical membrane ENaC or amiloride-sensitive Na current (Isc). In AS160 overexpressing epithelia, however, aldosterone increased apical ENaC and Isc 2.5-fold relative to aldosterone alone, thus recruiting the accumulated ENaC to the apical membrane. Conversely, AS160 knockdown increased apical membrane ENaC and Isc under basal conditions to ∼80% of aldosterone-stimulated values, attenuating further steroid effects. Aldosterone induced AS160 phosphorylation at five sites, predominantly at the SGK1 sites T568 and S751, and evoked AS160 binding to the steroid-induced 14-3-3 isoforms, β and ε. AS160 mutations at SGK1 phospho-sites blocked its selective interaction with 14-3-3β and ε and suppressed the ability of expressed AS160 to augment aldosterone action. These findings indicate that the Rab protein regulator, AS160, stabilizes ENaC in a regulated intracellular compartment under basal conditions, and that aldosterone/SGK1-dependent AS160 phosphorylation permits ENaC forward trafficking to the apical membrane to augment Na absorption.
机译:醛固酮诱导的顶膜上皮钠通道(ENaC)密度和Na转运增加涉及14-3-3蛋白表达的诱导及其与Nedd4-2的结合,Nedd4-2是血清和糖皮质激素诱导的激酶(SGK1)-的底物介导的磷酸化。在醛固酮处理的皮质集合管(CCD)细胞中寻找其他14-3-3结合蛋白后,发现Rab-GAP AS160是Akt / PKB底物,其磷酸化有助于将GLUT4转运蛋白募集到脂肪细胞质膜中胰岛素。在CCD上皮细胞中,醛固酮(10 nM,24 h)使AS160蛋白表达增加了三倍,其时程与SGK1表达增加相似。在没有醛固酮的情况下,AS160过表达使总ENaC表达增加2.5倍,但没有增加根尖膜ENaC或阿米洛利敏感的Na电流(Isc)。然而,在AS160过表达的上皮细胞中,醛固酮相对于单独的醛固酮而言,其根尖ENaC和Isc升高2.5倍,从而将积累的ENaC募集到根尖膜上。相反,在基础条件下,AS160的敲低将心尖膜ENaC和Isc升高至醛固酮刺激值的约80%,从而进一步减弱了类固醇的作用。醛固酮在五个位点(主要在SGK1位点T568和S751处)诱导AS160磷酸化,并引起AS160与类固醇诱导的14-3-3亚型β和ε结合。 SGK1磷酸位点的AS160突变阻止了其与14-3-3β和ε的选择性相互作用,并抑制了表达的AS160增强醛固酮作用的能力。这些发现表明,Rab蛋白调节剂AS160在基础条件下稳定了受调节细胞内区隔中的ENaC,而醛固酮/ SGK1依赖性AS160磷酸化允许ENaC正向转运至顶膜以增加Na吸收。

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