Féraille E, Carranza M L, Gonin S, Béguin P, Pedemonte C, Rousselot M, Caverzasio J, Geering K, Martin P Y, Favre H
Division de Néphrologie, Fondation pour Recherches Médicales, 1211 Genève 4, Switzerland.
Mol Biol Cell. 1999 Sep;10(9):2847-59. doi: 10.1091/mbc.10.9.2847.
Phosphorylation of the alpha-subunit of Na+,K(+)-ATPase plays an important role in the regulation of this pump. Recent studies suggest that insulin, known to increase solute and fluid reabsorption in mammalian proximal convoluted tubule (PCT), is stimulating Na+,K(+)-ATPase activity through the tyrosine phosphorylation process. This study was therefore undertaken to evaluate the role of tyrosine phosphorylation of the Na+,K(+)-ATPase alpha-subunit in the action of insulin. In rat PCT, insulin and orthovanadate (a tyrosine phosphatase inhibitor) increased tyrosine phosphorylation level of the alpha-subunit more than twofold. Their effects were not additive, suggesting a common mechanism of action. Insulin-induced tyrosine phosphorylation was prevented by genistein, a tyrosine kinase inhibitor. The site of tyrosine phosphorylation was identified on Tyr-10 by controlled trypsinolysis in rat PCTs and by site-directed mutagenesis in opossum kidney cells transfected with rat alpha-subunit. The functional relevance of Tyr-10 phosphorylation was assessed by 1) the abolition of insulin-induced stimulation of the ouabain-sensitive (86)Rb uptake in opossum kidney cells expressing mutant rat alpha1-subunits wherein tyrosine was replaced by alanine or glutamine; and 2) the similarity of the time course and dose dependency of the insulin-induced increase in ouabain-sensitive (86)Rb uptake and tyrosine phosphorylation. These findings indicate that phosphorylation of the Na+,K(+)-ATPase alpha-subunit at Tyr-10 likely participates in the physiological control of sodium reabsorption in PCT.
Na +,K(+)-ATP酶α亚基的磷酸化在该泵的调节中起重要作用。最近的研究表明,已知胰岛素可增加哺乳动物近端曲管(PCT)中的溶质和液体重吸收,它通过酪氨酸磷酸化过程刺激Na +,K(+)-ATP酶活性。因此,本研究旨在评估Na +,K(+)-ATP酶α亚基酪氨酸磷酸化在胰岛素作用中的作用。在大鼠PCT中,胰岛素和原钒酸盐(一种酪氨酸磷酸酶抑制剂)使α亚基的酪氨酸磷酸化水平增加了两倍多。它们的作用不是相加的,表明存在共同的作用机制。胰岛素诱导的酪氨酸磷酸化被酪氨酸激酶抑制剂染料木黄酮所抑制。通过在大鼠PCT中进行可控胰蛋白酶消化以及在转染了大鼠α亚基的负鼠肾细胞中进行定点诱变,确定了酪氨酸磷酸化的位点在Tyr-10。通过以下方式评估Tyr-10磷酸化的功能相关性:1)在表达突变大鼠α1亚基(其中酪氨酸被丙氨酸或谷氨酰胺取代)的负鼠肾细胞中,消除胰岛素诱导的哇巴因敏感性(86)Rb摄取刺激;2)胰岛素诱导的哇巴因敏感性(86)Rb摄取增加与酪氨酸磷酸化的时间进程和剂量依赖性相似。这些发现表明,Na +,K(+)-ATP酶α亚基在Tyr-10处的磷酸化可能参与了PCT中钠重吸收的生理控制。