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Na/K-ATPase Tethers Phospholipase C and IP3 Receptor into a Calcium-regulatory Complex

机译:Na / K-ATPase束缚磷脂酶C和IP3受体进入钙调节复合物

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We have shown that the caveolar Na/K-ATPase transmits ouabain signals via multiple signalplexes. To obtain the information on the composition of such complexes, we separated the Na/K-ATPase from the outer medulla of rat kidney into two different fractions by detergent treatment and density gradient centrifugation. Analysis of the light fraction indicated that both PLC-γ1 and IP3 receptors (isoforms 2 and 3, IP3R2 and IP3R3) were coenriched with the Na/K-ATPase, caveolin-1 and Src. GST pulldown assays revealed that the central loop of the Na/K-ATPase α1 subunit interacts with PLC-γ1, whereas the N-terminus binds IP3R2 and IP3R3, suggesting that the signaling Na/K-ATPase may tether PLC-γ1 and IP3 receptors together to form a Ca2+-regulatory complex. This notion is supported by the following findings. First, both PLC-γ1 and IP3R2 coimmunoprecipitated with the Na/K-ATPase and ouabain increased this interaction in a dose- and time-dependent manner in LLC-PK1 cells. Depletion of cholesterol abolished the effects of ouabain on this interaction. Second, ouabain induced phosphorylation of PLC-γ1 at Tyr783 and activated PLC-γ1 in a Src-dependent manner, resulting in increased hydrolysis of PIP2. It also stimulated Src-dependent tyrosine phosphorylation of the IP3R2. Finally, ouabain induced Ca2+ release from the intracellular stores via the activation of IP3 receptors in LLC-PK1 cells. This effect required the ouabain-induced activation of PLC-γ1. Inhibition of Src or depletion of cholesterol also abolished the effect of ouabain on intracellular Ca2+.
机译:我们已经表明,小窝的Na / K-ATPase通过多个信号复合体传输哇巴因信号。为了获得有关此类复合物组成的信息,我们通过去污剂处理和密度梯度离心将大鼠肾脏外部髓质中的Na / K-ATPase分为两个不同的部分。轻馏分分析表明,PLC-γ1和IP3受体(异构体2和3,IP3R2和IP3R3)均与Na / K-ATPase,caveolin-1和Src共同富集。 GST下拉分析显示Na / K-ATPaseα1亚基的中央环与PLC-γ1相互作用,而N末端结合IP3R2和IP3R3,这表明信号Na / K-ATPase可能束缚PLC-γ1和IP3受体一起形成Ca 2 + 调控复合物。以下发现支持了此概念。首先,与Na / K-ATPase和哇巴因共免疫沉淀的PLC-γ1和IP3R2在LLC-PK1细胞中以剂量和时间依赖性方式增加了这种相互作用。胆固醇的消耗消除了哇巴因对该相互作用的影响。其次,哇巴因在Tyr 783 诱导PLC-γ1磷酸化,并以Src依赖的方式激活PLC-γ1,导致PIP2水解增加。它还刺激了IP3R2的Src依赖性酪氨酸磷酸化。最后,哇巴因通过LLC-PK1细胞中IP3受体的激活,诱导Ca 2 + 从细胞内储存区释放。该作用需要哇巴因诱导的PLC-γ1的活化。 Src的抑制或胆固醇的消耗也消除了哇巴因对细胞内Ca 2 + 的作用。

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