首页> 美国卫生研究院文献>Molecular Endocrinology >Aldosterone Regulates Rapid Trafficking of Epithelial Sodium Channel Subunits in Renal Cortical Collecting Duct Cells via Protein Kinase D Activation
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Aldosterone Regulates Rapid Trafficking of Epithelial Sodium Channel Subunits in Renal Cortical Collecting Duct Cells via Protein Kinase D Activation

机译:醛固酮通过蛋白激酶D激活调节肾皮质收集导管细胞中上皮钠通道亚基的快速运输。

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摘要

Aldosterone elicits rapid physiological responses in target tissues such as the distal nephron through the stimulation of cell signaling cascades. We identified protein kinase D (PKD1) as an early signaling response to aldosterone treatment in the M1-cortical collecting duct (M1-CCD) cell line. PKD1 activation was blocked by the PKC inhibitor chelerythrine chloride and by rottlerin, a specific inhibitor of PKCδ. The activation of PKCδ and PKCε coincided with PKD1 activation and while a complex was formed between PKD1 and PKCε after aldosterone treatment, there was a concurrent reduction in PKD1 association with PKCδ. A stable PKD1 knockdown M1-CCD-derrived clone was developed in which PKD1 expression was 90% suppressed by gene silencing with a PKD1-specific siRNA. The effect of aldosterone treatment on the subcellular distribution of enhanced cyan fluorescent protein (eCFP)-tagged epithelial sodium channel (ENaC) subunits in wild type (WT) and PKD1 suppressed cells was examined using confocal microscopy. In an untreated confluent monolayer of M1-CCD cells, α, β, and γ ENaC subunits were evenly distributed throughout the cytoplasm of WT and PKD1-suppressed cells. After 2 min treatment, aldosterone stimulated the localization of each of the ENaC subunits to discrete regions within the cytoplasm of WT cells. The translocation of eCFP-ENaC subunits in WT cells was inhibited by rottlerin and the mineralocorticoid receptor (MR) antagonist spironolactone. No subcellular translocation of eCFP-ENaC subunits was observed in PKD1-suppressed cells treated with aldosterone. These data demonstrate the involvement of a novel MR/PKCδ /PKD1 signaling cascade in the earliest ENaC subunit intracellular trafficking events that follow aldosterone treatment.
机译:醛固酮通过刺激细胞信号级联反应在靶组织如远端肾单位中引起快速的生理反应。我们确定蛋白激酶D(PKD1)为对M1-皮质收集管(M1-CCD)细胞系中醛固酮治疗的早期信号反应。 PKD抑制剂氯白屈菜红碱氯化物和特异的PKCδ抑制剂rottlerin阻断PKD1的激活。 PKCδ和PKCε的激活与PKD1激活相吻合,虽然醛固酮治疗后PKD1和PKCε之间形成复合物,但PKD1与PKCδ的结合同时减少。开发了稳定的PKD1敲低的M1-CCD衍生克隆,其中PKD1特异性siRNA的基因沉默抑制了PKD1的表达90%。使用共聚焦显微镜检查了醛固酮处理对野生型(WT)和PKD1抑制细胞中增强的蓝绿色荧光蛋白(eCFP)标记的上皮钠通道(ENaC)亚基亚细胞分布的影响。在未经处理的M1-CCD细胞汇合单层中,α,β和γENaC亚基均匀地分布在受WT和PKD1抑制的细胞的细胞质中。处理2分钟后,醛固酮刺激每个ENaC亚基定位于WT细胞胞质内的离散区域。 rottlerin和盐皮质激素受体(MR)拮抗剂螺内酯抑制WT细胞中eCFP-ENaC亚基的移位。在用醛固酮处理的PKD1抑制的细胞中未观察到eCFP-ENaC亚基的亚细胞移位。这些数据表明在醛固酮治疗后的最早的ENaC亚基细胞内运输事件中涉及新型MR /PKCδ/ PKD1信号级联反应。

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