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Palmitate Stimulates the Epithelial Sodium Channel by Elevating Intracellular Calcium, Reactive Oxygen Species, and Phosphoinositide 3-Kinase Activity

机译:通过升高细胞内钙,活性氧物质和磷酸阳性3-激酶活性,棕榈酸刺激上皮钠通道

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摘要

Previous studies indicate that the epithelial sodium channel (ENaC) in the kidney is upregulated in diabetes mellitus. Here, we show that ENaC single-channel activity in distal nephron cells was significantly increased by palmitate, a free fatty acid which is elevated in diabetes mellitus. We also show that palmitate increased intracellular Ca2+ and that after chelating intracellular Ca2+ with BAPTA-AM, palmitate failed to affect ENaC activity. Treatment of the cells with 2-aminoethoxydiphenyl borate (2-APB, an inhibitor of IP3 receptors) abolished the elevation of both intracellular Ca2+ and ENaC activity. Treatment of the cells with apocynin (an NADPH oxidase inhibitor), dithiothreitol/NaHS (reducing agents), or LY294002 (a phosphoinositide 3-kinase (PI3K) inhibitor) prevented palmitate-induced ENaC activity, whereas thimerosal (an oxidizing agent) mimicked the effects of palmitate on ENaC activity. However, these treatments did not alter the levels of intracellular Ca2+, indicating that elevation of reactive oxygen species (ROS) and activation of PI3K are downstream of the signaling cascade. Since we have shown that ROS stimulate ENaC by activating PI3K, these data together suggest that palmitate first elevates intracellular Ca2+, then activates an NADPH oxidase to elevate intracellular ROS and PI3K activity, and finally increases ENaC activity via the activated PI3K.
机译:以前的研究表明,在肾中的上皮钠通道(ENaC的)在糖尿病中被上调。在这里,我们表明,在远端肾细胞的ENaC单通道活性显著提高棕榈酸酯,其在糖尿病升高游离脂肪酸。我们还表明,棕榈增加细胞内Ca2 +和螯合细胞内Ca2 +与BAPTA-AM之后,棕榈未能影响ENaC的活动。用2-氨基乙氧基二硼酸盐(2-APB,IP3受体的抑制剂)处理细胞废除两个细胞内Ca2 +的ENaC活性的升高。与夹竹桃麻素处理细胞(的NADPH氧化酶抑制剂),二硫苏糖醇/硫氢化钠(还原剂),或LY294002(磷酸肌醇3-激酶(PI3K)抑制剂)防止棕榈酸诱导的ENaC活性,而硫柳汞(氧化剂)模仿对ENaC的活性棕榈的效果。然而,这些治疗没有改变细胞内Ca 2+的水平,表明反应性氧物质的该仰角(ROS)和激活PI3K的是信号级联的下游。由于我们已经表明,ROS刺激的ENaC通过激活PI3K,这些数据一起表明,棕榈酸第一升高细胞内Ca2 +,然后激活的NADPH氧化酶以提高细胞内ROS和PI3K活性,最后被激活的PI3K增加的ENaC活性。

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