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首页> 外文期刊>The FASEB Journal >Feedforward activation of endothelial ENaC by high sodium
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Feedforward activation of endothelial ENaC by high sodium

机译:高钠前馈激活内皮ENaC

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Kidney epithelial sodium channels (ENaCs) are known to be inactivated by high sodium concentrations (feedback inhibition). Recently, the endothelial sodium channel (EnNaC) was identified to control the nanomechanical properties of the endothelium. EnNaC-dependent endothelial stiffening reduces the release of nitric oxide, the hallmark of endothelial dysfunction. To study the regulatory impact of sodium on EnNaC, endothelial cells (EA.hy926 and ex vivo mouse endothelium) were incubated in aldosterone-free solutions containing either low (130 mM) or high (150 mM) sodium concentrations. By applying atomic force microsco-py- based nanoindentation, an unexpected positive correlation between increasing sodium concentrations and cortical endothelial stiffness was observed, which can be attributed to functional EnNaC. In particular, an acute rise in sodium concentration (+ 20 mM) was sufficient to increase EnNaC membrane abundance by 90 and stiffening of the endothelial cortex by 18. Despite the absence of exogenous aldosterone, these effects were prevented by the aldosterone synthase inhibitor FAD286 (100 nM) or the mineralocorticoid receptor (MR)-antagonist spironolactone (100 nM), indicating endogenous aldosterone synthesis and MR-dependent signaling. Interestingly, in the presence of high-sodium concentrations, FAD286 increased the transcription of the MR by 69. Taken together, a novel feedforward activation of EnNaC by sodium is proposed that contrasts ENaC feedback inhibition in kidney.
机译:已知肾上皮钠通道 (ENaC) 因高钠浓度而失活(反馈抑制)。最近,内皮钠通道 (EnNaC) 被鉴定为控制内皮细胞的纳米力学特性。EnNaC依赖性内皮硬化可减少一氧化氮的释放,一氧化氮是内皮功能障碍的标志。为了研究钠对EnNaC的调节影响,将内皮细胞(EA.hy926和离体小鼠内皮细胞)在含有低(130mM)或高(150mM)钠浓度的无醛固酮溶液中孵育。通过应用基于原子力的微观纳米压痕,观察到钠浓度增加与皮质内皮硬度之间意想不到的正相关关系,这可归因于功能性 EnNaC。特别是,钠浓度(+ 20 mM)的急剧升高足以使EnNaC膜丰度增加90%,内皮皮层硬化18%。尽管没有外源性醛固酮,但醛固酮合酶抑制剂 FAD286 (100 nM) 或盐皮质激素受体 (MR) 拮抗剂螺内酯 (100 nM) 可防止这些作用,表明内源性醛固酮合成和 MR 依赖性信号传导。有趣的是,在高钠浓度存在的情况下,FAD286 将 MR 的转录增加了 69%。综上所述,提出了一种新的钠对EnNaC的前馈激活,与肾脏中的ENaC反馈抑制形成对比。

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