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Enhanced expression of epithelial sodium channels causes salt-induced hypertension in mice through inhibition of the α2-isoform of Na+ K+-ATPase

机译:上皮钠通道表达的增强通过抑制Na +K + -ATPase的α2-亚型而在小鼠中引起盐诱导的高血压

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摘要

Knockout of the Nedd4-2 gene in mice results in overexpression of epithelial sodium channels (ENaC) on the plasma membrane in the kidney, choroid plexus and brain nuclei. These mice exhibit enhanced pressor responses to CSF [Na+] as well as dietary salt-induced hypertension which both can be blocked by central infusion of the ENaC blocker benzamil. Functional studies suggest that ENaC activation in the CNS results in release of endogenous ouabain (EO) and inhibition of the α2-isoform of Na+, K+-ATPase. To test this concept more specifically, we studied Nedd4-2−/− mice expressing the ouabain-resistant -isoform of Na+, K+-ATPase. Intracerebroventricular (icv) infusion of Na+-rich aCSF (225 mmol/L Na+ at 0.4 μL/min) increased MAP by 10–15 mmHg in wild-type mice and by 25–30 mmHg in Nedd4-2−/− mice, but by only ~5 mmHg in and in /Nedd4-2−/− mice. Icv infusion of EO-binding Fab fragments also blocked the BP response in Nedd4-2−/− mice. In Nedd4-2−/− mice, 8% high-salt diet increased MAP by 25–30 mmHg, but in /Nedd4-2−/− mice, it increased by only 5–10 mmHg. In contrast, Nedd4-2−/− or did not affect the hypertension caused by sc infusion of Ang II. These findings substantiate the concept that enhanced ENaC activity causes salt-induced pressor responses mainly through EO inhibiting the α2-isoform of Na+, K+-ATPase in the brain.
机译:小鼠Nedd4-2基因的敲除导致肾脏,脉络丛和脑核质膜上皮钠通道(ENaC)的过度表达。这些小鼠表现出对脑脊液[Na + ]的升压反应增强,以及饮食中食盐诱导的高血压,这两者都可以通过集中输注ENaC阻断剂苯扎米尔来阻断。功能研究表明,CNs中的ENaC活化导致内源性哇巴因(EO)释放,并抑制Na + ,K + -ATPase的α2-同工型。为了更具体地测试这个概念,我们研究了表达Na + ,K + 的哇巴因抗同工型的Nedd4-2 -/-小鼠-ATP酶。富含Na + 的aCSF(0.4μL/ min时脑室内(icv)输注富含Na + 的aCSF(225mmol / L Na + )在野生型小鼠中使MAP增加10-15mmHg和在Nedd4-2 -/-小鼠中降低25-30 mmHg,但在/ Nedd4-2 -/-小鼠中和之中仅降低〜5 mmHg。 Ivv输注结合EO的Fab片段也阻断了Nedd4-2 -/-小鼠的BP反应。在Nedd4-2 -/-小鼠中,8%的高盐饮食可使MAP增加25–30 mmHg,但在/ Nedd4-2 -/-小鼠中,MAP增加仅5-10 mmHg。相反,Nedd4-2 -/-或不影响由血管紧张素II的sc注入引起的高血压。这些发现证实了增强的ENaC活性主要通过EO抑制脑中Na + ,K + -ATPase的α2-同工型而引起盐诱导的升压反应的概念。

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