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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Conservation of pH sensitivity in the epithelial sodium channel (ENaC) with Liddle's syndrome mutation.
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Conservation of pH sensitivity in the epithelial sodium channel (ENaC) with Liddle's syndrome mutation.

机译:保留具有Liddle综合征突变的上皮钠通道(ENaC)中的pH敏感性。

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Gain-of-function mutations of the epithelial Na+ channel (ENaC) cause a rare form of hereditary hypertension, Liddle's syndrome. How these mutations lead to increased channel activity is not yet fully understood. Since wild-type ENaC (wt-ENaC) is highly pH-sensitive, we wondered whether an altered pH-sensitivity of ENaC might contribute to the hyperactivity of ENaC with Liddle's syndrome mutation (Liddle-ENaC). Using Xenopus laevis oocytes as an expression system, we compared the pH-sensitivity of wt-ENaC (alphabetagammarENaC) and Liddle-ENaC (alphabeta(R564stop)gammarENaC). Oocytes were assayed for an amiloride-sensitive (2 microM) inward current (deltaIami) at -60 mV holding potential and cytosolic pH was altered by changing the extracellular pH in the presence of 60 mM sodium acetate. Alternatively, cytosolic acidification was achieved by proton loading the cells using a proton-coupled oligopeptide transporter (PepT-1) co-expressed in the oocytes together with ENaC. Cytosolic but not extracellular acidification substantially reduced deltaIami while cytosolic alkalinisation had a stimulatory effect. This pH-sensitivity was largely preserved in oocytes expressing Liddle-ENaC. The inhibition of wt-ENaC and Liddle-ENaC by cytosolic acidification was independent of so-called sodium-feedback inhibition, since it was not associated with a concomitant increase in intracellular Na+ concentration estimated from the reversal potential of deltaIami. In addition C-terminal deletions in the alpha or gamma subunits or in all three subunits of ENaC did not abolish the inhibitory effect of cytosolic acidification. We conclude that ENaC's pH-sensitivity is not mediated by its cytoplasmic C-termini and that an altered pH-sensitivity of ENaC does not contribute to the pathophysiology of Liddle's syndrome.
机译:上皮Na +通道(ENaC)的功能获得性突变导致遗传性高血压的一种罕见形式,即Liddle综合征。这些突变如何导致增加的通道活性尚未完全了解。由于野生型ENaC(wt-ENaC)对pH高度敏感,我们想知道ENaC的pH敏感性改变是否会导致带有Liddle综合征突变(Liddle-ENaC)的ENaC过度活跃。使用非洲爪蟾卵母细胞作为表达系统,我们比较了wt-ENaC(alphabetagammarENaC)和Liddle-ENaC(alphabeta(R564stop)gammarENaC)的pH敏感性。在-60 mV保持电位下测定卵母细胞的阿米洛利敏感性(2 microM)内向电流(δIami),并通过在60 mM乙酸钠存在下改变细胞外pH来改变胞浆pH。或者,通过使用与ENaC一起在卵母细胞中共表达的质子偶联寡肽转运蛋白(PepT-1),通过质子加载细胞来实现细胞质酸化。胞质而不是胞外酸化基本上减少了δIami,而胞质碱化具有刺激作用。这种pH敏感性在表达Liddle-ENaC的卵母细胞中得到了很大的保留。胞质酸化对wt-ENaC和Liddle-ENaC的抑制作用与所谓的钠反馈抑制作用无关,因为它与伴随deltaIami逆转电位估计的细胞内Na +浓度的增加无关。另外,ENaC的α或γ亚基或所有三个亚基中的C末端缺失没有消除胞质酸化的抑制作用。我们得出的结论是,ENaC的pH敏感性不是由其胞质C末端介导的,并且ENaC的pH敏感性改变不会有助于Liddle综合征的病理生理。

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