Renal-Electrolyte Division, Department of Medicine, University of Pittsburgh, Pittsburgh, Pennsylvania 15261, USA.
J Biol Chem. 2010 Aug 20;285(34):26088-96. doi: 10.1074/jbc.M110.149963. Epub 2010 Jun 29.
The activity of the epithelial Na(+) channel (ENaC) is modulated by Na(+) self-inhibition, a down-regulation of the open probability of ENaC by extracellular Na(+). A His residue within the extracellular domain of gammaENaC (gammaHis(239)) was found to have a critical role in Na(+) self-inhibition. We investigated the functional roles of residues in the vicinity of this His by mutagenesis and analyses of Na(+) self-inhibition responses in Xenopus oocytes. Significant changes in the speed and magnitude of Na(+) self-inhibition were observed in 16 of the 47 mutants analyzed. These 16 mutants were distributed within a 22-residue tract. We further characterized this scanned region by examining the accessibility of introduced Cys residues to the sulfhydryl reagent MTSET. External MTSET irreversibly increased or decreased currents in 13 of 47 mutants. The distribution patterns of the residues where substitutions significantly altered Na(+) self-inhibition or/and conferred sensitivity to MTSET were consistent with the existence of two helices within this region. In addition, single channel recordings of the gammaH239F mutant showed that, in the absence of Na(+) self-inhibition and with an increased open probability, ENaCs still undergo transitions between open and closed states. We conclude that gammaHis(239) functions within an extracellular allosteric regulatory subdomain of the gamma subunit that has an important role in conferring the response of the channel to external Na(+).
上皮钠通道(ENaC)的活性受钠离子自抑制调节,即细胞外钠离子下调 ENaC 的开放概率。γENaC 胞外域中的一个组氨酸残基(γHis(239))被发现对钠离子自抑制具有关键作用。我们通过突变和分析 Xenopus 卵母细胞中的钠离子自抑制反应,研究了该组氨酸附近残基的功能作用。在分析的 47 个突变体中有 16 个观察到钠离子自抑制的速度和幅度发生了显著变化。这些 16 个突变体分布在一个 22 个残基的片段内。我们进一步通过检查引入的 Cys 残基对巯基试剂 MTSET 的可及性来研究该扫描区域。外部 MTSET 不可逆地增加或减少了 47 个突变体中的 13 个突变体的电流。改变钠离子自抑制或/和赋予 MTSET 敏感性的残基的分布模式与该区域内存在两个螺旋一致。此外,γH239F 突变体的单通道记录表明,在没有钠离子自抑制和开放概率增加的情况下,ENaC 仍然经历开放和关闭状态之间的转变。我们得出结论,γHis(239)在γ亚基的细胞外变构调节亚域内发挥作用,该亚域对通道对外部钠离子的反应具有重要作用。