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Role of the Wrist Domain in the Response of the Epithelial Sodium Channel to External Stimuli

机译:腕域在上皮钠通道对外部刺激的反应中的作用

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摘要

The epithelial Na+ channel (ENaC) is regulated by a variety of external factors that alter channel activity by inducing conformational changes within its large extracellular region that are transmitted to the gate. The wrist domain consists of small linkers connecting the extracellular region to the transmembrane domains, where the channel pore and gate reside. We employed site-directed mutagenesis combined with two-electrode voltage clamp to investigate the role of the wrist domain in channel gating in response to extracellular factors. Channel inhibition by external Na+ was reduced by selected mutations within the wrist domain of the α subunit, likely reflecting an increase in channel open probability. The most robust changes were observed when Cys was introduced at αPro-138 and αSer-568, sites immediately adjacent to the palm domain. In addition, one of these Cys mutants exhibited an enhanced response to shear stress. In the context of channels that have a low open probability due to retention of an inhibitory tract, the response to external Na+ was reduced by Cys substitutions at both αPro-138 and αSer-568. We observed a significant correlation between changes in channel inhibition by external Na+ and the relative response to shear stress for the α subunit mutants that were examined. Mutants that exhibited reduced inhibition by external Na+ also showed an enhanced response to shear stress. Together, our data suggest that the wrist domain has a role in modulating the channel's response to external stimuli.
机译:上皮Na + 通道(ENaC)受多种外部因素调节,这些外部因素通过诱导其大的细胞外区域内构象变化(该构象变化被传递至门)来改变通道活性。腕域由将细胞外区域连接至通道孔和通道所在的跨膜域的小接头组成。我们采用定点诱变结合两电极电压钳来研究腕域在响应细胞外因子的通道门控中的作用。外部Na + 对通道的抑制作用被α亚基腕域内的选定突变所减少,这可能反映了通道开放概率的增加。当将Cys引入与棕榈结构域紧邻的αPro-138和αSer-568位置时,观察到最强烈的变化。另外,这些Cys突变体之一表现出对剪切应力的增强的响应。在通道由于阻滞剂保留而开放概率较低的情况下,αPro-138和αSer-568上的Cys取代均降低了对外部Na + 的响应。我们观察到外部Na + 对通道抑制的变化与所检测的α亚基突变体对切应力的相对响应之间存在显着相关性。表现出减少的外部Na + 抑制作用的突变体也表现出对剪切应力的增强响应。总之,我们的数据表明手腕区域在调节通道对外部刺激的反应中具有作用。

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