Kellenberger Stephan, Gautschi Ivan, Schild Laurent
Institut de Pharmacologie et de Toxicologie, Bugnon 27, Université de Lausanne, CH-1005 Lausanne, Switzerland.
J Physiol. 2002 Sep 1;543(Pt 2):413-24. doi: 10.1113/jphysiol.2002.022020.
Members of the ENaC/degenerin family of ion channels include the epithelial sodium channel (ENaC), acid-sensing ion channels (ASICs) and the nematode Caenorhabditis elegans degenerins. These channels are activated by a variety of stimuli such as ligands (ASICs) and mechanical forces (degenerins), or otherwise are constitutively active (ENaC). Despite their functional heterogeneity, these channels might share common basic mechanisms for gating. Mutations of a conserved residue in the extracellular loop, namely the 'degenerin site' activate all members of the ENaC/degenerin family. Chemical modification of a cysteine introduced in the degenerin site of rat ENaC (betaS518C) by the sulfhydryl reagents MTSET or MTSEA, results in a approximately 3-fold increase in the open probability. This effect is due to an 8-fold shortening of channel closed times and an increase in the number of long openings. In contrast to the intracellular gating domain in the N-terminus which is critical for channel opening, the intact extracellular degenerin site is necessary for normal channel closing, as illustrated by our observation that modification of betaS518C destabilises the channel closed state. The modification by the sulfhydryl reagents is state- and size-dependent consistent with a conformational change of the degenerin site during channel opening and closing. We propose that the intracellular and extracellular modulatory sites act on a common channel gate and control the activity of ENaC at the cell surface.
ENaC/退化素家族离子通道成员包括上皮钠通道(ENaC)、酸敏感离子通道(ASICs)和线虫秀丽隐杆线虫退化素。这些通道可被多种刺激激活,如配体(ASICs)和机械力(退化素),或者在其他情况下组成性激活(ENaC)。尽管它们功能各异,但这些通道可能共享门控的共同基本机制。细胞外环中一个保守残基(即“退化素位点”)的突变会激活ENaC/退化素家族的所有成员。用巯基试剂MTSET或MTSEA对大鼠ENaC(βS518C)退化素位点引入的半胱氨酸进行化学修饰,会使开放概率增加约3倍。这种效应是由于通道关闭时间缩短了8倍以及长开放次数增加。与对通道开放至关重要的N端细胞内门控结构域不同,完整的细胞外退化素位点对于正常通道关闭是必需的,正如我们观察到βS518C的修饰会使通道关闭状态不稳定所表明的那样。巯基试剂的修饰是状态和大小依赖性的,这与通道开放和关闭过程中退化素位点的构象变化一致。我们提出细胞内和细胞外调节位点作用于共同的通道门,并控制细胞表面ENaC的活性。