Ismailov I I, Berdiev B K, Shlyonsky V G, Benos D J
Department of Physiology and Biophysics, University of Alabama at Birmingham 35294, USA.
Biophys J. 1997 Mar;72(3):1182-92. doi: 10.1016/S0006-3495(97)78766-6.
A family of novel epithelial Na+ channels (ENaCs) have recently been cloned from several different tissues. Three homologous subunits (alpha, beta, gamma-ENaCs) from the core conductive unit of Na(+)-selective, amiloride-sensitive channels that are found in epithelia. We here report the results of a study assessing the regulation of alpha,beta,gamma-rENaC by Ca2+ in planar lipid bilayers. Buffering of the bilayer bathing solutions to [Ca2+] < 1 nM increased single-channel open probability by fivefold. Further investigation of this phenomenon revealed that Ca2+ ions produced a voltage-dependent block, affecting open probability but not the unitary conductance of ENaC. Imposing a hydrostatic pressure gradient across bilayers containing alpha,beta,gamma-rENaC markedly reduced the sensitivity of these channels to inhibition by [Ca2+]. Conversely, in the nominal absence of Ca2+, the channels lost their sensitivity to mechanical stimulation. These results suggest that the previously observed mechanical activation of ENaCs reflects a release of the channels from block by Ca2+.
最近,在几种不同组织中克隆出了一个新的上皮钠通道(ENaC)家族。上皮组织中存在对钠具有选择性、对氨氯地平敏感的通道,其核心传导单位由三个同源亚基(α、β、γ-ENaC)组成。我们在此报告一项研究结果,该研究评估了平面脂质双分子层中Ca2+对α、β、γ-rENaC的调节作用。将双分子层浴液中的Ca2+缓冲至[Ca2+]<1 nM可使单通道开放概率增加五倍。对这一现象的进一步研究表明,Ca2+离子产生电压依赖性阻断,影响开放概率,但不影响ENaC的单位电导。在含有α、β、γ-rENaC的双分子层上施加静水压力梯度,可显著降低这些通道对[Ca2+]抑制的敏感性。相反,在名义上不存在Ca2+的情况下,通道失去了对机械刺激的敏感性。这些结果表明,先前观察到的ENaC的机械激活反映了通道从Ca2+阻断中释放出来。