Wang W H, McNicholas C M, Segal A S, Giebisch G
Department of Pharmacology, New York Medical College, Valhalla 10595.
Am J Physiol. 1994 May;266(5 Pt 2):F813-22. doi: 10.1152/ajprenal.1994.266.5.F813.
We have developed a novel approach to study K channels in the lateral membrane of principal cells (PC) in rat cortical collecting ducts (CCD). The technique consists of 1) exposing the CCD apical membrane, 2) removing the intercalated cells adjoining a PC by gentle suction through a pipette, and 3) applying patch-clamp technique to the lateral membrane of PC. Functional viability of the PC was confirmed by three indexes: 1) maintenance of physiological cell membrane potentials (-85 +/- 3 mV); 2) depolarization of the cell membrane potential with 1 mM Ba2+; and 3) hyperpolarization of the cell potential with 0.1 mM amiloride. Two types of K channels were identified: a low-conductance K channel and an intermediate-conductance K channel. In cell-attached patches the slope conductance of the low-conductance K channel was 27 pS and that of the intermediate-conductance K channel was 45 pS. The open probability (Po) of the 27-pS K channel was 0.81 +/- 0.02 and was not voltage dependent. In contrast, the Po of the 45-pS K channel was 0.23 +/- 0.01 at the spontaneous cell membrane potential and was increased by hyperpolarization. In addition, decrease of the bath pH from 7.4 to 6.7 reduced the 27-pS K channel current amplitude in a voltage-dependent manner, but the Po was not affected. Finally, two time constants were required to fit open- and closed-time histograms of both populations of K channels. Application of 1 mM Ba2+ completely blocked these K channels. We conclude that two types of K channel are present in the basolateral membrane of PC.
我们开发了一种新方法来研究大鼠皮质集合管(CCD)主细胞(PC)侧膜中的钾通道。该技术包括:1)暴露CCD顶端膜;2)通过移液器轻柔抽吸去除与PC相邻的闰细胞;3)将膜片钳技术应用于PC的侧膜。通过三个指标证实了PC的功能活性:1)维持生理细胞膜电位(-85±3 mV);2)用1 mM Ba2+使细胞膜电位去极化;3)用0.1 mM氨氯吡咪使细胞电位超极化。鉴定出两种类型的钾通道:一种低电导钾通道和一种中等电导钾通道。在细胞贴附式膜片中,低电导钾通道的斜率电导为27 pS,中等电导钾通道的斜率电导为45 pS。27-pS钾通道的开放概率(Po)为0.81±0.02,且不依赖电压。相比之下,45-pS钾通道在自发细胞膜电位时的Po为0.23±0.01,并通过超极化而增加。此外,将浴液pH从7.4降至6.7以电压依赖性方式降低了27-pS钾通道电流幅度,但Po不受影响。最后,需要两个时间常数来拟合这两种钾通道群体的开放和关闭时间直方图。应用1 mM Ba2+完全阻断了这些钾通道。我们得出结论,PC的基底外侧膜中存在两种类型的钾通道。