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人气管9HTEo-c细胞中肿胀激活氯离子通道的生物物理特性

Biophysical characteristics of swelling-activated Cl- channels in human tracheal 9HTEo-cells.

作者信息

Zegarra-Moran O, Galietta L J

机构信息

Laboratorio di Genetica Molecolare, Istituto Giannina Gaslini, Genova, I-16148, Italy.

出版信息

J Membr Biol. 1998 Oct 1;165(3):255-64. doi: 10.1007/s002329900439.

DOI:10.1007/s002329900439
PMID:9767679
Abstract

The question of whether a single molecule can account for every observed swelling-activated Cl- current deserves to be addressed and biophysical description seems to be an adequate criterion to classify these channels. We studied the biophysical properties of swelling-activated Cl- currents in 9HTEo-cells using whole-cell and outside-out patch clamp recordings. Hypotonic shock activated outwardly rectifying currents that inactivated at potentials higher than 20 mV. The decay phase of the current was well fitted by two exponential functions and both time constants were voltage-dependent. Two voltage-dependent time constants were also necessary to describe reactivation. The midpoint of current inactivation was 54 mV. The voltage dependence of kinetics did not significantly change by modifying the extracellular NaCl concentration while the inactivation midpoint slightly shifted. In conclusion, our results indicate that the voltage-dependent properties of the swelling-activated Cl- currents in 9HTEo- cells are largely independent from the extracellular ionic strength and the extracellular Cl- concentration. Excised patches from cells exposed to hypotonic shock showed single channel currents that inactivated at positive membrane potentials and displayed chord conductance of approximately 60 pS at 100 mV and of approximately 20 pS at -80 mV. The permeability sequence for the single channel was I- > Br- > Cl- > gluconate and currents were blocked by Reactive blue 2. These properties indicate that intermediate conductance outwardly rectifying channels are responsible for the macroscopic swelling-activated current.

摘要

单个分子是否能解释所有观察到的肿胀激活的氯离子电流这一问题值得探讨,而生物物理描述似乎是对这些通道进行分类的合适标准。我们使用全细胞和外向膜片钳记录法研究了9HTEo细胞中肿胀激活的氯离子电流的生物物理特性。低渗休克激活了外向整流电流,该电流在高于20 mV的电位下失活。电流的衰减阶段由两个指数函数很好地拟合,且两个时间常数均与电压有关。描述再激活也需要两个与电压有关的时间常数。电流失活的中点为54 mV。改变细胞外氯化钠浓度时,动力学的电压依赖性没有显著变化,而失活中点略有偏移。总之,我们的结果表明,9HTEo细胞中肿胀激活的氯离子电流的电压依赖性特性在很大程度上独立于细胞外离子强度和细胞外氯离子浓度。暴露于低渗休克的细胞的膜片显示单通道电流,该电流在正膜电位下失活,在100 mV时显示约60 pS的弦电导,在-80 mV时显示约20 pS的弦电导。单通道的通透性顺序为I->Br->Cl->葡萄糖酸盐,且电流被活性蓝2阻断。这些特性表明,中等电导外向整流通道负责宏观的肿胀激活电流。

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