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A6细胞顶端膜中选择性差的阳离子通道。

Poorly selective cation channels in the apical membrane of A6 cells.

作者信息

Van Driessche W, De Smet P, de Smedt H

机构信息

Laboratory for Physiology, KU Leuven, Belgium.

出版信息

Pflugers Arch. 1994 Mar;426(5):387-95. doi: 10.1007/BF00388301.

Abstract

This paper describes a Ca(2+)-blockable, poorly selective cation pathway in the apical membrane of A6 epithelia. This pathway has properties that resemble the cation-selective channels in the toad urinary bladder and frog skin. Transepithelial short circuit currents (Isc) and power density spectra (PDS) of the fluctuations in current were recorded. The basolateral surface of the tissues was exposed to Cl- or SO4(2-) solutions with Na+ as the major cation. Ca(2+)-blockable inward oriented currents and Lorentzian noise were recorded with isotonic (215 mosmol/kg) mucosal Cl- and hypotonic (144 mos-mol/kg serosal SO4(2-) solution with Na+, K+, Rb+ or Cs+ as the major mucosal cation. Experiments with mucosal K+ demonstrated that the cation-selective channel was markedly activated by serosal hypotonicity. Effects of an increased electrical driving force were excluded on the basis of the results obtained with microelectrode experiments and transepithelial voltage clamping. Cell volume expansion induced by isotonic replacements of serosal sucrose by glycerol or urea also activated the cation-selective pathway. Furthermore, the presence of Cl- in the mucosal solution was a prerequisite for a sustained response to hypotonicity or replacements of the organic compounds. Moreover, we found that the cation-selective channels are mainly expressed in the cells during the early period of epithelial growth.

摘要

本文描述了A6上皮细胞顶端膜中一种可被Ca(2+)阻断的、选择性较差的阳离子通道。该通道具有与蟾蜍膀胱和蛙皮中阳离子选择性通道相似的特性。记录了跨上皮短路电流(Isc)和电流波动的功率密度谱(PDS)。组织的基底外侧表面暴露于以Na+为主要阳离子的Cl-或SO4(2-)溶液中。在等渗(215 mosmol/kg)黏膜Cl-以及以Na+、K+、Rb+或Cs+为主要黏膜阳离子的低渗(144 mosmol/kg浆膜SO4(2-)溶液中记录到了可被Ca(2+)阻断的内向电流和洛伦兹噪声。黏膜K+实验表明,阳离子选择性通道被浆膜低渗显著激活。基于微电极实验和跨上皮电压钳制获得的结果排除了电驱动力增加的影响。用甘油或尿素等渗替代浆膜蔗糖诱导的细胞体积膨胀也激活了阳离子选择性通道。此外,黏膜溶液中Cl-的存在是对低渗或有机化合物替代产生持续反应所必需的。而且,我们发现阳离子选择性通道主要在上皮生长早期的细胞中表达。

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