Casavola V, Helmle-Kolb C, Montrose M H, Murer H
Department of Physiology, University of Züich, Switzerland.
Pflugers Arch. 1991 Apr;418(3):276-83. doi: 10.1007/BF00370527.
We have analysed the mechanisms of Na(+)-dependent pHi recovery from an acid load in LLC-PK1/Clone4 and LLC-PK1/PKE20 cells by using the intracellular pH indicator 2',7'-bis(carboxyethyl)-5,6-carboxyfluorescein acetoxymethyl ester. By analysis using single-cell microspectrofluorometry, we obtained evidence for polarized expression of Na+/H+ exchange activities with different properties in apical and basolateral cell surfaces, respectively. In Clone4 cells, Na+/H+ exchange activity is only visible on the basolateral cell surface; in PKE20 cells, Na+/H+ exchange activities with equal capacities are present on both cell surfaces. In Clone4 cells, the apparent Km value for Na+ is around 10 mM; in PKE20 cells it is around 20 mM and indistinguishable for the two cell poles. Ethylisopropylamiloride (EIPA) inhibition for all three activities measured in monolayer configuration is reduced by increasing Na+ concentration. Measured in the same cells, EIPA inhibition of transport of PKE20 cells is weaker for apical Na+/H+ exchange as compared to basolateral activity. In Clone4 and PKE20 cells kept in suspension, Na+/H+ exchange activities with similar properties for the two cell lines are observed. However, Na+/H+ exchange activities in cells in suspension are different from either activity measured in monolayer configuration: affinity for Na+ is higher (PKE20 cells) and inhibition by amiloride is weak and not influenced by increasing Na+ concentrations (PKE20 and Clone4 cells). It is concluded that PKE20 cells contain different Na+/H+ exchange activities on the two cell surfaces; this cell line should be a useful model to study regulatory aspect of different Na+/H+ exchange functions ("epithelial'/"housekeeping').(ABSTRACT TRUNCATED AT 250 WORDS)
我们使用细胞内pH指示剂2',7'-双(羧乙基)-5,6-羧基荧光素乙酰甲酯,分析了LLC-PK1/Clone4和LLC-PK1/PKE20细胞中酸负荷后Na(+)-依赖的细胞内pH恢复机制。通过单细胞显微荧光测定法分析,我们获得证据表明,Na+/H+交换活性在顶端和基底外侧细胞表面分别呈极化表达,且性质不同。在Clone4细胞中,Na+/H+交换活性仅在基底外侧细胞表面可见;在PKE20细胞中,两个细胞表面均存在同等容量的Na+/H+交换活性。在Clone4细胞中,Na+的表观Km值约为10 mM;在PKE20细胞中约为20 mM,且两个细胞极无差异。在单层配置中测量的所有三种活性,随着Na+浓度增加,乙基异丙基amiloride(EIPA)抑制作用减弱。在相同细胞中测量时,与基底外侧活性相比,EIPA对PKE20细胞顶端Na+/H+交换转运的抑制作用较弱。在悬浮培养的Clone4和PKE20细胞中,观察到两种细胞系具有相似性质的Na+/H+交换活性。然而,悬浮细胞中的Na+/H+交换活性与单层配置中测量的任何一种活性均不同:对Na+的亲和力更高(PKE20细胞),amiloride抑制作用较弱且不受Na+浓度增加的影响(PKE20和Clone4细胞)。结论是,PKE20细胞在两个细胞表面含有不同的Na+/H+交换活性;该细胞系应是研究不同Na+/H+交换功能(“上皮型”/“管家型”)调节方面的有用模型。(摘要截断于250字)