Kim Y K, Dantzler W H
Department of Physiology, College of Medicine, University of Arizona, Tucson 85724-5051, USA.
Am J Physiol. 1997 Mar;272(3 Pt 2):R955-61. doi: 10.1152/ajpregu.1997.272.3.R955.
Previous work on snake renal proximal tubules suggested that pH might influence tetraethylammonium (TEA) transport across the basolateral membrane. To examine this more directly, we determined the effects of altering either extracellular pH (pHo) or intracellular pH (pHi) on TEA uptake and efflux across the basolateral membrane of isolated snake renal proximal tubules. We found no evidence for trans-stimulation of either TEA uptake or efflux by H+. Therefore, there was no evidence for a TEA/H+ exchanger. However, we found evidence for trans-inhibition of both TEA uptake and efflux as well as for cis-inhibition of TEA uptake by increasing H+ concentration. H+ concentration appeared to have some type of direct effect on basolateral transport independent of any effect on membrane potential. Moreover, there appeared to be an optimal intracellular H+ concentration for entry of TEA into the cells that corresponded to the one found at the physiological pHi of 7.1. There also appeared to be an optimal extracellular H+ concentration for efflux of TEA from the cells that corresponded to the one found at the physiological pHo of 7.4. The mechanism involved in this relationship is unknown, but the data support a concept derived from previous studies that TEA transport across the basolateral membrane is asymmetric.
先前对蛇肾近端小管的研究表明,pH值可能会影响四乙铵(TEA)跨基底外侧膜的转运。为了更直接地研究这一问题,我们测定了改变细胞外pH值(pHo)或细胞内pH值(pHi)对分离的蛇肾近端小管基底外侧膜TEA摄取和流出的影响。我们没有发现H+对TEA摄取或流出有反式刺激作用的证据。因此,没有证据表明存在TEA/H+交换体。然而,我们发现随着H+浓度增加,存在对TEA摄取和流出的反式抑制以及对TEA摄取的顺式抑制的证据。H+浓度似乎对基底外侧转运有某种直接影响,而与对膜电位的任何影响无关。此外,对于TEA进入细胞似乎存在一个最佳细胞内H+浓度,该浓度与生理pHi为7.1时的浓度相对应。对于TEA从细胞中流出似乎也存在一个最佳细胞外H+浓度,该浓度与生理pHo为7.4时的浓度相对应。这种关系所涉及的机制尚不清楚,但这些数据支持了先前研究得出的一个概念,即TEA跨基底外侧膜的转运是不对称的。