INTRACELLULAR PH IN THE OK CELL .1. IDENTIFICATION OF H+ CONDUCTANCE AND OBSERVATIONS ON BUFFERING CAPACITY

被引:25
作者
GRABER, M [1 ]
DIPAOLA, J [1 ]
HSIANG, FL [1 ]
BARRY, C [1 ]
PASTORIZA, E [1 ]
机构
[1] SUNY STONY BROOK, DEPT MED, STONY BROOK, NY 11794 USA
来源
AMERICAN JOURNAL OF PHYSIOLOGY | 1991年 / 261卷 / 06期
关键词
OPOSSUM KIDNEY; PROXIMAL TUBULE; ACID-BASE TRANSPORT; ACIDIFICATION; PROTON PERMEABILITY; 2'; 7'-BIS(2-CARBOXYETHYL)-5(6)-CARBOXYFLUORESCEIN;
D O I
10.1152/ajpcell.1991.261.6.C1143
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The regulation of intracellular pH (pH(i)) in the opossum kidney (OK) cell line was studied in vitro using the pH-sensitive excitation ratio of 2',7'-bis(2-carboxyethyl)-5(6)-carboxyfluorescein. Recovery from an NH4Cl acid load disclosed a Na-independent component blocked by amiloride and a smaller Na-independent component. The Na-independent recovery rate was proportional to the H+ gradient from cell to buffer and was zero in the absence of an electrochemical gradient. The Na-independent recovery was not affected by N-ethylmaleimide, dicyclohexylcarbodiimide, HCO3, phloretin, or ZnCl2 but was accelerated in depolarized cells and by membrane-fluidizing drugs and was inhibited by glutaraldehyde. The apparent cellular buffering capacity changed in proportion to this H+ conductance. Consistent with an electrogenic H+ leak, steady-state cell pH alkalinized with depolarization and acidified with hyperpolarization. Removal of buffer Na+ produced a profound acidification, as did amiloride. In 0-Na+ buffers, extremely large cell-to-buffer H+ gradients were present and proportional to buffer pH. 4-Acetamido-4'-isothiocy-anostilbene-2',2 -disulfonic acid and 4,4'-diisothiocyanostilbene-2,2'-disulfonic acid had no effect on steady-state pH(i). Measurements of intracellular buffering capacity were derived from the change of cell pH induced by withdrawing NH4Cl. This buffering capacity was increased threefold in Na-free buffers, whereas the value measured by direct titration of cell lysate was the same or less than that of control cells. The NH4Cl-derived buffering capacity varied in direct proportion to the magnitude of the H+ leak. Drugs that changed H+ permeability produced the apparent changes of the measured buffering capacity within a few minutes. We concluded that, in HCO3-free buffer, the OK cell uses two membrane acid-base transport pathways: a Na-H antiporter active at physiological pH and a substantial passive H+ conductance. The results also reveal that the NH4Cl-derived buffering capacity is subject to artifacts, possible due to a finite leak of ionic NH4+.
引用
收藏
页码:C1143 / C1153
页数:11
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