VOLUME-ACTIVATED CHLORIDE CHANNELS IN HELA-CELLS ARE BLOCKED BY VERAPAMIL AND DIDEOXYFORSKOLIN

被引:136
作者
DIAZ, M
VALVERDE, MA
HIGGINS, CF
RUCAREANU, C
SEPULVEDA, FV
机构
[1] AFRC,INST ANIM PHYSIOL & GENET RES,CAMBRIDGE CB2 4AT,ENGLAND
[2] UNIV OXFORD,JOHN RADCLIFFE HOSP,INST MOLEC MED,IMPERIAL CANC RES LABS,OXFORD OX3 9DU,ENGLAND
来源
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY | 1993年 / 422卷 / 04期
关键词
CL-CHANNELS; CELL VOLUME REGULATION; P-GLYCOPROTEIN; HELA CELLS;
D O I
10.1007/BF00374290
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The possible role of Cl- currents in regulatory volume decrease processes has been explored in HeLa cells using the whole-cell recording mode of the patch-clamp technique. Cells showed very small currents in voltage-clamp experiments performed with Cl--rich, permeant-cation-free (N-methyl-D-glucamine replacement) intracellular and bathing solutions. Exposure of the cells to hypotonic solutions visibly swelled the cells and activated, reversibly, an outward rectifying Cl- current, which decayed at the most depolarised voltages used. Replacement of extracellular Cl- by a series of halide anions, SCN- and gluconate was consistent with an anion selectivity sequence: SCN- > I- > Br- > Cl- > F- > gluconate. The volume-regulated Cl- current was effectively inhibited by 100 muM 5-nitro-2-(3-phenyl-propylamino)-benzoic acid and by 100 muM 4,4'-diisothiocyanotostilbene-2,2-disulphonic acid, substances known to block Cl- channels in a variety of cells. Chloride current activation by hypotonicity was dependent on the presence of ATP in the intracellular solution and this requirement could be replaced by the non-hydrolysable analogue ATP[gammaS] and Mg2+-free ATP. The data suggest that the channels responsible for the current described are involved in the regulatory volume decrease in HeLa cells. The characteristics of this Cl- current are similar to those of the current associated with expression of multidrug resistance P-glycoprotein. Furthermore, the currents in HeLa cells were inhibited rapidly and reversibly by verapamil and 1,9-dideoxyforskolin, which are known to inhibit P-glycoprotein function.
引用
收藏
页码:347 / 353
页数:7
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