CADMIUM UPTAKE THROUGH THE ANION-EXCHANGER IN HUMAN RED-BLOOD-CELLS

被引:44
作者
LOU, M
GARAY, R
ALDA, JO
机构
[1] Departamento de Fisiología, Facultad de Medicina, Zaragoza
来源
JOURNAL OF PHYSIOLOGY-LONDON | 1991年 / 443卷
关键词
D O I
10.1113/jphysiol.1991.sp018826
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
1. The initial rate of Cd2+ uptake in human red cells was measured by atomic 2. About 96% of Cd2+ uptake was inhibited by DIDS (4,4'-diisothiocyanatostilbene-2, 2'-disulphonic acid) with IC50 (concentration giving 50% of maximal inhibition) of 0.3-mu-M and by furosemide with IC50 of 500-mu-M and was resistant to ouabain and amiloride. This indicates the implication of the [Cl--HCO3-] anion exchanger in Cd2+ uptake. 3. DIDS-sensitive Cd2+ uptake required the presence of external HCO3-. HCO3- ions had a biphasic effect on Cd2+ uptake. Low bicarbonate concentrations were stimulatory, suggesting formation of translocating bicarbonate-cadmium complexes. Higher bicarbonate concentrations were inhibitory, suggesting further bicarbonate complexation with formation of non-translocating species. Depending on the presence or absence of external Cl-, a maximal Cd2+ uptake of 1.7 or 0.37 mmol (l cells)-1 h-1 was observed at bicarbonate concentrations of 15.6 or 11 mM respectively. 4. In the presence of bicarbonate, external Cl- ions strongly stimulated Cd2+ uptake, with linear increase between 70 and 125mM. This suggests that one translocating species may have chloride as ligand. 5. DIDS-sensitive Cd2+ uptake was modestly inhibited by physiological concentrations of external phosphate and was resistant to external K+, Mg2+ and Ca2+. 6. In conclusion, the anion exchanger is the major transport mechanism for red cell cadmium uptake. Translocating species appear to be monovalent anion complexes of cadmium with HCO3- such as [Cd(OH)(HCO3)2]- and [Cd(OH)(HCO3)Cl]-.
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页码:123 / 136
页数:14
相关论文
共 26 条
[1]   CHLORIDE (OR BICARBONATE)-DEPENDENT COPPER UPTAKE THROUGH THE ANION-EXCHANGER IN HUMAN RED-BLOOD-CELLS [J].
ALDA, JO ;
GARAY, R .
AMERICAN JOURNAL OF PHYSIOLOGY, 1990, 259 (04) :C570-C576
[2]  
ALDA JO, 1989, J CELL PHYSL, V138, P316
[3]  
Baes CF, 1976, HYDROLYSIS CATIONS, P265
[4]   EVIDENCE FOR ANIONIC CATION-TRANSPORT OF LITHIUM, SODIUM AND POTASSIUM ACROSS HUMAN ERYTHROCYTE-MEMBRANE INDUCED BY DIVALENT ANIONS [J].
BECKER, BF ;
DUHM, J .
JOURNAL OF PHYSIOLOGY-LONDON, 1978, 282 (SEP) :149-168
[5]  
BERNARD M, 1984, USUEL CHIMIE GENERAL, P230
[6]   CD-2+ RESPONSES OF CULTURED HUMAN-BLOOD CELLS [J].
ENGER, MD ;
HILDEBRAND, CE ;
STEWART, CC .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 1983, 69 (02) :214-224
[7]   ON THE MECHANISM OF TRANSFER OF HEAVY-METALS ACROSS CELL-MEMBRANES [J].
FOULKES, EC .
TOXICOLOGY, 1988, 52 (03) :263-272
[8]   COMBINED EFFECTS OF DIGITALIS THERAPY AND OF PLASMA BICARBONATE ON HUMAN RED-CELL SODIUM AND POTASSIUM [J].
FUNDER, J ;
WIETH, JO .
SCANDINAVIAN JOURNAL OF CLINICAL & LABORATORY INVESTIGATION, 1974, 34 (02) :153-160
[9]   ALKALI-METAL CATION-TRANSPORT THROUGH THE HUMAN-ERYTHROCYTE MEMBRANE BY THE ANION-EXCHANGE MECHANISM [J].
FUNDER, J .
ACTA PHYSIOLOGICA SCANDINAVICA, 1980, 108 (01) :31-37
[10]   HUMAN RED-CELL SODIUM AND POTASSIUM IN METABOLIC ALKALOSIS [J].
FUNDER, J ;
WIETH, JO .
SCANDINAVIAN JOURNAL OF CLINICAL & LABORATORY INVESTIGATION, 1974, 34 (01) :49-59