Effects of Hg2+ and CH3Hg+ on Ca2+ fluxes in rat brain microsomes

被引:39
作者
Freitas, AJ
Rocha, JBT
Wolosker, H
Souza, DOG
机构
[1] UNIV FED SANTA MARIA, CTR CIENCIAS NAT & EXATAS, DEPT QUIM, BR-97119900 SANTA MARIA, RS, BRAZIL
[2] FED UNIV RIO DE JANEIRO, INST CIENCIAS BIOMED, CTR CIENCIAS SAUDE, DEPT BIOQUIM MED, BR-21941590 RIO DE JANEIRO, BRAZIL
[3] UNIV FED RIO GRANDE SUL, INST BIOCIENCIAS, DEPT BIOQUIM, BR-90046900 PORTO ALEGRE, RS, BRAZIL
关键词
Ca2+ current; Ca2+ influx; Ca2+ release; mercury; microsome; Ca2+ ATPase; methylmercury; glutathione;
D O I
10.1016/S0006-8993(96)00781-0
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
A permanent increase in cytosolic Ca2+ levels seems to be associated with various pathological situations which may result in cell death. Hg2+ and CH3Hg+ are potent neurotoxic agents, but the precise molecular mechanism(s) underlying their effects are not sufficiently understood. In the present study we investigated the potential role of Ca2+-ATPase located in the endoplasmic reticulum as a molecular target for mercury. Hg2+ and CH3Hg+ inhibited Ca2+-ATPase and Ca2+ uptake by brain microsomes with similar potencies. However, the inhibitory potency of Hg2+ was higher than that of CH3Hg+, probably reflecting differences in the affinity for the sulfhydryl groups of these compounds. Passive or unidirectional Ca2+ efflux (measured in the absences of Ca2+-ATPase ligands) was increased significantly by CH3Hg+ and Hg2+. Again, the potency of Hg2+ was higher than that of CH3Hg+. Blockers of Ca2+ channels (ruthenium red, procaine, heparin) did not affect the increase in passive Ca2+ efflux induced by mercury compounds, possibly indicating that Ca2+ release occurs through Ca2+-ATPase. Addition of physiological concentrations of glutathione (GSH) simultaneously with mercury abolished the inhibitory effects of both forms of Hg on Ca2+-transport. However, if the enzyme was first inhibited with Hg2+ or CH3Hg+ and subsequently treated with GSH, the reversal of inhibition was about 50%, suggesting that part of the cysteinyl residues involved in the inhibitory actions of mercury in Ca2+-transport bind to mercury with an extremely high affinity.
引用
收藏
页码:257 / 264
页数:8
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