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Effect of HgCl2 on Acetylcholine, Carbachol, and Glutamate Currents of Aplysia Neurons

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Publisher Springer
Date 1994 Dec 1
PMID 7641226
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Abstract

1. Using conventional two-microelectrode voltage-clamp techniques we studied the effects of inorganic mercury (HgCl2) on acetylcholine-, carbachol-, and glutamate-activated currents on Aplysia neurons. Hg2+ was applied with microperfusion. 2. Acetylcholine and carbachol activated an inward, sodium-dependent current in the anterior neurons of the pleural ganglion. The medial neurons gave a biphasic current to acetylcholine and carbachol, which was outward at resting membrane potential. The faster component was Cl- dependent and reversed at about -60 mV, while the slower component was K+ dependent and reversed at greater than -80 mV. 3. Hg2+ (0.1-10 microM) caused a dramatic increase in the acetylcholine- and carbachol-induced inward current in anterior neurons and the fast Cl- current in medial neurons. With only a 1-min preapplication of Hg2+, the acetylcholine- or carbachol-activated sodium or chloride currents were increased to 300% and the effect was only partly reversible. The threshold concentration was 0.1 microM Hg2+. 4. Contrary to the effects on sodium and chloride currents, concentrations of 0.1-10 microM Hg2+ caused a complete and irreversible blockade of K(+)-dependent acetylcholine and carbachol currents. The block of the potassium current was relatively fast and increased with time. The concentration of HgCl2 that gave a half-maximal blockade of the carbachol-activated potassium current was 0.89 microM. The chloride-dependent current elicited by glutamate on medial neurons was increased by HgCl2 as well. 5. These results suggest that actions at agonist-activated channels must be considered as contributing to mercury neurotoxicity. It is possible that the toxic actions of Hg2+ on synaptic transmission at both pre- and postsynaptic sites are important factors in the mechanism of Hg2+ toxicity.

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Mercuric(II) chloride modulates single-channel properties of carbachol-activated Cl- channels in cultured neurons of Aplysia californica.

Fejtl M, Gyori J, Carpenter D Cell Mol Neurobiol. 1994; 14(6):665-74.

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References
1.
Manalis R, COOPER G . Evoked transmitter release increased by inorganic mercury at frog neuromuscular junction. Nature. 1975; 257(5528):690-1. DOI: 10.1038/257690a0. View

2.
Umbach J, Gundersen C . Mercuric ions are potent noncompetitive antagonists of human brain kainate receptors expressed in Xenopus oocytes. Mol Pharmacol. 1989; 36(4):582-8. View

3.
Oudar P, Caillard L, Fillion G . In vitro effect of organic and inorganic mercury on the serotonergic system. Pharmacol Toxicol. 1989; 65(4):245-8. DOI: 10.1111/j.1600-0773.1989.tb01166.x. View

4.
Chang L . Neurotoxic effects of mercury--a review. Environ Res. 1977; 14(3):329-73. DOI: 10.1016/0013-9351(77)90044-5. View

5.
Salanki J, Evans M, Carpenter D . Desensitization kinetics of a K+ acetylcholine response in Aplysia. Brain Res. 1989; 495(2):298-308. DOI: 10.1016/0006-8993(89)90222-9. View