Affiliation:
1. From the Department of Pharmacological and Physiological Sciences, The University of Chicago, Chicago, Illinois 60637
Abstract
The functional effect of activating Ca2+-permeable neuronal nicotinic acetylcholine receptors (nAChRs) on vesicle secretion was studied in PC12 cells. Single cells were patch-clamped in the whole-cell configuration and stimulated with either brief pulses of nicotine to activate the Ca2+-permeable nAChRs or with voltage steps to activate voltage-dependent Ca2+ channels. Membrane capacitance was used as a measure of vesicle secretion. Activation of nAChRs by nicotine application to cells voltage clamped at −80 mV evoked secretion. This secretion was completely abolished by nicotinic antagonists. When the cells were voltage clamped at +20 mV in the presence of Cd2+ to block voltage-activated Ca2+ channels, nicotine elicited a small amount of secretion. Most interestingly, when the nAChRs were activated coincidentally with voltage-dependent Ca2+ channels, secretion was augmented approximately twofold over the secretion elicited with voltage-dependent Ca2+ channels alone. Our data suggest that Ca2+ influx via nAChRs affects Ca2+-dependent cellular functions, including vesicle secretion. In addition to the secretion evoked by nAChR activation at hyperpolarized potentials, we demonstrate that even at depolarized potentials, nAChRs provide an important Ca2+ entry pathway underlying Ca2+-dependent cellular processes such as exocytosis.
Publisher
Rockefeller University Press
Reference42 articles.
1. Reaction of tetraethylammonium with the open and closed conformations of the acetylcholine receptor ionic channel complex;Adler;J Gen Physiol,1979
2. Mapping the location of functional nicotinic and gamma-aminobutyric acid A receptors on hippocampal neurons;Alkondon;J Pharmacol Exp Ther,1996
3. Blockade of nicotinic currents in hippocampal neurons defines methyllycaconitine as a potent and specific receptor antagonist;Alkondon;Mol Pharmacol,1992
4. Selective storage of acetylcholine, but not catecholamines, in neuroendocrine synaptic-like microvesicles of early endosomal origin;Bauerfeind;Neuron,1993
5. Pharmacology and electrophysiology of ATP-activated ion channels;Bean;Trends Pharmacol Sci,1992
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