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PMID: 9295377 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Distinct contributions of high- and low-voltage-activated calcium currents to afterhyperpolarizations in cholinergic nucleus basalis neurons of the guinea pig.

Williams S, Serafin M, Mühlethaler M, Bernheim L

Abstract

The contributions made by low- (LVA) and high-voltage-activated (HVA) calcium currents to afterhyperpolarizations (AHPs) of nucleus basalis (NB) cholinergic neurons were investigated in dissociated cells. Neurons with somata >25 microM were studied because 80% of them stained positively for choline acetyltransferase and had electrophysiological characteristics identical to those of cholinergic NB neurons previously recorded in basal forebrain slices. Calcium currents of cholinergic NB neurons first were dissected pharmacologically into an amiloride-sensitive LVA and at least five subtypes of HVA currents. Approximately 17% of the total HVA current was sensitive to nifedipine (3 microM), 35% to omega-conotoxin-GVIA (200-400 nM), 10% to omega-Agatoxin-IVA (100 nM), and 20% to omega-Agatoxin-IVA (300-500 nM), suggesting the presence of L-, N-, P-, and Q-type channels, respectively. A remaining current (R-type) resistant to these antagonists was blocked by cadmium (100-200 microM). We then assessed pharmacologically the role that LVA and HVA currents had in activating the apamin-insensitive AHP elicited by a long train of action potentials (sAHP) and the AHP evoked either by a short burst of action potentials or by a single action potential (mAHP) that is known to be apamin-sensitive. During sAHPs, approximately 60% of the hyperpolarization was activated by calcium flowing through N-type channels and approximately 20% through P-type channels, whereas T-, L-, and Q-type channels were not involved significantly. In contrast, during mAHPs, N- and T-type channels played key roles (approximately 60 and 30%, respectively), whereas L-, P-, and Q-type channels were not implicated significantly. It is concluded that in cholinergic NB neurons various subtypes of calcium channels can differentially activate the apamin-sensitive mAHP and the apamin-insensitive sAHP.

MeSH Terms
Action Potentials Animals Apamin/pharmacology Calcium/physiology Calcium Channel Blockers/pharmacology Cerebral Cortex/cytology,drug effects,physiology Electrophysiology Guinea Pigs In Vitro Techniques Neurons/drug effects,physiology Parasympathetic Nervous System/cytology,drug effects,physiology
Chemicals
Calcium Channel Blockers Apamin Calcium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Williams S
Département de Physiologie, Centre Médical Universitaire, 1211 Genève 4, Switzerland.
Serafin M
Mühlethaler M
Bernheim L
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Article Info
Journal
The Journal of neuroscience : the official journal of the Society for Neuroscience
Abbr.
J Neurosci
ISSN
0270-6474
Published
1997-10-01
Pages
7307-15
Language
English
Region
United States
NLM ID
8102140
PMCID
PMC6573441
Subset
IM
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