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PMID: 7472344 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Calcium channel involvement in GABAB receptor-mediated inhibition of GABA release in area CA1 of the rat hippocampus.

Journal of neurophysiology ·Vol. 74 ·No. 1 ·1995-07-00 ·Pages 43-53

Doze VA, Cohen GA, Madison DV

Abstract

1. Experiments were performed in rat hippocampal slices to examine the nature of GABAergic inhibition of inhibitory synaptic transmission. In these experiments the effects of the gamma-aminobutyric acid-B (GABAB) receptor agonist, baclofen, and of subtype-selective calcium channel blockers were tested with the use of intracellular recordings of evoked inhibitory postsynaptic potentials (IPSPs) and whole cell recordings of spontaneous GABAergic inhibitory postsynaptic currents (IPSCs). 2. Baclofen inhibited evoked and spontaneous (action-potential-dependent) monosynaptic GABAA-mediated IPSPs and IPSCs but had no effect on the frequency of tetrodotoxin-resistant (action-potential-independent) miniature IPSCs recorded in CA1 pyramidal neurons. 3. Depolarizing GABAergic synaptic terminals by raising the extracellular potassium concentration caused an increase in action-potential-independent miniature IPSC frequency that could be inhibited by either baclofen or cadmium, a blocker of voltage-dependent calcium channels. In addition, under these depolarizing conditions, cadmium occluded the baclofen inhibition of miniature IPSCs. These data suggest that baclofen reduces only depolarization-induced, not quantal, GABA release and that it does so by decreasing presynaptic voltage-dependent calcium influx. 4. Experiments with subtype-selective calcium channel blockers demonstrate that the presynaptic action of baclofen was mediated through both omega-conotoxin-GVIA-sensitive and omega-agatoxin-IVA-sensitive, but not dihydropyridine-sensitive calcium channels.

MeSH Terms
Action Potentials/drug effects Animals Baclofen/pharmacology Calcium Channel Blockers/pharmacology Calcium Channels/physiology Electrophysiology GABA Agonists/pharmacology GABA-B Receptor Antagonists Hippocampus/cytology,metabolism In Vitro Techniques Interneurons/drug effects,metabolism Male Nerve Endings/drug effects,metabolism Rats Rats, Sprague-Dawley Receptors, GABA-B/physiology Synapses/drug effects,metabolism gamma-Aminobutyric Acid/metabolism
Chemicals
Calcium Channel Blockers Calcium Channels GABA Agonists GABA-B Receptor Antagonists Receptors, GABA-B gamma-Aminobutyric Acid Baclofen
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Doze V A
Department of Molecular and Cellular Physiology, Beckman Center for Molecular and Genetic Medicine, Stanford University School of Medicine, California 94305-5426, USA.
Cohen G A
Madison D V
Article Info
Journal
Journal of neurophysiology
Abbr.
J Neurophysiol
ISSN
0022-3077
Published
1995-07-00
Pages
43-53
Language
English
Region
United States
NLM ID
0375404
Subset
IM
Grants
NIMH NIH HHS · MH-48874 · United States
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