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PMID: 6284913 Published · ppublish English Journal Article

Inhibition of acetylcholine responses by intracellular calcium in Lymnaea stagnalis neurones.

The Journal of physiology ·Vol. 323 ·1982-02-00 ·Pages 1-19

Chemeris NK, Kazachenko VN, Kislov AN, Kurchikov AL

Abstract

1. Acetylcholine (ACh)-induced currents were studied in completely isolated Lymnaea stagnalis neurones using the voltage-clamp technique. 2. The ACh-activated pathways were shown to be selective for Cl- ions. 3. It was shown that membrane depolarization inhibits ACh-induced conductance. This phenomenon was called 'ACh response inactivation'. 4. Inactivation decreases after lowering the extracellular Ca2+ concentration or after blockade by Mn2+ of the electrically excitable Ca2+ channels. 5. In dialysed neurones an increase of the intracellular Ca2+ concentration inhibits the ACh-induced conductance. 6. The conclusion is made that the inactivation of ACh response by depolarization is initiated by Ca2+ entering the neurone through the electrically excitable Ca channels. 7. The onset and the decay of the ACh response inactivation were studied by analysing the relaxations of the ACh-induced current during and after the application of depolarizing pulses. The most conspicuous relaxation is a slow relaxation observed at the end of a long depolarizing pulse, which appears to reflect the return of the system from the inactivated state to the non-inactivated one. 8. The slow relaxations observed during and after a depolarizing pulse appear correlated with variations of the intracellular Ca2+ concentration, and are distinct from faster relaxations observed in the hyperpolarizing range and attributed to the voltage dependence of the channel open-time.

MeSH Terms
Acetylcholine/physiology Animals Calcium/metabolism,pharmacology Chlorides/pharmacology Egtazic Acid/pharmacology Electric Conductivity In Vitro Techniques Intracellular Fluid/physiology Ion Channels/drug effects,physiology Kinetics Lymnaea/physiology Membrane Potentials Neurons/physiology Receptors, Cholinergic/drug effects Temperature
Chemicals
Chlorides Ion Channels Receptors, Cholinergic Egtazic Acid Acetylcholine Calcium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Chemeris N K
Kazachenko V N
Kislov A N
Kurchikov A L
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42 references, click to expand
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Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1982-02-00
Pages
1-19
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1250342
Subset
IM
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