Literature DB >> 6875570

Temporal characteristics of potassium-stimulated acetylcholine release and inactivation of calcium influx in rat brain synaptosomes.

J B Suszkiw, M E O'Leary.   

Abstract

The time course of Ca2+-dependent [3H]acetylcholine [( 3H]ACh) release and inactivation of 45Ca2+ entry were examined in rat brain synaptosomes depolarized by 45 mM [K+]0. Under conditions where the intrasynaptosomal stores of releasable [3H]ACh were neither exhausted nor replenished in the course of stimulation, the K+-evoked release consisted of a major (40% of the releasable [3H]ACh pool), rapidly terminating phase (t1/2 = 17.8 s), and a subsequent, slow efflux that could be detected only during a prolonged, maintained depolarization. The time course of inactivation of K+-stimulated Ca2+ entry suggests the presence of fast-inactivating, slow-inactivating, and noninactivating, or very slowly inactivating, components. The fast-inactivating component of the K+-stimulated Ca2+ entry into synaptosomes appears to be responsible for the rapidly terminating phase of transmitter release during the first 60 s of K+ stimulus. The noninactivating Ca2+ entry may account for the slow phase of transmitter release. These results indicate that under conditions of maintained depolarization of synaptosomes by high [K+]0 the time course and the amount of transmitter released may be a function of the kinetics of inactivation of the voltage-dependent Ca channels.

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Year:  1983        PMID: 6875570     DOI: 10.1111/j.1471-4159.1983.tb04820.x

Source DB:  PubMed          Journal:  J Neurochem        ISSN: 0022-3042            Impact factor:   5.372


  6 in total

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Review 3.  Mechanisms in the regulation of neurotransmitter release from brain nerve terminals: current hypotheses.

Authors:  T S Sihra; R A Nichols
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4.  Parameters not influenced by vesamicol: membrane potential, calcium uptake, and internal calcium concentration of synaptosomes.

Authors:  Z Deri; V Adam-Vizi
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5.  Inactivation of acetylcholine release from Torpedo synaptosomes in response to prolonged depolarizations.

Authors:  S Birman; F M Meunier
Journal:  J Physiol       Date:  1985-11       Impact factor: 5.182

6.  Brain voltage-sensitive calcium channel subtypes differentiated by omega-conotoxin fraction GVIA.

Authors:  I J Reynolds; J A Wagner; S H Snyder; S A Thayer; B M Olivera; R J Miller
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  6 in total

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