Abstract
Slices or particles from rat forebrain cortex were preloaded with [3H]choline, and the release of [3H]acetylcholine was evoked with potassium ions in a superfusion system. Release depended on the presence of calcium. 1. Incubation of the preloaded tissue preparation for 2 h with tetanus or botulinum A toxin did not change the [3H]acetylcholine content or the ratio [3H]acetylcholine/[3H]choline. Tetanus toxin diminished, dependent on dose and time, the release of [3H]acetylcholine evoked by 25 mM K+. It was about ten times more potent than botulinum A toxin. The effect of botulinum toxin was due to its neurotoxin content. Raising the potassium concentration partially overcame the inhibition by the toxins. Hemicholinium-3, applied to preloaded slices, left the subsequent [3H]acetylcholine release unchanged. Pretreatment of particles with neuraminidase diminished the content of long-chain gangliosides to the detection limit. Such particles remained fully sensitive to tetanus toxin, and at least partially sensitive to botulinum A toxin. 2. The potassium or sea anemone toxin II stimulated uptake of 45Ca2+ into cortex synaptosomes or particles was not inhibited by either toxin. Both toxins appear to impede the Ca2+-dependent mobilization of an easily releasable acetylcholine pool, without inhibiting the transmembranal calcium fluxes.
MeSH Terms
Acetylcholine/metabolism
Animals
Botulinum Toxins/pharmacology
Brain/drug effects,metabolism
Calcium/metabolism
In Vitro Techniques
Neuraminidase/pharmacology
Potassium/pharmacology
Rats
Synaptosomes/drug effects
Tetanus Toxin/pharmacology
Tritium
Chemicals
Tetanus Toxin
Tritium
Neuraminidase
Botulinum Toxins
Acetylcholine
Potassium
Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Bigalke H
Ahnert-Hilger G
Habermann E
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