Spontaneous and potassium-induced release of acetylcholine from mouse forebrain minces
Author:
Publisher
Elsevier BV
Subject
General Neuroscience
Reference14 articles.
1. Acetylation of choline and homocholine by membrane-bound choline o-acetyltransferase in mouse forebrain nerve endings;Benishin;J. Neurochem.,1981
2. Spontaneous and evoked release of acetylcholine and a cholinergic false transmitter from brain slices: comparison to true and false transmitter in subcellular stores;Boksa;Neuroscience,1980
3. Subcellular origin of cholinergic transmitter release from mouse brain;Carroll;Science N.Y.,1980
4. Relative importance of choline transport to spontaneous and potassium depolarized release of acetylcholine;Carroll;J. Neurochem.,1975
5. Cholinergic vesicles: ability to empty and refill independently of cytoplasmic acetylcholine;Carroll;Science N.Y.,1978
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1. Cytosolic choline acetyltransferase binds specifically to cholinergic plasma membrane of rat brain synaptosomes to generate membrane-bound enzyme;Neurochemical Research;2003
2. Role of calcium on the modulation of spontaneous acetylcholine efflux by the D2 dopamine receptor subtype in rat striatal synaptosomes;Brain Research;2000-01
3. Evidence to suggest that cytosolic acetylcholine in rat hippocampal nerve terminals is not directly transferred into synaptic vesicles for release;Brain Research;1996-06
4. Role of Cyclic AMP in Prostaglandin-Induced Modulation of Acetylcholine Release from the Myenteric Plexus of Guinea Pig Ileum;Japanese Journal of Pharmacology;1992
5. Ca2+o-Independent Veratridine-Evoked Acetylcholine Release from Striatal Slices Is Not Inhibited by Vesamicol (AH5183): Mobilization of Distinct Transmitter Pools;Journal of Neurochemistry;1991-01
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