The ionic dependence of black widow spider venom action at the stretch receptor neuron and neuromuscular junction of crustaceans
Author:
Publisher
Wiley
Subject
Cellular and Molecular Neuroscience,General Neuroscience
Reference40 articles.
1. RECEPTOR ORGANS IN THORACIC AND ABDOMINAL MUSCLES OF CRUSTACEA
2. Crayfish stretch receptor: an investigation with voltage-clamp and ion-sensitive electrodes.
3. The effect of the venom of the black widow spider Latrodectus mactans tredecimguttatus on the giant neurones of Periplaneta americana
4. The action potential of chick dorsal root ganglion neurones maintained in cell culture.
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1. Tetramerisation of α-latrotoxin by divalent cations is responsible for toxin-induced non-vesicular release and contributes to the Ca2+-dependent vesicular exocytosis from synaptosomes;Biochimie;2000-05
2. α-Latrocrustatoxin Increases Neurotransmitter Release by Activating a Calcium Influx Pathway at Crayfish Neuromuscular Junction;Journal of Neurophysiology;1999-12-01
3. Electrical and optical monitoring of α-latrotoxin action at Drosophila neuromuscular junctions;Neuroscience;1998-08
4. Effects of black widow spider venom and latrocrustatoxin on crustacean nerve cells: Electrophysiological and ultrastructural study;General Pharmacology: The Vascular System;1997-01
5. Monitoring of Black Widow Spider Venom (BWSV) induced exo- and endocytosis in living frog motor nerve terminals with FM1-43;Neuropharmacology;1995-11
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