Inhibition of creatine phosphokinase activity and synaptic transmission by black widow spider venom
Author:
Publisher
Elsevier BV
Subject
Developmental Biology,Clinical Neurology,Molecular Biology,General Neuroscience
Reference11 articles.
1. Brain-adenosine-5-triphosphate creatine phosphotranferase, purification, thiol group reactivity and the amino acid sequence around the reactive thiol groups;Atherton;Biochem. J.,1970
2. Effects of black widow spider venom on the fine structure of the frog neuromuscular junction;Clark;Nature (Lond.),1970
3. Effects of the venom of the black widow spider,latrodectus mactans tredecimguttatus, on evoked action potentials in the isolated nerve cord ofPeriplaneta americana;D'Ajello;Toxicon,1969
4. Some properties of the presynaptic nerve terminals in a mammalian sympathetic ganglion;Dunant;J. Physiol. (Lond.),1972
5. Ultrastructure du ganglion cervical supérieur du rat. II. Changements de l'ultrastructure,in vitro, pendant la perte de function;Forssman;Z. Zellforsch.,1966
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1. Degeneration and regeneration in the superior cervical sympathetic ganglion afterLatrodectus venom;Journal of Neurocytology;1989-06
2. Energy Metabolism and Quantal Acetylcholine Release: Effects of Botulinum Toxin, l-Fluoro-2,4-Dinitrobenzene, and Diamide in the Torpedo Electric Organ;Journal of Neurochemistry;1988-02
3. Botulinum toxin inhibits quantal acetylcholine release and energy metabolism in the Torpedo electric organ.;The Journal of Physiology;1987-04-01
4. The effect of diamide on transmitter release and on synaptic vesicle population at vertebrate synapses;Brain Research;1981-11
5. Effect of the venom of Glycera convoluta on the spontaneous quantal release of transmitter.;Journal of Cell Biology;1980-05-01
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