Quantal currents evoked by graded intracellular depolarization of crayfish motor axon terminals.
- 1 February 1987
- journal article
- research article
- Published by Wiley in The Journal of Physiology
- Vol. 383 (1) , 587-599
- https://doi.org/10.1113/jphysiol.1987.sp016430
Abstract
1. Quantal transmitter release was examined at nerve terminals of the excitatory motor axon of the crayfish opener muscle. The magnitude of synaptic currents, recorded with macro-patch electrodes at a nerve terminal, served as a measure of quantal size. Transmitter release was initiated by pulses of depolarizing current applied intracellularly to the axonal terminals after application of tetrodotoxin. Quantal release was altered by a variety of methods and the resulting quantal output and quantal size were measured. 2. Amplitude distributions of quantal events were obtained during experimental manipulations which altered the rate of quantal release by up to 25-fold. These manipulations consisted of: varying pulse amplitude or pulse duration; facilitating the release by prolonged depolarization; and application of a potassium channel blocker, 4-aminopyridine. 3. The amplitude of quantal events is impervious to marked changes in presynaptic depolarization and is not affected by experimental procedures which promote accumulation of calcium ions in the terminals. The vesicular mechanism of release, in which transmitter substance is prepackaged in vesicles which individually undergo exocytosis at a release zone, could account for the observed results.This publication has 26 references indexed in Scilit:
- Effects of low temperature and terminal membrane potential on quantal size at frog neuromuscular junctionThe Journal of Physiology, 1983
- Non vesicular release of neurotransmitter.Physiological Reviews, 1982
- REARRANGEMENT OF INTRAMEMBRANE PARTICLES AS A POSSIBLE MECHANISM FOR THE RELEASE OF ACETYLCHOLINE1982
- Release of glutamate from the crayfish neuromuscular junction.The Journal of Physiology, 1981
- Structural changes after transmitter release at the frog neuromuscular junction.The Journal of cell biology, 1981
- The present status of the vesicular hypothesisProgress in Neurobiology, 1979
- Quantum amplitude distributions point to functional unity of the synaptic ‘active zone’Nature, 1977
- Multimodal Distribution of Frog Miniature Endplate Potentials in Adult, Denervated, and Tadpole Leg MuscleThe Journal of general physiology, 1974
- Transmitter release by mammalian motor nerve terminals in response to focal polarizationThe Journal of Physiology, 1973
- The role of calcium in neuromuscular facilitationThe Journal of Physiology, 1968