Calcium influx and transmitter release in a fast CNS synapse
- 1 October 1996
- journal article
- Published by Springer Nature in Nature
- Vol. 383 (6599), 431-434
- https://doi.org/10.1038/383431a0
Abstract
Calcium entry through presynaptic calcium channels controls the release of neurotransmitter. It is not known whether the putative calcium sensor that triggers this rapid neurotransmitter release is close enough to be activated by the large increase in the Ca2+ concentration (calcium 'domain') reached within nanometres of a single calcium channel or whether many channels have to open. We tested this in a calyx-type synapse in the rat medial nucleus of the trapezoid body. We compared the quantal content of postsynaptic currents with the presynaptic calcium current that flows during an action potential, and the results suggest that more than 60 calcium channels open for each vesicle that is released. In addition, we dialysed terminals with the slow calcium buffer EGTA, which reduced phasic transmitter release at concentrations as low as 1 mM. These results indicate that the distance that calcium ions must diffuse to reach the calcium sensor is relatively long, and that therefore Ca2+ entry through multiple calcium channels is needed to release a vesicle.Keywords
This publication has 30 references indexed in Scilit:
- Asynchronous release of synaptic vesicles determines the time course of the AMPA receptor-mediated EPSCNeuron, 1995
- Counting quanta: Direct measurements of transmitter release at a central synapseNeuron, 1995
- Quantal measurement and analysis methods compared for crayfish and Drosophila neuromuscular junctions, and rat hippocampusJournal of Neuroscience Methods, 1995
- From vesicle docking to endocytosis: Intermediate reactions of exocytosisNeuron, 1995
- Molecular Tuning of Ion Binding to Calcium Signaling ProteinsQuarterly Reviews of Biophysics, 1994
- Single calcium channels and acetylcholine release at a presynaptic nerve terminalNeuron, 1993
- The binaural auditory pathway: excitatory amino acid receptors mediate dual timecourse excitatory postsynaptic currents in the rat medial nucleus of the trapezoid bodyProceedings Of The Royal Society B-Biological Sciences, 1993
- Microdomains of High Calcium Concentration in a Presynaptic TerminalScience, 1992
- Direct measurement of exocytosis and calcium currents in single vertebrate nerve terminalsNature, 1990
- The measurement of synaptic delay, and the time course of acetylcholine release at the neuromuscular junctionProceedings of the Royal Society of London. B. Biological Sciences, 1965