Genetic evidence for an equilibrium between docked and undocked vesicles
Open Access
- 28 February 1999
- journal article
- review article
- Published by The Royal Society in Philosophical Transactions Of The Royal Society B-Biological Sciences
- Vol. 354 (1381) , 299-306
- https://doi.org/10.1098/rstb.1999.0381
Abstract
By using the shibire mutation to block endocytosis in a temperature–dependent fashion, we have manipulated the number of synaptic vesicles in a nerve terminal and have observed a remarkable proportionality of the number of quanta released to the size of the total vesicle pool. In the experiments described below we determine that approximately 0.3% of the vesicle pool is released per stimulus. The data suggest that the pool of readily releasable docked vesicles does not represent the saturation of a limiting number of release sites, but instead represents a subset of vesicles that is in equilibrium with the larger pool of vesicles. Before presenting this data and the significance of the finding for the regulation of neurotransmission, we will briefly review the use of Drosophila genetics as a tool for dissecting synaptic transmission.Keywords
This publication has 28 references indexed in Scilit:
- Molecular Machinery Mediating Vesicle Budding, Docking and Fusion.Cell Structure and Function, 1996
- Syntaxin and synaptobrevin function downstream of vesicle docking in drosophilaNeuron, 1995
- The effect on synaptic physiology of synaptotagmin mutations in drosophilaNeuron, 1994
- Synaptic transmission persists in synaptotagmin mutants of DrosophilaCell, 1993
- SNAP receptors implicated in vesicle targeting and fusionNature, 1993
- Separation of Recycling and Reserve Synaptic Vesicles from Cholinergic Nerve Terminals of the Myenteric Plexus of Guinea Pig IleumJournal of Neurochemistry, 1985
- Reversible control of synaptic transmission in a single gene mutant of Drosophila melanogaster.The Journal of cell biology, 1983
- Reversible alteration in the neuromuscular junctions of Drosophila melanogaster bearing a temperature-sensitive mutation, shibire.The Journal of cell biology, 1979
- Morphological and biochemical heterogeneity of cholinergic synaptic vesiclesNature, 1977
- Synaptic transmission reversibly conditioned by single-gene mutation in Drosophila melanogasterNature, 1976