Kinetic efficiency of endocytosis at mammalian CNS synapses requires synaptotagmin I
- 18 October 2004
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 101 (47), 16648-16652
- https://doi.org/10.1073/pnas.0406968101
Abstract
At nerve terminals, synaptic vesicle components are retrieved from the cell surface and recycled for local reuse soon after exocytosis. The kinetics of this coupling is critical for the proper functioning of synapses during repetitive action potential firing, because deficiencies in this process lead to abnormal depletion of the releasable vesicle pool. Although the molecular basis of this coupling is poorly understood, numerous biochemical data point to a role for synaptotagmin I (SytI), an essential synaptic vesicle protein required for fast calcium-dependent exocytosis. Here, using synapto-pHluorin in an approach that allows the dissection of endocytosis and exocytosis into separate components during periods of stimulation, we examined exocytic-endocytic coupling in synapses from SytI knockout mice and their WT littermates. We show that endocytosis is significantly impaired in the absence of SytI with the relative rates of endocytosis compared with exocytosis reduced approximately 3-fold with respect to WT. Thus, in addition to regulating exocytosis, SytI also controls the kinetic efficiency of endocytosis at nerve terminals.Keywords
This publication has 31 references indexed in Scilit:
- Synaptotagmin I Synchronizes Transmitter Release in Mouse Hippocampal NeuronsJournal of Neuroscience, 2004
- Synaptotagmin I is necessary for compensatory synaptic vesicle endocytosis in vivoNature, 2003
- Identification of synaptotagmin effectors via acute inhibition of secretion from cracked PC12 cellsThe Journal of cell biology, 2003
- Single and multiple vesicle fusion induce different rates of endocytosis at a central synapseNature, 2002
- Nerve Activity but Not Intracellular Calcium Determines the Time Course of Endocytosis at the Frog Neuromuscular JunctionNeuron, 1996
- Defective recycling of synaptic vesicles in synaptotagmin mutants of Caenorhabditis elegansNature, 1995
- Synaptotagmin I is a high affinity receptor for clathrin AP-2: Implications for membrane recyclingCell, 1994
- The effect on synaptic physiology of synaptotagmin mutations in drosophilaNeuron, 1994
- Endocytosis of synaptic vesicle membrane at the frog neuromuscular junction.The Journal of cell biology, 1984
- EVIDENCE FOR RECYCLING OF SYNAPTIC VESICLE MEMBRANE DURING TRANSMITTER RELEASE AT THE FROG NEUROMUSCULAR JUNCTIONThe Journal of cell biology, 1973