Sustained synaptic-vesicle recycling by bulk endocytosis contributes to the maintenance of high-rate neurotransmitter release stimulated by glycerotoxin

Author:

Meunier Frederic A.1,Nguyen Tam H.1,Colasante Cesare2,Luo Fujun3,Sullivan Robert K. P.14,Lavidis Nickolas A.5,Molgó Jordi6,Meriney Stephen D.3,Schiavo Giampietro7

Affiliation:

1. Molecular Dynamics of Synaptic Function Laboratory, Queensland Brain Institute and School of Biomedical Sciences, The University of Queensland, Brisbane QLD 4072, Australia

2. Laboratorio de Fisiología de la Conducta, Facultad de Medicina, Universidad de Los Andes, Mérida 5101, Venezuela

3. Department of Neuroscience, University of Pittsburgh, Pittsburgh, PA 15260, USA

4. Centre for Microscopy and Microanalysis, The University of Queensland, Brisbane QLD 4072, Australia

5. School of Biomedical Sciences, The University of Queensland, Brisbane QLD 4072, Australia

6. CNRS, Institut de Neurobiologie Alfred Fessard – FRC2118, Laboratoire de Neurobiologie Cellulaire et Moléculaire – UPR9040, 1 Avenue de la Terrasse, 91198 Gif sur Yvette, France

7. Molecular Neuropathobiology Laboratory, Cancer Research UK London Research Institute, Lincoln's Inn Fields Laboratories, London WC2A 3PX, UK

Abstract

Glycerotoxin (GLTx), a large neurotoxin isolated from the venom of the sea worm Glycera convoluta, promotes a long-lasting increase in spontaneous neurotransmitter release at the peripheral and central synapses by selective activation of Cav2.2 channels. We found that GLTx stimulates the very high frequency, long-lasting (more than 10 hours) spontaneous release of acetylcholine by promoting nerve terminal Ca2+ oscillations sensitive to the inhibitor ω-conotoxin GVIA at the amphibian neuromuscular junction. Although an estimate of the number of synaptic vesicles undergoing exocytosis largely exceeds the number of vesicles present in the motor nerve terminal, ultrastructural examination of GLTx-treated synapses revealed no significant change in the number of synaptic vesicles. However, we did detect the appearance of large pre-synaptic cisternae suggestive of bulk endocytosis. Using a combination of styryl dyes, photoconversion and horseradish peroxidase (HRP)-labeling electron microscopy, we demonstrate that GLTx upregulates presynaptic-vesicle recycling, which is likely to emanate from the limiting membrane of these large cisternae. Similar synaptic-vesicle recycling through bulk endocytosis also occurs from nerve terminals stimulated by high potassium. Our results suggest that this process might therefore contribute significantly to synaptic recycling under sustained levels of synaptic stimulation.

Publisher

The Company of Biologists

Subject

Cell Biology

Reference48 articles.

1. Single-vesicle imaging reveals that synaptic vesicle exocytosis and endocytosis are coupled by a single stochastic mode;Balaji;Proc. Natl. Acad. Sci. USA,2007

2. Ionic mechanisms involved in the nodal swelling of myelinated axons caused by marine toxins;Benoit;Cell. Mol Biol. Lett,2002

3. Activity-dependent fluorescent staining and destaining of living vertebrate motor nerve terminals;Betz;J. Neurosci.,1992

4. Ca2+ -dependent recycling of synaptic vesicles at the frog neuromuscular junction;Ceccarelli;J. Cell Biol.,1980

5. Turnover of transmitter and synaptic vesicles at the frog neuromuscular junction;Ceccarelli;J. Cell Biol.,1973

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