Abstract
Electrochemical techniques with disk and nano-tip electrodes, together with calcium imaging, were used to examine the effect of short-interval repetitive stimuli on both exocytosis and vesicular content in a model cell line. We show that the number of events decreases markedly with repeated stimuli suggesting a depletion of exocytosis machinery. However, repetitive stimuli induce a more stable fusion pore, leading to an increased amount of neurotransmitter release. In contrast, the total neurotransmitter content inside the vesicles decreases after repetitive stimuli, resulting in a higher average release fraction from each event. We suggest a possible mechanism regarding a link between activity-induced plasticity and fraction of release.
Funder
EC | FP7 | FP7 Ideas: European Research Council
Knut och Alice Wallenbergs Stiftelse
Vetenskapsrådet
HHS | National Institutes of Health
Publisher
Proceedings of the National Academy of Sciences
Cited by
50 articles.
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