Release-Independent Short-Term Synaptic Depression in Cultured Hippocampal Neurons
Open Access
- 1 April 2000
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 20 (7) , 2480-2494
- https://doi.org/10.1523/jneurosci.20-07-02480.2000
Abstract
Short-term synaptic plasticity may dramatically influence neuronal information transfer, yet the underlying mechanisms remain incompletely understood. In autapses (self-synapses) formed by cultured hippocampal neurons, short-term synaptic depression (STD) had several unusual features. (1) Reduction of neurotransmitter release probability with Cd2+, a blocker of voltage-gated calcium channels, did not change depression. (2) Lowering [Ca2+]o and/or raising [Mg2+]o had little effect on STD in cells with strong baseline depression, but in cells with more modest baseline depression, it reduced the depression. (3) Random variations in the size of initial EPSCs did not influence successive EPSC sizes. These findings were inconsistent with release-dependent mechanisms, such as vesicle depletion, post-synaptic receptor desensitization, and autoreceptor inhibition. Instead, other results suggested that changes in action potentials (APs) contributed to depression. The somatic APs declined in amplitude with repetitive stimulation, and modest reduction of AP amplitudes with tetrodotoxin inhibited EPSCs. Notably, tetrodotoxin also increased depression. Similar changes in axonal APs could produce STD in at least two ways. First, decreasing presynaptic spike amplitudes could reduce calcium entry and release probability. Alternatively, APs could fail to propagate through some axonal branches, reducing the number of active synapses. To explore these possibilities, we derived the expected variance of EPSCs for the two scenarios. Experimentally, the variance increased and then decreased on average with successive responses during trains of APs, confirming a unique prediction from the conduction failure scenario. Thus, STD had surprising properties, incompatible with commonly postulated mechanisms but consistent with AP conduction failure at axonal branches.Keywords
This publication has 83 references indexed in Scilit:
- Locus of frequency‐dependent depression identified with multiple‐probability fluctuation analysis at rat climbing fibre‐Purkinje cell synapsesThe Journal of Physiology, 1998
- Redistribution of synaptic efficacy between neocortical pyramidal neuronsNature, 1996
- Ca2+ Imaging of CNS Axons in Culture Indicates Reliable Coupling between Single Action Potentials and Distal Functional Release SitesNeuron, 1996
- Estimates for the pool size of releasable quanta at a single central synapse and for the time required to refill the pool.Proceedings of the National Academy of Sciences, 1995
- Na+ channels must deactivate to recover from inactivationNeuron, 1994
- The probability of transmitter release at a mammalian central synapseNature, 1993
- SURFACE CHARGES AND ION CHANNEL FUNCTIONAnnual Review of Physiology, 1991
- Interaction between calcium ions and surface charge as it relates to calcium currentsThe Journal of Membrane Biology, 1983
- A Cellular Mechanism of Classical Conditioning in Aplysia : Activity-Dependent Amplification of Presynaptic FacilitationScience, 1983
- Surface charges on the outer side of mollusc neuron membraneThe Journal of Membrane Biology, 1982