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Synaptic fusion pore structure and AMPA receptor activation investigated by Brownian simulation of glutamate diffusion

Academic Article
Publication Date:
2003
abstract:
The rising phase of fast, AMPA-mediated Excitatory Post Synaptic Currents (EPSCs) has a primary role in the computational ability of neurons. The structure and radial expansion velocity of the fusion pore between the vesicle and the presynaptic membrane could be important factors in determining the time course of the EPSC. We have used a Brownian simulation model for glutamate neurotransmitter diffusion to test two hypotheses on the fusion pore structure, namely, the proteinaceous pore and the purely lipidic pore. Three more hypotheses on the radial expansion velocity were also tested. The rising phases of the EPSC, computed under various conditions, were compared with experimental data from the literature. Our present results show that a proteinaceous fusion pore should produce a more marked foot at the beginning of the rising phase of the EPSC. They also confirm the hypothesis that the structure of the fusion pore and its radial expansion velocity play significant roles in shaping the fast EPSC time course.
Iris type:
01.01 Articolo in rivista
Keywords:
Models; Receptors; AMPA-NMDA; Synaptic Transmissio; Excitatory Postsynapse
List of contributors:
DI MAIO, Vito; Ventriglia, Francesco
Handle:
https://iris.cnr.it/handle/20.500.14243/164635
Published in:
BIOLOGICAL CYBERNETICS
Journal
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