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BDNF enhances spontaneous and activity-dependent neurotransmitter release at excitatory terminals but not at inhibitory terminals in hippocampal neurons.
Shinoda, Yo; Ahmed, Saheeb; Ramachandran, Binu; Bharat, Vinita; Brockelt, David; Altas, Bekir; Dean, Camin.
Afiliación
  • Shinoda Y; Trans-synaptic Signaling Group, European Neuroscience Institute Goettingen, Germany ; Department of Applied Biological Science, Faculty of Science and Technology, Tokyo University of Science Chiba, Japan.
  • Ahmed S; Trans-synaptic Signaling Group, European Neuroscience Institute Goettingen, Germany.
  • Ramachandran B; Trans-synaptic Signaling Group, European Neuroscience Institute Goettingen, Germany.
  • Bharat V; Trans-synaptic Signaling Group, European Neuroscience Institute Goettingen, Germany.
  • Brockelt D; Trans-synaptic Signaling Group, European Neuroscience Institute Goettingen, Germany.
  • Altas B; Trans-synaptic Signaling Group, European Neuroscience Institute Goettingen, Germany.
  • Dean C; Trans-synaptic Signaling Group, European Neuroscience Institute Goettingen, Germany.
Article en En | MEDLINE | ID: mdl-25426063
ABSTRACT
Brain-derived neurotrophic factor (BDNF) is widely reported to enhance synaptic vesicle (SV) exocytosis and neurotransmitter release. But it is still unclear whether BDNF enhances SV recycling at excitatory terminals only, or at both excitatory and inhibitory terminals. In the present study, in a direct comparison using cultured rat hippocampal neurons, we demonstrate that BDNF enhances both spontaneous and activity-dependent neurotransmitter release from excitatory terminals, but not from inhibitory terminals. BDNF treatment for 5 min or 48 h increased both spontaneous and activity-induced anti-synaptotagmin1 (SYT1) antibody uptake at excitatory terminals marked with vGluT1. Conversely, BDNF treatment did not enhance spontaneous or activity-induced uptake of anti-SYT1 antibodies in inhibitory terminals marked with vGAT. Time-lapse imaging of FM1-43 dye destaining in excitatory and inhibitory terminals visualized by post-hoc immunostaining of vGluT1 and vGAT also showed the same

result:

The rate of spontaneous and activity-induced destaining was increased by BDNF at excitatory synapses, but not at inhibitory synapses. These data demonstrate that BDNF enhances SV exocytosis in excitatory but not inhibitory terminals. Moreover, BDNF enhanced evoked SV exocytosis, even if vesicles were loaded under spontaneous vesicle recycling conditions. Thus, BDNF enhances both spontaneous and activity-dependent neurotransmitter release on both short and long time-scales, by the same mechanism.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Front Synaptic Neurosci Año: 2014 Tipo del documento: Article País de afiliación: Japón

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Front Synaptic Neurosci Año: 2014 Tipo del documento: Article País de afiliación: Japón