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N‐type calcium channels mediate a GABA B presynaptic modulation in the corticostriatal synapse in turtle's paleostriatum augmentatum
Author(s) -
SánchezMejorada Eduardo,
SánchezMondragon Guadalupe,
Pineda Juan Carlos,
González Mónica,
Barral Jaime
Publication year - 2009
Publication title -
synapse
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.809
H-Index - 106
eISSN - 1098-2396
pISSN - 0887-4476
DOI - 10.1002/syn.20667
Subject(s) - gabab receptor , neurotransmitter , neuroscience , baclofen , chemistry , agonist , voltage dependent calcium channel , synapse , neurotransmission , biology , receptor , calcium , biochemistry , central nervous system , organic chemistry
Spikes population evoked by a paired pulse protocol were used to assess the influence of GABA A and GABA B receptors agonists and antagonists on the synaptic potentials and in the S 2 / S 1 ratio in a paired pulse (PP) protocol in the cortico‐paleostriatum augmentatum synapses of the turtle. GABA A agonist, muscimol, decreased the amplitude of synaptic responses whereas the facilitation produced with the PP protocol did not change, suggesting a postsynaptic action for GABA A receptors. GABA B agonist, baclofen, enhanced paired pulse ratio indicating a presynaptic modulation through the GABA B receptor. Selective antagonists for N‐ and P/Q‐type Ca 2+ ‐channels also enhanced paired pulse ratio, suggesting that any of these channel types may be involved in neurotransmitter release. However, the strong paired pulse facilitation produced by baclofen was occluded by blocking the N‐type Ca 2+ channels with ω‐conotoxin GVIA (1 μM), but not by the blockage of P/Q‐type Ca 2+ channels with ω‐agatoxin TK (400 nM). These data suggest that N and P/Q channels participate in the neurotransmitter release, whereas only N‐type Ca 2+ channels are involved in the presynaptic modulation of GABA B in the corticostriatal synapse of the turtle. Synapse 63:855–862, 2009. © 2009 Wiley‐Liss, Inc.