Functional expression of the GABA(A) receptor α2 and α3 subunits at synapses between intercalated medial paracapsular neurons of mouse amygdala.

In the amygdala, GABAergic neurons in the intercalated medial paracapsular cluster (Imp) have been suggested to play a key role in fear learning and extinction. These neurons project to the central (CE) amygdaloid nucleus and to other areas within and outside the amygdala. In addition, they give ris...

Full description

Bibliographic Details
Main Authors: Geracitano, R, Fischer, D, Kasugai, Y, Ferraguti, F, Capogna, M
Format: Journal article
Language:English
Published: 2012
_version_ 1826293584598401024
author Geracitano, R
Fischer, D
Kasugai, Y
Ferraguti, F
Capogna, M
author_facet Geracitano, R
Fischer, D
Kasugai, Y
Ferraguti, F
Capogna, M
author_sort Geracitano, R
collection OXFORD
description In the amygdala, GABAergic neurons in the intercalated medial paracapsular cluster (Imp) have been suggested to play a key role in fear learning and extinction. These neurons project to the central (CE) amygdaloid nucleus and to other areas within and outside the amygdala. In addition, they give rise to local collaterals that innervate other neurons in the Imp. Several drugs, including benzodiazepines (BZ), are allosteric modulators of GABA(A) receptors. BZ has both anxiolytic and sedative actions, which are mediated through GABA(A) receptors containing α2/α3 and α1 subunits, respectively. To establish whether α1 or α2/α3 subunits are expressed at Imp cell synapses, we used paired recordings of anatomically identified Imp neurons and high resolution immunocytochemistry in the mouse. We observed that a selective α3 subunit agonist, TP003 (100 nM), significantly increased the decay time constant of the unitary IPSCs. A similar effect was also induced by zolpidem (10 μM) or by diazepam (1 μM). In contrast, lower doses of zolpidem (0.1-1 μM) did not significantly alter the kinetics of the unitary IPSCs. Accordingly, immunocytochemical experiments established that the α2 and α3, but not the α1 subunits of the GABA(A) receptors, were present at Imp cell synapses of the mouse amygdala. These results define, for the first time, some of the functional GABA(A) receptor subunits expressed at synapses of Imp cells. The data also provide an additional rationale to prompt the search of GABA(A) receptor α3 selective ligands as improved anxiolytic drugs.
first_indexed 2024-03-07T03:32:23Z
format Journal article
id oxford-uuid:bb23843b-722f-48d8-8ca3-4352e0dbebaf
institution University of Oxford
language English
last_indexed 2024-03-07T03:32:23Z
publishDate 2012
record_format dspace
spelling oxford-uuid:bb23843b-722f-48d8-8ca3-4352e0dbebaf2022-03-27T05:14:52ZFunctional expression of the GABA(A) receptor α2 and α3 subunits at synapses between intercalated medial paracapsular neurons of mouse amygdala.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:bb23843b-722f-48d8-8ca3-4352e0dbebafEnglishSymplectic Elements at Oxford2012Geracitano, RFischer, DKasugai, YFerraguti, FCapogna, MIn the amygdala, GABAergic neurons in the intercalated medial paracapsular cluster (Imp) have been suggested to play a key role in fear learning and extinction. These neurons project to the central (CE) amygdaloid nucleus and to other areas within and outside the amygdala. In addition, they give rise to local collaterals that innervate other neurons in the Imp. Several drugs, including benzodiazepines (BZ), are allosteric modulators of GABA(A) receptors. BZ has both anxiolytic and sedative actions, which are mediated through GABA(A) receptors containing α2/α3 and α1 subunits, respectively. To establish whether α1 or α2/α3 subunits are expressed at Imp cell synapses, we used paired recordings of anatomically identified Imp neurons and high resolution immunocytochemistry in the mouse. We observed that a selective α3 subunit agonist, TP003 (100 nM), significantly increased the decay time constant of the unitary IPSCs. A similar effect was also induced by zolpidem (10 μM) or by diazepam (1 μM). In contrast, lower doses of zolpidem (0.1-1 μM) did not significantly alter the kinetics of the unitary IPSCs. Accordingly, immunocytochemical experiments established that the α2 and α3, but not the α1 subunits of the GABA(A) receptors, were present at Imp cell synapses of the mouse amygdala. These results define, for the first time, some of the functional GABA(A) receptor subunits expressed at synapses of Imp cells. The data also provide an additional rationale to prompt the search of GABA(A) receptor α3 selective ligands as improved anxiolytic drugs.
spellingShingle Geracitano, R
Fischer, D
Kasugai, Y
Ferraguti, F
Capogna, M
Functional expression of the GABA(A) receptor α2 and α3 subunits at synapses between intercalated medial paracapsular neurons of mouse amygdala.
title Functional expression of the GABA(A) receptor α2 and α3 subunits at synapses between intercalated medial paracapsular neurons of mouse amygdala.
title_full Functional expression of the GABA(A) receptor α2 and α3 subunits at synapses between intercalated medial paracapsular neurons of mouse amygdala.
title_fullStr Functional expression of the GABA(A) receptor α2 and α3 subunits at synapses between intercalated medial paracapsular neurons of mouse amygdala.
title_full_unstemmed Functional expression of the GABA(A) receptor α2 and α3 subunits at synapses between intercalated medial paracapsular neurons of mouse amygdala.
title_short Functional expression of the GABA(A) receptor α2 and α3 subunits at synapses between intercalated medial paracapsular neurons of mouse amygdala.
title_sort functional expression of the gaba a receptor α2 and α3 subunits at synapses between intercalated medial paracapsular neurons of mouse amygdala
work_keys_str_mv AT geracitanor functionalexpressionofthegabaareceptora2anda3subunitsatsynapsesbetweenintercalatedmedialparacapsularneuronsofmouseamygdala
AT fischerd functionalexpressionofthegabaareceptora2anda3subunitsatsynapsesbetweenintercalatedmedialparacapsularneuronsofmouseamygdala
AT kasugaiy functionalexpressionofthegabaareceptora2anda3subunitsatsynapsesbetweenintercalatedmedialparacapsularneuronsofmouseamygdala
AT ferragutif functionalexpressionofthegabaareceptora2anda3subunitsatsynapsesbetweenintercalatedmedialparacapsularneuronsofmouseamygdala
AT capognam functionalexpressionofthegabaareceptora2anda3subunitsatsynapsesbetweenintercalatedmedialparacapsularneuronsofmouseamygdala