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K(V)7 Channels Regulate Firing during Synaptic Integration in GABAergic Striatal Neurons

Striatal projection neurons (SPNs) process motor and cognitive information. Their activity is affected by Parkinson's disease, in which dopamine concentration is decreased and acetylcholine concentration is increased. Acetylcholine activates muscarinic receptors in SPNs. Its main source is the...

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Autores principales: Pérez-Ramírez, M. Belén, Laville, Antonio, Tapia, Dagoberto, Duhne, Mariana, Lara-González, Esther, Bargas, José, Galarraga, Elvira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4465714/
https://www.ncbi.nlm.nih.gov/pubmed/26113994
http://dx.doi.org/10.1155/2015/472676
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author Pérez-Ramírez, M. Belén
Laville, Antonio
Tapia, Dagoberto
Duhne, Mariana
Lara-González, Esther
Bargas, José
Galarraga, Elvira
author_facet Pérez-Ramírez, M. Belén
Laville, Antonio
Tapia, Dagoberto
Duhne, Mariana
Lara-González, Esther
Bargas, José
Galarraga, Elvira
author_sort Pérez-Ramírez, M. Belén
collection PubMed
description Striatal projection neurons (SPNs) process motor and cognitive information. Their activity is affected by Parkinson's disease, in which dopamine concentration is decreased and acetylcholine concentration is increased. Acetylcholine activates muscarinic receptors in SPNs. Its main source is the cholinergic interneuron that responds with a briefer latency than SPNs during a cortical command. Therefore, an important question is whether muscarinic G-protein coupled receptors and their signaling cascades are fast enough to intervene during synaptic responses to regulate synaptic integration and firing. One of the most known voltage dependent channels regulated by muscarinic receptors is the K(V)7/KCNQ channel. It is not known whether these channels regulate the integration of suprathreshold corticostriatal responses. Here, we study the impact of cholinergic muscarinic modulation on the synaptic response of SPNs by regulating K(V)7 channels. We found that K(V)7 channels regulate corticostriatal synaptic integration and that this modulation occurs in the dendritic/spines compartment. In contrast, it is negligible in the somatic compartment. This modulation occurs on sub- and suprathreshold responses and lasts during the whole duration of the responses, hundreds of milliseconds, greatly altering SPNs firing properties. This modulation affected the behavior of the striatal microcircuit.
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spelling pubmed-44657142015-06-25 K(V)7 Channels Regulate Firing during Synaptic Integration in GABAergic Striatal Neurons Pérez-Ramírez, M. Belén Laville, Antonio Tapia, Dagoberto Duhne, Mariana Lara-González, Esther Bargas, José Galarraga, Elvira Neural Plast Research Article Striatal projection neurons (SPNs) process motor and cognitive information. Their activity is affected by Parkinson's disease, in which dopamine concentration is decreased and acetylcholine concentration is increased. Acetylcholine activates muscarinic receptors in SPNs. Its main source is the cholinergic interneuron that responds with a briefer latency than SPNs during a cortical command. Therefore, an important question is whether muscarinic G-protein coupled receptors and their signaling cascades are fast enough to intervene during synaptic responses to regulate synaptic integration and firing. One of the most known voltage dependent channels regulated by muscarinic receptors is the K(V)7/KCNQ channel. It is not known whether these channels regulate the integration of suprathreshold corticostriatal responses. Here, we study the impact of cholinergic muscarinic modulation on the synaptic response of SPNs by regulating K(V)7 channels. We found that K(V)7 channels regulate corticostriatal synaptic integration and that this modulation occurs in the dendritic/spines compartment. In contrast, it is negligible in the somatic compartment. This modulation occurs on sub- and suprathreshold responses and lasts during the whole duration of the responses, hundreds of milliseconds, greatly altering SPNs firing properties. This modulation affected the behavior of the striatal microcircuit. Hindawi Publishing Corporation 2015 2015-05-31 /pmc/articles/PMC4465714/ /pubmed/26113994 http://dx.doi.org/10.1155/2015/472676 Text en Copyright © 2015 M. Belén Pérez-Ramírez et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Pérez-Ramírez, M. Belén
Laville, Antonio
Tapia, Dagoberto
Duhne, Mariana
Lara-González, Esther
Bargas, José
Galarraga, Elvira
K(V)7 Channels Regulate Firing during Synaptic Integration in GABAergic Striatal Neurons
title K(V)7 Channels Regulate Firing during Synaptic Integration in GABAergic Striatal Neurons
title_full K(V)7 Channels Regulate Firing during Synaptic Integration in GABAergic Striatal Neurons
title_fullStr K(V)7 Channels Regulate Firing during Synaptic Integration in GABAergic Striatal Neurons
title_full_unstemmed K(V)7 Channels Regulate Firing during Synaptic Integration in GABAergic Striatal Neurons
title_short K(V)7 Channels Regulate Firing during Synaptic Integration in GABAergic Striatal Neurons
title_sort k(v)7 channels regulate firing during synaptic integration in gabaergic striatal neurons
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4465714/
https://www.ncbi.nlm.nih.gov/pubmed/26113994
http://dx.doi.org/10.1155/2015/472676
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