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An EP2 Agonist Facilitates NMDA-Induced Outward Currents and Inhibits Dendritic Beading through Activation of BK Channels in Mouse Cortical Neurons

Prostaglandin E(2) (PGE(2)), a major metabolite of arachidonic acid produced by cyclooxygenase pathways, exerts its bioactive responses by activating four E-prostanoid receptor subtypes, EP1, EP2, EP3, and EP4. PGE(2) enables modulating N-methyl-D-aspartate (NMDA) receptor-mediated responses. Howeve...

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Autores principales: Hayashi, Yoshinori, Morinaga, Saori, Liu, Xia, Zhang, Jing, Wu, Zhou, Yokoyama, Takeshi, Nakanishi, Hiroshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4889853/
https://www.ncbi.nlm.nih.gov/pubmed/27298516
http://dx.doi.org/10.1155/2016/5079597
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author Hayashi, Yoshinori
Morinaga, Saori
Liu, Xia
Zhang, Jing
Wu, Zhou
Yokoyama, Takeshi
Nakanishi, Hiroshi
author_facet Hayashi, Yoshinori
Morinaga, Saori
Liu, Xia
Zhang, Jing
Wu, Zhou
Yokoyama, Takeshi
Nakanishi, Hiroshi
author_sort Hayashi, Yoshinori
collection PubMed
description Prostaglandin E(2) (PGE(2)), a major metabolite of arachidonic acid produced by cyclooxygenase pathways, exerts its bioactive responses by activating four E-prostanoid receptor subtypes, EP1, EP2, EP3, and EP4. PGE(2) enables modulating N-methyl-D-aspartate (NMDA) receptor-mediated responses. However, the effect of E-prostanoid receptor agonists on large-conductance Ca(2+)-activated K(+) (BK) channels, which are functionally coupled with NMDA receptors, remains unclear. Here, we showed that EP2 receptor-mediated signaling pathways increased NMDA-induced outward currents (I (NMDA-OUT)), which are associated with the BK channel activation. Patch-clamp recordings from the acutely dissociated mouse cortical neurons revealed that an EP2 receptor agonist activated I (NMDA-OUT), whereas an EP3 receptor agonist reduced it. Agonists of EP1 or EP4 receptors showed no significant effects on I (NMDA-OUT). A direct perfusion of 3,5′-cyclic adenosine monophosphate (cAMP) through the patch pipette facilitated I (NMDA-OUT), which was abolished by the presence of protein kinase A (PKA) inhibitor. Furthermore, facilitation of I (NMDA-OUT) caused by an EP2 receptor agonist was significantly suppressed by PKA inhibitor. Finally, the activation of BK channels through EP2 receptors facilitated the recovery phase of NMDA-induced dendritic beading in the primary cultured cortical neurons. These results suggest that a direct activation of BK channels by EP2 receptor-mediated signaling pathways plays neuroprotective roles in cortical neurons.
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spelling pubmed-48898532016-06-13 An EP2 Agonist Facilitates NMDA-Induced Outward Currents and Inhibits Dendritic Beading through Activation of BK Channels in Mouse Cortical Neurons Hayashi, Yoshinori Morinaga, Saori Liu, Xia Zhang, Jing Wu, Zhou Yokoyama, Takeshi Nakanishi, Hiroshi Mediators Inflamm Research Article Prostaglandin E(2) (PGE(2)), a major metabolite of arachidonic acid produced by cyclooxygenase pathways, exerts its bioactive responses by activating four E-prostanoid receptor subtypes, EP1, EP2, EP3, and EP4. PGE(2) enables modulating N-methyl-D-aspartate (NMDA) receptor-mediated responses. However, the effect of E-prostanoid receptor agonists on large-conductance Ca(2+)-activated K(+) (BK) channels, which are functionally coupled with NMDA receptors, remains unclear. Here, we showed that EP2 receptor-mediated signaling pathways increased NMDA-induced outward currents (I (NMDA-OUT)), which are associated with the BK channel activation. Patch-clamp recordings from the acutely dissociated mouse cortical neurons revealed that an EP2 receptor agonist activated I (NMDA-OUT), whereas an EP3 receptor agonist reduced it. Agonists of EP1 or EP4 receptors showed no significant effects on I (NMDA-OUT). A direct perfusion of 3,5′-cyclic adenosine monophosphate (cAMP) through the patch pipette facilitated I (NMDA-OUT), which was abolished by the presence of protein kinase A (PKA) inhibitor. Furthermore, facilitation of I (NMDA-OUT) caused by an EP2 receptor agonist was significantly suppressed by PKA inhibitor. Finally, the activation of BK channels through EP2 receptors facilitated the recovery phase of NMDA-induced dendritic beading in the primary cultured cortical neurons. These results suggest that a direct activation of BK channels by EP2 receptor-mediated signaling pathways plays neuroprotective roles in cortical neurons. Hindawi Publishing Corporation 2016 2016-05-19 /pmc/articles/PMC4889853/ /pubmed/27298516 http://dx.doi.org/10.1155/2016/5079597 Text en Copyright © 2016 Yoshinori Hayashi et al. https://creativecommons.org/licenses/by/4.0/ 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
Hayashi, Yoshinori
Morinaga, Saori
Liu, Xia
Zhang, Jing
Wu, Zhou
Yokoyama, Takeshi
Nakanishi, Hiroshi
An EP2 Agonist Facilitates NMDA-Induced Outward Currents and Inhibits Dendritic Beading through Activation of BK Channels in Mouse Cortical Neurons
title An EP2 Agonist Facilitates NMDA-Induced Outward Currents and Inhibits Dendritic Beading through Activation of BK Channels in Mouse Cortical Neurons
title_full An EP2 Agonist Facilitates NMDA-Induced Outward Currents and Inhibits Dendritic Beading through Activation of BK Channels in Mouse Cortical Neurons
title_fullStr An EP2 Agonist Facilitates NMDA-Induced Outward Currents and Inhibits Dendritic Beading through Activation of BK Channels in Mouse Cortical Neurons
title_full_unstemmed An EP2 Agonist Facilitates NMDA-Induced Outward Currents and Inhibits Dendritic Beading through Activation of BK Channels in Mouse Cortical Neurons
title_short An EP2 Agonist Facilitates NMDA-Induced Outward Currents and Inhibits Dendritic Beading through Activation of BK Channels in Mouse Cortical Neurons
title_sort ep2 agonist facilitates nmda-induced outward currents and inhibits dendritic beading through activation of bk channels in mouse cortical neurons
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4889853/
https://www.ncbi.nlm.nih.gov/pubmed/27298516
http://dx.doi.org/10.1155/2016/5079597
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