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Epac–protein kinase C alpha signaling in purinergic P2X3R-mediated hyperalgesia after inflammation

Sensitization of purinergic P2X3 receptors (P2X3Rs) is a major mechanism contributing to injury-induced exaggerated pain responses. We showed in a previous study that cyclic adenosine monophosphate (cAMP)–dependent guanine nucleotide exchange factor 1 (Epac1) in rat sensory dorsal root ganglia (DRGs...

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Autores principales: Gu, Yanping, Li, Guangwen, Chen, Yong, Huang, Li-Yen Mae
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4912236/
https://www.ncbi.nlm.nih.gov/pubmed/26963850
http://dx.doi.org/10.1097/j.pain.0000000000000547
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author Gu, Yanping
Li, Guangwen
Chen, Yong
Huang, Li-Yen Mae
author_facet Gu, Yanping
Li, Guangwen
Chen, Yong
Huang, Li-Yen Mae
author_sort Gu, Yanping
collection PubMed
description Sensitization of purinergic P2X3 receptors (P2X3Rs) is a major mechanism contributing to injury-induced exaggerated pain responses. We showed in a previous study that cyclic adenosine monophosphate (cAMP)–dependent guanine nucleotide exchange factor 1 (Epac1) in rat sensory dorsal root ganglia (DRGs) is upregulated after inflammatory injury, and it plays a critical role in P2X3R sensitization by activating protein kinase C epsilon (PKCε) inside the cells. protein kinase C epsilon has been established as the major PKC isoform mediating injury-induced hyperalgesic responses. On the other hand, the role of PKCα in receptor sensitization was seldom considered. Here, we studied the participation of PKCα in Epac signaling in P2X3R-mediated hyperalgesia. The expression of both Epac1 and Epac2 and the level of cAMP in DRGs are greatly enhanced after complete Freund adjuvant (CFA)–induced inflammation. The expression of phosphorylated PKCα is also upregulated. Complete Freund adjuvant (CFA)–induced P2X3R-mediated hyperalgesia is not only blocked by Epac antagonists but also by the classical PKC isoform inhibitors, Go6976, and PKCα-siRNA. These CFA effects are mimicked by the application of the Epac agonist, 8-(4-chlorophenylthio)-2 -O-methyl-cAMP (CPT), in control rats, further confirming the involvement of Epacs. Because the application of Go6976 prior to CPT still reduces CPT-induced hyperalgesia, PKCα is downstream of Epacs to mediate the enhancement of P2X3R responses in DRGs. The pattern of translocation of PKCα inside DRG neurons in response to CPT or CFA stimulation is distinct from that of PKCε. Thus, in contrast to prevalent view, PKCα also plays an essential role in producing complex inflammation-induced receptor-mediated hyperalgesia.
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spelling pubmed-49122362016-07-12 Epac–protein kinase C alpha signaling in purinergic P2X3R-mediated hyperalgesia after inflammation Gu, Yanping Li, Guangwen Chen, Yong Huang, Li-Yen Mae Pain Research Paper Sensitization of purinergic P2X3 receptors (P2X3Rs) is a major mechanism contributing to injury-induced exaggerated pain responses. We showed in a previous study that cyclic adenosine monophosphate (cAMP)–dependent guanine nucleotide exchange factor 1 (Epac1) in rat sensory dorsal root ganglia (DRGs) is upregulated after inflammatory injury, and it plays a critical role in P2X3R sensitization by activating protein kinase C epsilon (PKCε) inside the cells. protein kinase C epsilon has been established as the major PKC isoform mediating injury-induced hyperalgesic responses. On the other hand, the role of PKCα in receptor sensitization was seldom considered. Here, we studied the participation of PKCα in Epac signaling in P2X3R-mediated hyperalgesia. The expression of both Epac1 and Epac2 and the level of cAMP in DRGs are greatly enhanced after complete Freund adjuvant (CFA)–induced inflammation. The expression of phosphorylated PKCα is also upregulated. Complete Freund adjuvant (CFA)–induced P2X3R-mediated hyperalgesia is not only blocked by Epac antagonists but also by the classical PKC isoform inhibitors, Go6976, and PKCα-siRNA. These CFA effects are mimicked by the application of the Epac agonist, 8-(4-chlorophenylthio)-2 -O-methyl-cAMP (CPT), in control rats, further confirming the involvement of Epacs. Because the application of Go6976 prior to CPT still reduces CPT-induced hyperalgesia, PKCα is downstream of Epacs to mediate the enhancement of P2X3R responses in DRGs. The pattern of translocation of PKCα inside DRG neurons in response to CPT or CFA stimulation is distinct from that of PKCε. Thus, in contrast to prevalent view, PKCα also plays an essential role in producing complex inflammation-induced receptor-mediated hyperalgesia. Wolters Kluwer 2016-03-08 2016-07 /pmc/articles/PMC4912236/ /pubmed/26963850 http://dx.doi.org/10.1097/j.pain.0000000000000547 Text en © 2016 International Association for the Study of Pain This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (http://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits downloading and sharing the work provided it is properly cited. The work cannot be changed in any way or used commercially.
spellingShingle Research Paper
Gu, Yanping
Li, Guangwen
Chen, Yong
Huang, Li-Yen Mae
Epac–protein kinase C alpha signaling in purinergic P2X3R-mediated hyperalgesia after inflammation
title Epac–protein kinase C alpha signaling in purinergic P2X3R-mediated hyperalgesia after inflammation
title_full Epac–protein kinase C alpha signaling in purinergic P2X3R-mediated hyperalgesia after inflammation
title_fullStr Epac–protein kinase C alpha signaling in purinergic P2X3R-mediated hyperalgesia after inflammation
title_full_unstemmed Epac–protein kinase C alpha signaling in purinergic P2X3R-mediated hyperalgesia after inflammation
title_short Epac–protein kinase C alpha signaling in purinergic P2X3R-mediated hyperalgesia after inflammation
title_sort epac–protein kinase c alpha signaling in purinergic p2x3r-mediated hyperalgesia after inflammation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4912236/
https://www.ncbi.nlm.nih.gov/pubmed/26963850
http://dx.doi.org/10.1097/j.pain.0000000000000547
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