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Signaling mechanism for modulation by ATP of glycine receptors on rat retinal ganglion cells

ATP modulates voltage- and ligand-gated channels in the CNS via the activation of ionotropic P2X and metabotropic P2Y receptors. While P2Y receptors are expressed in retinal neurons, the function of these receptors in the retina is largely unknown. Using whole-cell patch-clamp techniques in rat reti...

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Autores principales: Zhang, Ping-Ping, Zhang, Gong, Zhou, Wei, Weng, Shi-Jun, Yang, Xiong-Li, Zhong, Yong-Mei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4928062/
https://www.ncbi.nlm.nih.gov/pubmed/27357477
http://dx.doi.org/10.1038/srep28938
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author Zhang, Ping-Ping
Zhang, Gong
Zhou, Wei
Weng, Shi-Jun
Yang, Xiong-Li
Zhong, Yong-Mei
author_facet Zhang, Ping-Ping
Zhang, Gong
Zhou, Wei
Weng, Shi-Jun
Yang, Xiong-Li
Zhong, Yong-Mei
author_sort Zhang, Ping-Ping
collection PubMed
description ATP modulates voltage- and ligand-gated channels in the CNS via the activation of ionotropic P2X and metabotropic P2Y receptors. While P2Y receptors are expressed in retinal neurons, the function of these receptors in the retina is largely unknown. Using whole-cell patch-clamp techniques in rat retinal slice preparations, we demonstrated that ATP suppressed glycine receptor-mediated currents of OFF type ganglion cells (OFF-GCs) dose-dependently, and the effect was in part mediated by P2Y(1) and P2Y(11), but not by P2X. The ATP effect was abolished by intracellular dialysis of a G(q/11) protein inhibitor and phosphatidylinositol (PI)-phospholipase C (PLC) inhibitor, but not phosphatidylcholine (PC)-PLC inhibitor. The ATP effect was accompanied by an increase in [Ca(2+)](i) through the IP(3)-sensitive pathway and was blocked by intracellular Ca(2+)-free solution. Furthermore, the ATP effect was eliminated in the presence of PKC inhibitors. Neither PKA nor PKG system was involved. These results suggest that the ATP-induced suppression may be mediated by a distinct G(q/11)/PI-PLC/IP(3)/Ca(2+)/PKC signaling pathway, following the activation of P2Y(1,11) and other P2Y subtypes. Consistently, ATP suppressed glycine receptor-mediated light-evoked inhibitory postsynaptic currents of OFF-GCs. These results suggest that ATP may modify the ON-to-OFF crossover inhibition, thus changing action potential patterns of OFF-GCs.
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spelling pubmed-49280622016-07-01 Signaling mechanism for modulation by ATP of glycine receptors on rat retinal ganglion cells Zhang, Ping-Ping Zhang, Gong Zhou, Wei Weng, Shi-Jun Yang, Xiong-Li Zhong, Yong-Mei Sci Rep Article ATP modulates voltage- and ligand-gated channels in the CNS via the activation of ionotropic P2X and metabotropic P2Y receptors. While P2Y receptors are expressed in retinal neurons, the function of these receptors in the retina is largely unknown. Using whole-cell patch-clamp techniques in rat retinal slice preparations, we demonstrated that ATP suppressed glycine receptor-mediated currents of OFF type ganglion cells (OFF-GCs) dose-dependently, and the effect was in part mediated by P2Y(1) and P2Y(11), but not by P2X. The ATP effect was abolished by intracellular dialysis of a G(q/11) protein inhibitor and phosphatidylinositol (PI)-phospholipase C (PLC) inhibitor, but not phosphatidylcholine (PC)-PLC inhibitor. The ATP effect was accompanied by an increase in [Ca(2+)](i) through the IP(3)-sensitive pathway and was blocked by intracellular Ca(2+)-free solution. Furthermore, the ATP effect was eliminated in the presence of PKC inhibitors. Neither PKA nor PKG system was involved. These results suggest that the ATP-induced suppression may be mediated by a distinct G(q/11)/PI-PLC/IP(3)/Ca(2+)/PKC signaling pathway, following the activation of P2Y(1,11) and other P2Y subtypes. Consistently, ATP suppressed glycine receptor-mediated light-evoked inhibitory postsynaptic currents of OFF-GCs. These results suggest that ATP may modify the ON-to-OFF crossover inhibition, thus changing action potential patterns of OFF-GCs. Nature Publishing Group 2016-06-30 /pmc/articles/PMC4928062/ /pubmed/27357477 http://dx.doi.org/10.1038/srep28938 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Zhang, Ping-Ping
Zhang, Gong
Zhou, Wei
Weng, Shi-Jun
Yang, Xiong-Li
Zhong, Yong-Mei
Signaling mechanism for modulation by ATP of glycine receptors on rat retinal ganglion cells
title Signaling mechanism for modulation by ATP of glycine receptors on rat retinal ganglion cells
title_full Signaling mechanism for modulation by ATP of glycine receptors on rat retinal ganglion cells
title_fullStr Signaling mechanism for modulation by ATP of glycine receptors on rat retinal ganglion cells
title_full_unstemmed Signaling mechanism for modulation by ATP of glycine receptors on rat retinal ganglion cells
title_short Signaling mechanism for modulation by ATP of glycine receptors on rat retinal ganglion cells
title_sort signaling mechanism for modulation by atp of glycine receptors on rat retinal ganglion cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4928062/
https://www.ncbi.nlm.nih.gov/pubmed/27357477
http://dx.doi.org/10.1038/srep28938
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