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Nucleotide transmitters ATP and ADP mediate intercellular calcium wave communication via P2Y(12/13) receptors among BV-2 microglia

Nerve injury is accompanied by a liberation of diverse nucleotides, some of which act as ‘find/eat-me’ signals in mediating neuron-glial interplay. Intercellular Ca(2+) wave (ICW) communication is the main approach by which glial cells interact and coordinate with each other to execute immune defens...

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Autores principales: Jiang, Pengchong, Xing, Fulin, Guo, Bu, Yang, Jianyu, Li, Zheming, Wei, Wei, Hu, Fen, Lee, Imshik, Zhang, Xinzheng, Pan, Leiting, Xu, Jingjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5553643/
https://www.ncbi.nlm.nih.gov/pubmed/28800362
http://dx.doi.org/10.1371/journal.pone.0183114
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author Jiang, Pengchong
Xing, Fulin
Guo, Bu
Yang, Jianyu
Li, Zheming
Wei, Wei
Hu, Fen
Lee, Imshik
Zhang, Xinzheng
Pan, Leiting
Xu, Jingjun
author_facet Jiang, Pengchong
Xing, Fulin
Guo, Bu
Yang, Jianyu
Li, Zheming
Wei, Wei
Hu, Fen
Lee, Imshik
Zhang, Xinzheng
Pan, Leiting
Xu, Jingjun
author_sort Jiang, Pengchong
collection PubMed
description Nerve injury is accompanied by a liberation of diverse nucleotides, some of which act as ‘find/eat-me’ signals in mediating neuron-glial interplay. Intercellular Ca(2+) wave (ICW) communication is the main approach by which glial cells interact and coordinate with each other to execute immune defense. However, the detailed mechanisms on how these nucleotides participate in ICW communication remain largely unclear. In the present work, we employed a mechanical stimulus to an individual BV-2 microglia to simulate localized injury. Remarkable ICW propagation was observed no matter whether calcium was in the environment or not. Apyrase (ATP/ADP-hydrolyzing enzyme), suramin (broad-spectrum P2 receptor antagonist), 2-APB (IP(3) receptor blocker) and thapsigargin (endoplasmic reticulum calcium pump inhibitor) potently inhibited these ICWs, respectively, indicating the dependence of nucleotide signals and P2Y receptors. Then, we detected the involvement of five naturally occurring nucleotides (ATP, ADP, UTP, UDP and UDP-glucose) by desensitizing receptors. Results showed that desensitization with ATP and ADP could block ICW propagation in a dose-dependent manner, whereas other nucleotides had little effect. Meanwhile, the expression of P2Y receptors in BV-2 microglia was identified and their contributions were analyzed, from which we suggested P2Y(12/13) receptors activation mostly contributed to ICWs. Besides, we estimated that extracellular ATP and ADP concentration sensed by BV-2 microglia was about 0.3 μM during ICWs by analyzing calcium dynamic characteristics. Taken together, these results demonstrated that the nucleotides ATP and ADP were predominant signal transmitters in mechanical stimulation-induced ICW communication through acting on P2Y(12/13) receptors in BV-2 microglia.
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spelling pubmed-55536432017-08-25 Nucleotide transmitters ATP and ADP mediate intercellular calcium wave communication via P2Y(12/13) receptors among BV-2 microglia Jiang, Pengchong Xing, Fulin Guo, Bu Yang, Jianyu Li, Zheming Wei, Wei Hu, Fen Lee, Imshik Zhang, Xinzheng Pan, Leiting Xu, Jingjun PLoS One Research Article Nerve injury is accompanied by a liberation of diverse nucleotides, some of which act as ‘find/eat-me’ signals in mediating neuron-glial interplay. Intercellular Ca(2+) wave (ICW) communication is the main approach by which glial cells interact and coordinate with each other to execute immune defense. However, the detailed mechanisms on how these nucleotides participate in ICW communication remain largely unclear. In the present work, we employed a mechanical stimulus to an individual BV-2 microglia to simulate localized injury. Remarkable ICW propagation was observed no matter whether calcium was in the environment or not. Apyrase (ATP/ADP-hydrolyzing enzyme), suramin (broad-spectrum P2 receptor antagonist), 2-APB (IP(3) receptor blocker) and thapsigargin (endoplasmic reticulum calcium pump inhibitor) potently inhibited these ICWs, respectively, indicating the dependence of nucleotide signals and P2Y receptors. Then, we detected the involvement of five naturally occurring nucleotides (ATP, ADP, UTP, UDP and UDP-glucose) by desensitizing receptors. Results showed that desensitization with ATP and ADP could block ICW propagation in a dose-dependent manner, whereas other nucleotides had little effect. Meanwhile, the expression of P2Y receptors in BV-2 microglia was identified and their contributions were analyzed, from which we suggested P2Y(12/13) receptors activation mostly contributed to ICWs. Besides, we estimated that extracellular ATP and ADP concentration sensed by BV-2 microglia was about 0.3 μM during ICWs by analyzing calcium dynamic characteristics. Taken together, these results demonstrated that the nucleotides ATP and ADP were predominant signal transmitters in mechanical stimulation-induced ICW communication through acting on P2Y(12/13) receptors in BV-2 microglia. Public Library of Science 2017-08-11 /pmc/articles/PMC5553643/ /pubmed/28800362 http://dx.doi.org/10.1371/journal.pone.0183114 Text en © 2017 Jiang et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Jiang, Pengchong
Xing, Fulin
Guo, Bu
Yang, Jianyu
Li, Zheming
Wei, Wei
Hu, Fen
Lee, Imshik
Zhang, Xinzheng
Pan, Leiting
Xu, Jingjun
Nucleotide transmitters ATP and ADP mediate intercellular calcium wave communication via P2Y(12/13) receptors among BV-2 microglia
title Nucleotide transmitters ATP and ADP mediate intercellular calcium wave communication via P2Y(12/13) receptors among BV-2 microglia
title_full Nucleotide transmitters ATP and ADP mediate intercellular calcium wave communication via P2Y(12/13) receptors among BV-2 microglia
title_fullStr Nucleotide transmitters ATP and ADP mediate intercellular calcium wave communication via P2Y(12/13) receptors among BV-2 microglia
title_full_unstemmed Nucleotide transmitters ATP and ADP mediate intercellular calcium wave communication via P2Y(12/13) receptors among BV-2 microglia
title_short Nucleotide transmitters ATP and ADP mediate intercellular calcium wave communication via P2Y(12/13) receptors among BV-2 microglia
title_sort nucleotide transmitters atp and adp mediate intercellular calcium wave communication via p2y(12/13) receptors among bv-2 microglia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5553643/
https://www.ncbi.nlm.nih.gov/pubmed/28800362
http://dx.doi.org/10.1371/journal.pone.0183114
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