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Purinoreceptors and ectonucleotidases control ATP-induced calcium waveforms and calcium-dependent responses in microglia: Roles of P2 receptors and CD39 in ATP-stimulated microglia

Adenosine triphosphate (ATP) and its metabolites drive microglia migration and cytokine production by activating P2X- and P2Y- class purinergic receptors. Purinergic receptor activation gives rise to diverse intracellular calcium (Ca2+ signals, or waveforms, that differ in amplitude, duration, and f...

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Autores principales: Chun, Byeong J., Aryal, Surya P., Varughese, Peter, Sun, Bin, Bruno, Joshua A., Richards, Chris I., Bachstetter, Adam D., Kekenes-Huskey, Peter M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9868579/
https://www.ncbi.nlm.nih.gov/pubmed/36699679
http://dx.doi.org/10.3389/fphys.2022.1037417
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author Chun, Byeong J.
Aryal, Surya P.
Varughese, Peter
Sun, Bin
Bruno, Joshua A.
Richards, Chris I.
Bachstetter, Adam D.
Kekenes-Huskey, Peter M.
author_facet Chun, Byeong J.
Aryal, Surya P.
Varughese, Peter
Sun, Bin
Bruno, Joshua A.
Richards, Chris I.
Bachstetter, Adam D.
Kekenes-Huskey, Peter M.
author_sort Chun, Byeong J.
collection PubMed
description Adenosine triphosphate (ATP) and its metabolites drive microglia migration and cytokine production by activating P2X- and P2Y- class purinergic receptors. Purinergic receptor activation gives rise to diverse intracellular calcium (Ca2+ signals, or waveforms, that differ in amplitude, duration, and frequency. Whether and how these characteristics of diverse waveforms influence microglia function is not well-established. We developed a computational model trained with data from published primary murine microglia studies. We simulate how purinoreceptors influence Ca2+ signaling and migration, as well as, how purinoreceptor expression modifies these processes. Our simulation confirmed that P2 receptors encode the amplitude and duration of the ATP-induced Ca2+ waveforms. Our simulations also implicate CD39, an ectonucleotidase that rapidly degrades ATP, as a regulator of purinergic receptor-induced Ca2+ responses. Namely, it was necessary to account for CD39 metabolism of ATP to align the model’s predicted purinoreceptor responses with published experimental data. In addition, our modeling results indicate that small Ca2+ transients accompany migration, while large and sustained transients are needed for cytokine responses. Lastly, as a proof-of-principal, we predict Ca2+ transients and cell membrane displacements in a BV2 microglia cell line using published P2 receptor mRNA data to illustrate how our computer model may be extrapolated to other microglia subtypes. These findings provide important insights into how differences in purinergic receptor expression influence microglial responses to ATP.
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spelling pubmed-98685792023-01-24 Purinoreceptors and ectonucleotidases control ATP-induced calcium waveforms and calcium-dependent responses in microglia: Roles of P2 receptors and CD39 in ATP-stimulated microglia Chun, Byeong J. Aryal, Surya P. Varughese, Peter Sun, Bin Bruno, Joshua A. Richards, Chris I. Bachstetter, Adam D. Kekenes-Huskey, Peter M. Front Physiol Physiology Adenosine triphosphate (ATP) and its metabolites drive microglia migration and cytokine production by activating P2X- and P2Y- class purinergic receptors. Purinergic receptor activation gives rise to diverse intracellular calcium (Ca2+ signals, or waveforms, that differ in amplitude, duration, and frequency. Whether and how these characteristics of diverse waveforms influence microglia function is not well-established. We developed a computational model trained with data from published primary murine microglia studies. We simulate how purinoreceptors influence Ca2+ signaling and migration, as well as, how purinoreceptor expression modifies these processes. Our simulation confirmed that P2 receptors encode the amplitude and duration of the ATP-induced Ca2+ waveforms. Our simulations also implicate CD39, an ectonucleotidase that rapidly degrades ATP, as a regulator of purinergic receptor-induced Ca2+ responses. Namely, it was necessary to account for CD39 metabolism of ATP to align the model’s predicted purinoreceptor responses with published experimental data. In addition, our modeling results indicate that small Ca2+ transients accompany migration, while large and sustained transients are needed for cytokine responses. Lastly, as a proof-of-principal, we predict Ca2+ transients and cell membrane displacements in a BV2 microglia cell line using published P2 receptor mRNA data to illustrate how our computer model may be extrapolated to other microglia subtypes. These findings provide important insights into how differences in purinergic receptor expression influence microglial responses to ATP. Frontiers Media S.A. 2023-01-09 /pmc/articles/PMC9868579/ /pubmed/36699679 http://dx.doi.org/10.3389/fphys.2022.1037417 Text en Copyright © 2023 Chun, Aryal, Varughese, Sun, Bruno, Richards, Bachstetter and Kekenes-Huskey. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Chun, Byeong J.
Aryal, Surya P.
Varughese, Peter
Sun, Bin
Bruno, Joshua A.
Richards, Chris I.
Bachstetter, Adam D.
Kekenes-Huskey, Peter M.
Purinoreceptors and ectonucleotidases control ATP-induced calcium waveforms and calcium-dependent responses in microglia: Roles of P2 receptors and CD39 in ATP-stimulated microglia
title Purinoreceptors and ectonucleotidases control ATP-induced calcium waveforms and calcium-dependent responses in microglia: Roles of P2 receptors and CD39 in ATP-stimulated microglia
title_full Purinoreceptors and ectonucleotidases control ATP-induced calcium waveforms and calcium-dependent responses in microglia: Roles of P2 receptors and CD39 in ATP-stimulated microglia
title_fullStr Purinoreceptors and ectonucleotidases control ATP-induced calcium waveforms and calcium-dependent responses in microglia: Roles of P2 receptors and CD39 in ATP-stimulated microglia
title_full_unstemmed Purinoreceptors and ectonucleotidases control ATP-induced calcium waveforms and calcium-dependent responses in microglia: Roles of P2 receptors and CD39 in ATP-stimulated microglia
title_short Purinoreceptors and ectonucleotidases control ATP-induced calcium waveforms and calcium-dependent responses in microglia: Roles of P2 receptors and CD39 in ATP-stimulated microglia
title_sort purinoreceptors and ectonucleotidases control atp-induced calcium waveforms and calcium-dependent responses in microglia: roles of p2 receptors and cd39 in atp-stimulated microglia
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9868579/
https://www.ncbi.nlm.nih.gov/pubmed/36699679
http://dx.doi.org/10.3389/fphys.2022.1037417
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