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The Purinome and the preBötzinger Complex – A Ménage of Unexplored Mechanisms That May Modulate/Shape the Hypoxic Ventilatory Response

Exploration of purinergic signaling in brainstem homeostatic control processes is challenging the traditional view that the biphasic hypoxic ventilatory response, which comprises a rapid initial increase in breathing followed by a slower secondary depression, reflects the interaction between periphe...

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Autores principales: Reklow, Robert J., Alvares, Tucaaue S., Zhang, Yong, Miranda Tapia, Ana P., Biancardi, Vivian, Katzell, Alexis K., Frangos, Sara M., Hansen, Megan A., Toohey, Alexander W., Cass, Carol E., Young, James D., Pagliardini, Silvia, Boison, Detlev, Funk, Gregory D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6712068/
https://www.ncbi.nlm.nih.gov/pubmed/31496935
http://dx.doi.org/10.3389/fncel.2019.00365
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author Reklow, Robert J.
Alvares, Tucaaue S.
Zhang, Yong
Miranda Tapia, Ana P.
Biancardi, Vivian
Katzell, Alexis K.
Frangos, Sara M.
Hansen, Megan A.
Toohey, Alexander W.
Cass, Carol E.
Young, James D.
Pagliardini, Silvia
Boison, Detlev
Funk, Gregory D.
author_facet Reklow, Robert J.
Alvares, Tucaaue S.
Zhang, Yong
Miranda Tapia, Ana P.
Biancardi, Vivian
Katzell, Alexis K.
Frangos, Sara M.
Hansen, Megan A.
Toohey, Alexander W.
Cass, Carol E.
Young, James D.
Pagliardini, Silvia
Boison, Detlev
Funk, Gregory D.
author_sort Reklow, Robert J.
collection PubMed
description Exploration of purinergic signaling in brainstem homeostatic control processes is challenging the traditional view that the biphasic hypoxic ventilatory response, which comprises a rapid initial increase in breathing followed by a slower secondary depression, reflects the interaction between peripheral chemoreceptor-mediated excitation and central inhibition. While controversial, accumulating evidence supports that in addition to peripheral excitation, interactions between central excitatory and inhibitory purinergic mechanisms shape this key homeostatic reflex. The objective of this review is to present our working model of how purinergic signaling modulates the glutamatergic inspiratory synapse in the preBötzinger Complex (key site of inspiratory rhythm generation) to shape the hypoxic ventilatory response. It is based on the perspective that has emerged from decades of analysis of glutamatergic synapses in the hippocampus, where the actions of extracellular ATP are determined by a complex signaling system, the purinome. The purinome involves not only the actions of ATP and adenosine at P2 and P1 receptors, respectively, but diverse families of enzymes and transporters that collectively determine the rate of ATP degradation, adenosine accumulation and adenosine clearance. We summarize current knowledge of the roles played by these different purinergic elements in the hypoxic ventilatory response, often drawing on examples from other brain regions, and look ahead to many unanswered questions and remaining challenges.
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spelling pubmed-67120682019-09-06 The Purinome and the preBötzinger Complex – A Ménage of Unexplored Mechanisms That May Modulate/Shape the Hypoxic Ventilatory Response Reklow, Robert J. Alvares, Tucaaue S. Zhang, Yong Miranda Tapia, Ana P. Biancardi, Vivian Katzell, Alexis K. Frangos, Sara M. Hansen, Megan A. Toohey, Alexander W. Cass, Carol E. Young, James D. Pagliardini, Silvia Boison, Detlev Funk, Gregory D. Front Cell Neurosci Neuroscience Exploration of purinergic signaling in brainstem homeostatic control processes is challenging the traditional view that the biphasic hypoxic ventilatory response, which comprises a rapid initial increase in breathing followed by a slower secondary depression, reflects the interaction between peripheral chemoreceptor-mediated excitation and central inhibition. While controversial, accumulating evidence supports that in addition to peripheral excitation, interactions between central excitatory and inhibitory purinergic mechanisms shape this key homeostatic reflex. The objective of this review is to present our working model of how purinergic signaling modulates the glutamatergic inspiratory synapse in the preBötzinger Complex (key site of inspiratory rhythm generation) to shape the hypoxic ventilatory response. It is based on the perspective that has emerged from decades of analysis of glutamatergic synapses in the hippocampus, where the actions of extracellular ATP are determined by a complex signaling system, the purinome. The purinome involves not only the actions of ATP and adenosine at P2 and P1 receptors, respectively, but diverse families of enzymes and transporters that collectively determine the rate of ATP degradation, adenosine accumulation and adenosine clearance. We summarize current knowledge of the roles played by these different purinergic elements in the hypoxic ventilatory response, often drawing on examples from other brain regions, and look ahead to many unanswered questions and remaining challenges. Frontiers Media S.A. 2019-08-21 /pmc/articles/PMC6712068/ /pubmed/31496935 http://dx.doi.org/10.3389/fncel.2019.00365 Text en Copyright © 2019 Reklow, Alvares, Zhang, Miranda Tapia, Biancardi, Katzell, Frangos, Hansen, Toohey, Cass, Young, Pagliardini, Boison and Funk. http://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 Neuroscience
Reklow, Robert J.
Alvares, Tucaaue S.
Zhang, Yong
Miranda Tapia, Ana P.
Biancardi, Vivian
Katzell, Alexis K.
Frangos, Sara M.
Hansen, Megan A.
Toohey, Alexander W.
Cass, Carol E.
Young, James D.
Pagliardini, Silvia
Boison, Detlev
Funk, Gregory D.
The Purinome and the preBötzinger Complex – A Ménage of Unexplored Mechanisms That May Modulate/Shape the Hypoxic Ventilatory Response
title The Purinome and the preBötzinger Complex – A Ménage of Unexplored Mechanisms That May Modulate/Shape the Hypoxic Ventilatory Response
title_full The Purinome and the preBötzinger Complex – A Ménage of Unexplored Mechanisms That May Modulate/Shape the Hypoxic Ventilatory Response
title_fullStr The Purinome and the preBötzinger Complex – A Ménage of Unexplored Mechanisms That May Modulate/Shape the Hypoxic Ventilatory Response
title_full_unstemmed The Purinome and the preBötzinger Complex – A Ménage of Unexplored Mechanisms That May Modulate/Shape the Hypoxic Ventilatory Response
title_short The Purinome and the preBötzinger Complex – A Ménage of Unexplored Mechanisms That May Modulate/Shape the Hypoxic Ventilatory Response
title_sort purinome and the prebötzinger complex – a ménage of unexplored mechanisms that may modulate/shape the hypoxic ventilatory response
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6712068/
https://www.ncbi.nlm.nih.gov/pubmed/31496935
http://dx.doi.org/10.3389/fncel.2019.00365
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