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The emerging role of AMPK in the regulation of breathing and oxygen supply

Regulation of breathing is critical to our capacity to accommodate deficits in oxygen availability and demand during, for example, sleep and ascent to altitude. It is generally accepted that a fall in arterial oxygen increases afferent discharge from the carotid bodies to the brainstem and thus deli...

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Autores principales: Evans, A. Mark, Mahmoud, Amira D., Moral-Sanz, Javier, Hartmann, Sandy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5003690/
https://www.ncbi.nlm.nih.gov/pubmed/27574022
http://dx.doi.org/10.1042/BCJ20160002
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author Evans, A. Mark
Mahmoud, Amira D.
Moral-Sanz, Javier
Hartmann, Sandy
author_facet Evans, A. Mark
Mahmoud, Amira D.
Moral-Sanz, Javier
Hartmann, Sandy
author_sort Evans, A. Mark
collection PubMed
description Regulation of breathing is critical to our capacity to accommodate deficits in oxygen availability and demand during, for example, sleep and ascent to altitude. It is generally accepted that a fall in arterial oxygen increases afferent discharge from the carotid bodies to the brainstem and thus delivers increased ventilatory drive, which restores oxygen supply and protects against hypoventilation and apnoea. However, the precise molecular mechanisms involved remain unclear. We recently identified as critical to this process the AMP-activated protein kinase (AMPK), which is key to the cell-autonomous regulation of metabolic homoeostasis. This observation is significant for many reasons, not least because recent studies suggest that the gene for the AMPK-α1 catalytic subunit has been subjected to natural selection in high-altitude populations. It would appear, therefore, that evolutionary pressures have led to AMPK being utilized to regulate oxygen delivery and thus energy supply to the body in the short, medium and longer term. Contrary to current consensus, however, our findings suggest that AMPK regulates ventilation at the level of the caudal brainstem, even when afferent input responses from the carotid body are normal. We therefore hypothesize that AMPK integrates local hypoxic stress at defined loci within the brainstem respiratory network with an index of peripheral hypoxic status, namely afferent chemosensory inputs. Allied to this, AMPK is critical to the control of hypoxic pulmonary vasoconstriction and thus ventilation–perfusion matching at the lungs and may also determine oxygen supply to the foetus by, for example, modulating utero-placental blood flow.
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spelling pubmed-50036902016-09-09 The emerging role of AMPK in the regulation of breathing and oxygen supply Evans, A. Mark Mahmoud, Amira D. Moral-Sanz, Javier Hartmann, Sandy Biochem J Review Articles Regulation of breathing is critical to our capacity to accommodate deficits in oxygen availability and demand during, for example, sleep and ascent to altitude. It is generally accepted that a fall in arterial oxygen increases afferent discharge from the carotid bodies to the brainstem and thus delivers increased ventilatory drive, which restores oxygen supply and protects against hypoventilation and apnoea. However, the precise molecular mechanisms involved remain unclear. We recently identified as critical to this process the AMP-activated protein kinase (AMPK), which is key to the cell-autonomous regulation of metabolic homoeostasis. This observation is significant for many reasons, not least because recent studies suggest that the gene for the AMPK-α1 catalytic subunit has been subjected to natural selection in high-altitude populations. It would appear, therefore, that evolutionary pressures have led to AMPK being utilized to regulate oxygen delivery and thus energy supply to the body in the short, medium and longer term. Contrary to current consensus, however, our findings suggest that AMPK regulates ventilation at the level of the caudal brainstem, even when afferent input responses from the carotid body are normal. We therefore hypothesize that AMPK integrates local hypoxic stress at defined loci within the brainstem respiratory network with an index of peripheral hypoxic status, namely afferent chemosensory inputs. Allied to this, AMPK is critical to the control of hypoxic pulmonary vasoconstriction and thus ventilation–perfusion matching at the lungs and may also determine oxygen supply to the foetus by, for example, modulating utero-placental blood flow. Portland Press Ltd. 2016-08-30 2016-09-01 /pmc/articles/PMC5003690/ /pubmed/27574022 http://dx.doi.org/10.1042/BCJ20160002 Text en © 2016 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution Licence 4.0 (CC BY) (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Review Articles
Evans, A. Mark
Mahmoud, Amira D.
Moral-Sanz, Javier
Hartmann, Sandy
The emerging role of AMPK in the regulation of breathing and oxygen supply
title The emerging role of AMPK in the regulation of breathing and oxygen supply
title_full The emerging role of AMPK in the regulation of breathing and oxygen supply
title_fullStr The emerging role of AMPK in the regulation of breathing and oxygen supply
title_full_unstemmed The emerging role of AMPK in the regulation of breathing and oxygen supply
title_short The emerging role of AMPK in the regulation of breathing and oxygen supply
title_sort emerging role of ampk in the regulation of breathing and oxygen supply
topic Review Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5003690/
https://www.ncbi.nlm.nih.gov/pubmed/27574022
http://dx.doi.org/10.1042/BCJ20160002
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