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ATP Release from Vascular Endothelia Occurs Across Cx43 Hemichannels and Is Attenuated during Hypoxia

BACKGROUND: Extracellular ATP is an important signaling molecule for vascular adaptation to limited oxygen availability (hypoxia). Here, we pursued the contribution of vascular endothelia to extracellular ATP release under hypoxic conditions. METHODOLOGY, PRINCIPAL FINDINGS: We gained first insight...

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Autores principales: Faigle, Marion, Seessle, Jessica, Zug, Stephanie, El Kasmi, Karim C., Eltzschig, Holger K.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2474679/
https://www.ncbi.nlm.nih.gov/pubmed/18665255
http://dx.doi.org/10.1371/journal.pone.0002801
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author Faigle, Marion
Seessle, Jessica
Zug, Stephanie
El Kasmi, Karim C.
Eltzschig, Holger K.
author_facet Faigle, Marion
Seessle, Jessica
Zug, Stephanie
El Kasmi, Karim C.
Eltzschig, Holger K.
author_sort Faigle, Marion
collection PubMed
description BACKGROUND: Extracellular ATP is an important signaling molecule for vascular adaptation to limited oxygen availability (hypoxia). Here, we pursued the contribution of vascular endothelia to extracellular ATP release under hypoxic conditions. METHODOLOGY, PRINCIPAL FINDINGS: We gained first insight from studying ATP release from endothelia (HMEC-1) pre-exposed to hypoxia. Surprisingly, we found that ATP release was significantly attenuated following hypoxia exposure (2% oxygen, 22±3% after 48 h). In contrast, intracellular ATP was unchanged. Similarly, lactate-dehydrogenase release into the supernatants was similar between normoxic or hypoxic endothelia, suggesting that differences in lytic ATP release between normoxia or hypoxia are minimal. Next, we used pharmacological strategies to study potential mechanisms for endothelial-dependent ATP release (eg, verapamil, dipyridamole, 18-alpha-glycyrrhetinic acid, anandamide, connexin-mimetic peptides). These studies revealed that endothelial ATP release occurs – at least in part - through connexin 43 (Cx43) hemichannels. A real-time RT-PCR screen of endothelial connexin expression showed selective repression of Cx43 transcript and additional studies confirmed time-dependent Cx43 mRNA, total and surface protein repression during hypoxia. In addition, hypoxia resulted in Cx43-serine368 phosphorylation, which is known to switch Cx43 hemi-channels from an open to a closed state. CONCLUSIONS/SIGNIFICANCE: Taken together, these studies implicate endothelial Cx43 in hypoxia-associated repression of endothelial ATP release.
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spelling pubmed-24746792008-07-30 ATP Release from Vascular Endothelia Occurs Across Cx43 Hemichannels and Is Attenuated during Hypoxia Faigle, Marion Seessle, Jessica Zug, Stephanie El Kasmi, Karim C. Eltzschig, Holger K. PLoS One Research Article BACKGROUND: Extracellular ATP is an important signaling molecule for vascular adaptation to limited oxygen availability (hypoxia). Here, we pursued the contribution of vascular endothelia to extracellular ATP release under hypoxic conditions. METHODOLOGY, PRINCIPAL FINDINGS: We gained first insight from studying ATP release from endothelia (HMEC-1) pre-exposed to hypoxia. Surprisingly, we found that ATP release was significantly attenuated following hypoxia exposure (2% oxygen, 22±3% after 48 h). In contrast, intracellular ATP was unchanged. Similarly, lactate-dehydrogenase release into the supernatants was similar between normoxic or hypoxic endothelia, suggesting that differences in lytic ATP release between normoxia or hypoxia are minimal. Next, we used pharmacological strategies to study potential mechanisms for endothelial-dependent ATP release (eg, verapamil, dipyridamole, 18-alpha-glycyrrhetinic acid, anandamide, connexin-mimetic peptides). These studies revealed that endothelial ATP release occurs – at least in part - through connexin 43 (Cx43) hemichannels. A real-time RT-PCR screen of endothelial connexin expression showed selective repression of Cx43 transcript and additional studies confirmed time-dependent Cx43 mRNA, total and surface protein repression during hypoxia. In addition, hypoxia resulted in Cx43-serine368 phosphorylation, which is known to switch Cx43 hemi-channels from an open to a closed state. CONCLUSIONS/SIGNIFICANCE: Taken together, these studies implicate endothelial Cx43 in hypoxia-associated repression of endothelial ATP release. Public Library of Science 2008-07-30 /pmc/articles/PMC2474679/ /pubmed/18665255 http://dx.doi.org/10.1371/journal.pone.0002801 Text en Faigle 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Faigle, Marion
Seessle, Jessica
Zug, Stephanie
El Kasmi, Karim C.
Eltzschig, Holger K.
ATP Release from Vascular Endothelia Occurs Across Cx43 Hemichannels and Is Attenuated during Hypoxia
title ATP Release from Vascular Endothelia Occurs Across Cx43 Hemichannels and Is Attenuated during Hypoxia
title_full ATP Release from Vascular Endothelia Occurs Across Cx43 Hemichannels and Is Attenuated during Hypoxia
title_fullStr ATP Release from Vascular Endothelia Occurs Across Cx43 Hemichannels and Is Attenuated during Hypoxia
title_full_unstemmed ATP Release from Vascular Endothelia Occurs Across Cx43 Hemichannels and Is Attenuated during Hypoxia
title_short ATP Release from Vascular Endothelia Occurs Across Cx43 Hemichannels and Is Attenuated during Hypoxia
title_sort atp release from vascular endothelia occurs across cx43 hemichannels and is attenuated during hypoxia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2474679/
https://www.ncbi.nlm.nih.gov/pubmed/18665255
http://dx.doi.org/10.1371/journal.pone.0002801
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