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Inactivation of Adenosine A(2A) Receptor Attenuates Basal and Angiotensin II-induced ROS Production by Nox2 in Endothelial Cells

Endothelial cells (ECs) express a Nox2 enzyme, which, by generating reactive oxygen species (ROS), contributes to EC redox signaling and angiotensin II (AngII)-induced endothelial dysfunction. ECs also express abundantly an adenosine A(2A) receptor (A(2A)R), but its role in EC ROS production remains...

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Autores principales: Thakur, Sapna, Du, Junjie, Hourani, Susanna, Ledent, Catherine, Li, Jian-Mei
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3000993/
https://www.ncbi.nlm.nih.gov/pubmed/20940302
http://dx.doi.org/10.1074/jbc.M110.184606
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author Thakur, Sapna
Du, Junjie
Hourani, Susanna
Ledent, Catherine
Li, Jian-Mei
author_facet Thakur, Sapna
Du, Junjie
Hourani, Susanna
Ledent, Catherine
Li, Jian-Mei
author_sort Thakur, Sapna
collection PubMed
description Endothelial cells (ECs) express a Nox2 enzyme, which, by generating reactive oxygen species (ROS), contributes to EC redox signaling and angiotensin II (AngII)-induced endothelial dysfunction. ECs also express abundantly an adenosine A(2A) receptor (A(2A)R), but its role in EC ROS production remains unknown. In this study, we investigated the role of A(2A)R in the regulation of Nox2 activity and signaling in ECs with or without acute AngII stimulation. In cultured ECs (SVEC4–10), AngII (100 nm, 30 min) significantly increased Nox2 membrane translocation and association with A(2A)R. These were accompanied by p47(phox), ERK1/2, p38 MAPK, and Akt phosphorylation and an increased ROS production (169 ± 0.04%). These AngII effects were inhibited back to the control levels by a specific A(2A)R antagonist (SCH58261), or adenosine deaminase, or by knockdown of A(2A)R or Nox2 using specific siRNAs. Knockdown of A(2A)R, as determined by Western blotting, decreased Nox2 and p47(phox) expression. In wild-type mouse aorta, SCH58261 significantly reduced acute AngII-induced ROS production and preserved endothelium-dependent vessel relaxation to acetylcholine. These results were further confirmed by using aortas from A(2A)R knock-out mice. In conclusion, A(2A)R is involved in the regulation of EC ROS production by Nox2. Inhibition or blockade of A(2A)R protects ECs from acute AngII-induced oxidative stress, MAPK activation, and endothelium dysfunction.
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spelling pubmed-30009932011-01-04 Inactivation of Adenosine A(2A) Receptor Attenuates Basal and Angiotensin II-induced ROS Production by Nox2 in Endothelial Cells Thakur, Sapna Du, Junjie Hourani, Susanna Ledent, Catherine Li, Jian-Mei J Biol Chem Cell Biology Endothelial cells (ECs) express a Nox2 enzyme, which, by generating reactive oxygen species (ROS), contributes to EC redox signaling and angiotensin II (AngII)-induced endothelial dysfunction. ECs also express abundantly an adenosine A(2A) receptor (A(2A)R), but its role in EC ROS production remains unknown. In this study, we investigated the role of A(2A)R in the regulation of Nox2 activity and signaling in ECs with or without acute AngII stimulation. In cultured ECs (SVEC4–10), AngII (100 nm, 30 min) significantly increased Nox2 membrane translocation and association with A(2A)R. These were accompanied by p47(phox), ERK1/2, p38 MAPK, and Akt phosphorylation and an increased ROS production (169 ± 0.04%). These AngII effects were inhibited back to the control levels by a specific A(2A)R antagonist (SCH58261), or adenosine deaminase, or by knockdown of A(2A)R or Nox2 using specific siRNAs. Knockdown of A(2A)R, as determined by Western blotting, decreased Nox2 and p47(phox) expression. In wild-type mouse aorta, SCH58261 significantly reduced acute AngII-induced ROS production and preserved endothelium-dependent vessel relaxation to acetylcholine. These results were further confirmed by using aortas from A(2A)R knock-out mice. In conclusion, A(2A)R is involved in the regulation of EC ROS production by Nox2. Inhibition or blockade of A(2A)R protects ECs from acute AngII-induced oxidative stress, MAPK activation, and endothelium dysfunction. American Society for Biochemistry and Molecular Biology 2010-12-17 2010-10-12 /pmc/articles/PMC3000993/ /pubmed/20940302 http://dx.doi.org/10.1074/jbc.M110.184606 Text en © 2010 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Cell Biology
Thakur, Sapna
Du, Junjie
Hourani, Susanna
Ledent, Catherine
Li, Jian-Mei
Inactivation of Adenosine A(2A) Receptor Attenuates Basal and Angiotensin II-induced ROS Production by Nox2 in Endothelial Cells
title Inactivation of Adenosine A(2A) Receptor Attenuates Basal and Angiotensin II-induced ROS Production by Nox2 in Endothelial Cells
title_full Inactivation of Adenosine A(2A) Receptor Attenuates Basal and Angiotensin II-induced ROS Production by Nox2 in Endothelial Cells
title_fullStr Inactivation of Adenosine A(2A) Receptor Attenuates Basal and Angiotensin II-induced ROS Production by Nox2 in Endothelial Cells
title_full_unstemmed Inactivation of Adenosine A(2A) Receptor Attenuates Basal and Angiotensin II-induced ROS Production by Nox2 in Endothelial Cells
title_short Inactivation of Adenosine A(2A) Receptor Attenuates Basal and Angiotensin II-induced ROS Production by Nox2 in Endothelial Cells
title_sort inactivation of adenosine a(2a) receptor attenuates basal and angiotensin ii-induced ros production by nox2 in endothelial cells
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3000993/
https://www.ncbi.nlm.nih.gov/pubmed/20940302
http://dx.doi.org/10.1074/jbc.M110.184606
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