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The NADPH organizers NoxO1 and p47phox are both mediators of diabetes-induced vascular dysfunction in mice

AIM: NADPH oxidases are important sources of reactive oxygen species (ROS). Several Nox homologues are present together in the vascular system but whether they exhibit crosstalk at the activity level is unknown. To address this, vessel function of knockout mice for the cytosolic Nox organizer protei...

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Autores principales: Rezende, Flávia, Moll, Franziska, Walter, Maria, Helfinger, Valeska, Hahner, Fabian, Janetzko, Patrick, Ringel, Christian, Weigert, Andreas, Fleming, Ingrid, Weissmann, Norbert, Kuenne, Carsten, Looso, Mario, Rieger, Michael A., Nawroth, Peter, Fleming, Thomas, Brandes, Ralf P., Schröder, Katrin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5723277/
https://www.ncbi.nlm.nih.gov/pubmed/29195137
http://dx.doi.org/10.1016/j.redox.2017.11.014
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author Rezende, Flávia
Moll, Franziska
Walter, Maria
Helfinger, Valeska
Hahner, Fabian
Janetzko, Patrick
Ringel, Christian
Weigert, Andreas
Fleming, Ingrid
Weissmann, Norbert
Kuenne, Carsten
Looso, Mario
Rieger, Michael A.
Nawroth, Peter
Fleming, Thomas
Brandes, Ralf P.
Schröder, Katrin
author_facet Rezende, Flávia
Moll, Franziska
Walter, Maria
Helfinger, Valeska
Hahner, Fabian
Janetzko, Patrick
Ringel, Christian
Weigert, Andreas
Fleming, Ingrid
Weissmann, Norbert
Kuenne, Carsten
Looso, Mario
Rieger, Michael A.
Nawroth, Peter
Fleming, Thomas
Brandes, Ralf P.
Schröder, Katrin
author_sort Rezende, Flávia
collection PubMed
description AIM: NADPH oxidases are important sources of reactive oxygen species (ROS). Several Nox homologues are present together in the vascular system but whether they exhibit crosstalk at the activity level is unknown. To address this, vessel function of knockout mice for the cytosolic Nox organizer proteins p47phox, NoxO1 and a p47phox-NoxO1-double knockout were studied under normal condition and during streptozotocin-induced diabetes. RESULTS: In the mouse aorta, mRNA expression for NoxO1 was predominant in smooth muscle and endothelial cells, whereas p47phox was markedly expressed in adventitial cells comprising leukocytes and tissue resident macrophages. Knockout of either NoxO1 or p47phox resulted in lower basal blood pressure. Deletion of any of the two subunits also prevented diabetes-induced vascular dysfunction. mRNA expression analysis by MACE (Massive Analysis of cDNA ends) identified substantial gene expression differences between the mouse lines and in response to diabetes. Deletion of p47phox induced inflammatory activation with increased markers of myeloid cells and cytokine and chemokine induction. In contrast, deletion of NoxO1 resulted in an attenuated interferon gamma signature and reduced expression of genes related to antigen presentation. This aspect was also reflected by a reduced number of circulating lymphocytes in NoxO1-/- mice. INNOVATION AND CONCLUSION: ROS production stimulated by NoxO1 and p47phox limit endothelium-dependent relaxation and maintain blood pressure in mice. However, NoxO1 and p47phox cannot substitute each other despite their similar effect on vascular function. Deletion of NoxO1 induced an anti-inflammatory phenotype, whereas p47phox deletion rather elicited a hyper-inflammatory response.
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spelling pubmed-57232772017-12-11 The NADPH organizers NoxO1 and p47phox are both mediators of diabetes-induced vascular dysfunction in mice Rezende, Flávia Moll, Franziska Walter, Maria Helfinger, Valeska Hahner, Fabian Janetzko, Patrick Ringel, Christian Weigert, Andreas Fleming, Ingrid Weissmann, Norbert Kuenne, Carsten Looso, Mario Rieger, Michael A. Nawroth, Peter Fleming, Thomas Brandes, Ralf P. Schröder, Katrin Redox Biol Research Paper AIM: NADPH oxidases are important sources of reactive oxygen species (ROS). Several Nox homologues are present together in the vascular system but whether they exhibit crosstalk at the activity level is unknown. To address this, vessel function of knockout mice for the cytosolic Nox organizer proteins p47phox, NoxO1 and a p47phox-NoxO1-double knockout were studied under normal condition and during streptozotocin-induced diabetes. RESULTS: In the mouse aorta, mRNA expression for NoxO1 was predominant in smooth muscle and endothelial cells, whereas p47phox was markedly expressed in adventitial cells comprising leukocytes and tissue resident macrophages. Knockout of either NoxO1 or p47phox resulted in lower basal blood pressure. Deletion of any of the two subunits also prevented diabetes-induced vascular dysfunction. mRNA expression analysis by MACE (Massive Analysis of cDNA ends) identified substantial gene expression differences between the mouse lines and in response to diabetes. Deletion of p47phox induced inflammatory activation with increased markers of myeloid cells and cytokine and chemokine induction. In contrast, deletion of NoxO1 resulted in an attenuated interferon gamma signature and reduced expression of genes related to antigen presentation. This aspect was also reflected by a reduced number of circulating lymphocytes in NoxO1-/- mice. INNOVATION AND CONCLUSION: ROS production stimulated by NoxO1 and p47phox limit endothelium-dependent relaxation and maintain blood pressure in mice. However, NoxO1 and p47phox cannot substitute each other despite their similar effect on vascular function. Deletion of NoxO1 induced an anti-inflammatory phenotype, whereas p47phox deletion rather elicited a hyper-inflammatory response. Elsevier 2017-11-22 /pmc/articles/PMC5723277/ /pubmed/29195137 http://dx.doi.org/10.1016/j.redox.2017.11.014 Text en © 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Rezende, Flávia
Moll, Franziska
Walter, Maria
Helfinger, Valeska
Hahner, Fabian
Janetzko, Patrick
Ringel, Christian
Weigert, Andreas
Fleming, Ingrid
Weissmann, Norbert
Kuenne, Carsten
Looso, Mario
Rieger, Michael A.
Nawroth, Peter
Fleming, Thomas
Brandes, Ralf P.
Schröder, Katrin
The NADPH organizers NoxO1 and p47phox are both mediators of diabetes-induced vascular dysfunction in mice
title The NADPH organizers NoxO1 and p47phox are both mediators of diabetes-induced vascular dysfunction in mice
title_full The NADPH organizers NoxO1 and p47phox are both mediators of diabetes-induced vascular dysfunction in mice
title_fullStr The NADPH organizers NoxO1 and p47phox are both mediators of diabetes-induced vascular dysfunction in mice
title_full_unstemmed The NADPH organizers NoxO1 and p47phox are both mediators of diabetes-induced vascular dysfunction in mice
title_short The NADPH organizers NoxO1 and p47phox are both mediators of diabetes-induced vascular dysfunction in mice
title_sort nadph organizers noxo1 and p47phox are both mediators of diabetes-induced vascular dysfunction in mice
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5723277/
https://www.ncbi.nlm.nih.gov/pubmed/29195137
http://dx.doi.org/10.1016/j.redox.2017.11.014
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