Nrf2 Deficiency Unmasks the Significance of Nitric Oxide Synthase Activity for Cardioprotection

The transcription factor nuclear factor (erythroid-derived 2)-like 2 (Nrf2) is a key master switch that controls the expression of antioxidant and cytoprotective enzymes, including enzymes catalyzing glutathione de novo synthesis. In this study, we aimed to analyze whether Nrf2 deficiency influences...

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Main Authors: Ralf Erkens, Tatsiana Suvorava, Thomas R. Sutton, Bernadette O. Fernandez, Monika Mikus-Lelinska, Frederik Barbarino, Ulrich Flögel, Malte Kelm, Martin Feelisch, Miriam M. Cortese-Krott
Format: Article
Language:English
Published: Hindawi Limited 2018-01-01
Series:Oxidative Medicine and Cellular Longevity
Online Access:http://dx.doi.org/10.1155/2018/8309698
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spelling doaj-516a474147fe43fb846bf0030d22b94f2020-11-25T00:37:37ZengHindawi LimitedOxidative Medicine and Cellular Longevity1942-09001942-09942018-01-01201810.1155/2018/83096988309698Nrf2 Deficiency Unmasks the Significance of Nitric Oxide Synthase Activity for CardioprotectionRalf Erkens0Tatsiana Suvorava1Thomas R. Sutton2Bernadette O. Fernandez3Monika Mikus-Lelinska4Frederik Barbarino5Ulrich Flögel6Malte Kelm7Martin Feelisch8Miriam M. Cortese-Krott9Cardiovascular Research Laboratory, Division of Cardiology, Pulmonology and Vascular Medicine, Medical Faculty, Heinrich Heine University, Moorenstrasse 5, 40225 Düsseldorf, GermanyCardiovascular Research Laboratory, Division of Cardiology, Pulmonology and Vascular Medicine, Medical Faculty, Heinrich Heine University, Moorenstrasse 5, 40225 Düsseldorf, GermanyClinical & Experimental Sciences, Faculty of Medicine, University of Southampton, Tremona Road, Southampton SO166YD, UKClinical & Experimental Sciences, Faculty of Medicine, University of Southampton, Tremona Road, Southampton SO166YD, UKClinical & Experimental Sciences, Faculty of Medicine, University of Southampton, Tremona Road, Southampton SO166YD, UKCardiovascular Research Laboratory, Division of Cardiology, Pulmonology and Vascular Medicine, Medical Faculty, Heinrich Heine University, Moorenstrasse 5, 40225 Düsseldorf, GermanyDepartment of Molecular Cardiology, Heinrich Heine University, Universitaetsstr. 1, 40225 Düsseldorf, GermanyCardiovascular Research Laboratory, Division of Cardiology, Pulmonology and Vascular Medicine, Medical Faculty, Heinrich Heine University, Moorenstrasse 5, 40225 Düsseldorf, GermanyClinical & Experimental Sciences, Faculty of Medicine, University of Southampton, Tremona Road, Southampton SO166YD, UKCardiovascular Research Laboratory, Division of Cardiology, Pulmonology and Vascular Medicine, Medical Faculty, Heinrich Heine University, Moorenstrasse 5, 40225 Düsseldorf, GermanyThe transcription factor nuclear factor (erythroid-derived 2)-like 2 (Nrf2) is a key master switch that controls the expression of antioxidant and cytoprotective enzymes, including enzymes catalyzing glutathione de novo synthesis. In this study, we aimed to analyze whether Nrf2 deficiency influences antioxidative capacity, redox state, NO metabolites, and outcome of myocardial ischemia reperfusion (I/R) injury. In Nrf2 knockout (Nrf2 KO) mice, we found elevated eNOS expression and preserved NO metabolite concentrations in the aorta and heart as compared to wild types (WT). Unexpectedly, Nrf2 KO mice have a smaller infarct size following myocardial ischemia/reperfusion injury than WT mice and show fully preserved left ventricular systolic function. Inhibition of NO synthesis at onset of ischemia and during early reperfusion increased myocardial damage and systolic dysfunction in Nrf2 KO mice, but not in WT mice. Consistent with this, infarct size and diastolic function were unaffected in eNOS knockout (eNOS KO) mice after ischemia/reperfusion. Taken together, these data suggest that eNOS upregulation under conditions of decreased antioxidant capacity might play an important role in cardioprotection against I/R. Due to the redundancy in cytoprotective mechanisms, this fundamental antioxidant property of eNOS is not evident upon acute NOS inhibition in WT mice or in eNOS KO mice until Nrf2-related signaling is abrogated.http://dx.doi.org/10.1155/2018/8309698
collection DOAJ
language English
format Article
sources DOAJ
author Ralf Erkens
Tatsiana Suvorava
Thomas R. Sutton
Bernadette O. Fernandez
Monika Mikus-Lelinska
Frederik Barbarino
Ulrich Flögel
Malte Kelm
Martin Feelisch
Miriam M. Cortese-Krott
spellingShingle Ralf Erkens
Tatsiana Suvorava
Thomas R. Sutton
Bernadette O. Fernandez
Monika Mikus-Lelinska
Frederik Barbarino
Ulrich Flögel
Malte Kelm
Martin Feelisch
Miriam M. Cortese-Krott
Nrf2 Deficiency Unmasks the Significance of Nitric Oxide Synthase Activity for Cardioprotection
Oxidative Medicine and Cellular Longevity
author_facet Ralf Erkens
Tatsiana Suvorava
Thomas R. Sutton
Bernadette O. Fernandez
Monika Mikus-Lelinska
Frederik Barbarino
Ulrich Flögel
Malte Kelm
Martin Feelisch
Miriam M. Cortese-Krott
author_sort Ralf Erkens
title Nrf2 Deficiency Unmasks the Significance of Nitric Oxide Synthase Activity for Cardioprotection
title_short Nrf2 Deficiency Unmasks the Significance of Nitric Oxide Synthase Activity for Cardioprotection
title_full Nrf2 Deficiency Unmasks the Significance of Nitric Oxide Synthase Activity for Cardioprotection
title_fullStr Nrf2 Deficiency Unmasks the Significance of Nitric Oxide Synthase Activity for Cardioprotection
title_full_unstemmed Nrf2 Deficiency Unmasks the Significance of Nitric Oxide Synthase Activity for Cardioprotection
title_sort nrf2 deficiency unmasks the significance of nitric oxide synthase activity for cardioprotection
publisher Hindawi Limited
series Oxidative Medicine and Cellular Longevity
issn 1942-0900
1942-0994
publishDate 2018-01-01
description The transcription factor nuclear factor (erythroid-derived 2)-like 2 (Nrf2) is a key master switch that controls the expression of antioxidant and cytoprotective enzymes, including enzymes catalyzing glutathione de novo synthesis. In this study, we aimed to analyze whether Nrf2 deficiency influences antioxidative capacity, redox state, NO metabolites, and outcome of myocardial ischemia reperfusion (I/R) injury. In Nrf2 knockout (Nrf2 KO) mice, we found elevated eNOS expression and preserved NO metabolite concentrations in the aorta and heart as compared to wild types (WT). Unexpectedly, Nrf2 KO mice have a smaller infarct size following myocardial ischemia/reperfusion injury than WT mice and show fully preserved left ventricular systolic function. Inhibition of NO synthesis at onset of ischemia and during early reperfusion increased myocardial damage and systolic dysfunction in Nrf2 KO mice, but not in WT mice. Consistent with this, infarct size and diastolic function were unaffected in eNOS knockout (eNOS KO) mice after ischemia/reperfusion. Taken together, these data suggest that eNOS upregulation under conditions of decreased antioxidant capacity might play an important role in cardioprotection against I/R. Due to the redundancy in cytoprotective mechanisms, this fundamental antioxidant property of eNOS is not evident upon acute NOS inhibition in WT mice or in eNOS KO mice until Nrf2-related signaling is abrogated.
url http://dx.doi.org/10.1155/2018/8309698
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