Cargando…

Lack of Endothelial α1AMPK Reverses the Vascular Protective Effects of Exercise by Causing eNOS Uncoupling

Voluntary exercise training is an effective way to prevent cardiovascular disease, since it results in increased NO bioavailability and decreased reactive oxygen species (ROS) production. AMP-activated protein kinase (AMPK), especially its α1AMPK subunit, modulates ROS-dependent vascular homeostasis...

Descripción completa

Detalles Bibliográficos
Autores principales: Jansen, Thomas, Kvandová, Miroslava, Schmal, Isabella, Kalinovic, Sanela, Stamm, Paul, Kuntic, Marin, Foretz, Marc, Viollet, Benoit, Daiber, Andreas, Oelze, Matthias, Keaney, John F., Münzel, Thomas, Schulz, Eberhard, Kröller-Schön, Swenja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8750041/
https://www.ncbi.nlm.nih.gov/pubmed/34943078
http://dx.doi.org/10.3390/antiox10121974
_version_ 1784631370593599488
author Jansen, Thomas
Kvandová, Miroslava
Schmal, Isabella
Kalinovic, Sanela
Stamm, Paul
Kuntic, Marin
Foretz, Marc
Viollet, Benoit
Daiber, Andreas
Oelze, Matthias
Keaney, John F.
Münzel, Thomas
Schulz, Eberhard
Kröller-Schön, Swenja
author_facet Jansen, Thomas
Kvandová, Miroslava
Schmal, Isabella
Kalinovic, Sanela
Stamm, Paul
Kuntic, Marin
Foretz, Marc
Viollet, Benoit
Daiber, Andreas
Oelze, Matthias
Keaney, John F.
Münzel, Thomas
Schulz, Eberhard
Kröller-Schön, Swenja
author_sort Jansen, Thomas
collection PubMed
description Voluntary exercise training is an effective way to prevent cardiovascular disease, since it results in increased NO bioavailability and decreased reactive oxygen species (ROS) production. AMP-activated protein kinase (AMPK), especially its α1AMPK subunit, modulates ROS-dependent vascular homeostasis. Since endothelial cells play an important role in exercise-induced changes of vascular signaling, we examined the consequences of endothelial-specific α1AMPK deletion during voluntary exercise training. We generated a mouse strain with specific deletion of α1AMPK in endothelial cells (α1AMPK(flox/flox) x TekCre(+)). While voluntary exercise training improved endothelial function in wild-type mice, it had deleterious effects in mice lacking endothelial α1AMPK indicated by elevated reactive oxygen species production (measured by dihydroethidum fluorescence and 3-nitrotyrosine staining), eNOS uncoupling and endothelial dysfunction. Importantly, the expression of the phagocytic NADPH oxidase isoform (NOX-2) was down-regulated by exercise in control mice, whereas it was up-regulated in exercising α1AMPK(flox/flox) x TekCre(+) animals. In addition, nitric oxide bioavailability was decreased and the antioxidant/protective nuclear factor erythroid 2-related factor 2 (Nrf-2) response via heme oxygenase 1 and uncoupling protein-2 (UCP-2) was impaired in exercising α1AMPK(flox/flox) x TekCre(+) mice. Our results demonstrate that endothelial α1AMPK is a critical component of the signaling events that enable vascular protection in response to exercise. Moreover, they identify endothelial α1AMPK as a master switch that determines whether the effects of exercise on the vasculature are protective or detrimental.
format Online
Article
Text
id pubmed-8750041
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-87500412022-01-12 Lack of Endothelial α1AMPK Reverses the Vascular Protective Effects of Exercise by Causing eNOS Uncoupling Jansen, Thomas Kvandová, Miroslava Schmal, Isabella Kalinovic, Sanela Stamm, Paul Kuntic, Marin Foretz, Marc Viollet, Benoit Daiber, Andreas Oelze, Matthias Keaney, John F. Münzel, Thomas Schulz, Eberhard Kröller-Schön, Swenja Antioxidants (Basel) Article Voluntary exercise training is an effective way to prevent cardiovascular disease, since it results in increased NO bioavailability and decreased reactive oxygen species (ROS) production. AMP-activated protein kinase (AMPK), especially its α1AMPK subunit, modulates ROS-dependent vascular homeostasis. Since endothelial cells play an important role in exercise-induced changes of vascular signaling, we examined the consequences of endothelial-specific α1AMPK deletion during voluntary exercise training. We generated a mouse strain with specific deletion of α1AMPK in endothelial cells (α1AMPK(flox/flox) x TekCre(+)). While voluntary exercise training improved endothelial function in wild-type mice, it had deleterious effects in mice lacking endothelial α1AMPK indicated by elevated reactive oxygen species production (measured by dihydroethidum fluorescence and 3-nitrotyrosine staining), eNOS uncoupling and endothelial dysfunction. Importantly, the expression of the phagocytic NADPH oxidase isoform (NOX-2) was down-regulated by exercise in control mice, whereas it was up-regulated in exercising α1AMPK(flox/flox) x TekCre(+) animals. In addition, nitric oxide bioavailability was decreased and the antioxidant/protective nuclear factor erythroid 2-related factor 2 (Nrf-2) response via heme oxygenase 1 and uncoupling protein-2 (UCP-2) was impaired in exercising α1AMPK(flox/flox) x TekCre(+) mice. Our results demonstrate that endothelial α1AMPK is a critical component of the signaling events that enable vascular protection in response to exercise. Moreover, they identify endothelial α1AMPK as a master switch that determines whether the effects of exercise on the vasculature are protective or detrimental. MDPI 2021-12-10 /pmc/articles/PMC8750041/ /pubmed/34943078 http://dx.doi.org/10.3390/antiox10121974 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jansen, Thomas
Kvandová, Miroslava
Schmal, Isabella
Kalinovic, Sanela
Stamm, Paul
Kuntic, Marin
Foretz, Marc
Viollet, Benoit
Daiber, Andreas
Oelze, Matthias
Keaney, John F.
Münzel, Thomas
Schulz, Eberhard
Kröller-Schön, Swenja
Lack of Endothelial α1AMPK Reverses the Vascular Protective Effects of Exercise by Causing eNOS Uncoupling
title Lack of Endothelial α1AMPK Reverses the Vascular Protective Effects of Exercise by Causing eNOS Uncoupling
title_full Lack of Endothelial α1AMPK Reverses the Vascular Protective Effects of Exercise by Causing eNOS Uncoupling
title_fullStr Lack of Endothelial α1AMPK Reverses the Vascular Protective Effects of Exercise by Causing eNOS Uncoupling
title_full_unstemmed Lack of Endothelial α1AMPK Reverses the Vascular Protective Effects of Exercise by Causing eNOS Uncoupling
title_short Lack of Endothelial α1AMPK Reverses the Vascular Protective Effects of Exercise by Causing eNOS Uncoupling
title_sort lack of endothelial α1ampk reverses the vascular protective effects of exercise by causing enos uncoupling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8750041/
https://www.ncbi.nlm.nih.gov/pubmed/34943078
http://dx.doi.org/10.3390/antiox10121974
work_keys_str_mv AT jansenthomas lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling
AT kvandovamiroslava lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling
AT schmalisabella lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling
AT kalinovicsanela lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling
AT stammpaul lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling
AT kunticmarin lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling
AT foretzmarc lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling
AT violletbenoit lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling
AT daiberandreas lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling
AT oelzematthias lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling
AT keaneyjohnf lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling
AT munzelthomas lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling
AT schulzeberhard lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling
AT krollerschonswenja lackofendotheliala1ampkreversesthevascularprotectiveeffectsofexercisebycausingenosuncoupling