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Altered Cellular Protein Quality Control System Modulates Cardiomyocyte Function in Volume Overload-Induced Hypertrophy

Volume-induced hypertrophy is one of the risk factors for cardiac morbidity and mortality. In addition, mechanical and metabolic dysfunction, aging, and cellular redox balance are also contributing factors to the disease progression. In this study, we used volume overload (VO), which was induced by...

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Autores principales: Gömöri, Kamilla, Herwig, Melissa, Hassoun, Roua, Budde, Heidi, Mostafi, Nusratul, Delalat, Simin, Modi, Suvasini, Begovic, Merima, Szabados, Tamara, Pipis, Judit, Farkas-Morvay, Nikolett, Leprán, István, Kovács, Árpád, Mügge, Andreas, Ferdinandy, Péter, Görbe, Anikó, Bencsik, Péter, Hamdani, Nazha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9686542/
https://www.ncbi.nlm.nih.gov/pubmed/36358581
http://dx.doi.org/10.3390/antiox11112210
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author Gömöri, Kamilla
Herwig, Melissa
Hassoun, Roua
Budde, Heidi
Mostafi, Nusratul
Delalat, Simin
Modi, Suvasini
Begovic, Merima
Szabados, Tamara
Pipis, Judit
Farkas-Morvay, Nikolett
Leprán, István
Kovács, Árpád
Mügge, Andreas
Ferdinandy, Péter
Görbe, Anikó
Bencsik, Péter
Hamdani, Nazha
author_facet Gömöri, Kamilla
Herwig, Melissa
Hassoun, Roua
Budde, Heidi
Mostafi, Nusratul
Delalat, Simin
Modi, Suvasini
Begovic, Merima
Szabados, Tamara
Pipis, Judit
Farkas-Morvay, Nikolett
Leprán, István
Kovács, Árpád
Mügge, Andreas
Ferdinandy, Péter
Görbe, Anikó
Bencsik, Péter
Hamdani, Nazha
author_sort Gömöri, Kamilla
collection PubMed
description Volume-induced hypertrophy is one of the risk factors for cardiac morbidity and mortality. In addition, mechanical and metabolic dysfunction, aging, and cellular redox balance are also contributing factors to the disease progression. In this study, we used volume overload (VO), which was induced by an aortocaval fistula in 2-month-old male Wistar rats, and sham-operated animals served as control. Functional parameters were measured by transthoracic echocardiography at termination 4- or 8-months after VO. The animals showed hypertrophic remodeling that was accompanied by mechanical dysfunction and increased cardiomyocyte stiffness. These alterations were reversible upon treatment with glutathione. Cardiomyocyte dysfunction was associated with elevated oxidative stress markers with unchanged inflammatory signaling pathways. In addition, we observed altered phosphorylation status of small heat shock proteins 27 and 70 and diminished protease expression caspases 3 compared to the matched control group, indicating an impaired protein quality control system. Such alterations might be attributed to the increased oxidative stress as anticipated from the enhanced titin oxidation, ubiquitination, and the elevation in oxidative stress markers. Our study showed an early pathological response to VO, which manifests in cardiomyocyte mechanical dysfunction and dysregulated signaling pathways associated with enhanced oxidative stress and an impaired protein quality control system.
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spelling pubmed-96865422022-11-25 Altered Cellular Protein Quality Control System Modulates Cardiomyocyte Function in Volume Overload-Induced Hypertrophy Gömöri, Kamilla Herwig, Melissa Hassoun, Roua Budde, Heidi Mostafi, Nusratul Delalat, Simin Modi, Suvasini Begovic, Merima Szabados, Tamara Pipis, Judit Farkas-Morvay, Nikolett Leprán, István Kovács, Árpád Mügge, Andreas Ferdinandy, Péter Görbe, Anikó Bencsik, Péter Hamdani, Nazha Antioxidants (Basel) Article Volume-induced hypertrophy is one of the risk factors for cardiac morbidity and mortality. In addition, mechanical and metabolic dysfunction, aging, and cellular redox balance are also contributing factors to the disease progression. In this study, we used volume overload (VO), which was induced by an aortocaval fistula in 2-month-old male Wistar rats, and sham-operated animals served as control. Functional parameters were measured by transthoracic echocardiography at termination 4- or 8-months after VO. The animals showed hypertrophic remodeling that was accompanied by mechanical dysfunction and increased cardiomyocyte stiffness. These alterations were reversible upon treatment with glutathione. Cardiomyocyte dysfunction was associated with elevated oxidative stress markers with unchanged inflammatory signaling pathways. In addition, we observed altered phosphorylation status of small heat shock proteins 27 and 70 and diminished protease expression caspases 3 compared to the matched control group, indicating an impaired protein quality control system. Such alterations might be attributed to the increased oxidative stress as anticipated from the enhanced titin oxidation, ubiquitination, and the elevation in oxidative stress markers. Our study showed an early pathological response to VO, which manifests in cardiomyocyte mechanical dysfunction and dysregulated signaling pathways associated with enhanced oxidative stress and an impaired protein quality control system. MDPI 2022-11-08 /pmc/articles/PMC9686542/ /pubmed/36358581 http://dx.doi.org/10.3390/antiox11112210 Text en © 2022 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
Gömöri, Kamilla
Herwig, Melissa
Hassoun, Roua
Budde, Heidi
Mostafi, Nusratul
Delalat, Simin
Modi, Suvasini
Begovic, Merima
Szabados, Tamara
Pipis, Judit
Farkas-Morvay, Nikolett
Leprán, István
Kovács, Árpád
Mügge, Andreas
Ferdinandy, Péter
Görbe, Anikó
Bencsik, Péter
Hamdani, Nazha
Altered Cellular Protein Quality Control System Modulates Cardiomyocyte Function in Volume Overload-Induced Hypertrophy
title Altered Cellular Protein Quality Control System Modulates Cardiomyocyte Function in Volume Overload-Induced Hypertrophy
title_full Altered Cellular Protein Quality Control System Modulates Cardiomyocyte Function in Volume Overload-Induced Hypertrophy
title_fullStr Altered Cellular Protein Quality Control System Modulates Cardiomyocyte Function in Volume Overload-Induced Hypertrophy
title_full_unstemmed Altered Cellular Protein Quality Control System Modulates Cardiomyocyte Function in Volume Overload-Induced Hypertrophy
title_short Altered Cellular Protein Quality Control System Modulates Cardiomyocyte Function in Volume Overload-Induced Hypertrophy
title_sort altered cellular protein quality control system modulates cardiomyocyte function in volume overload-induced hypertrophy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9686542/
https://www.ncbi.nlm.nih.gov/pubmed/36358581
http://dx.doi.org/10.3390/antiox11112210
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