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Relationships of Telomere Homeostasis with Oxidative Stress and Cardiac Dysfunction in Human Ischaemic Hearts

Although the roles of telomeres and oxidative stress in ischaemic cardiomyopathy (ICM) are known, mechanisms of telomere homeostasis and their relationship with oxidative stress are incompletely understood. We performed two RNA-seq analyses (mRNA n = 23; ncRNA n = 30) and protein validation on left...

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Autores principales: Tarazón, Estefanía, Pérez-Carrillo, Lorena, Giménez-Escamilla, Isaac, Ramos-Castellanos, Pablo, Martínez-Dolz, Luis, Portolés, Manuel, Roselló-Lletí, Esther
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615212/
https://www.ncbi.nlm.nih.gov/pubmed/34829621
http://dx.doi.org/10.3390/antiox10111750
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author Tarazón, Estefanía
Pérez-Carrillo, Lorena
Giménez-Escamilla, Isaac
Ramos-Castellanos, Pablo
Martínez-Dolz, Luis
Portolés, Manuel
Roselló-Lletí, Esther
author_facet Tarazón, Estefanía
Pérez-Carrillo, Lorena
Giménez-Escamilla, Isaac
Ramos-Castellanos, Pablo
Martínez-Dolz, Luis
Portolés, Manuel
Roselló-Lletí, Esther
author_sort Tarazón, Estefanía
collection PubMed
description Although the roles of telomeres and oxidative stress in ischaemic cardiomyopathy (ICM) are known, mechanisms of telomere homeostasis and their relationship with oxidative stress are incompletely understood. We performed two RNA-seq analyses (mRNA n = 23; ncRNA n = 30) and protein validation on left ventricles of explanted hearts from ICM and control subjects. We observed dysregulation of the shelterin and cohesin complexes, which was related to an increase in the response to cellular oxidative stress. Moreover, we found alterations at mRNA level in the mechanisms of telomeric DNA repair. Specifically, increased RAD51D mRNA levels were correlated with left ventricular diameters. RAD51D protein levels were unaltered, however, and were inversely corelated with the miR-103a-3p upregulation. We also observed the overexpression of lncRNAs (TERRA and GUARDIN) involved in telomere protection in response to stress and alterations in their regulatory molecules. Expression of the TERRA transcription factor ATF7 was correlated with superoxide dismutase 1 expression and left ventricular diameters. The levels of GUARDIN and its transcription factor FOSL2 were correlated with those of catalase. Therefore, we showed specific alterations in the mechanisms of telomeric DNA repair and protection, and these alterations are related to an increase in the response mechanisms to oxidative stress and cardiac dysfunction in ICM.
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spelling pubmed-86152122021-11-26 Relationships of Telomere Homeostasis with Oxidative Stress and Cardiac Dysfunction in Human Ischaemic Hearts Tarazón, Estefanía Pérez-Carrillo, Lorena Giménez-Escamilla, Isaac Ramos-Castellanos, Pablo Martínez-Dolz, Luis Portolés, Manuel Roselló-Lletí, Esther Antioxidants (Basel) Article Although the roles of telomeres and oxidative stress in ischaemic cardiomyopathy (ICM) are known, mechanisms of telomere homeostasis and their relationship with oxidative stress are incompletely understood. We performed two RNA-seq analyses (mRNA n = 23; ncRNA n = 30) and protein validation on left ventricles of explanted hearts from ICM and control subjects. We observed dysregulation of the shelterin and cohesin complexes, which was related to an increase in the response to cellular oxidative stress. Moreover, we found alterations at mRNA level in the mechanisms of telomeric DNA repair. Specifically, increased RAD51D mRNA levels were correlated with left ventricular diameters. RAD51D protein levels were unaltered, however, and were inversely corelated with the miR-103a-3p upregulation. We also observed the overexpression of lncRNAs (TERRA and GUARDIN) involved in telomere protection in response to stress and alterations in their regulatory molecules. Expression of the TERRA transcription factor ATF7 was correlated with superoxide dismutase 1 expression and left ventricular diameters. The levels of GUARDIN and its transcription factor FOSL2 were correlated with those of catalase. Therefore, we showed specific alterations in the mechanisms of telomeric DNA repair and protection, and these alterations are related to an increase in the response mechanisms to oxidative stress and cardiac dysfunction in ICM. MDPI 2021-11-01 /pmc/articles/PMC8615212/ /pubmed/34829621 http://dx.doi.org/10.3390/antiox10111750 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
Tarazón, Estefanía
Pérez-Carrillo, Lorena
Giménez-Escamilla, Isaac
Ramos-Castellanos, Pablo
Martínez-Dolz, Luis
Portolés, Manuel
Roselló-Lletí, Esther
Relationships of Telomere Homeostasis with Oxidative Stress and Cardiac Dysfunction in Human Ischaemic Hearts
title Relationships of Telomere Homeostasis with Oxidative Stress and Cardiac Dysfunction in Human Ischaemic Hearts
title_full Relationships of Telomere Homeostasis with Oxidative Stress and Cardiac Dysfunction in Human Ischaemic Hearts
title_fullStr Relationships of Telomere Homeostasis with Oxidative Stress and Cardiac Dysfunction in Human Ischaemic Hearts
title_full_unstemmed Relationships of Telomere Homeostasis with Oxidative Stress and Cardiac Dysfunction in Human Ischaemic Hearts
title_short Relationships of Telomere Homeostasis with Oxidative Stress and Cardiac Dysfunction in Human Ischaemic Hearts
title_sort relationships of telomere homeostasis with oxidative stress and cardiac dysfunction in human ischaemic hearts
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615212/
https://www.ncbi.nlm.nih.gov/pubmed/34829621
http://dx.doi.org/10.3390/antiox10111750
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