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DNMT3B System Dysregulation Contributes to the Hypomethylated State in Ischaemic Human Hearts

A controversial understanding of the state of the DNA methylation machinery exists in ischaemic cardiomyopathy (ICM). Moreover, its relationship to other epigenetic alterations is incomplete. Therefore, we carried out an in-depth study of the DNA methylation process in human cardiac tissue. We showe...

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Autores principales: Tarazón, Estefanía, Pérez-Carrillo, Lorena, Giménez-Escamilla, Isaac, García-Manzanares, María, Martínez-Dolz, Luis, Portolés, Manuel, Roselló-Lletí, Esther
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9029641/
https://www.ncbi.nlm.nih.gov/pubmed/35453616
http://dx.doi.org/10.3390/biomedicines10040866
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author Tarazón, Estefanía
Pérez-Carrillo, Lorena
Giménez-Escamilla, Isaac
García-Manzanares, María
Martínez-Dolz, Luis
Portolés, Manuel
Roselló-Lletí, Esther
author_facet Tarazón, Estefanía
Pérez-Carrillo, Lorena
Giménez-Escamilla, Isaac
García-Manzanares, María
Martínez-Dolz, Luis
Portolés, Manuel
Roselló-Lletí, Esther
author_sort Tarazón, Estefanía
collection PubMed
description A controversial understanding of the state of the DNA methylation machinery exists in ischaemic cardiomyopathy (ICM). Moreover, its relationship to other epigenetic alterations is incomplete. Therefore, we carried out an in-depth study of the DNA methylation process in human cardiac tissue. We showed a dysregulation of the DNA methylation machinery accordingly with the genome-wide hypomethylation that we observed: specifically, an overexpression of main genes involved in the elimination of methyl groups (TET1, SMUG1), and underexpression of molecules implicated in the maintenance of methylation (MBD2, UHRF1). By contrast, we found DNMT3B upregulation, a key molecule in the addition of methyl residues in DNA, and an underexpression of miR-133a-3p, an inhibitor of DNMT3B transcription. However, we found many relevant alterations that would counteract the upregulation observed, such as the overexpression of TRAF6, responsible for Dnmt3b degradation. Furthermore, we showed that molecules regulating Dnmts activity were altered; specifically, SAM/SAH ratio reduction. All these results are in concordance with the Dnmts normal function that we show. Our analysis revealed genome-wide hypomethylation along with dysregulation in the mechanisms of addition, elimination and maintenance of methyl groups in the DNA of ICM. We describe relevant alterations in the DNMT3B system, which promote a normal Dnmt3b function despite its upregulation.
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spelling pubmed-90296412022-04-23 DNMT3B System Dysregulation Contributes to the Hypomethylated State in Ischaemic Human Hearts Tarazón, Estefanía Pérez-Carrillo, Lorena Giménez-Escamilla, Isaac García-Manzanares, María Martínez-Dolz, Luis Portolés, Manuel Roselló-Lletí, Esther Biomedicines Article A controversial understanding of the state of the DNA methylation machinery exists in ischaemic cardiomyopathy (ICM). Moreover, its relationship to other epigenetic alterations is incomplete. Therefore, we carried out an in-depth study of the DNA methylation process in human cardiac tissue. We showed a dysregulation of the DNA methylation machinery accordingly with the genome-wide hypomethylation that we observed: specifically, an overexpression of main genes involved in the elimination of methyl groups (TET1, SMUG1), and underexpression of molecules implicated in the maintenance of methylation (MBD2, UHRF1). By contrast, we found DNMT3B upregulation, a key molecule in the addition of methyl residues in DNA, and an underexpression of miR-133a-3p, an inhibitor of DNMT3B transcription. However, we found many relevant alterations that would counteract the upregulation observed, such as the overexpression of TRAF6, responsible for Dnmt3b degradation. Furthermore, we showed that molecules regulating Dnmts activity were altered; specifically, SAM/SAH ratio reduction. All these results are in concordance with the Dnmts normal function that we show. Our analysis revealed genome-wide hypomethylation along with dysregulation in the mechanisms of addition, elimination and maintenance of methyl groups in the DNA of ICM. We describe relevant alterations in the DNMT3B system, which promote a normal Dnmt3b function despite its upregulation. MDPI 2022-04-07 /pmc/articles/PMC9029641/ /pubmed/35453616 http://dx.doi.org/10.3390/biomedicines10040866 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
Tarazón, Estefanía
Pérez-Carrillo, Lorena
Giménez-Escamilla, Isaac
García-Manzanares, María
Martínez-Dolz, Luis
Portolés, Manuel
Roselló-Lletí, Esther
DNMT3B System Dysregulation Contributes to the Hypomethylated State in Ischaemic Human Hearts
title DNMT3B System Dysregulation Contributes to the Hypomethylated State in Ischaemic Human Hearts
title_full DNMT3B System Dysregulation Contributes to the Hypomethylated State in Ischaemic Human Hearts
title_fullStr DNMT3B System Dysregulation Contributes to the Hypomethylated State in Ischaemic Human Hearts
title_full_unstemmed DNMT3B System Dysregulation Contributes to the Hypomethylated State in Ischaemic Human Hearts
title_short DNMT3B System Dysregulation Contributes to the Hypomethylated State in Ischaemic Human Hearts
title_sort dnmt3b system dysregulation contributes to the hypomethylated state in ischaemic human hearts
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9029641/
https://www.ncbi.nlm.nih.gov/pubmed/35453616
http://dx.doi.org/10.3390/biomedicines10040866
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