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Cardiomyocyte Specific Deletion of ADAR1 Causes Severe Cardiac Dysfunction and Increased Lethality

Background: Adenosine deaminase acting on RNA 1 (ADAR1) is a double-stranded RNA-editing enzyme that is involved in several functions including the deamination of adenosine to inosine, RNA interference (RNAi) mechanisms and microRNA (miRNA) processing, rendering ADAR1 essential for life. Methods and...

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Autores principales: el Azzouzi, Hamid, Vilaça, Andreia P., Feyen, Dries A. M., Gommans, Willemijn M., de Weger, Roel A., Doevendans, Pieter A. F., Sluijter, Joost P. G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7093378/
https://www.ncbi.nlm.nih.gov/pubmed/32258062
http://dx.doi.org/10.3389/fcvm.2020.00030
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author el Azzouzi, Hamid
Vilaça, Andreia P.
Feyen, Dries A. M.
Gommans, Willemijn M.
de Weger, Roel A.
Doevendans, Pieter A. F.
Sluijter, Joost P. G.
author_facet el Azzouzi, Hamid
Vilaça, Andreia P.
Feyen, Dries A. M.
Gommans, Willemijn M.
de Weger, Roel A.
Doevendans, Pieter A. F.
Sluijter, Joost P. G.
author_sort el Azzouzi, Hamid
collection PubMed
description Background: Adenosine deaminase acting on RNA 1 (ADAR1) is a double-stranded RNA-editing enzyme that is involved in several functions including the deamination of adenosine to inosine, RNA interference (RNAi) mechanisms and microRNA (miRNA) processing, rendering ADAR1 essential for life. Methods and Results: To investigate whether maintenance of ADAR1 expression is required for normal myocardial homeostasis, we bypassed the early embryonic lethality of ADAR1-null mice through the use of a tamoxifen-inducible Cre recombinase under the control of the cardiac-specific α-myosin heavy chain promoter (αMHC). Targeted ADAR1 deletion in adult mice caused a significant increase in lethality accompanied by severe ventricular remodeling and quick and spontaneous cardiac dysfunction, induction of stress markers and overall reduced expression of miRNAs. Administration of a selective inhibitor of the unfolded protein response (UPR) stress significantly blunted the deleterious effects and improved cardiac function thereby prolonging animal survival. In vitro restoring miR-199a-5p levels in cardiomyocytes lacking ADAR1 diminished UPR activation and concomitant apoptosis. Conclusions: Our findings demonstrate an essential role for ADAR1 in cardiomyocyte survival and maintenance of cardiac function through a mechanism that integrates ADAR1 dependent miRNA processing and the suppression of UPR stress.
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spelling pubmed-70933782020-04-01 Cardiomyocyte Specific Deletion of ADAR1 Causes Severe Cardiac Dysfunction and Increased Lethality el Azzouzi, Hamid Vilaça, Andreia P. Feyen, Dries A. M. Gommans, Willemijn M. de Weger, Roel A. Doevendans, Pieter A. F. Sluijter, Joost P. G. Front Cardiovasc Med Cardiovascular Medicine Background: Adenosine deaminase acting on RNA 1 (ADAR1) is a double-stranded RNA-editing enzyme that is involved in several functions including the deamination of adenosine to inosine, RNA interference (RNAi) mechanisms and microRNA (miRNA) processing, rendering ADAR1 essential for life. Methods and Results: To investigate whether maintenance of ADAR1 expression is required for normal myocardial homeostasis, we bypassed the early embryonic lethality of ADAR1-null mice through the use of a tamoxifen-inducible Cre recombinase under the control of the cardiac-specific α-myosin heavy chain promoter (αMHC). Targeted ADAR1 deletion in adult mice caused a significant increase in lethality accompanied by severe ventricular remodeling and quick and spontaneous cardiac dysfunction, induction of stress markers and overall reduced expression of miRNAs. Administration of a selective inhibitor of the unfolded protein response (UPR) stress significantly blunted the deleterious effects and improved cardiac function thereby prolonging animal survival. In vitro restoring miR-199a-5p levels in cardiomyocytes lacking ADAR1 diminished UPR activation and concomitant apoptosis. Conclusions: Our findings demonstrate an essential role for ADAR1 in cardiomyocyte survival and maintenance of cardiac function through a mechanism that integrates ADAR1 dependent miRNA processing and the suppression of UPR stress. Frontiers Media S.A. 2020-03-18 /pmc/articles/PMC7093378/ /pubmed/32258062 http://dx.doi.org/10.3389/fcvm.2020.00030 Text en Copyright © 2020 el Azzouzi, Vilaça, Feyen, Gommans, de Weger, Doevendans and Sluijter. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cardiovascular Medicine
el Azzouzi, Hamid
Vilaça, Andreia P.
Feyen, Dries A. M.
Gommans, Willemijn M.
de Weger, Roel A.
Doevendans, Pieter A. F.
Sluijter, Joost P. G.
Cardiomyocyte Specific Deletion of ADAR1 Causes Severe Cardiac Dysfunction and Increased Lethality
title Cardiomyocyte Specific Deletion of ADAR1 Causes Severe Cardiac Dysfunction and Increased Lethality
title_full Cardiomyocyte Specific Deletion of ADAR1 Causes Severe Cardiac Dysfunction and Increased Lethality
title_fullStr Cardiomyocyte Specific Deletion of ADAR1 Causes Severe Cardiac Dysfunction and Increased Lethality
title_full_unstemmed Cardiomyocyte Specific Deletion of ADAR1 Causes Severe Cardiac Dysfunction and Increased Lethality
title_short Cardiomyocyte Specific Deletion of ADAR1 Causes Severe Cardiac Dysfunction and Increased Lethality
title_sort cardiomyocyte specific deletion of adar1 causes severe cardiac dysfunction and increased lethality
topic Cardiovascular Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7093378/
https://www.ncbi.nlm.nih.gov/pubmed/32258062
http://dx.doi.org/10.3389/fcvm.2020.00030
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