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Genetic Deletion of Uncoupling Protein 3 Exaggerates Apoptotic Cell Death in the Ischemic Heart Leading to Heart Failure

BACKGROUND: Uncoupling protein 3 (ucp3) is a member of the mitochondrial anion carrier superfamily of proteins uncoupling mitochondrial respiration. In this study, we investigated the effects of ucp3 genetic deletion on mitochondrial function and cell survival under low oxygen conditions in vitro an...

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Autores principales: Perrino, Cinzia, Schiattarella, Gabriele G., Sannino, Anna, Pironti, Gianluigi, Petretta, Maria Piera, Cannavo, Alessandro, Gargiulo, Giuseppe, Ilardi, Federica, Magliulo, Fabio, Franzone, Anna, Carotenuto, Giuseppe, Serino, Federica, Altobelli, Giovanna G., Cimini, Vincenzo, Cuocolo, Alberto, Lombardi, Assunta, Goglia, Fernando, Indolfi, Ciro, Trimarco, Bruno, Esposito, Giovanni
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3698767/
https://www.ncbi.nlm.nih.gov/pubmed/23688674
http://dx.doi.org/10.1161/JAHA.113.000086
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author Perrino, Cinzia
Schiattarella, Gabriele G.
Sannino, Anna
Pironti, Gianluigi
Petretta, Maria Piera
Cannavo, Alessandro
Gargiulo, Giuseppe
Ilardi, Federica
Magliulo, Fabio
Franzone, Anna
Carotenuto, Giuseppe
Serino, Federica
Altobelli, Giovanna G.
Cimini, Vincenzo
Cuocolo, Alberto
Lombardi, Assunta
Goglia, Fernando
Indolfi, Ciro
Trimarco, Bruno
Esposito, Giovanni
author_facet Perrino, Cinzia
Schiattarella, Gabriele G.
Sannino, Anna
Pironti, Gianluigi
Petretta, Maria Piera
Cannavo, Alessandro
Gargiulo, Giuseppe
Ilardi, Federica
Magliulo, Fabio
Franzone, Anna
Carotenuto, Giuseppe
Serino, Federica
Altobelli, Giovanna G.
Cimini, Vincenzo
Cuocolo, Alberto
Lombardi, Assunta
Goglia, Fernando
Indolfi, Ciro
Trimarco, Bruno
Esposito, Giovanni
author_sort Perrino, Cinzia
collection PubMed
description BACKGROUND: Uncoupling protein 3 (ucp3) is a member of the mitochondrial anion carrier superfamily of proteins uncoupling mitochondrial respiration. In this study, we investigated the effects of ucp3 genetic deletion on mitochondrial function and cell survival under low oxygen conditions in vitro and in vivo. METHODS AND RESULTS: To test the effects of ucp3 deletion in vitro, murine embryonic fibroblasts and adult cardiomyocytes were isolated from wild‐type (WT, n=67) and ucp3 knockout mice (ucp3(−/−), n=70). To test the effects of ucp3 genetic deletion in vivo, myocardial infarction (MI) was induced by permanent coronary artery ligation in WT and ucp3(−/−) mice. Compared with WT, ucp3(−/−) murine embryonic fibroblasts and cardiomyocytes exhibited mitochondrial dysfunction and increased mitochondrial reactive oxygen species generation and apoptotic cell death under hypoxic conditions in vitro (terminal deoxynucleotidyl transferase‐dUTP nick end labeling–positive nuclei: WT hypoxia, 70.3±1.2%; ucp3(−/−) hypoxia, 85.3±0.9%; P<0.05). After MI, despite similar areas at risk in the 2 groups, ucp3(−/−) hearts demonstrated a significantly larger infarct size compared with WT (infarct area/area at risk: WT, 48.2±3.7%; ucp3(−/−), 65.0±2.9%; P<0.05). Eight weeks after MI, cardiac function was significantly decreased in ucp3(−/−) mice compared with WT (fractional shortening: WT MI, 42.7±3.1%; ucp3(−/−) MI, 24.4±2.9; P<0.05), and this was associated with heightened apoptotic cell death (terminal deoxynucleotidyl transferase‐dUTP nick end labeling–positive nuclei: WT MI, 0.7±0.04%; ucp3(−/−) MI, 1.1±0.09%, P<0.05). CONCLUSIONS: Our data indicate that ucp3 levels regulate reactive oxygen species levels and cell survival during hypoxia, modulating infarct size in the ischemic heart.
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spelling pubmed-36987672013-09-03 Genetic Deletion of Uncoupling Protein 3 Exaggerates Apoptotic Cell Death in the Ischemic Heart Leading to Heart Failure Perrino, Cinzia Schiattarella, Gabriele G. Sannino, Anna Pironti, Gianluigi Petretta, Maria Piera Cannavo, Alessandro Gargiulo, Giuseppe Ilardi, Federica Magliulo, Fabio Franzone, Anna Carotenuto, Giuseppe Serino, Federica Altobelli, Giovanna G. Cimini, Vincenzo Cuocolo, Alberto Lombardi, Assunta Goglia, Fernando Indolfi, Ciro Trimarco, Bruno Esposito, Giovanni J Am Heart Assoc Original Research BACKGROUND: Uncoupling protein 3 (ucp3) is a member of the mitochondrial anion carrier superfamily of proteins uncoupling mitochondrial respiration. In this study, we investigated the effects of ucp3 genetic deletion on mitochondrial function and cell survival under low oxygen conditions in vitro and in vivo. METHODS AND RESULTS: To test the effects of ucp3 deletion in vitro, murine embryonic fibroblasts and adult cardiomyocytes were isolated from wild‐type (WT, n=67) and ucp3 knockout mice (ucp3(−/−), n=70). To test the effects of ucp3 genetic deletion in vivo, myocardial infarction (MI) was induced by permanent coronary artery ligation in WT and ucp3(−/−) mice. Compared with WT, ucp3(−/−) murine embryonic fibroblasts and cardiomyocytes exhibited mitochondrial dysfunction and increased mitochondrial reactive oxygen species generation and apoptotic cell death under hypoxic conditions in vitro (terminal deoxynucleotidyl transferase‐dUTP nick end labeling–positive nuclei: WT hypoxia, 70.3±1.2%; ucp3(−/−) hypoxia, 85.3±0.9%; P<0.05). After MI, despite similar areas at risk in the 2 groups, ucp3(−/−) hearts demonstrated a significantly larger infarct size compared with WT (infarct area/area at risk: WT, 48.2±3.7%; ucp3(−/−), 65.0±2.9%; P<0.05). Eight weeks after MI, cardiac function was significantly decreased in ucp3(−/−) mice compared with WT (fractional shortening: WT MI, 42.7±3.1%; ucp3(−/−) MI, 24.4±2.9; P<0.05), and this was associated with heightened apoptotic cell death (terminal deoxynucleotidyl transferase‐dUTP nick end labeling–positive nuclei: WT MI, 0.7±0.04%; ucp3(−/−) MI, 1.1±0.09%, P<0.05). CONCLUSIONS: Our data indicate that ucp3 levels regulate reactive oxygen species levels and cell survival during hypoxia, modulating infarct size in the ischemic heart. Blackwell Publishing Ltd 2013-06-21 /pmc/articles/PMC3698767/ /pubmed/23688674 http://dx.doi.org/10.1161/JAHA.113.000086 Text en © 2013 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley-Blackwell. http://creativecommons.org/licenses/by/2.5/ This is an Open Access article under the terms of the Creative Commons Attribution Noncommercial License, which permits use, distribution, and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Research
Perrino, Cinzia
Schiattarella, Gabriele G.
Sannino, Anna
Pironti, Gianluigi
Petretta, Maria Piera
Cannavo, Alessandro
Gargiulo, Giuseppe
Ilardi, Federica
Magliulo, Fabio
Franzone, Anna
Carotenuto, Giuseppe
Serino, Federica
Altobelli, Giovanna G.
Cimini, Vincenzo
Cuocolo, Alberto
Lombardi, Assunta
Goglia, Fernando
Indolfi, Ciro
Trimarco, Bruno
Esposito, Giovanni
Genetic Deletion of Uncoupling Protein 3 Exaggerates Apoptotic Cell Death in the Ischemic Heart Leading to Heart Failure
title Genetic Deletion of Uncoupling Protein 3 Exaggerates Apoptotic Cell Death in the Ischemic Heart Leading to Heart Failure
title_full Genetic Deletion of Uncoupling Protein 3 Exaggerates Apoptotic Cell Death in the Ischemic Heart Leading to Heart Failure
title_fullStr Genetic Deletion of Uncoupling Protein 3 Exaggerates Apoptotic Cell Death in the Ischemic Heart Leading to Heart Failure
title_full_unstemmed Genetic Deletion of Uncoupling Protein 3 Exaggerates Apoptotic Cell Death in the Ischemic Heart Leading to Heart Failure
title_short Genetic Deletion of Uncoupling Protein 3 Exaggerates Apoptotic Cell Death in the Ischemic Heart Leading to Heart Failure
title_sort genetic deletion of uncoupling protein 3 exaggerates apoptotic cell death in the ischemic heart leading to heart failure
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3698767/
https://www.ncbi.nlm.nih.gov/pubmed/23688674
http://dx.doi.org/10.1161/JAHA.113.000086
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