Peroxisome Proliferator-Activated Receptor δ Is an Essential Transcriptional Regulator for Mitochondrial Protection and Biogenesis in Adult Heart

RATIONALE:Peroxisome proliferator-activated receptors (PPARs) (α, γ, and δ/β) are nuclear hormone receptors and ligand-activated transcription factors that serve as key determinants of myocardial fatty acid metabolism. Long-term cardiomyocyte-restricted PPARδ deficiency in mice leads to depressed my...

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Veröffentlicht in:Circulation research 2010-03, Vol.106 (5), p.911-919
Hauptverfasser: Wang, Peiyong, Liu, Jian, Li, Yuquan, Wu, Sijie, Luo, Jinwen, Yang, Huan, Subbiah, Ramasamy, Chatham, John, Zhelyabovska, Olga, Yang, Qinglin
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container_end_page 919
container_issue 5
container_start_page 911
container_title Circulation research
container_volume 106
creator Wang, Peiyong
Liu, Jian
Li, Yuquan
Wu, Sijie
Luo, Jinwen
Yang, Huan
Subbiah, Ramasamy
Chatham, John
Zhelyabovska, Olga
Yang, Qinglin
description RATIONALE:Peroxisome proliferator-activated receptors (PPARs) (α, γ, and δ/β) are nuclear hormone receptors and ligand-activated transcription factors that serve as key determinants of myocardial fatty acid metabolism. Long-term cardiomyocyte-restricted PPARδ deficiency in mice leads to depressed myocardial fatty acid oxidation, bioenergetics, and premature death with lipotoxic cardiomyopathy. OBJECTIVE:To explore the essential role of PPARδ in the adult heart. METHODS AND RESULTS:We investigated the consequences of inducible short-term PPARδ knockout in the adult mouse heart. In addition to a substantial transcriptional downregulation of lipid metabolic proteins, short-term PPARδ knockout in the adult mouse heart attenuated cardiac expression of both Cu/Zn superoxide dismutase and manganese superoxide dismutase, leading to increased oxidative damage to the heart. Moreover, expression of key mitochondrial biogenesis determinants such as PPARγ coactivator-1 were substantially decreased in the short-term PPARδ deficient heart, concomitant with a decreased mitochondrial DNA copy number. Rates of palmitate and glucose oxidation were markedly depressed in cardiomyocytes of PPARδ knockout hearts. Consequently, PPARδ deficiency in the adult heart led to depressed cardiac performance and cardiac hypertrophy. CONCLUSIONS:PPARδ is an essential regulator of cardiac mitochondrial protection and biogenesis and PPARδ activation can be a potential therapeutic target for cardiac disorders.
doi_str_mv 10.1161/CIRCRESAHA.109.206185
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Long-term cardiomyocyte-restricted PPARδ deficiency in mice leads to depressed myocardial fatty acid oxidation, bioenergetics, and premature death with lipotoxic cardiomyopathy. OBJECTIVE:To explore the essential role of PPARδ in the adult heart. METHODS AND RESULTS:We investigated the consequences of inducible short-term PPARδ knockout in the adult mouse heart. In addition to a substantial transcriptional downregulation of lipid metabolic proteins, short-term PPARδ knockout in the adult mouse heart attenuated cardiac expression of both Cu/Zn superoxide dismutase and manganese superoxide dismutase, leading to increased oxidative damage to the heart. Moreover, expression of key mitochondrial biogenesis determinants such as PPARγ coactivator-1 were substantially decreased in the short-term PPARδ deficient heart, concomitant with a decreased mitochondrial DNA copy number. Rates of palmitate and glucose oxidation were markedly depressed in cardiomyocytes of PPARδ knockout hearts. Consequently, PPARδ deficiency in the adult heart led to depressed cardiac performance and cardiac hypertrophy. CONCLUSIONS:PPARδ is an essential regulator of cardiac mitochondrial protection and biogenesis and PPARδ activation can be a potential therapeutic target for cardiac disorders.</description><identifier>ISSN: 0009-7330</identifier><identifier>EISSN: 1524-4571</identifier><identifier>DOI: 10.1161/CIRCRESAHA.109.206185</identifier><identifier>CODEN: CIRUAL</identifier><language>eng</language><publisher>Hagerstown, MD: American Heart Association, Inc</publisher><subject>Biological and medical sciences ; Fundamental and applied biological sciences. 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Long-term cardiomyocyte-restricted PPARδ deficiency in mice leads to depressed myocardial fatty acid oxidation, bioenergetics, and premature death with lipotoxic cardiomyopathy. OBJECTIVE:To explore the essential role of PPARδ in the adult heart. METHODS AND RESULTS:We investigated the consequences of inducible short-term PPARδ knockout in the adult mouse heart. In addition to a substantial transcriptional downregulation of lipid metabolic proteins, short-term PPARδ knockout in the adult mouse heart attenuated cardiac expression of both Cu/Zn superoxide dismutase and manganese superoxide dismutase, leading to increased oxidative damage to the heart. Moreover, expression of key mitochondrial biogenesis determinants such as PPARγ coactivator-1 were substantially decreased in the short-term PPARδ deficient heart, concomitant with a decreased mitochondrial DNA copy number. Rates of palmitate and glucose oxidation were markedly depressed in cardiomyocytes of PPARδ knockout hearts. 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source American Heart Association Journals; Elektronische Zeitschriftenbibliothek - Frei zugängliche E-Journals; Journals@Ovid Complete
subjects Biological and medical sciences
Fundamental and applied biological sciences. Psychology
Vertebrates: cardiovascular system
title Peroxisome Proliferator-Activated Receptor δ Is an Essential Transcriptional Regulator for Mitochondrial Protection and Biogenesis in Adult Heart
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