Estrogen-Related Receptor α Directs Peroxisome Proliferator-Activated Receptor α Signaling in the Transcriptional Control of Energy Metabolism in Cardiac and Skeletal Muscle

生物 辅活化剂 过氧化物酶体增殖物激活受体 核受体 肌发生 雌激素相关受体α 核受体辅活化子1 细胞生物学 过氧化物酶体增殖物激活受体α β氧化 心肌细胞 PPARGC1A型 雌激素相关受体γ 线粒体生物发生 过氧化物酶体 核受体辅活化子2 转录因子 受体 雌激素受体 生物化学 线粒体 脂肪酸 基因 遗传学 癌症 乳腺癌
作者
Janice M. Huss,Inès Pineda‐Torra,Bart Staels,Vincent Giguère,Daniel P. Kelly
出处
期刊:Molecular and Cellular Biology [Taylor & Francis]
卷期号:24 (20): 9079-9091 被引量:479
标识
DOI:10.1128/mcb.24.20.9079-9091.2004
摘要

Estrogen-related receptors (ERRs) are orphan nuclear receptors activated by the transcriptional coactivator peroxisome proliferator-activated receptor gamma (PPARgamma) coactivator 1alpha (PGC-1alpha), a critical regulator of cellular energy metabolism. However, metabolic target genes downstream of ERRalpha have not been well defined. To identify ERRalpha-regulated pathways in tissues with high energy demand such as the heart, gene expression profiling was performed with primary neonatal cardiac myocytes overexpressing ERRalpha. ERRalpha upregulated a subset of PGC-1alpha target genes involved in multiple energy production pathways, including cellular fatty acid transport, mitochondrial and peroxisomal fatty acid oxidation, and mitochondrial respiration. These results were validated by independent analyses in cardiac myocytes, C2C12 myotubes, and cardiac and skeletal muscle of ERRalpha-/- mice. Consistent with the gene expression results, ERRalpha increased myocyte lipid accumulation and fatty acid oxidation rates. Many of the genes regulated by ERRalpha are known targets for the nuclear receptor PPARalpha, and therefore, the interaction between these regulatory pathways was explored. ERRalpha activated PPARalpha gene expression via direct binding of ERRalpha to the PPARalpha gene promoter. Furthermore, in fibroblasts null for PPARalpha and ERRalpha, the ability of ERRalpha to activate several PPARalpha targets and to increase cellular fatty acid oxidation rates was abolished. PGC-1alpha was also shown to activate ERRalpha gene expression. We conclude that ERRalpha serves as a critical nodal point in the regulatory circuitry downstream of PGC-1alpha to direct the transcription of genes involved in mitochondrial energy-producing pathways in cardiac and skeletal muscle.

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