The cardiac phenotype induced by PPARα overexpression mimics that caused by diabetes mellitus

被引:602
作者
Finck, BN
Lehman, JJ
Leone, TC
Welch, MJ
Bennett, MJ
Kovacs, A
Han, XL
Gross, RW
Kozak, R
Lopaschuk, GD
Kelly, DP
机构
[1] Washington Univ, Sch Med, Cardiovasc Res Ctr, Dept Med, St Louis, MO 63110 USA
[2] Washington Univ, Sch Med, Dept Mol Biol & Pharmacol, St Louis, MO 63110 USA
[3] Washington Univ, Sch Med, Dept Radiol, St Louis, MO 63110 USA
[4] Univ Texas, SW Med Ctr, Dept Pathol, Dallas, TX USA
[5] Childrens Med Ctr, Dallas, TX 75235 USA
[6] Univ Alberta, Dept Pediat, Edmonton, AB, Canada
[7] Univ Alberta, Dept Pharmacol, Edmonton, AB, Canada
[8] Washington Univ, Sch Med, Dept Pediat, St Louis, MO 63110 USA
关键词
D O I
10.1172/JCI14080
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Recent evidence has defined an important role for PPARalpha in the transcriptional control of cardiac energy metabolism. To investigate the role of PPARalpha in the genesis of the metabolic and functional derangements of diabetic cardiomyopathy, mice with cardiac-restricted overexpression of PPARalpha (MHC-PPAR) were produced and characterized. The expression of PPARalpha target genes involved in cardiac fatty acid uptake and oxidation pathways was increased in MHC-PPAR mice. Surprisingly, the expression of genes involved in glucose transport and utilization was reciprocally repressed in MHC-PPAR hearts. Consistent with the gene expression profile, myocardial fatty acid oxidation rates were increased and glucose uptake and oxidation decreased in MHC-PPAR mice, a metabolic phenotype strikingly similar to that of the diabetic heart. MHC-PPAR hearts exhibited signatures of diabetic cardiomyopathy including ventricular hypertrophy, activation of gene markers of pathologic hypertrophic growth, and transgene expression-dependent alteration in systolic ventricular dysfunction. These results demonstrate that (a) PPARalpha is a critical regulator of myocardial fatty acid uptake and utilization, (b) activation of cardiac PPARalpha regulatory pathways results in a reciprocal repression of glucose uptake and utilization pathways, and (c) derangements in myocardial energy metabolism typical of the diabetic heart can become maladaptive, leading to cardiomyopathy.
引用
收藏
页码:121 / 130
页数:10
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