Preferential Oxidation of Triacylglyceride-Derived Fatty Acids in Heart Is Augmented by the Nuclear Receptor PPARα

被引:140
作者
Banke, Natasha H. [1 ]
Wende, Adam R. [2 ]
Leone, Teresa C. [3 ,4 ]
O'Donnell, J. Michael [1 ]
Abel, E. Dale [2 ]
Kelly, Daniel P. [3 ,4 ]
Lewandowski, E. Douglas [1 ]
机构
[1] Univ Illinois, Coll Med, Program Integrat Cardiac Metab, Cardiovasc Res Ctr, Chicago, IL USA
[2] Sanford Burnham Med Res Inst, Orlando, FL USA
[3] Univ Utah, Sch Med, Div Endocrinol Metab & Diabet, Salt Lake City, UT USA
[4] Univ Utah, Sch Med, Program Mol Med, Salt Lake City, UT USA
关键词
PPAR alpha; triacylglyceride; fatty acid oxidation; DIABETIC CARDIOMYOPATHY; ENERGY-METABOLISM; NMR-SPECTROSCOPY; LIPID STORAGE; MOUSE HEART; FLUX; TURNOVER; FAILURE; GLUCOSE; MICE;
D O I
10.1161/CIRCRESAHA.110.221713
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Rationale: Long chain fatty acids (LCFAs) are the preferred substrate for energy provision in hearts. However, the contribution of endogenous triacylglyceride (TAG) turnover to LCFA oxidation and the overall dependence of mitochondrial oxidation on endogenous lipid is largely unstudied. Objective: We sought to determine the role of TAG turnover in supporting LCFA oxidation and the influence of the lipid-activated nuclear receptor, proliferator-activated receptor (PPAR)alpha, on this balance. Methods and Results: Palmitoyl turnover within TAG and palmitate oxidation rates were quantified in isolated hearts, from normal mice (nontransgenic) and mice with cardiac-specific overexpression of PPAR alpha (MHC-PPAR alpha). Turnover of palmitoyl units within TAG, and thus palmitoyl-coenzyme A recycling, in nontransgenic (4.5 +/- 2.3 mu mol/min per gram dry weight) was 3.75-fold faster than palmitate oxidation (1.2 +/- 0.4). This high rate of palmitoyl unit turnover indicates preferential oxidation of palmitoyl units derived from TAG in normal hearts. PPAR alpha overexpression augmented TAG turnover 3-fold over nontransgenic hearts, despite similar fractions of acetyl-coenzyme A synthesis from palmitate and oxygen use at the same workload. Palmitoyl turnover within TAG of MHC-PPAR alpha hearts (16.2 +/- 2.9, P<0.05) was 12.5-fold faster than oxidation (1.3 +/- 0.2). Elevated TAG turnover in MHC-PPAR alpha correlated with increased mRNA for enzymes involved in both TAG synthesis, Gpam (glycerol-3-phosphate acyltransferase, mitochondrial), Dgat1 (diacylglycerol acetyltransferase 1), and Agpat3 (1-acylglycerol-3-phospate O-acyltransferase 3), and lipolysis, Pnliprp1 (pancreatic lipase related protein 1). Conclusions: The role of endogenous TAG in supporting beta-oxidation in the normal heart is much more dynamic than previously thought, and lipolysis provides the bulk of LCFA for oxidation. Accelerated palmitoyl turnover in TAG, attributable to chronic PPAR alpha activation, results in near requisite oxidation of LCFAs from TAG. (Circ Res. 2010; 107:233-241.)
引用
收藏
页码:233 / 241
页数:9
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