Prolonged AMPK Activation Increases the Expression of Fatty Acid Transporters in Cardiac Myocytes and Perfused Hearts

被引:12
作者
Adrian Chabowski
Iman Momken
Susan L. M. Coort
Jorge Calles-Escandon
Narendra N. Tandon
Jan F. C. Glatz
Joost J. F. P. Luiken
Arend Bonen
机构
[1] University of Guelph,Department of Human Health and Nutritional Sciences
[2] Maastricht University,Department of Molecular Genetics
[3] Wake Forest University School of Medicine and Baptist Medical Center,Section of Endocrinology and Metabolism
[4] Thrombosis Research Laboratory,undefined
[5] Otsuka Maryland Medicinal Laboratories,undefined
来源
Molecular and Cellular Biochemistry | 2006年 / 288卷
关键词
FAT/CD36; FABPpm; fatty acid transport; fatty acid oxidation; giant vesicles; perfusion;
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学科分类号
摘要
Recently, fatty acid transport across the plasma membrane has been shown to be a key process that contributes to the regulation of fatty acid metabolism in the heart. Since AMP kinase activation by 5-aminoimidazole-4-carboxamide-1-β-D-ribofuranoside (AICAR) stimulates fatty acid oxidation, as well as the expression of selected proteins involved with energy provision, we examined (a) whether AICAR induced the expression of the fatty acid transporters FABPpm and FAT/CD36 in cardiac myocytes and in perfused hearts and (b) the signaling pathway involved. Incubation of cardiac myocytes with AICAR increased the protein expression of the fatty acid transporter FABPpm after 90 min (+27%, P < 0.05) and this protein remained stably overexpressed until 180 min. Similarly, FAT/CD36 protein expression was increased after 60 min (+38%, P < 0.05) and remained overexpressed thereafter. Protein overexpression, which occurred via transcriptional mechanisms, was dependent on the AICAR concentration, with optimal induction occurring at AICAR concentrations 1–5 mM for FABPpm and at 2–8 mM for FAT/CD36. The AICAR (2 h, 2 mM AICAR) effects on FABPpm and FAT/CD36 protein expression were similar in perfused hearts and in cardiac myocytes. AICAR also induced the plasmalemmal content of FAT/CD36 (+49%) and FABPpm (+42%) (P < 0.05). This was accompanied by a marked increase in the rate of palmitate transport (2.5 fold) into giant sarcolemmal vesicles, as well as by increased rates of palmitate oxidation in cardiac myocytes. When the AICAR-induced AMPK phosphorylation was blocked, neither FAT/CD36 nor FABPpm were overexpressed, nor were palmitate uptake and oxidation increased. This study has revealed that AMPK activation stimulates the protein expression of both fatty acid transporters, FAT/CD36 and FABPpm in (a) time- and (b) dose-dependent manner via (c) the AMPK signaling pathway. AICAR also (d) increased the plasmalemmal content of FAT/CD36 and FABPm, thereby (e) increasing the rates of fatty acid transport. Thus, activation of AMPK is a key mechanism regulating the expression as well as the plasmalemmal localization of fatty acid transporters.
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页码:201 / 212
页数:11
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共 352 条
[51]
Rottman JN(2002)Phosphorylation of cardiac protein kinase B is regulated by palmitate J Biol Chem 277 23977-23980
[52]
Bracy DP(1999)AMP-activated protein kinase suppresses protein synthesis in rat skeletal muscle through down-regulated mammalian target of rapamycin (mTOR) signaling Am J Physiol 277 E1-10
[53]
Martin PH(2002)AMP-activated protein kinase, a metabolic master switch: Possible roles in type 2 diabetes J Mol Cell Cardiol 34 1091-1097
[54]
Wasserman DH(1996)Insulin and ischemia stimulate glycolysis by acting on the same targets through different and opposing signaling pathways Am J Physiol 270 E299-E304
[55]
Coort SLM(1997)Inactivation of acetyl-CoA carboxylase and activation of AMP-activated protein kinase in muscle during exercise J Biol Chem 272 13255-13261
[56]
Hasselbaink DM(1999)Contraction-induced changes in acetyl-CoA carboxylase and 5′-AMP-activated kinase in skeletal muscle. Am J Physiol 277 H643-H649
[57]
Koonen DYP(1993)Translocation of myocardial GLUT-4 and increased glucose uptake through activation of AMPK by AICAR Am J Physiol Gastrointest Liver Physiol 265 G894-G902
[58]
Willems J(2000)Comparison of plasma membrane FABP and mitochondrial isoform of aspartate aminotransferase from rat liver Biochem J 345 423-427
[59]
Coumans WA(2004)Mitochondrial aspartate aminotransferase: Direction of a single protein with two distinct functions to two subcellular sites does not require alternative splicing of the mRNA J Biol Chem 279 36325-36341
[60]
Chabowski A(2001)A novel function for FAT/CD36: involvement in long chain fatty acid transfer into the mitochondria Diabetes 50 12-17