Hypertrophic cardiomyopathy in high-fat diet-induced obesity: role of suppression of forkhead transcription factor and atrophy gene transcription
- 1 September 2008
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Heart and Circulatory Physiology
- Vol. 295 (3) , H1206-H1215
- https://doi.org/10.1152/ajpheart.00319.2008
Abstract
Cellular hypertrophy is regulated by coordinated pro- and antigrowth machineries. Foxo transcription factors initiate an atrophy-related gene program to counter hypertrophic growth. This study was designed to evaluate the role of Akt, the forkhead transcription factor Foxo3a, and atrophy genes muscle-specific RING finger (MuRF)-1 and atrogin-1 in cardiac hypertrophy and contractile dysfunction associated with high-fat diet-induced obesity. Mice were fed a low- or high-fat diet for 6 mo along with a food-restricted high-fat weight control group. Echocardiography revealed decreased fractional shortening and increased end-systolic diameter and cardiac hypertrophy in high-fat obese but not in weight control mice. Cardiomyocytes from high-fat obese but not from weight control mice displayed contractile and intracellular Ca2+ defects including depressed maximal velocity of shortening/relengthening, prolonged duration of shortening/relengthening, and reduced intracellular Ca2+ rise and clearance. Caspase activities were greater in high-fat obese but not in weight control mouse hearts. Western blot analysis revealed enhanced basal Akt and Foxo3a phosphorylation and reduced insulin-stimulated phosphorylation of Akt and Foxo3a without changes in total protein expression of Akt and Foxo3a in high-fat obese hearts. RT-PCR and immunoblotting results displayed reduced levels of the atrogens atrogin-1 and MuRF-1, the upregulated hypertrophic markers GATA4 and ciliary neurotrophic factor receptor-α, as well as the unchanged calcineurin and proteasome ubiquitin in high-fat obese mouse hearts. Transfection of H9C2 myoblast cells with dominant-negative Foxo3a adenovirus mimicked palmitic acid (0.8 mM for 24 h)-induced GATA4 upregulation without an additive effect. Dominant-negative Foxo3a-induced upregulation of pAkt and repression of phosphatase and tensin homologue were abrogated by palmitic acid. These results suggest a cardiac hypertrophic response in high-fat diet-associated obesity at least in part through inactivation of Foxo3a by the Akt pathway.Keywords
This publication has 53 references indexed in Scilit:
- Cardiac Remodeling in ObesityPhysiological Reviews, 2008
- Effects of a High Saturated Fat Diet on Cardiac Hypertrophy and Dysfunction in Response to Pressure OverloadJournal of Cardiac Failure, 2008
- Loss of PTEN attenuates the development of pathological hypertrophy and heart failure in response to biomechanical stressCardiovascular Research, 2008
- Atrogin-1 inhibits Akt-dependent cardiac hypertrophy in mice via ubiquitin-dependent coactivation of Forkhead proteinsJournal of Clinical Investigation, 2007
- Western diet, but not high fat diet, causes derangements of fatty acid metabolism and contractile dysfunction in the heart of Wistar ratsBiochemical Journal, 2007
- PGC-1α protects skeletal muscle from atrophy by suppressing FoxO3 action and atrophy-specific gene transcriptionProceedings of the National Academy of Sciences, 2006
- Differential effects of palmitate and palmitoleate on insulin action and glucose utilization in rat L6 skeletal muscle cellsBiochemical Journal, 2006
- High-fat diet-induced juvenile obesity leads to cardiomyocyte dysfunction and upregulation of Foxo3a transcription factor independent of lipotoxicity and apoptosisJournal Of Hypertension, 2006
- Prognostic Implications of Echocardiographically Determined Left Ventricular Mass in the Framingham Heart StudyNew England Journal of Medicine, 1990
- Obesity and cardiac function.Circulation, 1981