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Citations to this article

Ceramide synthase 5 mediates lipid-induced autophagy and hypertrophy in cardiomyocytes
Sarah Brice Russo, … , Michael R. Zile, L. Ashley Cowart
Sarah Brice Russo, … , Michael R. Zile, L. Ashley Cowart
Published October 1, 2012
Citation Information: J Clin Invest. 2012;122(11):3919-3930. https://doi.org/10.1172/JCI63888.
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Ceramide synthase 5 mediates lipid-induced autophagy and hypertrophy in cardiomyocytes

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Abstract

Diabetic cardiomyopathy (DbCM), which consists of cardiac hypertrophy and failure in the absence of traditional risk factors, is a major contributor to increased heart failure risk in type 2 diabetes patients. In rodent models of DbCM, cardiac hypertrophy and dysfunction have been shown to depend upon saturated fatty acid (SFA) oversupply and de novo sphingolipid synthesis. However, it is not known whether these effects are mediated by bulk SFAs and sphingolipids or by individual lipid species. In this report, we demonstrate that a diet high in SFA induced cardiac hypertrophy, left ventricular systolic and diastolic dysfunction, and autophagy in mice. Furthermore, treatment with the SFA myristate, but not palmitate, induced hypertrophy and autophagy in adult primary cardiomyocytes. De novo sphingolipid synthesis was required for induction of all pathological features observed both in vitro and in vivo, and autophagy was required for induction of hypertrophy in vitro. Finally, we implicated a specific ceramide N-acyl chain length in this process and demonstrated a requirement for (dihydro)ceramide synthase 5 in cardiomyocyte autophagy and myristate-mediated hypertrophy. Thus, this report reveals a requirement for a specific sphingolipid metabolic route and dietary SFAs in the molecular pathogenesis of lipotoxic cardiomyopathy and hypertrophy.

Authors

Sarah Brice Russo, Catalin F. Baicu, An Van Laer, Tuoyu Geng, Harinath Kasiganesan, Michael R. Zile, L. Ashley Cowart

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Changtao Jiang, Cen Xie, Fei Li, Limin Zhang, Robert Nichols, Kristopher Krausz, Jingwei Cai, Yunping Qi, Zhong-Ze Fang, Shogo Takahashi, Naoki Tanaka, Dhimant Desai, Shantu Amin, Istvan Albert, Andrew Patterson, Frank Gonzalez
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Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease 2014
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P Wolf, Y Winhofer, CH Anderwald, M Krššák, M Krebs
Wiener Medizinische Wochenschrift 2014
The pleiotropic roles of sphingolipid signaling in autophagy
Y Li, S Li, X Qin, W Hou, H Dong, L Yao, L Xiong
Cell Death and Disease 2014
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B Wang, Q Yang, Y Sun, Y Xing, Y Wang, X Lu, W Bai, X Liu, Y Zhao
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Autophagy and oxidative stress in cardiovascular diseases
Y Mei, MD Thompson, RA Cohen, XY Tong
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Aliskiren-attenuated myocardium apoptosis via regulation of autophagy and connexin-43 in aged spontaneously hypertensive rats
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Q Liu, S Wang, L Cai
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High CerS5 expression levels associate with reduced patient survival and transition from apoptotic to autophagy signalling pathways in colorectal cancer: CerS5 as a prognostic marker in colorectal cancer
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The Journal of Pathology: Clinical Research 2014
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Circulation research 2013
Autophagy Paradox and Ceramide
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Myristate-derived d16:0 sphingolipids constitute a cardiac sphingolipid pool with distinct synthetic routes and functional properties
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The Journal of biological chemistry 2013
Adiponectin Knockout Accentuates High Fat Diet-Induced Obesity and Cardiac Dysfunction: Role of Autophagy
R Guo, Y Zhang, S Turdi, J Ren
Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease 2013
High fat feeding in mice is insufficient to induce cardiac dysfunction and does not exacerbate heart failure
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PloS one 2013
Sphingolipids: regulators of crosstalk between apoptosis and autophagy
MM Young, M Kester, HG Wang
Journal of lipid research 2012
Dietary composition regulates Drosophila mobility and cardiac physiology
B Bazzell, S Ginzberg, L Healy, RJ Wessells
The Journal of experimental biology 2012
Pulmonary surfactant: an immunological perspective
ZC Chroneos, Z Sever-Chroneos, VL Shepherd
Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology 2009
Lipotoxic very-long-chain ceramides cause mitochondrial dysfunction, oxidative stress, and cell death in cardiomyocytes
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The FASEB Journal 2006
Boosting autophagy in the diabetic heart: a translational perspective
Sebastiano Sciarretta, V. Subbarao Boppana, Mahaa Umapathi, Giacomo Frati, Junichi Sadoshima
Cardiovascular diagnosis and therapy
Preservation of myocardial fatty acid oxidation prevents diastolic dysfunction in mice subjected to angiotensin II infusion
YS Choi, AB de Mattos, D Shao, T Li, M Nabben, M Kim, W Wang, R Tian, SC Kolwicz
Journal of Molecular and Cellular Cardiology 2016
Loss of neutral ceramidase protects cells from nutrient- and energy -deprivation-induced cell death
K Sundaram, AR Mather, S Marimuthu, PP Shah, AJ Snider, LM Obeid, YA Hannun, LJ Beverly, LJ Siskind
Biochemical Journal 2016
Altering sphingolipid composition with aging induces contractile dysfunction of gastric smooth muscle via K Ca 1.1 upregulation
S Choi, JA Kim, TH Kim, H Li, KO Shin, YM Lee, S Oh, Y Pewzner-Jung, AH Futerman, SH Suh
Aging Cell 2015
Myristic acid potentiates palmitic acid-induced lipotoxicity and steatohepatitis associated with lipodystrophy by sustaning de novo ceramide synthesis.
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Oncotarget 2015
Impairment of autophagy in endothelial cells prevents shear-stress-induced increases in nitric oxide bioavailability
LP Bharath, R Mueller, Y Li, T Ruan, D Kunz, R Goodrich, T Mills, L Deeter, A Sargsyan, PV Babu, TE Graham, JD Symons
Canadian Journal of Physiology and Pharmacology 2014
Long‐Term miR‐669a Therapy Alleviates Chronic Dilated Cardiomyopathy in Dystrophic Mice
M Quattrocelli, S Crippa, C Montecchiani, J Camps, AI Cornaglia, L Boldrin, J Morgan, A Calligaro, A Casasco, A Orlacchio, R Gijsbers, J D'Hooge, J Toelen, S Janssens, M Sampaolesi
Journal of the American Heart Association: Cardiovascular and Cerebrovascular Disease 2013

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