Paradoxical Coupling of Triglyceride Synthesis and Fatty Acid Oxidation in Skeletal Muscle Overexpressing DGAT1
暂无分享,去创建一个
K. Nair | G. Shulman | G. Schwartz | I. Goldberg | Yiying Zhang | Xiaojing Shi | C. Choi | Yi-Hao Yu | Li Liu | Katherine A. Klaus | Yi‐Hao Yu
[1] G. Shulman,et al. Overexpression of uncoupling protein 3 in skeletal muscle protects against fat-induced insulin resistance. , 2007, The Journal of clinical investigation.
[2] Yiying Zhang,et al. Upregulation of myocellular DGAT1 augments triglyceride synthesis in skeletal muscle and protects against fat-induced insulin resistance. , 2007, The Journal of clinical investigation.
[3] J. Horowitz,et al. Acute exercise increases triglyceride synthesis in skeletal muscle and prevents fatty acid-induced insulin resistance. , 2007, The Journal of clinical investigation.
[4] G. Schwartz,et al. Increasing Dietary Leucine Intake Reduces Diet-Induced Obesity and Improves Glucose and Cholesterol Metabolism in Mice via Multimechanisms , 2007, Diabetes.
[5] D. Cameron-Smith,et al. Reduced plasma free fatty acid availability during exercise: effect on gene expression , 2007, European Journal of Applied Physiology.
[6] Young Il Kim,et al. Insulin Regulation of Skeletal Muscle PDK4 mRNA Expression Is Impaired in Acute Insulin-Resistant States , 2006, Diabetes.
[7] G. Heigenhauser,et al. Endurance training in obese humans improves glucose tolerance and mitochondrial fatty acid oxidation and alters muscle lipid content. , 2006, American journal of physiology. Endocrinology and metabolism.
[8] E. Olson,et al. Signaling pathways in skeletal muscle remodeling. , 2006, Annual review of biochemistry.
[9] M. Febbraio,et al. Saturated, but not n-6 polyunsaturated, fatty acids induce insulin resistance: role of intramuscular accumulation of lipid metabolites. , 2006, Journal of applied physiology.
[10] H. Ginsberg,et al. Whole-body insulin resistance in the absence of obesity in FVB mice with overexpression of Dgat1 in adipose tissue. , 2005, Diabetes.
[11] K. Petersen,et al. Mitochondrial dysfunction and type 2 diabetes , 2005, Current diabetes reports.
[12] K. Nair,et al. Decline in skeletal muscle mitochondrial function with aging in humans. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[13] J. Montani,et al. Substrate cycling between de novo lipogenesis and lipid oxidation: a thermogenic mechanism against skeletal muscle lipotoxicity and glucolipotoxicity , 2004, International Journal of Obesity.
[14] W. Pierce,et al. Cardiac mitochondrial damage and biogenesis in a chronic model of type 1 diabetes. , 2004, American journal of physiology. Endocrinology and metabolism.
[15] P. Neufer,et al. Transcriptional regulation of pyruvate dehydrogenase kinase 4 in skeletal muscle during and after exercise , 2004, The Proceedings of the Nutrition Society.
[16] Yi-Hao Yu,et al. Chronological changes in metabolism and functions of cultured adipocytes: a hypothesis for cell aging in mature adipocytes. , 2004, American journal of physiology. Endocrinology and metabolism.
[17] K. Petersen,et al. Impaired mitochondrial activity in the insulin-resistant offspring of patients with type 2 diabetes. , 2004, The New England journal of medicine.
[18] K. Nair,et al. Impact of aerobic exercise training on age-related changes in insulin sensitivity and muscle oxidative capacity. , 2003, Diabetes.
[19] K. Nair,et al. Effect of insulin on human skeletal muscle mitochondrial ATP production, protein synthesis, and mRNA transcripts , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[20] M. Holness,et al. Recent advances in mechanisms regulating glucose oxidation at the level of the pyruvate dehydrogenase complex by PDKs. , 2003, American journal of physiology. Endocrinology and metabolism.
[21] D. Rader,et al. Posttranscriptional Control of the Expression and Function of Diacylglycerol Acyltransferase-1 in Mouse Adipocytes* , 2002, The Journal of Biological Chemistry.
[22] G. Shulman,et al. Mechanism by Which Fatty Acids Inhibit Insulin Activation of Insulin Receptor Substrate-1 (IRS-1)-associated Phosphatidylinositol 3-Kinase Activity in Muscle* , 2002, The Journal of Biological Chemistry.
[23] K. Bulmer,et al. Up-regulation of pyruvate dehydrogenase kinase isoform 4 (PDK4) protein expression in oxidative skeletal muscle does not require the obligatory participation of peroxisome-proliferator-activated receptor alpha (PPARalpha). , 2002, The Biochemical journal.
[24] G. Dohm,et al. Muscle fiber type is associated with obesity and weight loss. , 2002, American journal of physiology. Endocrinology and metabolism.
[25] Simon C Watkins,et al. Skeletal muscle lipid content and insulin resistance: evidence for a paradox in endurance-trained athletes. , 2001, The Journal of clinical endocrinology and metabolism.
[26] M. Febbraio,et al. Effect of ovarian hormones on mitochondrial enzyme activity in the fat oxidation pathway of skeletal muscle. , 2001, American journal of physiology. Endocrinology and metabolism.
[27] M. Alegret,et al. Bezafibrate reduces mRNA levels of adipocyte markers and increases fatty acid oxidation in primary culture of adipocytes. , 2001, Diabetes.
[28] Martin D. Brand,et al. Mice overexpressing human uncoupling protein-3 in skeletal muscle are hyperphagic and lean , 2000, Nature.
[29] G. Shulman,et al. On Diabetes: Insulin Resistance Cellular Mechanisms of Insulin Resistance , 2022 .
[30] C. Schmitz‐Peiffer,et al. Ceramide Generation Is Sufficient to Account for the Inhibition of the Insulin-stimulated PKB Pathway in C2C12 Skeletal Muscle Cells Pretreated with Palmitate* , 1999, The Journal of Biological Chemistry.
[31] G. Shulman,et al. Free fatty acid-induced insulin resistance is associated with activation of protein kinase C theta and alterations in the insulin signaling cascade. , 1999, Diabetes.
[32] Honglin Zhou,et al. Regulation of Insulin-Stimulated Glucose Transporter GLUT4 Translocation and Akt Kinase Activity by Ceramide , 1998, Molecular and Cellular Biology.
[33] J. Simoneau,et al. Altered glycolytic and oxidative capacities of skeletal muscle contribute to insulin resistance in NIDDM. , 1997, Journal of applied physiology.
[34] S. Papa. Mitochondrial oxidative phosphorylation changes in the life span. Molecular aspects and physiopathological implications. , 1996, Biochimica et biophysica acta.
[35] K. M. Popov,et al. Diversity of the Pyruvate Dehydrogenase Kinase Gene Family in Humans * , 1995, The Journal of Biological Chemistry.
[36] W. Saris,et al. Prolonged activation of the branched‐chain α‐keto acid dehydrogenase complex in muscle of zymosan treated rats , 1995, European journal of clinical investigation.
[37] G. Dohm,et al. Skeletal muscle fiber composition is related to adiposity and in vitro glucose transport rate in humans. , 1995, The American journal of physiology.
[38] J. Simoneau,et al. Skeletal muscle glycolytic and oxidative enzyme capacities are determinants of insulin sensitivity and muscle composition in obese women , 1995, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[39] T. Buchanan,et al. Fasting Does Not Impaird Insulin-Stimulated Glucose Uptake But Alters Intracellular Glucose Metabolism in Conscious Rats , 1993, Diabetes.
[40] T. Vary,et al. Insulin-induced activation of pyruvate dehydrogenase complex in skeletal muscle of diabetic rats. , 1993, Metabolism: clinical and experimental.
[41] A. L. Kerbey,et al. Cyclic AMP and free fatty acids in the longer-term regulation of pyruvate dehydrogenase kinase in rat soleus muscle. , 1992, Biochimica et biophysica acta.
[42] S. Fuller,et al. Reversible phosphorylation of pyruvate dehydrogenase in rat skeletal-muscle mitochondria. Effects of starvation and diabetes. , 1984, The Biochemical journal.
[43] J. Holloszy. Skeletal muscle "mitochondrial deficiency" does not mediate insulin resistance. , 2009, The American journal of clinical nutrition.
[44] Olga Ilkayeva,et al. Mitochondrial overload and incomplete fatty acid oxidation contribute to skeletal muscle insulin resistance. , 2008, Cell metabolism.
[45] A. Russell. Lipotoxicity: the obese and endurance-trained paradox , 2004, International Journal of Obesity.
[46] A. Panchal,et al. Alterations in enzymes involved in fat metabolism after acute and chronic altitude exposure. , 2001, Journal of applied physiology.
[47] P. Neufer,et al. Transcriptional regulation of gene expression in human skeletal muscle during recovery from exercise. , 2000, American journal of physiology. Endocrinology and metabolism.
[48] K. M. Popov,et al. Evidence for existence of tissue-specific regulation of the mammalian pyruvate dehydrogenase complex. , 1998, The Biochemical journal.
[49] K. M. Popov,et al. Starvation and diabetes increase the amount of pyruvate dehydrogenase kinase isoenzyme 4 in rat heart. , 1998, The Biochemical journal.