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Es-x/Ces1 prevents triacylglycerol accumulation in McArdle-RH7777 hepatocytes
Authors:Kerry WS Ko  Bruce Erickson  Richard Lehner
Institution:1. College of Veterinary Medicine and Biomedical Sciences, Texas A&M University, College Station, TX 77843, United States;2. Barz Center for Embryo Research and Infertility Treatment, 40 Koyah Street, Erbil, Iraq;3. Center for Aerosol & Nanomaterials Engineering, RTI International, NC 27709, United States;1. Barz IVF Center for Embryo Research and Infertility Treatment, Koyah Street, Brayate P. O. Box 56, Erbil, Iraq;2. American University of Iraq-Sulaimani, Kirkuk Main Road, Raparin, Sulaimania 46001, Iraq;1. Division of Reproductive and Developmental Science, Oregon National Primate Research Center, Beaverton, OR 97006, USA;2. Department of Obstetrics and Gynecology, Oregon Health and Science University, Portland, OR 97239, USA
Abstract:Mouse esterase-x/carboxylesterase 1 (Es-x/Ces1) is a close homolog of triacylglycerol hydrolase/carboxylesterase 3 (TGH/Ces3). Es-x possesses a conserved esterase/lipase active site motif, suggesting that like TGH it could play a role in hepatic triacylglycerol (TG) metabolism. McArdle-RH7777 cells stably transfected with Es-x cDNA accumulated significantly less TG and had increased production of acid-soluble metabolites (an indicator of β-oxidation) during incubations with 0.4 mM oleic acid when compared to empty vector or TGH cDNA transfected cells. Reduction of cellular TG persisted in the presence of esterase/lipase inhibitor E600 indicating that Es-x-mediated TG lowering can be largely explained by reduced partitioning of exogenous fatty acids to TG and increased redirection to β-oxidation, rather than by increased TG turnover. Glycerol supplementation increased TG synthesis in both control and Es-x expressing cells to similar extent suggesting that Es-x expression did not reduce flux of metabolic intermediates through the glycerol-3-phosphate pathway. While Es-x expression reduced cellular TG levels, secretion of TG and apolipoprotein B remained unchanged when compared to control cells. Overall, these results suggest that Es-x limits hepatic TG accumulation by promoting β-oxidation.
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