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Restoration of autophagy by puerarin in ethanol-treated hepatocytes via the activation of AMP-activated protein kinase
Authors:Byung-Kyu Noh  Jung Kyu Lee  Hee-jin Jun  Ji Hae Lee  Yaoyao Jia  Minh-Hien Hoang  Jung-Wan Kim  Kwan-Hwa Park  Sung-Joon Lee
Affiliation:aDivision of Food Bioscience and Technology, College of Life Sciences and Biotechnology, Korea University, Seoul 136-713, Republic of Korea;bDepartment of Biology, University of Incheon, Incheon 402-749, Republic of Korea;cDepartment of Foodservice Management and Nutrition, Sangmyuung University, Seoul 110-743, Republic of Korea
Abstract:We investigated the effects of puerarin, the major isoflavone in Kudzu roots, on the regulation of autophagy in ethanol-treated hepatocytes. Incubation in ethanol (100 mM) for 24 h reduced cell viability by 20% and increased the cellular concentrations of cholesterol and triglycerides by 40% and 20%, respectively. Puerarin stimulation significantly recovered cell viability and reduced cellular lipid accumulation to a level comparable to that in untreated control cells. Ethanol incubation reduced autophagy significantly as assessed by microtubule-associated protein1 light chain 3 (LC3) expression using immunohistochemistry and immunoblot analysis. The reduced expression of LC3 was restored by puerarin in a dose-dependent manner in ethanol-treated cells. The effect of puerarin on mammalian targets of rapamycin (mTOR), a key regulator of autophagy, was examined in ethanol-treated hepatocytes. Immunoblotting revealed that puerarin significantly induced the phosphorylation of 5′AMP-activated protein kinase (AMPK), thereby suppressing the mTOR target proteins S6 ribosomal protein and 4E-binding protein 1. These data suggest that puerarin restored the viability of cells and reduced lipid accumulation in ethanol-treated hepatocytes by activating autophagy via AMPK/mTOR-mediated signaling.
Keywords:Puerarin   Autophagy   AMPK   mTOR   Alcoholic liver damage
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