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Hepatocyte TMEM16A Deletion Retards NAFLD Progression by Ameliorating Hepatic Glucose Metabolic Disorder.
Guo, Jia-Wei; Liu, Xiu; Zhang, Ting-Ting; Lin, Xiao-Chun; Hong, Yu; Yu, Jie; Wu, Qin-Yan; Zhang, Fei-Ran; Wu, Qian-Qian; Shang, Jin-Yan; Lv, Xiao-Fei; Ou, Jing-Song; Zhou, Jia-Guo; Pang, Rui-Ping; Tang, Bao-Dong; Liang, Si-Jia.
Afiliación
  • Guo JW; Department of Pharmacology Cardiac and Cerebral Vascular Research Center Zhongshan School of Medicine Sun Yat-Sen University Guangzhou 510080 China.
  • Liu X; Department of Pharmacology Cardiac and Cerebral Vascular Research Center Zhongshan School of Medicine Sun Yat-Sen University Guangzhou 510080 China.
  • Zhang TT; Department of Pharmacology Cardiac and Cerebral Vascular Research Center Zhongshan School of Medicine Sun Yat-Sen University Guangzhou 510080 China.
  • Lin XC; Department of Pharmacology Cardiac and Cerebral Vascular Research Center Zhongshan School of Medicine Sun Yat-Sen University Guangzhou 510080 China.
  • Hong Y; Department of Pharmacology Cardiac and Cerebral Vascular Research Center Zhongshan School of Medicine Sun Yat-Sen University Guangzhou 510080 China.
  • Yu J; Department of Gastrointestinal Surgery The First Affiliated Hospital Sun Yat-Sen University Guangzhou 510080 China.
  • Wu QY; Department of Gastroenterology The First People's Hospital of Foshan Foshan 528000 China.
  • Zhang FR; Department of Pharmacology Cardiac and Cerebral Vascular Research Center Zhongshan School of Medicine Sun Yat-Sen University Guangzhou 510080 China.
  • Wu QQ; Key Laboratory of Metabolic Cardiovascular Diseases Research of National Health Commission Ningxia Medical University Yinchuan 750004 China.
  • Shang JY; Department of Pharmacology Cardiac and Cerebral Vascular Research Center Zhongshan School of Medicine Sun Yat-Sen University Guangzhou 510080 China.
  • Lv XF; Department of Pharmacology Cardiac and Cerebral Vascular Research Center Zhongshan School of Medicine Sun Yat-Sen University Guangzhou 510080 China.
  • Ou JS; Division of Cardiac Surgery The Key Laboratory of Assisted Circulation Ministry of Health The First Affiliated Hospital Sun Yat-Sen University Guangzhou 510080 China.
  • Zhou JG; National-Guangdong Joint Engineering Laboratory for Diagnosis and Treatment of Vascular Diseases The First Affiliated Hospital Sun Yat-Sen University Guangzhou 510080 China.
  • Pang RP; Department of Pharmacology Cardiac and Cerebral Vascular Research Center Zhongshan School of Medicine Sun Yat-Sen University Guangzhou 510080 China.
  • Tang BD; Program of Kidney and Cardiovascular Disease The Fifth Affiliated Hospital Sun Yat-Sen University Guangzhou 510080 China.
  • Liang SJ; Department of Cardiology Sun Yat-Sen Memorial Hospital Sun Yat-Sen University Guangzhou 510120 China.
Adv Sci (Weinh) ; 7(10): 1903657, 2020 May.
Article en En | MEDLINE | ID: mdl-32440483
ABSTRACT
Nonalcoholic fatty liver disease (NAFLD) is the most prevalent form of chronic liver disease, and the mechanisms underpinning its pathogenesis have not been completely established. Transmembrane member 16A (TMEM16A), a component of the Ca2+-activated chloride channel (CaCC), has recently been implicated in metabolic events. Herein, TMEM16A is shown to be responsible for CaCC activation in hepatocytes and is increased in liver tissues of mice and patients with NAFLD. Hepatocyte-specific ablation of TMEM16A in mice ameliorates high-fat diet-induced obesity, hepatic glucose metabolic disorder, steatosis, insulin resistance, and inflammation. In contrast, hepatocyte-specific TMEM16A transgenic mice exhibit the opposite phenotype. Mechanistically, hepatocyte TMEM16A interacts with vesicle-associated membrane protein 3 (VAMP3) to induce its degradation, suppressing the formation of the VAMP3/syntaxin 4 and VAMP3/synaptosome-associated protein 23 complexes. This leads to the impairment of hepatic glucose transporter 2 (GLUT2) translocation and glucose uptake. Notably, VAMP3 overexpression restrains the functions of hepatocyte TMEM16A in blocking GLUT2 translocation and promoting lipid deposition, insulin resistance, and inflammation. In contrast, VAMP3 knockdown reverses the beneficial effects of TMEM16A downregulation. This study demonstrates a role for TMEM16A in NAFLD and suggests that inhibition of hepatic TMEM16A or disruption of TMEM16A/VAMP3 interaction may provide a new potential therapeutic strategy for NAFLD.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Adv Sci (Weinh) Año: 2020 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Adv Sci (Weinh) Año: 2020 Tipo del documento: Article