Oleanolic Acid Inhibits SCD1 Gene Expression to Ameliorate Fructose‐Induced Hepatosteatosis through SREBP1c‐Dependent and ‐Independent Mechanisms

Author:

Yao Ling12ORCID,Wang Meng1ORCID,Zhang Jun1,Luo Xianqin1,Yuan Chunlin1,Bai Ruojun1,Wang Tongzhuang1,Xi Yumeng1,Li Chunli3,Ke Dazhi4,Yamahara Johji5,Li Yuhao6,Yi Yongfen2,Wang Shang1,Wang Jianwei1

Affiliation:

1. Chongqing Key Laboratory of Traditional Chinese Medicine for Prevention and Cure of Metabolic Diseases College of Traditional Chinese Medicine, 1 Yixueyuan Road Chongqing Medical University Yuzhong District Chongqing 400016 P. R. China

2. Department of Pathology Molecular Medicine and Cancer Research Center Basic Medicine College 1 Yixueyuan Road, Chongqing Medical University Yuzhong District Chongqing 400016 P. R. China

3. Institute of Life Sciences Chongqing Medical University 1 Yixueyuan Road Yuzhong District Chongqing 400016 P. R. China

4. The Second Affiliated Hospital of Chongqing Medical University 74 Linjiang Road, Yuzhong District Chongqing 400010 P. R. China

5. Pharmafood Institute Kyoto 602–8136 Japan

6. Endocrinology and Metabolism Group Sydney Institute of Health Sciences/Sydney Institute of Traditional Chinese Medicine Sydney NSW 2000 Australia

Abstract

ScopeThe mechanisms of oleanolic acid (OA) regulating hepatic sterol regulatory element‐binding protein (SREBP) 1c/stearoyl‐CoA desaturase (SCD) 1 pathway to ameliorate fructose‐induced hepatosteatosis are investigated.Methods and resultsRats treated with 10% w/v fructose solution are co‐administered by OA for 5 weeks, and then sacrifice after fasting for 14 h. OA reverses the fructose‐induced increase in hepatic triglyceride (TG) content and downregulates Scd1 mRNA expression. However, two upstream transcription factors, ChREBP and SREBP1c, remain at normal levels with or without fructose and/or OA. In vivo and in vitro studies using SREBP1c−/− mice and HepG2 cell models show that OA also inhibits SCD1 gene overexpression and high hepatic TG levels induced by fructose. On the other hand, in SCD1−/− mice, when the fructose diet is supplemented with high levels of oleic acid (OLA) to compensate for the deficiency of SCD1, OA inhibits hepatic SREBP1c and lipogenic gene expression and reduces hepatic OLA (C18:1) production to improve fructose and/or OLA induced liver lipid deposition. Furthermore, OA promotes PPARα and AMPK to enhance fatty acid oxidation in fructose + OLA‐fed SCD1−/− mice.ConclusionOA may inhibit SCD1 gene expression to ameliorate fructose‐induced hepatosteatosis through SREBP1c‐dependent and ‐independent mechanisms.

Publisher

Wiley

Subject

Food Science,Biotechnology

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