6-Methyl flavone inhibits Nogo-B expression and improves high fructose diet-induced liver injury in mice

6-甲基黄酮抑制Nogo-B表达并改善高果糖饮食诱导的小鼠肝损伤

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作者:Ke Gong # ,Zhen Zhang # ,Sha-Sha Chen ,Xin-Ran Zhu ,Meng-Yao Wang ,Xin-Yue Yang ,Chen Ding ,Ji-Hong Han ,Qing-Shan Li ,Ya-Jun Duan

Abstract

Excessive fructose consumption increases hepatic de novo lipogenesis, resulting in cellular stress, inflammation and liver injury. Nogo-B is a resident protein of the endoplasmic reticulum that regulates its structure and function. Hepatic Nogo-B is a key protein in glycolipid metabolism, and inhibition of Nogo-B has protective effects against metabolic syndrome, thus small molecules that inhibit Nogo-B have therapeutic benefits for glycolipid metabolism disorders. In this study we tested 14 flavones/isoflavones in hepatocytes using dual luciferase reporter system based on the Nogo-B transcriptional response system, and found that 6-methyl flavone (6-MF) exerted the strongest inhibition on Nogo-B expression in hepatocytes with an IC50 value of 15.85 μM. Administration of 6-MF (50 mg· kg-1 ·d-1, i.g. for 3 weeks) significantly improved insulin resistance along with ameliorated liver injury and hypertriglyceridemia in high fructose diet-fed mice. In HepG2 cells cultured in a media containing an FA-fructose mixture, 6-MF (15 μM) significantly inhibited lipid synthesis, oxidative stress and inflammatory responses. Furthermore, we revealed that 6-MF inhibited Nogo-B/ChREBP-mediated fatty acid synthesis and reduced lipid accumulation in hepatocytes by restoring cellular autophagy and promoting fatty acid oxidation via the AMPKα-mTOR pathway. Thus, 6-MF may serve as a potential Nogo-B inhibitor to treat metabolic syndrome caused by glycolipid metabolism dysregulation. Keywords: 6-methyl flavone; Nogo-B; glycolipid metabolism; high fructose; liver injury; metabolic syndrome.

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