Epigallocatechin gallate (EGCG) attenuates high glucose-induced insulin signaling blockade in human hepG2 hepatoma cells

被引:127
作者
Lin, Chih-Li [1 ]
Lin, Jen-Kun [1 ]
机构
[1] Natl Taiwan Univ, Inst Biochem & Mol Biol, Coll Med, Taipei 100, Taiwan
关键词
Akt; AMP-activated protein kinase; (-)-epigallocatechin-3-gallate; insulin; insulin receptor substrate-1;
D O I
10.1002/mnfr.200700437
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Insulin resistance is the primary characteristic of type 2 diabetes which its a result of insulin signaling defects. It has been Suggested that the tea polyphenol (-)-epigallocatechin-3-gallate (EGCG) displays some antidiabetic effects, but the mechanism for EGCG insulin-enhancing effects is incompletely understood. In the Present study the investigations of EGCG on insulin signaling are performed in insulin-responsive human HepG2 cells cotreated with high glucose. We found that the high glucose condition causes significant increasing Ser307 phosphorylation of insulin receptor substrate-1 (IRS-1), leading to reduce insulin-stimulated phosphorylation of Akt. As the results, the insulin metabolic effects of glycogen synthesis and glucose uptake are inhibited by high glucose. However, the treatment of EGCG improves insulin-stimulated downsignaling by reducing IRS-1 Ser-307 phosphorylation. Furthermore, we also demonstrated these EGCG effects are essential depends on the 5'-AMP-activated protein kinase (AMPK) activation. Together, our data suggest a putative link between high glucose and insulin resistance in HepG2 cells, and the EGCG treatment attenuates insulin signaling blockade by reducing IRS-1 Set-307 phosphorylation through the AMPK activation pathway.
引用
收藏
页码:930 / 939
页数:10
相关论文
共 41 条
[31]   Complementary roles of IRS-1 and IRS-2 in the hepatic regulation of metabolism [J].
Taniguchi, CM ;
Ueki, K ;
Kahn, CR .
JOURNAL OF CLINICAL INVESTIGATION, 2005, 115 (03) :718-727
[32]   Tissue-specific roles of IRS proteins in insulin signaling and glucose transport [J].
Thirone, ACP ;
Huang, C ;
Klip, A .
TRENDS IN ENDOCRINOLOGY AND METABOLISM, 2006, 17 (02) :70-76
[33]   Epigallocatechin gallate, a constituent of green tea, represses hepatic glucose production [J].
Waltner-Law, ME ;
Wang, XHL ;
Law, BK ;
Hall, RK ;
Nawano, M ;
Granner, DK .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (38) :34933-34940
[34]  
Westermann G, 2000, TRACE ELEM ELECTROLY, V17, P180
[35]   Chutes and ladders: The search for protein kinases that act on AMPK [J].
Witters, LA ;
Kemp, BE ;
Means, AR .
TRENDS IN BIOCHEMICAL SCIENCES, 2006, 31 (01) :13-16
[36]   Anti-obesity effects of green tea: From bedside to bench [J].
Wolfram, S ;
Wang, Y ;
Thielecke, F .
MOLECULAR NUTRITION & FOOD RESEARCH, 2006, 50 (02) :176-187
[37]   Epigallocatechin gallate supplementation alleviates diabetes in rodents [J].
Wolfram, Swen ;
Raederstorff, Daniel ;
Preller, Mareike ;
Wang, Ying ;
Teixeira, Sandra R. ;
Riegger, Christoph ;
Weber, Peter .
JOURNAL OF NUTRITION, 2006, 136 (10) :2512-2518
[38]   Green tea supplementation ameliorates insulin resistance and increases glucose transporter IV content in a fructose-fed rat model [J].
Wu, LY ;
Juan, CC ;
Hwang, LS ;
Hsu, YP ;
Ho, PH ;
Ho, LT .
EUROPEAN JOURNAL OF NUTRITION, 2004, 43 (02) :116-124
[39]   Effects of dehydroepiandrosterone on gluconeogenic enzymes and glucose uptake in human hepatoma cell line, HepG2 [J].
Yamashita, R ;
Saito, T ;
Satoh, S ;
Aoki, K ;
Kaburagi, Y ;
Sekihara, H .
ENDOCRINE JOURNAL, 2005, 52 (06) :727-733
[40]   Polyphenols stimulate AMP-activated protein kinase, lower lipids, and inhibit accelerated atherosclerosis in diabetic LDL receptor-deficient mice [J].
Zang, Mengwei ;
Xu, Shanqin ;
Maitland-Toolan, Karlene A. ;
Zuccollo, Adriana ;
Hou, Xiuyun ;
Jiang, Bingbing ;
Wierzbicki, Michel ;
Verbeuren, Tony J. ;
Cohen, Richard A. .
DIABETES, 2006, 55 (08) :2180-2191