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Amyloid-β Induces Hepatic Insulin Resistance by Activating JAK2/STAT3/SOCS-1 Signaling Pathway

机译:淀粉样蛋白β通过激活JAK2 / STAT3 / SOCS-1信号通路诱导肝胰岛素抵抗

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摘要

Epidemiological studies indicate that patients with Alzheimer's disease (AD) have an increased risk of developing type 2 diabetes mellitus (T2DM), and experimental studies suggest that AD exacerbates T2DM, but the underlying mechanism is still largely unknown. This study aims to investigate whether amyloid-β (Aβ), a key player in AD pathogenesis, contributes to the development of insulin resistance, as well as the underlying mechanism. We find that plasma Ap40/42 levels are increased in patients with hyperglycemia. APPswe/PSENldE9 transgenic AD model mice with increased plasma Aβ40/42 levels show impaired glucose and insulin tolerance and hyperinsulinemia. Furthermore, Aβ impairs insulin signaling in mouse liver and cultured hepatocytes. Aβ can upregulate suppressors of cytokine signaling (SOCS)-1, a well-known insulin signaling inhibitor. Knockdown of SOCS-1 alleviates Aβ-induced impairment of insulin signaling. Moreover, JAK2/STAT3 is activated by Aβ, and inhibition of JAK2/STAT3 signaling attenuates Aβ-induced upregulation of SOCS-1 and insulin resistance in hepatocytes. Our results demonstrate that Aβ induces hepatic insulin resistance by activating JAK2/STAT3/ SOCS-1 signaling pathway and have implications toward resolving insulin resistance and T2DM.
机译:流行病学研究表明,患有阿尔茨海默氏病(AD)的患者罹患2型糖尿病(T2DM)的风险增加,实验研究表明AD会加剧T2DM,但其潜在机制仍不清楚。这项研究旨在调查淀粉样蛋白-β(Aβ),AD发病机理中的关键因素,是否有助于胰岛素抵抗的发展,以及其潜在机制。我们发现高血糖患者血浆Ap40 / 42水平升高。血浆Aβ40/ 42水平升高的APPswe / PSENldE9转基因AD模型小鼠显示葡萄糖和胰岛素耐受性受损以及高胰岛素血症。此外,Aβ损害小鼠肝脏和培养的肝细胞中的胰岛素信号传导。 Aβ可以上调细胞因子信号传导(SOCS)-1的抑制因子,SOCS-1是一种众所周知的胰岛素信号传导抑制剂。降低SOCS-1可以减轻Aβ诱导的胰岛素信号传导障碍。此外,JAK2 / STAT3被Aβ激活,抑制JAK2 / STAT3信号减弱了Aβ诱导的肝细胞SOCS-1上调和胰岛素抵抗。我们的结果表明,Aβ通过激活JAK2 / STAT3 / SOCS-1信号传导途径诱导肝胰岛素抵抗,并且对解决胰岛素抵抗和T2DM具有重要意义。

著录项

  • 来源
    《Diabetes》 |2012年第6期|p.1434-1443|共10页
  • 作者单位

    Key Laboratory of Nutrition and Metabolism, Institute for Nutritional Sciences, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, Shanghai, China;

    Key Laboratory of Nutrition and Metabolism, Institute for Nutritional Sciences, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, Shanghai, China;

    Key Laboratory of Nutrition and Metabolism, Institute for Nutritional Sciences, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, Shanghai, China;

    Key Laboratory of Nutrition and Metabolism, Institute for Nutritional Sciences, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, Shanghai, China;

    Key Laboratory of Nutrition and Metabolism, Institute for Nutritional Sciences, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, Shanghai, China;

    Key Laboratory of Nutrition and Metabolism, Institute for Nutritional Sciences, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, Shanghai, China;

    Key Laboratory of Nutrition and Metabolism, Institute for Nutritional Sciences, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, Shanghai, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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