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本文引用的文献

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Integrated control of hepatic lipogenesis versus glucose production requires FoxO transcription factors.肝脏脂肪生成与葡萄糖生成的综合调控需要FoxO转录因子。
Nat Commun. 2014 Oct 13;5:5190. doi: 10.1038/ncomms6190.
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Inhibition of Notch uncouples Akt activation from hepatic lipid accumulation by decreasing mTorc1 stability.抑制 Notch 通过降低 mTorc1 的稳定性将 Akt 的激活与肝脂质积累解偶联。
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Insulin stimulation of SREBP-1c processing in transgenic rat hepatocytes requires p70 S6-kinase.胰岛素刺激转基因大鼠肝细胞中 SREBP-1c 的加工需要 p70 S6-kinase。
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Insulin regulates liver metabolism in vivo in the absence of hepatic Akt and Foxo1.胰岛素在体内调节肝脏代谢,而不依赖于肝 Akt 和 Foxo1。
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Impaired generation of 12-hydroxylated bile acids links hepatic insulin signaling with dyslipidemia.12-羟化胆汁酸生成受损将肝胰岛素信号与血脂异常联系起来。
Cell Metab. 2012 Jan 4;15(1):65-74. doi: 10.1016/j.cmet.2011.11.010. Epub 2011 Dec 22.
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Postprandial hepatic lipid metabolism requires signaling through Akt2 independent of the transcription factors FoxA2, FoxO1, and SREBP1c.餐后肝脂质代谢需要 Akt2 信号转导,而不依赖于转录因子 FoxA2、FoxO1 和 SREBP1c。
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Akt stimulates hepatic SREBP1c and lipogenesis through parallel mTORC1-dependent and independent pathways.Akt 通过平行的 mTORC1 依赖性和非依赖性途径刺激肝 SREBP1c 和脂肪生成。
Cell Metab. 2011 Jul 6;14(1):21-32. doi: 10.1016/j.cmet.2011.06.002.
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Hormonal regulation of hepatic glucose production in health and disease.激素对健康和疾病状态下肝脏葡萄糖生成的调节作用。
Cell Metab. 2011 Jul 6;14(1):9-19. doi: 10.1016/j.cmet.2011.06.003.
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Hyperinsulinemia leads to uncoupled insulin regulation of the GLUT4 glucose transporter and the FoxO1 transcription factor.高胰岛素血症导致 GLUT4 葡萄糖转运体和 FoxO1 转录因子的胰岛素调节解偶联。
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Insulin signaling to hepatic lipid metabolism in health and disease.胰岛素信号在健康和疾病中的肝脂质代谢作用。
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分离的肝细胞中选择性胰岛素抵抗的发病机制。

Pathogenesis of selective insulin resistance in isolated hepatocytes.

作者信息

Cook Joshua R, Langlet Fanny, Kido Yoshiaki, Accili Domenico

机构信息

From the Department of Medicine, Columbia University, New York, New York 10032 and.

the Division of Diabetes and Endocrinology, Department of Internal Medicine, Kobe University Graduate School of Medicine, Kobe 650-0017, Japan.

出版信息

J Biol Chem. 2015 May 29;290(22):13972-80. doi: 10.1074/jbc.M115.638197. Epub 2015 Apr 14.

DOI:10.1074/jbc.M115.638197
PMID:25873396
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4447970/
Abstract

The development of insulin resistance (IR) in the liver is a key pathophysiologic event in the development of type 2 diabetes. Although insulin loses its ability to suppress glucose production, it largely retains its capacity to drive lipogenesis. This selective IR results in the characteristic hyperglycemia and dyslipidemia of type 2 diabetes. The delineation of two branched pathways of insulin receptor (InsR) signaling to glucose versus triglyceride production, one through FoxO and the other through SREBP-1c, provides a mechanism to account for this pathophysiological abnormality. We tested the complementary hypothesis that selective IR arises due to different intrinsic sensitivities of glucose production versus de novo lipogenesis to insulin as a result of cell-autonomous down-regulation of InsR number in response to chronic hyperinsulinemia. We demonstrate in mouse primary hepatocytes that chronic hyperinsulinemia abrogates insulin's inhibition of glucose production, but not its stimulation of de novo lipogenesis. Using a competitive inhibitor of InsR, we show that there is a 4-fold difference between levels of InsR inhibition required to cause resistance of glucose production versus lipogenesis to the actions of insulin. Our data support a parsimonious model in which differential InsR activation underlies the selective IR of glucose production relative to lipogenesis, but both processes require signaling through Akt1/2.

摘要

肝脏中胰岛素抵抗(IR)的发展是2型糖尿病发生过程中的关键病理生理事件。尽管胰岛素失去了抑制葡萄糖生成的能力,但它在很大程度上仍保留了驱动脂肪生成的能力。这种选择性IR导致了2型糖尿病特有的高血糖和血脂异常。胰岛素受体(InsR)信号传导至葡萄糖生成与甘油三酯生成的两条分支途径的描绘,一条通过FoxO,另一条通过SREBP-1c,为解释这种病理生理异常提供了一种机制。我们检验了一个补充假说,即由于慢性高胰岛素血症导致细胞自主下调InsR数量,葡萄糖生成与从头脂肪生成对胰岛素的内在敏感性不同,从而产生选择性IR。我们在小鼠原代肝细胞中证明,慢性高胰岛素血症消除了胰岛素对葡萄糖生成的抑制作用,但没有消除其对从头脂肪生成的刺激作用。使用InsR的竞争性抑制剂,我们表明,导致葡萄糖生成与脂肪生成对胰岛素作用产生抵抗所需的InsR抑制水平之间存在4倍差异。我们的数据支持一个简约模型,其中InsR的差异性激活是葡萄糖生成相对于脂肪生成的选择性IR的基础,但这两个过程都需要通过Akt1/2进行信号传导。