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Molecular mechanisms of insulin resistance in type 2 diabetes mellitus

机译:2型糖尿病胰岛素抵抗的分子机制

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摘要

Free fatty acids are known to play a key role in promoting loss of insulin sensitivity in type 2 diabetes mellitus but the underlying mechanism is still unclear. It has been postulated that an increase in the intracellular concentration of fatty acid metabolites activates a serine kinase cascade, which leads to defects in insulin signaling downstream to the insulin receptor. In addition, the complex network of adipokines released from adipose tissue modulates the response of tissues to insulin. Among the many molecules involved in the intracellular processing of the signal provided by insulin, the insulin receptor substrate-2, the protein kinase B and the forkhead transcription factor Foxo 1a are of particular interest, as recent data has provided strong evidence that dysfunction of these proteins results in insulin resistance in vivo. Recently, studies have revealed that phosphoinositidedependent kinase 1-independent phosphorylation of protein kinase Cε causes a reduction in insulin receptor gene expression. Additionally, it has been suggested that mitochondrial dysfunction triggers activation of several serine kinases, and weakens insulin signal transduction. Thus, in this review, the current developments in understanding the pathophysiological processes of insulin resistance in type 2 diabetes have been summarized. In addition, this study provides potential new targets for the treatment and prevention of type 2 diabetes.
机译:已知游离脂肪酸在促进2型糖尿病的胰岛素敏感性丧失中起关键作用,但其潜在机制仍不清楚。据推测,脂肪酸代谢产物的细胞内浓度增加会激活丝氨酸激酶级联反应,从而导致胰岛素受体下游的胰岛素信号传导缺陷。另外,从脂肪组织释放的复杂的脂肪因子网络调节了组织对胰岛素的反应。在胰岛素提供的信号的细胞内处理中涉及的许多分子中,胰岛素受体底物2,蛋白激酶B和叉头转录因子Foxo 1a特别受关注,因为最近的数据提供了有力的证据表明这些功能障碍蛋白质在体内导致胰岛素抵抗。最近,研究表明蛋白激酶Cε的磷酸肌醇依赖性激酶1依赖性磷酸化导致胰岛素受体基因表达降低。另外,已经提出线粒体功能障碍触发几种丝氨酸激酶的活化,并削弱胰岛素信号转导。因此,在这篇综述中,总结了理解2型糖尿病胰岛素抵抗的病理生理过程的最新进展。此外,这项研究为治疗和预防2型糖尿病提供了潜在的新靶标。

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