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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Multifunctional actions of vanadium compounds on insulin signaling pathways: Evidence for preferential enhancement of metabolic versus mitogenic effects
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Multifunctional actions of vanadium compounds on insulin signaling pathways: Evidence for preferential enhancement of metabolic versus mitogenic effects

机译:钒化合物对胰岛素信号通路的多功能作用:证据表明代谢和促有丝分裂作用优先增强

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The pathophysiologic importance of insulin resistance in diseases such as obesity and diabetes mellitus has led to great interest in defining the mechanism of insulin action as well as the means to overcome the biochemical defects responsible for the resistance. Vanadium compounds have been discovered to mimic many of the metabolic actions of insulin both in vitro and in vivo and improve glycemic control in human subjects with diabetes mellitus. Apart from its direct insulinmimetic actions, we found that vanadate modulates insulin metabolic effects by enhancing insulin sensitivity and prolonging insulin action. All of these actions appear to be related to protein tyrosine phosphatase (PTP) inhibition. However, in contrast to its stimulatory effects, vanadate inhibits basal and insulin-stimulated system A amino acid uptake and cell proliferation. The mechanism of these actions also appears to be related to PTP inhibition, consistent with the multiple roles of PTPs in regulating signal transduction. While the precise biochemical pathway of vanadate action is not yet known, it is clearly different from that of insulin in that the insulin receptor and phosphatidylinositol 3'-kinase do not seem to be essential for vanadate stimulation of glucose uptake and metabolism. The ability of vanadium compounds to 'bypass' defects in insulin action in diseases characterized by insulin resistance and their apparent preferential metabolic versus mitogenic signaling profile make them attractive as potential pharmacological agents.
机译:胰岛素抵抗在诸如肥胖症和糖尿病的疾病中的病理生理重要性已经引起人们对定义胰岛素作用机制以及克服引起该抵抗的生化缺陷的手段的极大兴趣。已经发现钒化合物可以在体外和体内模拟许多胰岛素的代谢作用,并改善患有糖尿病的人类受试者的血糖控制。除了其直接的仿胰岛素作用外,我们发现钒酸盐通过增强胰岛素敏感性和延长胰岛素作用来调节胰岛素代谢作用。所有这些作用似乎都与蛋白质酪氨酸磷酸酶(PTP)抑制有关。但是,与它的刺激作用相反,钒酸盐抑制基础和胰岛素刺激的系统A氨基酸摄取和细胞增殖。这些作用的机制似乎也与PTP抑制有关,这与PTP在调节信号转导中的多种作用一致。尽管尚不清楚钒酸盐作用的确切生化途径,但它与胰岛素的明显不同之处在于,胰岛素受体和磷脂酰肌醇3'-激酶似乎并不是钒酸盐刺激葡萄糖摄取和代谢所必需的。在以胰岛素抵抗为特征的疾病中,钒化合物“绕过”胰岛素作用中的缺陷的能力及其明显的优先代谢与有丝分裂信号转导特征使其成为潜在的药理学药物。

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