Post-translational Modifications of Proteins in Metabolic Syndrome

Jorge A. Suarez, J. Díaz-Juárez
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引用次数: 3

Abstract

Metabolic syndrome is accompanied by central obesity, dyslipidemia, compromised fasting glucose, and hypertension [1]. Unfortunately, all of these factors contribute to damage the endothelium that in turn, will conclude in the development of multiple complications observed in the metabolic syndrome. Endothelial dysfunction is mainly caused by a decrease in nitric oxide (NO) availability due to reduced NO production and/or increase in oxygen-derived free radicals (ROS) that can react with NO and inactivate the active molecule [2]. NO production in endothelial cells is mainly mediated by the endothelial isoform of NO synthase (eNOS), therefore, studies that investigate regulatory mechanisms of this enzyme are essential. Currently, the influence of metabolic syndrome on eNOS regulation is incompletely investigated. Recently, Guterbaum et al. [3] published a paper in this journal that describes the effects of H2O2 on phosphorylation of the eNOS of endothelial cells pretreated with supra-physiologic glucose concentrations. Their findings demonstrated that H2O2, with the concomitant increase ROS production, resulted in an increase in Thr495 phosphorylation while phosphorylation of Ser1177 was reduced. Furthermore, these authors demonstrated that combination of high glucose concentration with H2O2 induces phosphorylation of Thr495 through the PKC pathway. These phosphorylation sites confere fine regulation of eNOS activity [4] and the findings by Guterbaum et al. provide bases to understand more the complexity of pathophysiologic mechanisms that characterize the metabolic syndrome.
代谢综合征中蛋白质的翻译后修饰
代谢综合征伴有中枢性肥胖、血脂异常、空腹血糖降低和高血压。不幸的是,所有这些因素都会导致内皮细胞的损伤,进而导致代谢综合征中多种并发症的发生。内皮功能障碍主要是由于一氧化氮(NO)的生成减少和/或氧源性自由基(ROS)的增加而导致一氧化氮(NO)可用性降低,ROS可以与NO反应并使活性分子[2]失活。内皮细胞中NO的产生主要由NO合成酶(eNOS)的内皮亚型介导,因此,研究该酶的调节机制是必要的。目前,代谢综合征对eNOS调控的影响研究尚不完全。最近,Guterbaum等人在该杂志发表了一篇论文,描述了H2O2对超生理葡萄糖浓度预处理的内皮细胞eNOS磷酸化的影响。他们的研究结果表明,H2O2伴随着ROS产生的增加,导致Thr495磷酸化增加,而Ser1177的磷酸化减少。此外,这些作者证明了高葡萄糖浓度与H2O2的结合通过PKC途径诱导Thr495的磷酸化。这些磷酸化位点对eNOS活性[4]进行了精细调控,Guterbaum等人的研究结果为进一步了解代谢综合征病理生理机制的复杂性提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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