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首页> 外文期刊>Organic and Medicinal Chemistry Letters >Plant polyphenols as electron donors for erythrocyte plasma membrane redox system: validation through in silico approach
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Plant polyphenols as electron donors for erythrocyte plasma membrane redox system: validation through in silico approach

机译:植物多酚作为红细胞质膜氧化还原系统的电子供体:通过计算机方法验证

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BackgroundThe plasma membrane redox system (PMRS) has extensively been studied in erythrocytes. The PMRS plays an important role in maintaining plasma redox balance and provides a protective mechanism against oxidative stress. Earlier it was proposed that only NADH or NADPH provided reducing equivalents to PMRS; however, now it is acknowledged that some polyphenols also have the ability to donate reducing equivalents to PMRS.MethodsTwo different docking simulation softwares, Molegro Virtual Docker and Glide were used to study the interaction of certain plant polyphenols viz. quercetin, epigallocatechin gallate, catechin epicatechin and resveratrol with human erythroyte NADH-cytochrome b5 reductase, which is a component of PMRS and together with the identification of minimum pharmacophoric feature using Pharmagist.ResultsThe derived common minimum pharmacophoric features show the presence of minimum bioactive component in all the selected polyphenols. Our results confirm wet lab findings which show that these polyphenols have the ability to interact and donate protons to the Human NADH-cytochrome b5 reductase.ConclusionWith the help of these comparative results of docking simulation and pharmacophoric features, novel potent molecules can be designed with higher efficacy for activation of the PMRS system.
机译:背景技术在红细胞中已经广泛研究了质膜氧化还原系统(PMRS)。 PMRS在维持血浆氧化还原平衡中起着重要作用,并提供了针对氧化应激的保护机制。早些时候有人提出,只有NADH或NADPH可以提供PMRS的还原当量;但是,现在人们已经认识到,某些多酚还具有向PMRS捐赠还原当量的能力。方法使用两个不同的对接模拟软件,Molegro Virtual Docker和Glide来研究某些植物多酚的相互作用。槲皮素,表没食子儿茶素没食子酸酯,儿茶素表儿茶素和白藜芦醇与人类红细胞NADH-细胞色素b5还原酶(是PMRS的组成部分)以及使用Pharmagist鉴定的最低药效学特征的结果。所有选定的多酚。我们的结果证实了湿实验室的发现,这些发现表明这些多酚具有与人NADH-细胞色素b5还原酶相互作用并向其捐赠质子的能力。激活PMRS系统的功效。

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