首页> 美国卫生研究院文献>Molecules >Reduction of Diphenyl Diselenide and Analogs by Mammalian Thioredoxin Reductase Is Independent of Their Gluthathione Peroxidase-Like Activity: A Possible Novel Pathway for Their Antioxidant Activity
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Reduction of Diphenyl Diselenide and Analogs by Mammalian Thioredoxin Reductase Is Independent of Their Gluthathione Peroxidase-Like Activity: A Possible Novel Pathway for Their Antioxidant Activity

机译:哺乳动物硫氧还蛋白还原酶还原二苯二硒化物及其类似物与它们的谷胱甘肽过氧化物酶类似活性无关:其抗氧化活性的可能新途径

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摘要

Since the successful use of the organoselenium drug ebselen in clinical trials for the treatment of neuropathological conditions associated with oxidative stress, there have been concerted efforts geared towards understanding the precise mechanism of action of ebselen and other organoselenium compounds, especially the diorganyl diselenides such as diphenyl diselenide, and its analogs. Although the mechanism of action of ebselen and other organoselenium compounds has been shown to be related to their ability to generally mimic native glutathione peroxidase (GPx), only ebselen however has been shown to serve as a substrate for the mammalian thioredoxin reductase (TrxR), demonstrating another component of its pharmacological mechanisms. In fact, there is a dearth of information on the ability of other organoselenium compounds, especially diphenyl diselenide and its analogs, to serve as substrates for the mammalian enzyme thioredoxin reductase. Interestingly, diphenyl diselenide shares several antioxidant and neuroprotective properties with ebselen. Hence in the present study, we tested the hypothesis that diphenyl diselenide and some of its analogs (4,4’-bistrifluoromethyldiphenyl diselenide, 4,4’-bismethoxy-diphenyl diselenide, 4.4’-biscarboxydiphenyl diselenide, 4,4’-bischlorodiphenyl diselenide, 2,4,6,2’,4’,6’-hexamethyldiphenyl diselenide) could also be substrates for rat hepatic TrxR. Here we show for the first time that diselenides are good substrates for mammalian TrxR, but not necessarily good mimetics of GPx, and vice versa. For instance, bis-methoxydiphenyl diselenide had no GPx activity, whereas it was a good substrate for reduction by TrxR. Our experimental observations indicate a possible dissociation between the two pathways for peroxide degradation (either via substrate for TrxR or as a mimic of GPx). Consequently, the antioxidant activity of diphenyl diselenide and analogs can be attributed to their capacity to be substrates for mammalian TrxR and we therefore conclude that subtle changes in the aryl moiety of diselenides can be used as tool for dissociation of GPx or TrxR pathways as mechanism triggering their antioxidant activities.
机译:自从有机硒药物依布硒仑在临床试验中成功用于治疗与氧化应激相关的神经病理学疾病以来,人们一直在共同努力以了解依布硒仑和其他有机硒化合物,特别是二有机基二硒化物如联苯的确切作用机理。二硒化物及其类似物。尽管已证明依布硒仑和其他有机硒化合物的作用机理与它们通常模仿天然谷胱甘肽过氧化物酶(GPx)的能力有关,但是仅依布硒仑被证明可作为哺乳动物硫氧还蛋白还原酶(TrxR)的底物,展示了其药理机制的另一个组成部分。实际上,关于其他有机硒化合物,尤其是二苯基二硒化物及其类似物,用作哺乳动物硫氧还蛋白还原酶底物的能力的信息尚少。有趣的是,二苯二硒化物与依布硒啉具有多种抗氧化和神经保护特性。因此,在本研究中,我们测试了二苯基二硒化物及其某些类似物(4,4'-双三氟甲基二苯基二硒化物,4,4'-双甲氧基-二苯基二硒化物,4.4'-双羧基二苯基二硒化物,4,4'-双氯二苯基二硒化物的假设。 (2,4,6,2',4',6'-六甲基二苯基二硒化物)也可能是大鼠肝TrxR的底物。在这里,我们首次显示出二硒化物是哺乳动物TrxR的良好底物,但不一定是GPx的良好模拟物,反之亦然。例如,双-甲氧基二苯基二硒化物没有GPx活性,而它是被TrxR还原的良好底物。我们的实验观察表明,过氧化物降解的两种途径之间可能存在解离(通过TrxR底物或GPx的模拟物)。因此,二苯二硒化物和类似物的抗氧化活性可以归因于它们作为哺乳动物TrxR的底物的能力,因此我们得出结论,二硒化物的芳基部分的细微变化可以用作GPx或TrxR途径解离的工具,从而触发机制他们的抗氧化活性。

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