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首页> 外文期刊>Redox Biology >Possible involvement of membrane lipids peroxidation and oxidation of catalytically essential thiols of the cerebral transmembrane sodium pump as component mechanisms of iron-mediated oxidative stress-linked dysfunction of the pump's activity
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Possible involvement of membrane lipids peroxidation and oxidation of catalytically essential thiols of the cerebral transmembrane sodium pump as component mechanisms of iron-mediated oxidative stress-linked dysfunction of the pump's activity

机译:膜脂质过氧化作用和脑跨膜钠泵催化必需硫醇的氧化可能参与铁泵介导的氧化应激相关功能异常的组成机制

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The precise molecular events defining the complex role of oxidative stress in the inactivation of the cerebral sodium pump in radical-induced neurodegenerative diseases is yet to be fully clarified and thus still open. Herein we investigated the modulation of the activity of the cerebral transmembrane electrogenic enzyme in Fe2+-mediated in vitro oxidative stress model. The results show that Fe2+ inhibited the transmembrane enzyme in a concentration dependent manner and this effect was accompanied by a biphasic generation of aldehydic product of lipid peroxidation. While dithiothreitol prevented both Fe2+ inhibitory effect on the pump and lipid peroxidation, vitamin E prevented only lipid peroxidation but not inhibition of the pump. Besides, malondialdehyde (MDA) inhibited the pump by a mechanism not related to oxidation of its critical thiols. Apparently, the low activity of the pump in degenerative diseases mediated by Fe2+ may involve complex multi-component mechanisms which may partly involve an initial oxidation of the critical thiols of the enzyme directly mediated by Fe2+ and during severe progression of such diseases; aldehydic products of lipid peroxidation such as {MDA} may further exacerbate this inhibitory effect by a mechanism that is likely not related to the oxidation of the catalytically essential thiols of the ouabain-sensitive cerebral electrogenic pump.
机译:确切的分子事件定义了氧化应激在自由基诱发的神经退行性疾病中脑钠泵失活中的复杂作用,尚待充分阐明,因此仍然是未知的。在本文中,我们研究了Fe2 +介导的体外氧化应激模型中大脑跨膜电原酶活性的调节。结果表明,Fe 2+以浓度依赖的方式抑制跨膜酶,并且该作用伴随脂质过氧化的醛产物的双相生成。尽管二硫苏糖醇既阻止了Fe2 +对泵的抑制作用,又阻止了脂质过氧化作用,但维生素E仅阻止了脂质过氧化作用,而没有阻止泵的抑制作用。此外,丙二醛(MDA)通过与其关键硫醇氧化无关的机制抑制了泵。显然,在由Fe2 +介导的退行性疾病中泵的低活性可能涉及复杂的多组分机制,这可能部分涉及由Fe2 +直接介导的酶的关键硫醇的初始氧化以及在此类疾病的严重发展过程中;脂质过氧化的醛产物,例如{MDA},可能通过一种与哇巴因敏感性脑电泵的催化必需硫醇的氧化无关的机制进一步加剧这种抑制作用。

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