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过氧化氢处理期间分离的大鼠肝线粒体对氧化型谷胱甘肽的保留

Retention of oxidized glutathione by isolated rat liver mitochondria during hydroperoxide treatment.

作者信息

Olafsdottir K, Reed D J

机构信息

Department of Biochemistry and Biophysics, Oregon State University, Corvallis 97331.

出版信息

Biochim Biophys Acta. 1988 Mar 17;964(3):377-82. doi: 10.1016/0304-4165(88)90038-4.

Abstract

The addition of tert-butyl hydroperoxide (t-BuOOH) to isolated mitochondria resulted in oxidation of approximately 80% of the mitochondrial reduced glutathione (GSH) independently of the dose of t-BuOOH (1-5 mM). Concomitant with the oxidation of GSH inside the mitochondria was the formation of GSH-protein mixed disulfides (protein-SSG), with approximately 1% of the mitochondrial protein thiols involved. A dose-dependent rate of GSH recovery was observed, via the reduction of oxidized GSH (GSSG) and a slower reduction of protein-SSG. Although t-BuOOH administration affected the respiratory control ratio, the mitochondria remained coupled and loss of the matrix enzyme, citrate synthase, was not increased over the control and was less than 3% over 60 min. A slow loss of GSH out of the coupled non-treated mitochondria was not increased by t-BuOOH treatment, in fact, a dose-dependent drop of GSH levels occurred in the medium. However, no GSSG was found outside the mitochondria, indicating the necessary involvement of enzymes in the t-BuOOH-induced conversion of GSH to GSSG. The absence of GSSG in the medium also suggests that, unlike the plasma membrane, the mitochondrial membranes do not have the ability to export GSSG as a response to oxidative stress. Our results demonstrate the inability of mitochondria to export GSSG during oxidative stress and may explain the protective role of mitochondrial GSH in cytotoxicity.

摘要

向分离出的线粒体中添加叔丁基过氧化氢(t-BuOOH)会导致约80%的线粒体还原型谷胱甘肽(GSH)被氧化,且与t-BuOOH的剂量(1-5 mM)无关。与线粒体内GSH氧化同时发生的是GSH-蛋白质混合二硫键(蛋白质-SSG)的形成,约1%的线粒体蛋白质巯基参与其中。通过氧化型GSH(GSSG)的还原以及蛋白质-SSG的较慢还原,观察到了GSH恢复的剂量依赖性速率。尽管给予t-BuOOH会影响呼吸控制率,但线粒体仍保持偶联状态,并且基质酶柠檬酸合酶的损失在对照之上并未增加,在60分钟内低于3%。t-BuOOH处理并未增加偶联的未处理线粒体中GSH的缓慢流失,实际上,培养基中GSH水平出现了剂量依赖性下降。然而,在线粒体外部未发现GSSG,这表明酶在t-BuOOH诱导的GSH向GSSG转化过程中是必需的。培养基中不存在GSSG还表明,与质膜不同,线粒体膜没有能力作为对氧化应激的反应输出GSSG。我们的结果证明了线粒体在氧化应激期间无法输出GSSG,这可能解释了线粒体GSH在细胞毒性中的保护作用。

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