首页> 美国卫生研究院文献>Plant Physiology >Alternative Oxidase Activity and the Ubiquinone Redox Level in Soybean Cotyledon and Arum Spadix Mitochondria during NADH and Succinate Oxidation.
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Alternative Oxidase Activity and the Ubiquinone Redox Level in Soybean Cotyledon and Arum Spadix Mitochondria during NADH and Succinate Oxidation.

机译:在NADH和琥珀酸氧化过程中大豆子叶和Arum Spadix线粒体中的其他氧化酶活性和泛醌氧化还原水平。

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摘要

In Arum and soybean (Glycine max L.) mitochondria, the dependence of the alternative oxidase activity on the redox level of ubiquinone, with NADH and succinate as substrates, was studied, using a voltametric procedure to measure the ubiquinone redox poise in the mitochondrial membrane. The results showed that when the enzyme was activated by pyruvate the relationship between the alternative oxidase rate and the redox state of the ubiquinone pool was the same for both NADH and succinate oxidations. In the absence of pyruvate the alternative oxidase had an apparent lower affinity for ubiquinol. This was more marked with NADH than with succinate and was possibly due to pyruvate production during succinate oxidation or to an activation of the alternative oxidase by succinate itself. In Arum spadix (unlike soybean cotyledon) mitochondria, succinate oxidation via the alternative oxidase maintained the ubiquinone pool in a partially reduced state (60%), whereas NADH oxidation kept it almost completely reduced. Previous data comparing mitochondria from thermogenic and nonthermogenic tissues have not examined the full range of ubiquinone redox levels in both tissues, leading to the suggestion that the activity of alternative oxidase for Arum was different from nonthermogenic tissues. When the complete range of redox states of ubiquinone is used and the oxidase is fully activated, the alternative oxidase from thermogenic tissue (Arum) behaves similarly to that of nonthermogenic tissue (soybean).
机译:以伏安法测量线粒体膜中的泛醌氧化还原平衡,以NADH和琥珀酸酯为底物,研究了Arum和大豆(Glycine max L.)线粒体中替代氧化酶活性对泛醌氧化还原水平的依赖性。 。结果表明,当丙酮酸激活该酶时,NADH和琥珀酸的氧化反应的替代氧化酶速率与泛醌池氧化还原状态之间的关系相同。在没有丙酮酸的情况下,替代的氧化酶对泛醇的亲和力明显较低。用NADH比用琥珀酸盐更明显,这可能是由于琥珀酸盐氧化过程中丙酮酸的产生或琥珀酸盐本身对替代氧化酶的活化。在Arum spadix(与大豆子叶不一样)的线粒体中,琥珀酸通过替代氧化酶氧化使泛醌池保持部分还原状态(60%),而NADH氧化则使其几乎完全还原。以前比较来自热源性组织和非热源性组织的线粒体的数据尚未检查这两个组织中泛醌氧化还原水平的完整范围,这表明Arum的替代氧化酶活性不同于非热源性组织。当使用泛醌的完整氧化还原状态并且氧化酶被完全激活时,来自热源组织(Arum)的替代氧化酶的行为与非热源组织(大豆)相似。

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