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高等植物线粒体的电子顺磁共振研究。II. 琥珀酸脱氢酶的S-3中心及其与交替呼吸氧化的关系。

EPR studies of higher plant mitochondria. II. Center S-3 of succinate dehydrogenase and its relation to alternative respiratory oxidations.

作者信息

Rich P R, Bonner W D

出版信息

Biochim Biophys Acta. 1978 Mar 13;501(3):381-95. doi: 10.1016/0005-2728(78)90106-8.

Abstract
  1. An electron paramagnetic resonance study of the high potential iron sulfur (HiPIP-type) Center S-3 of higher plant mitochondria is described. This center is the major HiPIP-type center associated with plant mitochondria and it displays physical properties which are similar to its mammalian counterpart. It has a pH-independent midpoint potential of +65 +/- 10 mV between pH 6.0 and 8.5. 2. The behavior of Center S-3 in a variety of steady-state conditions suggests that it is of physiological significance in electron transport. Furthermore, it can be shown that the alternative oxidase, which is present in many higher plant mitochondria, tends to keep this center oxidized in the presence of succinate and cyanide. This indicates that the alternative oxidation site is on the electron-donating side of the Center S-3. 3. Salicylhydroxamic acid, an inhibitor of the alternative pathway, does not affect the midpoint potential, signal size or shape, or temperature and power saturation profiles of Center S-3, suggesting that direct autoxidation of this center cannot account for alternative oxidase activity. This is further confirmed by the finding that the presence of succinate dehydrogenase is not necessary for alternative oxidase activity with NADH as respiratory substrate in submitochondrial particles.
摘要
  1. 本文描述了对高等植物线粒体高电位铁硫(HiPIP型)中心S-3的电子顺磁共振研究。该中心是与植物线粒体相关的主要HiPIP型中心,其物理性质与哺乳动物的对应物相似。在pH 6.0至8.5之间,它具有+65±10 mV的与pH无关的中点电位。2. 中心S-3在各种稳态条件下的行为表明它在电子传递中具有生理意义。此外,可以证明,许多高等植物线粒体中存在的交替氧化酶在琥珀酸和氰化物存在的情况下倾向于使该中心保持氧化状态。这表明交替氧化位点位于中心S-3的供电子侧。3. 交替途径抑制剂水杨基羟肟酸不影响中心S-3的中点电位、信号大小或形状,也不影响其温度和功率饱和曲线,这表明该中心的直接自氧化不能解释交替氧化酶的活性。用NADH作为呼吸底物时,在亚线粒体颗粒中交替氧化酶活性不需要琥珀酸脱氢酶的存在,这一发现进一步证实了这一点。

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