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[泛半醌与琥珀酸脱氢酶及线粒体细胞色素链的相互作用]

[Interaction of ubisemiquinone with succinate dehydrogenase and the cytochrome chain of mitochondria].

作者信息

Grigolava I V, Konstantinov A A, Ksenzenko M Iu, Ruuge E K, Tikhonov A N

出版信息

Biokhimiia. 1982 Dec;47(12):1970-82.

PMID:6297622
Abstract

The free radical EPR signals of ubisemiquinone in mitochondria and submitochondrial particles (SMP) were investigated. One of the signals observed under the conditions of the respiratory chain highly oxidized and characterized by an unusually short time of the spin-lattice relaxation has previously been termed as SQ-2. The intensity of SQ-2 in SMP strongly depends on pH, the maximal concentration of QH. is reached at about 8.5. The signal is absent in the succinate dehydrogenase-depleted SMP and is highly sensitive to specific inhibitors of succinate: CoQ-oxidoreductase, such as alpha-thenoyltrifluoroacetone and carboxin. In SMP SQ-2 disappears in the presence of low concentrations of ferricyanide, while in mitochondria this non-penetrating oxidant provokes the appearance of SQ-2. The data obtained suggest that SQ-2 belongs to a stable ubisemiquinone which forms a complex with a FeS center of succinate dehydrogenase, is localized at the M-side of the membrane, and is kinetically isolated from the cytochrome chain. Oxidation of the terminal segment of the respiratory chain of mitochondria and SMP reduced by succinate in the presence of antimycin, is in some cases accompanied by an appearance of a strong free radical EPR signal which is stable at 77K but disappears rapidly in the frozen samples at -30- -40 degrees C. It is suggested that the signal is generated by an antimycin-insensitive oxidation of QH2 to QH. via the branch of the respiratory chain comprised of the Rieske FeS-protein and cytochrome c1. The mechanisms of how the two-electron oxidation-reduction of CoQ is coupled with the one-electron transfer through the cytochromes and FeS centers in the respiratory chain are discussed.

摘要

对线粒体和亚线粒体颗粒(SMP)中泛半醌的自由基电子顺磁共振(EPR)信号进行了研究。在呼吸链高度氧化的条件下观察到的一种信号,其特征是自旋晶格弛豫时间异常短,此前被称为SQ - 2。SQ - 2在SMP中的强度强烈依赖于pH值,在约8.5时达到QH₂的最大浓度。在缺乏琥珀酸脱氢酶的SMP中不存在该信号,并且对琥珀酸:辅酶Q氧化还原酶的特异性抑制剂高度敏感,如α - 噻吩甲酰三氟丙酮和羧菌灵。在SMP中,低浓度铁氰化物存在时SQ - 2消失,而在完整线粒体中,这种非渗透性氧化剂会引发SQ - 2的出现。所得数据表明,SQ - 2属于一种稳定的泛半醌,它与琥珀酸脱氢酶的FeS中心形成复合物,位于膜的M侧,并且在动力学上与细胞色素链隔离。在抗霉素存在下,由琥珀酸还原的线粒体和SMP呼吸链末端段的氧化,在某些情况下伴随着一个强自由基EPR信号的出现,该信号在77K时稳定,但在 - 30至 - 40摄氏度的冷冻样品中迅速消失。有人认为,该信号是由QH₂通过由 Rieske FeS蛋白和细胞色素c1组成的呼吸链分支被抗霉素不敏感地氧化为QH⁺产生的。文中讨论了辅酶Q的双电子氧化还原如何与通过呼吸链中的细胞色素和FeS中心的单电子转移相偶联的机制。

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