Botany Department, Australian National University, Canberra, A. C. T. 2601.
Plant Physiol. 1991 Mar;95(3):948-53. doi: 10.1104/pp.95.3.948.
External NADH and succinate were oxidized at similar rates by soybean (Glycine max) cotyledon and leaf mitochondria when the cytochrome chain was operating, but the rate of NADH oxidation via the alternative oxidase was only half that of succinate. However, measurements of the redox poise of the endogenous quinone pool and reduction of added quinones revealed that external NADH reduced them to the same, or greater, extent than did succinate. A kinetic analysis of the relationship between alternative oxidase activity and the redox state of ubiquinone indicated that the degree of ubiquinone reduction during external NADH oxidation was sufficient to fully engage the alternative oxidase. Measurements of NADH oxidation in the presence of succinate showed that the two substrates competed for cytochrome chain activity but not for alternative oxidase activity. Both reduced Q-1 and duroquinone were readily oxidized by the cytochrome oxidase pathway but only slowly by the alternative oxidase pathway in soybean mitochondria. In mitochondria isolated from the thermogenic spadix of Philodendron selloum, on the other hand, quinol oxidation via the alternative oxidase was relatively rapid; in these mitochondria, external NADH was also oxidized readily by the alternative oxidase. Antibodies raised against alternative oxidase proteins from Sauromatum guttatum cross-reacted with proteins of similar molecular size from soybean mitochondria, indicating similarities between the two alternative oxidases. However, it appears that the organization of the respiratory chain in soybean is different, and we suggest that some segregation of electron transport chain components may exist in mitochondria from nonthermogenic plant tissues.
当细胞色素链运作时,大豆(Glycine max)子叶和叶片线粒体以相似的速率氧化外部 NADH 和琥珀酸,但替代氧化酶氧化 NADH 的速率仅为琥珀酸的一半。然而,对内源性醌库的氧化还原平衡和添加的醌还原的测量表明,外部 NADH 将其还原到与琥珀酸相同或更大的程度。替代氧化酶活性与泛醌氧化还原状态之间关系的动力学分析表明,在外部 NADH 氧化过程中,泛醌的还原程度足以充分激活替代氧化酶。在存在琥珀酸的情况下测量 NADH 氧化表明,两种底物竞争细胞色素链活性,但不竞争替代氧化酶活性。在大豆线粒体中,还原的 Q-1 和二氢醌均可被细胞色素氧化酶途径迅速氧化,但仅可被替代氧化酶途径缓慢氧化。另一方面,在热生 Philodendron selloum 佛焰花序的线粒体中,通过替代氧化酶的喹啉氧化相对较快;在这些线粒体中,外部 NADH 也可被替代氧化酶轻易氧化。针对 Sauromatum guttatum 替代氧化酶蛋白产生的抗体与大豆线粒体中类似大小的蛋白发生交叉反应,表明两种替代氧化酶之间存在相似性。然而,似乎大豆呼吸链的组织不同,我们建议在非热生植物组织的线粒体中可能存在电子传递链成分的某些分离。