Vanderleyden J, Kurth J, Verachtert H
Biochem J. 1979 Aug 15;182(2):437-43. doi: 10.1042/bj1820437.
Mitochondria and submitochondrial particles of the osmophilic yeast-like fungus Moniliella tomentosa may respire by means of two pathways: a normal cytochrome pathway, sensitive to cyanide and antimycin A, and an alternative pathway, which is insensitive to these inhibitors but is specifically inhibited by salicylhydroxamic acid. The affinities of both oxidases for succinate and NADH as substrates, for O(2) as terminal electron acceptor, and for AMP as stimulator of the alternative oxidase were determined. 1. Submitochondrial particles of M. tomentosa may also respire by means of a cyanide-sensitive and/or cyanide-insensitive system. 2. The activities of both oxidases as compared with the total activity are roughly the same in submitochondrial particles as in the original mitochondria. 3. The terminal oxidase of the cyanide-insensitive pathway requires a 10-fold higher O(2) concentration for saturation than does cytochrome c oxidase. 4. The apparent K(m) for succinate is about 3 times higher for the alternative than for the normal oxidase when measured in mitochondria, and 4-10 times higher when measured in submitochondrial particles. The apparent K(m) for NADH is roughly the same for both oxidases. 5. The apparent K(m) values of both oxidases for succinate are always lower in submitochondrial particles than in mitochondria. 6. The apparent K(m) for AMP, acting as a stimulator of the alternative oxidase, is the same (25mum) in mitochondria as in sub-mitochondrial particles. These results are discussed in the light of the structure and localization of the components of the alternative oxidase.
一条是正常的细胞色素途径,对氰化物和抗霉素A敏感;另一条是替代途径,对这些抑制剂不敏感,但被水杨基羟肟酸特异性抑制。测定了两种氧化酶对琥珀酸和NADH作为底物、对O₂作为末端电子受体以及对AMP作为替代氧化酶刺激剂的亲和力。1. 毛状球拟酵母的亚线粒体颗粒也可通过氰化物敏感和/或氰化物不敏感系统进行呼吸。2. 与总活性相比,两种氧化酶在亚线粒体颗粒中的活性与在原始线粒体中的大致相同。3. 氰化物不敏感途径的末端氧化酶达到饱和所需的O₂浓度比细胞色素c氧化酶高10倍。4. 在线粒体中测定时,替代氧化酶对琥珀酸的表观K(m)约为正常氧化酶的3倍,在亚线粒体颗粒中测定时则高4-10倍。两种氧化酶对NADH的表观K(m)大致相同。5. 两种氧化酶对琥珀酸的表观K(m)值在亚线粒体颗粒中总是低于线粒体中的值。6. 作为替代氧化酶刺激剂的AMP的表观K(m)在线粒体和亚线粒体颗粒中相同(25μm)。根据替代氧化酶各组分的结构和定位对这些结果进行了讨论。