Medentsev A G, Akimenko V K
Biokhimiia. 1980 Jun;45(6):1068-74.
The dependence of the activity of the alternative cyanide-resistant electron transfer pathway in mitochondria of the yeast Candida lipolytica on the functional state of the main phosphorylating respiratory chain was studied. Oxidation of NAD-linked substrates both in active or uncoupled and controlled states by cyanide-resistant mitochondria was shown to be performed solely by the main respiratory chain. Succinate or alpha-glycerophosphate in the active or uncoupled state of the respiratory chain are oxidized solely by the main respiratory chain, whose changes in the controlled state are accompanied by activation of the alternative pathway of electron transfer. Exogenous NADH is oxidized both in active and controlled states of the respiratory chain by the main respiratory chain and the alternative pathway simultaneously. The transition of the respiratory chain from active to controlled state is followed therewith by an additional activation of the alternative pathway. It was concluded that the alternative pathway contribution to the total oxygen consumption by mitochondria is controlled by the activity of the main respiratory chain. The alternative pathway accomplishes the transfer of reducing equivalents excessive for the main respiratory chain.
研究了解脂耶氏酵母线粒体中替代抗氰化物电子传递途径的活性对主要磷酸化呼吸链功能状态的依赖性。结果表明,在活性或解偶联以及对照状态下,抗氰化物线粒体对NAD连接底物的氧化仅通过主要呼吸链进行。在呼吸链的活性或解偶联状态下,琥珀酸或α-磷酸甘油仅由主要呼吸链氧化,其在对照状态下的变化伴随着电子传递替代途径的激活。外源性NADH在呼吸链的活性和对照状态下同时由主要呼吸链和替代途径氧化。呼吸链从活性状态转变为对照状态随之会导致替代途径的额外激活。得出的结论是,替代途径对线粒体总氧消耗的贡献受主要呼吸链活性的控制。替代途径完成了主要呼吸链过量的还原当量的传递。