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解脂耶氏酵母线粒体的交替氧化酶无法与细胞色素途径竞争电子。

[The alternative oxidase of Yarrowia lipolytica mitochondria is unable to compete with the cytochrome pathway for electrons].

作者信息

Akimenko V K, Arinbasarova A Iu, Smirnova N M, Medentsev A G

机构信息

Skryabin Institute of Biochemistry and Physiology of Microorganisms, Russian Academy of Sciences, pr. Nauki 5, Pushchino, Moscow Oblast, 142290 Russia.

出版信息

Mikrobiologiia. 2003 Jul-Aug;72(4):453-8.

Abstract

The activity of the cyanide-resistant alternative oxidase (pathway) of Y. lipolytica mitochondria was studied as a function of the activity of the major, cyanide-sensitive, cytochrome pathway. The contribution of the alternative oxidase to the total respiration of mitochondria was evaluated by measuring the rate of oxygen consumption in the presence of cyanide (an inhibitor of the cytochrome pathway). The potential activity of the cytochrome pathway was evaluated spectrophotometrically, by measuring the oxidation rate of cytochrome c by ferricyanide, which accepts electrons from complex III (cytochrome c) of this pathway. The oxidation of succinate by mitochondria in the presence of ferricyanide and cyanide was accompanied by oxygen consumption due to the transfer of electrons through the alternative pathway. The subsequent addition of ADP or FCCP (an uncoupler of oxidative phosphorylation in the cytochrome pathway) completely inhibited the consumption of oxygen by the mitochondria. Under these conditions, the inhibition of the alternative pathway by benzohydroxamic acid failed to affect the transfer of electrons from cytochrome c to ferricyanide. Benzohydroxamic acid did not influence the rate of ferricyanide reduction by the cytochrome pathway occurring in controlled state 4, nor could it change the phosphorylation quotient ATP/O upon the oxidation of various substrates. These findings indicate that the alternative pathway is unable to compete with the cytochrome respiratory chain for electrons. The alternative pathway transfers only electrons that are superfluous for the cytochrome chain.

摘要

研究了解脂耶氏酵母线粒体抗氰交替氧化酶(途径)的活性与主要的、对氰敏感的细胞色素途径活性的关系。通过测量氰化物(细胞色素途径的抑制剂)存在下的氧气消耗速率,评估交替氧化酶对线粒体总呼吸的贡献。通过测量铁氰化物氧化细胞色素c的速率来分光光度法评估细胞色素途径的潜在活性,铁氰化物从该途径的复合物III(细胞色素c)接受电子。在铁氰化物和氰化物存在下,线粒体中琥珀酸的氧化伴随着由于电子通过交替途径转移而导致的氧气消耗。随后加入ADP或FCCP(细胞色素途径中氧化磷酸化的解偶联剂)完全抑制了线粒体的氧气消耗。在这些条件下,苯氧肟酸对交替途径的抑制未能影响电子从细胞色素c向铁氰化物的转移。苯氧肟酸不影响在控制状态4下细胞色素途径发生的铁氰化物还原速率,也不能改变各种底物氧化时的磷酸化商ATP/O。这些发现表明交替途径无法与细胞色素呼吸链竞争电子。交替途径仅转移细胞色素链多余的电子。

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