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植物线粒体的呼吸链。I. 天南星科植物线粒体中琥珀酸与氧之间的电子传递。

The respiratory chain of plant mitochondria. I. Electron transport between succinate and oxygen in skunk cabbage mitochondria.

作者信息

Storey B T, Bahr J T

出版信息

Plant Physiol. 1969 Jan;44(1):115-25. doi: 10.1104/pp.44.1.115.

Abstract

The kinetics of oxidation of ubiquinone, flavoprotein, cytochrome c, and the cytochrome b complex in skunk cabbage (Symplocarpus foetidus) mitochondria made anaerobic with succinate have been measured spectrophotometrically and fluorimetrically in the absence of respiratory inhibitor and in the presence of cyanide or antimycin A. No component identifiable by these means was oxidized rapidly enough in the presence of one or the other inhibitor to qualify for the role of alternate oxidase. Cycles of oxidation and rereduction of flavoprotein and ubiquinone obtained by injecting 12 mum oxygen into the anaerobic mitochondrial suspension were kinetically indistinguishable in the presence of cyanide or antimycin A, implying that these 2 components are part of a respiratory pathway between succinate and oxygen which does not involve the cytochromes and does involve a cyanide-insensitive alternate oxidase. The cytochrome b complex shows biphasic oxidation kinetics with half times of 0.018 sec and 0.4 sec in the absence of inhibitor, which increase to 0.2 sec and 1 sec in the presence of cyanide. In the presence of antimycin A, the oxidation of the cytochrome b complex shows an induction period of 1 sec and a half-time of 3.5 sec. A split respiratory chain with 2 terminal oxidases and a branch point between the cytochromes and flavoprotein and ubiquinone is proposed for these mitochondria.

摘要

用分光光度法和荧光法测定了臭菘(Symplocarpus foetidus)线粒体中泛醌、黄素蛋白、细胞色素c和细胞色素b复合物在以琥珀酸为底物进行厌氧处理时的氧化动力学,测定分别在无呼吸抑制剂以及存在氰化物或抗霉素A的条件下进行。在存在其中一种抑制剂的情况下,通过这些方法可识别的任何组分都没有快速氧化到足以充当交替氧化酶的程度。向厌氧线粒体悬浮液中注入12微摩尔氧气后,黄素蛋白和泛醌的氧化和再还原循环在存在氰化物或抗霉素A的情况下,在动力学上无法区分,这意味着这两种组分是琥珀酸和氧气之间呼吸途径的一部分,该途径不涉及细胞色素,但涉及一种对氰化物不敏感的交替氧化酶。细胞色素b复合物在无抑制剂时呈现双相氧化动力学,半衰期分别为0.018秒和0.4秒,在存在氰化物时增加到0.2秒和1秒。在存在抗霉素A的情况下,细胞色素b复合物的氧化显示出1秒的诱导期和3.5秒的半衰期。针对这些线粒体提出了一种具有两个末端氧化酶以及细胞色素与黄素蛋白和泛醌之间存在分支点的分裂呼吸链。

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