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植物线粒体的呼吸链:十七。抗霉素处理的臭菘线粒体中黄素蛋白 - 细胞色素b(562)的相互作用

The Respiratory Chain of Plant Mitochondria: XVII. Flavoprotein-Cytochrome b(562) Interaction in Antimycin-treated Skunk Cabbage Mitochondria.

作者信息

Storey B T

机构信息

Johnson Research Foundation, University of Pennsylvania, Philadelphia, Pennsylvania 19174.

出版信息

Plant Physiol. 1974 Jun;53(6):846-50. doi: 10.1104/pp.53.6.846.

Abstract

During the transition from the aerobic steady state with succinate as substrate to anaerobiosis, in suspensions of skunk cabbage (Symplocarpus foetidus) mitochondria treated with antimycin A, cytochrome b(562) becomes reoxidized to the extent of about 20%, synchronously with the reduction of cytochrome c(549). This reoxidation occurs in both the absence and presence of m-chlorobenzhydroxamic acid, a specific inhibitor for the alternate terminal oxidase of plant mitochondria. A flavoprotein component, amounting to 13% to 15% of the total nonfluorescent mitochondrial flavoprotein, undergoes reduction synchronously with the oxidation of cytochrome b(562) during the aerobic to anaerobic transition with succinate as substrate in the presence of both antimycin A and m-chlorobenzhydroxamic acid. This flavoprotein component remains reduced in the presence of cyanide. The half-time for reduction of the flavoprotein component and cytochrome c(549) and for oxidation of cytochrome b(562) during the aerobic to anaerobic transition with succinate as substrate in the presence of both antimycin A and m-chlorobenzhydroxamic acid is 2 seconds. The half-times for oxidation of cytochrome c(549) and the flavoprotein component are 2.1 and 170 milliseconds, respectively, during the anaerobic to aerobic transition induced by addition of 14 mum O(2) to the mitochondrial suspensions. The half-time for reduction of cytochrome b(562) under these conditions is 150 milliseconds, synchronous with the flavoprotein component. The synchrony of the flavoprotein oxidation and of the cytochrome b(562) reduction at a rate much slower than that of cytochrome c(549) oxidation implies that, in antimycin-treated plant mitochondria, the state of the cytochrome b(562)/antimycin complex is regulated by the redox state of this flavoprotein component, rather than by cytochrome c(549). It is tentatively suggested that these two components are not part of the main sequence of the respiratory chain, but may be part of a multienzyme complex active in the hydroxylation reactions required for ubiquinone biosynthesis in the inner mitochondrial membrane.

摘要

在用抗霉素A处理的臭菘(Symplocarpus foetidus)线粒体悬浮液中,从以琥珀酸为底物的有氧稳定状态转变为无氧状态的过程中,细胞色素b(562)会重新氧化约20%,与细胞色素c(549)的还原同步发生。无论是否存在间氯苯甲酰羟肟酸(一种植物线粒体交替末端氧化酶的特异性抑制剂),这种重新氧化都会发生。在以琥珀酸为底物、存在抗霉素A和间氯苯甲酰羟肟酸的情况下,从有氧到无氧转变过程中,一种占非荧光线粒体黄素蛋白总量13%至15%的黄素蛋白成分,会与细胞色素b(562)的氧化同步发生还原。在氰化物存在的情况下,这种黄素蛋白成分仍保持还原状态。在以琥珀酸为底物、存在抗霉素A和间氯苯甲酰羟肟酸的情况下,从有氧到无氧转变过程中,黄素蛋白成分和细胞色素c(549)的还原以及细胞色素b(562)的氧化的半衰期为2秒。在向线粒体悬浮液中添加14 μmol O(2)诱导的从无氧到有氧转变过程中,细胞色素c(549)和黄素蛋白成分的氧化半衰期分别为2.1毫秒和170毫秒。在这些条件下,细胞色素b(562)的还原半衰期为150毫秒,与黄素蛋白成分同步。黄素蛋白氧化和细胞色素b(562)还原的同步性,且速率远低于细胞色素c(549)的氧化速率,这意味着在抗霉素处理的植物线粒体中,细胞色素b(562)/抗霉素复合物的状态是由这种黄素蛋白成分的氧化还原状态调节的,而不是由细胞色素c(549)调节。初步推测,这两种成分不是呼吸链主序列的一部分,但可能是线粒体内膜中泛醌生物合成所需的羟基化反应中活跃的多酶复合物的一部分。

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