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Immunological identification of the alternative oxidase of Neurospora crassa mitochondria.

机译:中华绒螯蟹线粒体替代氧化酶的免疫学鉴定。

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摘要

Neurospora crassa mitochondria use a branched electron transport system in which one branch is a conventional cytochrome system and the other is an alternative cyanide-resistant, hydroxamic acid-sensitive oxidase that is induced when the cytochrome system is impaired. We used a monoclonal antibody to the alternative oxidase of the higher plant Sauromatum guttatum to identify a similar set of related polypeptides (Mr, 36,500 and 37,000) that was associated with the alternative oxidase activity of N. crassa mitochondria. These polypeptides were not present constitutively in the mitochondria of a wild-type N. crassa strain, but were produced in high amounts under conditions that induced alternative oxidase activity. Under the same conditions, mutants in the aod-1 gene, with one exception, produced apparently inactive alternative oxidase polypeptides, whereas mutants in the aod-2 gene failed to produce these polypeptides. The latter findings support the hypothesis that aod-1 is a structural gene for the alternative oxidase and that the aod-2 gene encodes a component that is required for induction of alternative oxidase activity. Finally, our results indicate that the alternative oxidase is highly conserved, even between plant and fungal species.
机译:景天线虫线粒体使用分支电子传输系统,其中一个分支是常规的细胞色素系统,另一个分支是在细胞色素系统受损时诱导的另一种抗氰化物的耐异羟肟酸敏感的氧化酶。我们使用了一种针对高等植物番茄的替代氧化酶的单克隆抗体,以鉴定与猪笼草线粒体的替代氧化酶活性相关的一组相似的相关多肽(Mr,36,500和37,000)。这些多肽不是组成型存在于野生型猪笼草菌株的线粒体中,而是在诱导替代氧化酶活性的条件下大量产生。在相同条件下,除一个例外,aod-1基因中的突变体产生了明显无活性的替代氧化酶多肽,而aod-2基因中的突变体未能产生这些多肽。后一个发现支持以下假设:aod-1是替代氧化酶的结构基因,而aod-2基因编码诱导替代氧化酶活性所需的成分。最后,我们的结果表明,即使在植物和真菌之间,替代氧化酶也是高度保守的。

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