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纤细裸藻线粒体转位酶的纯化与特性分析

Purification and characterization of the mitochondrial translocase from Euglena gracilis.

作者信息

Eberly S L, Spremulli L L

出版信息

Arch Biochem Biophys. 1985 Nov 15;243(1):246-53. doi: 10.1016/0003-9861(85)90793-3.

Abstract

The Euglena gracilis mitochondrial protein biosynthetic elongation factor G (EF-Gmt) has been purified in four steps to greater than 50% homogeneity by use of a fusidic acid affinity procedure and conventional chromatographic techniques. The purification scheme results in 1100-fold purification with about 3% recovery of the total EF-G activity present in the postribosomal supernatant prepared from whole cell extracts. E. gracilis EF-Gmt has an approximate molecular weight of 76,000, comparable to that observed for procaryotic translocases. As is the case for other translocases which have been examined, pretreatment of E. gracilis EF-Gmt with N-ethylmaleimide results in a loss of polymerization activity, indicating a role for an essential cysteine residue in catalytic activity. GDP partially protects EF-Gmt from N-ethylmaleimide inactivation. E. gracilis EF-Gmt functions well on both Escherichia coli and E. gracilis chloroplast ribosomes, but has negligible activity on wheat germ cytoplasmic ribosomes. In this respect, it differs significantly from the mitochondrial translocase of yeast which has very little activity on chloroplast ribosomes. When assayed on E. coli ribosomes, E. gracilis EF-Gmt is sensitive to the steroid antibiotic, fusidic acid, at levels similar to that required for inactivation of E. coli EF-G. It is less sensitive than E. gracilis chloroplast EF-G, and is more sensitive than Bacillus subtilis EF-G. When assayed on E. gracilis chloroplast ribosomes, the same trends in sensitivities are observed, although the exact level of fusidic acid required for inactivation is slightly altered.

摘要

利用夫西地酸亲和程序和传统色谱技术,通过四个步骤对纤细裸藻线粒体蛋白质生物合成延伸因子G(EF-Gmt)进行了纯化,使其纯度超过50%。该纯化方案实现了1100倍的纯化,从全细胞提取物制备的核糖体后上清液中存在的总EF-G活性回收率约为3%。纤细裸藻EF-Gmt的分子量约为76,000,与原核转位酶的分子量相当。与已检测的其他转位酶情况一样,用N-乙基马来酰亚胺预处理纤细裸藻EF-Gmt会导致聚合活性丧失,这表明一个必需的半胱氨酸残基在催化活性中起作用。GDP部分保护EF-Gmt免受N-乙基马来酰亚胺的失活作用。纤细裸藻EF-Gmt在大肠杆菌和纤细裸藻叶绿体核糖体上均能良好发挥作用,但在小麦胚细胞质核糖体上的活性可忽略不计。在这方面,它与酵母的线粒体转位酶有显著不同,后者在叶绿体核糖体上的活性非常低。在大肠杆菌核糖体上进行检测时,纤细裸藻EF-Gmt对类固醇抗生素夫西地酸敏感,其敏感水平与使大肠杆菌EF-G失活所需的水平相似。它比纤细裸藻叶绿体EF-G敏感性低,比枯草芽孢杆菌EF-G敏感性高。在纤细裸藻叶绿体核糖体上进行检测时,观察到相同的敏感性趋势,尽管使酶失活所需的夫西地酸的确切水平略有变化。

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Protein synthesis in mitochondria.线粒体中的蛋白质合成
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