Winkley C S, Keller M J, Jaehning J A
J Biol Chem. 1985 Nov 15;260(26):14214-23.
Using a whole cell extract from Saccharomyces cerevisiae (bakers' yeast) we have been able to detect a selective RNA polymerase activity originally identified in purified yeast mitochondria (Levens, D., Morimoto, R., and Rabinowitz, M. (1981) J. Biol. Chem. 256, 1466-1473). We have shown that in in vitro transcription reactions this activity recognizes a consensus mitochondrial promoter sequence ATA-TAAGTA (Osinga, K. A., DeHaan, M., Christianson, T., and Tabak, H. F. (1982) Nucleic Acids Res. 10, 7993-8006) in the upstream region of the nuclear GAL10 gene as well as promoters from yeast mitochondrial DNA. Using these promoter-containing templates for in vitro assays, we have chromatographically separated the mitochondrial specific RNA polymerase activity from the three nuclear RNA polymerases (I, II, and III). Further characterization has revealed that this preparation has distinctive properties on two different types of DNA templates, poly[d(AT)] and cloned DNA containing mitochondrial promoters. Salt and divalent cation optima and substrate saturation kinetics are different for the two types of templates. Using promoter-containing DNA as an assay template, we have chromatographically dissociated the RNA polymerase activity into two nonfunctional components. Selective transcription of the GAL10 template is restored when the two components are recombined. It is possible that the RNA polymerase active on poly[d(AT)] is a nonspecific component of the selective transcription apparatus or that two distinct RNA polymerases are present in the preparation.
利用酿酒酵母(面包酵母)的全细胞提取物,我们能够检测到一种最初在纯化的酵母线粒体中鉴定出的选择性RNA聚合酶活性(莱文斯,D.,森本,R.,和拉比诺维茨,M.(1981年)《生物化学杂志》256卷,第1466 - 1473页)。我们已经表明,在体外转录反应中,这种活性识别核GAL10基因上游区域的共有线粒体启动子序列ATA - TAAGTA(奥辛加,K. A.,德哈恩,M.,克里斯蒂安森,T.,和塔巴克,H. F.(1982年)《核酸研究》10卷,第7993 - 8006页)以及酵母线粒体DNA的启动子。使用这些含启动子的模板进行体外测定,我们已通过色谱法将线粒体特异性RNA聚合酶活性与三种核RNA聚合酶(I、II和III)分离。进一步的特性分析表明,该制剂在两种不同类型的DNA模板上具有独特的性质,即聚[d(AT)]和含线粒体启动子的克隆DNA。两种类型模板的盐和二价阳离子最佳浓度以及底物饱和动力学不同。使用含启动子的DNA作为测定模板,我们已通过色谱法将RNA聚合酶活性解离为两个无功能的组分。当这两个组分重新组合时,GAL10模板的选择性转录得以恢复。有可能在聚[d(AT)]上起作用的RNA聚合酶是选择性转录装置的非特异性组分,或者制剂中存在两种不同的RNA聚合酶。