Underbrink-Lyon K, Miller D L, Ross N A, Fukuhara H, Martin N C
Mol Gen Genet. 1983;191(3):512-8. doi: 10.1007/BF00425771.
Yeast mitochondrial DNA codes for a complete set of tRNAs. Although most components necessary for the biosynthesis of mitochondrial tRNA are coded by nuclear genes, there is one genetic locus on mitochondrial DNA necessary for the synthesis of mitochondrial tRNAs other than the mitochondrial tRNA genes themselves. Characterization of mutants by deletion mapping and restriction enzyme mapping studies has provided a precise location of this yeast mitochondrial tRNA synthesis locus. Deletion mutants retaining various segments of mitochondrial DNA were examined for their ability to synthesize tRNAs from the genes they retain. A subset of these strains was also tested for the ability to provide the tRNA synthesis function in complementation tests with deletion mutants unable to synthesize mature mitochondrial tRNAs. By correlating the tRNA synthetic ability with the presence or absence of certain wild-type restriction fragments, we have confined the locus to within 780 base pairs of DNA located between the tRNAMetf gene and tRNAPro gene, at 29 units on the wild-type map. Heretofore, no genetic function or gene product had been localized in this area of the yeast mitochondrial genome.
酵母线粒体DNA编码一整套tRNA。尽管线粒体tRNA生物合成所需的大多数成分由核基因编码,但线粒体DNA上有一个遗传位点对于线粒体tRNA的合成是必需的,这一遗传位点不同于线粒体tRNA基因本身。通过缺失作图和限制酶作图研究对突变体进行表征,已确定了该酵母线粒体tRNA合成位点的精确位置。检测保留线粒体DNA不同片段的缺失突变体从它们所保留的基因合成tRNA的能力。还对这些菌株的一个子集进行了测试,以检测其在与无法合成成熟线粒体tRNA的缺失突变体的互补试验中提供tRNA合成功能的能力。通过将tRNA合成能力与某些野生型限制片段的存在与否相关联,我们已将该位点限定在野生型图谱上29单位处位于tRNAMetf基因和tRNAPro基因之间的780个碱基对的DNA范围内。迄今为止,在酵母线粒体基因组的这一区域尚未定位任何遗传功能或基因产物。