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子囊菌真菌中的线粒体核糖核酸酶P RNA:RNA二级结构的谱系特异性变异

Mitochondrial RNase P RNAs in ascomycete fungi: lineage-specific variations in RNA secondary structure.

作者信息

Seif Elias R, Forget Lise, Martin Nancy C, Lang B Franz

机构信息

Program in Evolutionary Biology, Canadian Institute for Advanced Research, Département de Biochimie, Université de Montréal, Montréal, Québec H3T 1J4, Canada.

出版信息

RNA. 2003 Sep;9(9):1073-83. doi: 10.1261/rna.5880403.

Abstract

The RNA subunit of mitochondrial RNase P (mtP-RNA) is encoded by a mitochondrial gene (rnpB) in several ascomycete fungi and in the protists Reclinomonas americana and Nephroselmis olivacea. By searching for universally conserved structural elements, we have identified previously unknown rnpB genes in the mitochondrial DNAs (mtDNAs) of two fission yeasts, Schizosaccharomyces pombe and Schizosaccharomyces octosporus; in the budding yeast Pichia canadensis; and in the archiascomycete Taphrina deformans. The expression of mtP-RNAs of the predicted size was experimentally confirmed in the two fission yeasts, and their precise 5' and 3' ends were determined by sequencing of cDNAs generated from circularized mtP-RNAs. Comparative RNA secondary structure modeling shows that in contrast to mtP-RNAs of the two protists R. americana and N. olivacea, those of ascomycete fungi all have highly reduced secondary structures. In certain budding yeasts, such as Saccharomycopsis fibuligera, we find only the two most conserved pairings, P1 and P4. A P18 pairing is conserved in Saccharomyces cerevisiae and its close relatives, whereas nearly half of the minimum bacterial consensus structure is retained in the RNAs of fission yeasts, Aspergillus nidulans and Taphrina deformans. The evolutionary implications of the reduction of mtP-RNA structures in ascomycetes will be discussed.

摘要

线粒体核糖核酸酶P(mtP-RNA)的RNA亚基由线粒体基因(rnpB)编码,存在于几种子囊菌以及原生生物美洲隐滴虫和橄榄肾形藻中。通过寻找普遍保守的结构元件,我们在两种裂殖酵母(粟酒裂殖酵母和八孢裂殖酵母)、芽殖酵母加拿大毕赤酵母以及原囊菌畸形外囊菌的线粒体DNA(mtDNA)中鉴定出了此前未知的rnpB基因。在两种裂殖酵母中通过实验证实了预测大小的mtP-RNA的表达,并通过对由环化mtP-RNA产生的cDNA进行测序确定了其精确的5'和3'末端。比较RNA二级结构建模表明,与两种原生生物美洲隐滴虫和橄榄肾形藻的mtP-RNA不同,子囊菌的mtP-RNA二级结构都高度简化。在某些芽殖酵母中,如产朊假丝酵母,我们只发现了两个最保守的配对,即P1和P4。P18配对在酿酒酵母及其近缘物种中保守,而在裂殖酵母、构巢曲霉和畸形外囊菌的RNA中保留了近一半的细菌最小共有结构。我们将讨论子囊菌中mtP-RNA结构简化的进化意义。

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