Faculty of Natural Sciences, Comenius University Bratislava, Bratislava, Slovakia.
Laboratory of Regulation of Gene Expression, Institute of Microbiology of the Czech Academy of Sciences, Prague, Czech Republic.
Genome Biol Evol. 2024 Aug 5;16(8). doi: 10.1093/gbe/evae173.
Ribosomes are ribonucleoprotein complexes highly conserved across all domains of life. The size differences of ribosomal RNAs (rRNAs) can be mainly attributed to variable regions termed expansion segments (ESs) protruding out from the ribosomal surface. The ESs were found to be involved in a range of processes including ribosome biogenesis and maturation, translation, and co-translational protein modification. Here, we analyze the rRNAs of the yeasts from the Magnusiomyces/Saprochaete clade belonging to the basal lineages of the subphylum Saccharomycotina. We find that these yeasts are missing more than 400 nt from the 25S rRNA and 150 nt from the 18S rRNAs when compared to their canonical counterparts in Saccharomyces cerevisiae. The missing regions mostly map to ESs, thus representing a shift toward a minimal rRNA structure. Despite the structural changes in rRNAs, we did not identify dramatic alterations in the ribosomal protein inventories. We also show that the size-reduced rRNAs are not limited to the species of the Magnusiomyces/Saprochaete clade, indicating that the shortening of ESs happened independently in several other lineages of the subphylum Saccharomycotina.
核糖体是高度保守于所有生命领域的核糖核蛋白复合物。核糖体 RNA(rRNA) 的大小差异主要归因于从核糖体表面伸出的称为扩展片段(ES)的可变区域。已经发现 ES 参与了一系列过程,包括核糖体的生物发生和成熟、翻译以及共翻译蛋白修饰。在这里,我们分析了属于子囊菌门下的酵母的 Magnusiomyces/Saprochaete 进化枝的 rRNA。与酿酒酵母的典型 rRNA 相比,这些酵母的 25S rRNA 缺失了超过 400 个核苷酸,18S rRNA 缺失了 150 个核苷酸。缺失的区域主要映射到 ES,因此代表了 rRNA 结构向最小化的转变。尽管 rRNA 发生了结构变化,但我们没有发现核糖体蛋白库的剧烈变化。我们还表明,大小减小的 rRNA 不仅限于 Magnusiomyces/Saprochaete 进化枝的物种,表明在子囊菌门下的几个其他谱系中,ES 的缩短是独立发生的。