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The evolution of the ribosome biogenesis pathway from a yeast perspective

机译:从酵母角度看核糖体生物发生途径的演变

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摘要

Ribosome biogenesis is fundamental for cellular life, but surprisingly little is known about the underlying pathway. In eukaryotes a comprehensive collection of experimentally verified ribosome biogenesis factors (RBFs) exists only for Saccharomyces cerevisiae. Far less is known for other fungi, animals or plants, and insights are even more limited for archaea. Starting from 255 yeast RBFs, we integrated ortholog searches, domain architecture comparisons and, in part, manual curation to investigate the inventories of RBF candidates in 261 eukaryotes, 26 archaea and 57 bacteria. The resulting phylogenetic profiles reveal the evolutionary ancestry of the yeast pathway. The oldest core comprising 20 RBF lineages dates back to the last universal common ancestor, while the youngest 20 factors are confined to the Saccharomycotina. On this basis, we outline similarities and differences of ribosome biogenesis across contemporary species. Archaea, so far a rather uncharted domain, possess 38 well-supported RBF candidates of which some are known to form functional sub-complexes in yeast. This provides initial evidence that ribosome biogenesis in eukaryotes and archaea follows similar principles. Within eukaryotes, RBF repertoires vary considerably. A comparison of yeast and human reveals that lineage-specific adaptation via RBF exclusion and addition characterizes the evolution of this ancient pathway.
机译:核糖体的生物发生是细胞生命的基础,但令人惊讶的是,其潜在的途径知之甚少。在真核生物中,仅针对酿酒酵母存在经过实验验证的核糖体生物发生因子(RBF)的完整集合。其他真菌,动物或植物所知甚少,而古细菌的见解则更为有限。从255个酵母RBF开始,我们整合了直系同源搜索,域结构比较,以及部分手工管理以调查261种真核生物,26种古细菌和57种细菌中RBF候选物质的清单。所得的系统发育概况揭示了酵母途径的进化祖先。包含20个RBF谱系的最老核心可追溯到最后一个通用祖先,而最年轻的20个因子则局限于糖酵母。在此基础上,我们概述了当代物种中核糖体生物发生的异同。到目前为止,古细菌还不是一个很清楚的领域,它拥有38个得到良好支持的RBF候选基因,其中一些已知可以在酵母中形成功能性亚复合物。这提供了初步的证据,证明真核生物和古细菌中核糖体的生物发生遵循相似的原理。在真核生物中,RBF曲目差异很大。酵母和人类的比较表明,通过RBF排除和添加的谱系特异性适应是这种古老途径进化的特征。

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