Instituto de Biomedicina de Sevilla, Hospital Universitario Virgen del Rocío/CSIC/Universidad de Sevilla, E-41013 Seville, Spain; Departamento de Genética, Facultad de Biología, Universidad de Sevilla, E-41012 Seville, Spain.
Instituto de Biomedicina de Sevilla, Hospital Universitario Virgen del Rocío/CSIC/Universidad de Sevilla, E-41013 Seville, Spain.
J Mol Biol. 2023 Dec 15;435(24):168321. doi: 10.1016/j.jmb.2023.168321. Epub 2023 Oct 20.
Ribosomal proteins have important roles in maintaining the structure and function of mature ribosomes, but they also drive crucial rearrangement reactions during ribosome biogenesis. The contribution of most, but not all, ribosomal proteins to ribosome synthesis has been previously analyzed in the yeast Saccharomyces cerevisiae. Herein, we characterize the role of yeast eL15 during 60S ribosomal subunit formation. In vivo depletion of eL15 results in a shortage of 60S subunits and the appearance of half-mer polysomes. This is likely due to defective processing of the 27SA to the 27SB pre-rRNA and impaired subsequent processing of both forms of 27SB pre-rRNAs to mature 25S and 5.8S rRNAs. Indeed, eL15 depletion leads to the efficient turnover of the de novo formed 27S pre-rRNAs. Additionally, depletion of eL15 blocks nucleocytoplasmic export of pre-60S particles. Moreover, we have analyzed the impact of depleting either eL15 or eL36 on the composition of early pre-60S particles, thereby revealing that the depletion of eL15 or eL36 not only affects each other's assembly into pre-60S particles but also that of neighboring ribosomal proteins, including eL8. These intermediates also lack most ribosome assembly factors required for 27SA and 27SB pre-rRNA processing, named A- and B-factors, respectively. Importantly, our results recapitulate previous ones obtained upon eL8 depletion. We conclude that assembly of eL15, together with that of eL8 and eL36, is a prerequisite to shape domain I of 5.8S/25S rRNA within early pre-60S particles, through their binding to this rRNA domain and the recruitment of specific groups of assembly factors.
核糖体蛋白在维持成熟核糖体的结构和功能方面发挥着重要作用,但它们也在核糖体生物发生过程中驱动关键的重排反应。酵母酿酒酵母中先前已经分析了大多数(但不是全部)核糖体蛋白对核糖体合成的贡献。在此,我们描述了酵母 eL15 在 60S 核糖体亚基形成过程中的作用。体内耗尽 eL15 会导致 60S 亚基短缺,并出现半聚体多核糖体。这可能是由于 27SA 到 27SB 前 rRNA 的加工缺陷以及随后两种形式的 27SB 前 rRNA 向成熟 25S 和 5.8S rRNA 的加工受损所致。事实上,eL15 耗尽会导致新形成的 27S 前 rRNA 有效周转。此外,eL15 耗尽会阻止 pre-60S 颗粒的核质输出。此外,我们还分析了耗尽 eL15 或 eL36 对早期 pre-60S 颗粒组成的影响,从而揭示了耗尽 eL15 或 eL36 不仅会影响彼此组装成 pre-60S 颗粒,还会影响相邻核糖体蛋白,包括 eL8。这些中间体还缺乏用于 27SA 和 27SB 前 rRNA 加工的大多数核糖体组装因子,分别称为 A 因子和 B 因子。重要的是,我们的结果再现了以前在 eL8 耗尽时获得的结果。我们得出结论,eL15 与 eL8 和 eL36 的组装是通过与该 rRNA 结构域结合并募集特定组的组装因子,在早期 pre-60S 颗粒中形成 5.8S/25S rRNA 结构域 I 的先决条件。