Centro de Investigación del Cáncer, Salamanca, Spain.
Instituto de Biología Molecular y Celular del Cáncer, CSIC-University of Salamanca, Salamanca, Spain.
RNA Biol. 2021 Oct 15;18(sup1):182-197. doi: 10.1080/15476286.2021.1965754. Epub 2021 Sep 17.
Biochemical studies of the human ribosome synthesis pathway have been hindered by technical difficulties in obtaining intact preribosomal complexes from internal regions of the nucleolus. Here we provide a detailed description of an extraction method that enables efficient detection, isolation, and characterization of nucleolar preribosomes containing large pre-rRNA species. The three-step Preribosome Sequential Extraction (PSE) protocol preserves the integrity of early preribosomal complexes and yields preparations amenable to biochemical analyses from low amounts of starting material. We validate this procedure through the detection of specific trans-acting factors and pre-rRNAs in the extracted preribosomes using affinity matrix pull-downs and sedimentation assays. In addition, we describe the application of the PSE method for monitoring cellular levels of ribosome-free 5S RNP complexes as an indicator of ribosome biogenesis stress. Our optimized experimental procedures will facilitate studies of human ribosome biogenesis in normal, mutant and stressed-cell scenarios, including the characterization of candidate ribosome biogenesis factors, preribosome interactors under specific physiological conditions or effects of drugs on ribosome maturation.
人类核糖体合成途径的生化研究一直受到从核仁内部区域获得完整的核糖体前体复合物的技术困难的阻碍。在这里,我们提供了一种详细的提取方法描述,该方法能够有效地检测、分离和鉴定含有大 pre-rRNA 种类的核仁核糖体前体。三步连续提取法(PSE)保留了早期核糖体前体复合物的完整性,并能从小量起始材料中获得适合生化分析的制剂。我们通过使用亲和基质下拉和沉淀分析在提取的核糖体前体中检测特定的反式作用因子和 pre-rRNA 来验证该程序。此外,我们还描述了 PSE 方法在监测细胞内无核糖体 5S RNP 复合物水平作为核糖体生物发生应激的指标中的应用。我们优化的实验程序将有助于在正常、突变和应激细胞情况下研究人类核糖体生物发生,包括鉴定候选核糖体生物发生因子、特定生理条件下的核糖体前体相互作用物或药物对核糖体成熟的影响。