Hector Ralph D, Burlacu Elena, Aitken Stuart, Le Bihan Thierry, Tuijtel Maarten, Zaplatina Alina, Cook Atlanta G, Granneman Sander
Centre for Synthetic and Systems Biology (SynthSys), University of Edinburgh, Edinburgh, EH9 3JD, UK.
Centre for Synthetic and Systems Biology (SynthSys), University of Edinburgh, Edinburgh, EH9 3JD, UK Wellcome Trust Centre for Cell Biology, University of Edinburgh, Edinburgh, EH9 3JR, UK.
Nucleic Acids Res. 2014 Oct 29;42(19):12138-54. doi: 10.1093/nar/gku815. Epub 2014 Sep 8.
Ribosome assembly in eukaryotes involves the activity of hundreds of assembly factors that direct the hierarchical assembly of ribosomal proteins and numerous ribosomal RNA folding steps. However, detailed insights into the function of assembly factors and ribosomal RNA folding events are lacking. To address this, we have developed ChemModSeq, a method that combines structure probing, high-throughput sequencing and statistical modeling, to quantitatively measure RNA structural rearrangements during the assembly of macromolecular complexes. By applying ChemModSeq to purified 40S assembly intermediates we obtained nucleotide-resolution maps of ribosomal RNA flexibility revealing structurally distinct assembly intermediates and mechanistic insights into assembly dynamics not readily observed in cryo-electron microscopy reconstructions. We show that RNA restructuring events coincide with the release of assembly factors and predict that completion of the head domain is required before the Rio1 kinase enters the assembly pathway. Collectively, our results suggest that 40S assembly factors regulate the timely incorporation of ribosomal proteins by delaying specific folding steps in the 3' major domain of the 20S pre-ribosomal RNA.
真核生物中的核糖体组装涉及数百种组装因子的活动,这些因子指导核糖体蛋白的分级组装以及众多核糖体RNA折叠步骤。然而,目前尚缺乏对组装因子功能和核糖体RNA折叠事件的详细了解。为了解决这一问题,我们开发了ChemModSeq,这是一种结合结构探测、高通量测序和统计建模的方法,用于定量测量大分子复合物组装过程中RNA的结构重排。通过将ChemModSeq应用于纯化的40S组装中间体,我们获得了核糖体RNA灵活性的核苷酸分辨率图谱,揭示了结构上不同的组装中间体,并对冷冻电子显微镜重建中不易观察到的组装动力学有了机制上的深入了解。我们表明,RNA重组事件与组装因子的释放同时发生,并预测在Rio1激酶进入组装途径之前,头部结构域需要完成组装。总体而言,我们的结果表明,40S组装因子通过延迟20S前核糖体RNA 3' 主要结构域中的特定折叠步骤来调节核糖体蛋白的适时掺入。