Sashital Dipali G, Greeman Candacia A, Lyumkis Dmitry, Potter Clinton S, Carragher Bridget, Williamson James R
Department of Integrative Structural and Computational Biology, Scripps Research Institute, La Jolla, United States.
Elife. 2014 Oct 14;3:e04491. doi: 10.7554/eLife.04491.
Ribosome assembly is a complex process involving the folding and processing of ribosomal RNAs (rRNAs), concomitant binding of ribosomal proteins (r-proteins), and participation of numerous accessory cofactors. Here, we use a quantitative mass spectrometry/electron microscopy hybrid approach to determine the r-protein composition and conformation of 30S ribosome assembly intermediates in Escherichia coli. The relative timing of assembly of the 3' domain and the formation of the central pseudoknot (PK) structure depends on the presence of the assembly factor RimP. The central PK is unstable in the absence of RimP, resulting in the accumulation of intermediates in which the 3'-domain is unanchored and the 5'-domain is depleted for r-proteins S5 and S12 that contact the central PK. Our results reveal the importance of the cofactor RimP in central PK formation, and introduce a broadly applicable method for characterizing macromolecular assembly in cells.
核糖体组装是一个复杂的过程,涉及核糖体RNA(rRNA)的折叠和加工、核糖体蛋白(r蛋白)的伴随结合以及众多辅助因子的参与。在这里,我们使用定量质谱/电子显微镜混合方法来确定大肠杆菌中30S核糖体组装中间体的r蛋白组成和构象。3'结构域组装的相对时间和中央假结(PK)结构的形成取决于组装因子RimP的存在。在没有RimP的情况下,中央PK不稳定,导致中间体积累,其中3'结构域未锚定,5'结构域缺乏与中央PK接触的r蛋白S5和S12。我们的结果揭示了辅助因子RimP在中央PK形成中的重要性,并引入了一种广泛适用的方法来表征细胞中的大分子组装。