PTN Joint Graduate Program, School of Life Sciences, Tsinghua University, Beijing 100084, China.
National Institute of Biological Sciences, Beijing 102206, China.
RNA. 2020 Jul;26(7):866-877. doi: 10.1261/rna.074807.120. Epub 2020 Mar 25.
Ribosomal subunits are assembled on a precursor rRNA that includes four spacers in addition to mature rRNA sequences. The 5' external transcribed spacer (5' ETS) is the most prominent one that recruits U3 snoRNA and a plethora of proteins during the early assembly of 90S small subunit preribosomes. Here, we have conducted a comprehensive mutational analysis of 5' ETS by monitoring the processing and assembly of a plasmid-expressed pre-18S RNA. Remarkably, nearly half of the 5' ETS sequences, when depleted individually, are dispensable for 18S rRNA processing. The dispensable elements largely bind at the surface of the 90S structure. Defective assembly of 5' ETS completely blocks the last stage of 90S formation yet has little effect on the early assembly of 5' and central domains of 18S rRNA. Our study reveals the functional regions of 5' ETS and provides new insight into the assembly hierarchy of 90S preribosomes.
核糖体亚基在包含成熟 rRNA 序列的前体 rRNA 上组装。5' 端外部转录间隔区(5'ETS)是最突出的一个,它在 90S 小亚基前核糖体的早期组装过程中招募 U3 snoRNA 和大量蛋白质。在这里,我们通过监测质粒表达的 pre-18S RNA 的加工和组装,对 5'ETS 进行了全面的突变分析。值得注意的是,当单独耗尽时,近一半的 5'ETS 序列对于 18S rRNA 加工是可有可无的。可有可无的元件主要结合在 90S 结构的表面。5'ETS 的组装缺陷完全阻止了 90S 形成的最后阶段,但对 5'和 18S rRNA 中心结构域的早期组装几乎没有影响。我们的研究揭示了 5'ETS 的功能区域,并为 90S 前核糖体的组装层次结构提供了新的见解。