Department of Integrative Structural and Computational Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.
Department of Chemistry, and The Skaggs Institute for Chemical Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.
Nucleic Acids Res. 2024 Oct 14;52(18):11254-11265. doi: 10.1093/nar/gkae636.
Co-transcriptional assembly is an integral feature of the formation of RNA-protein complexes that mediate translation. For ribosome synthesis, prior studies have indicated that the strict order of transcription of rRNA domains may not be obligatory during bacterial ribosome biogenesis, since a series of circularly permuted rRNAs are viable. In this work, we report the structural insights into assembly of the bacterial ribosome large subunit (LSU) based on cryo-EM density maps of intermediates that accumulate during in vitro ribosome synthesis using a set of circularly permuted (CiPer) rRNAs. The observed ensemble of 23 resolved ribosome large subunit intermediates reveals conserved assembly routes with an underlying hierarchy among cooperative assembly blocks. There are intricate interdependencies for the formation of key structural rRNA helices revealed from the circular permutation of rRNA. While the order of domain synthesis is not obligatory, the order of domain association does appear to proceed with a particular order, likely due to the strong evolutionary pressure on efficient ribosome synthesis. This work reinforces the robustness of the known assembly hierarchy of the bacterial large ribosomal subunit and offers a coherent view of how efficient assembly of CiPer rRNAs can be understood in that context.
共转录组装是介导翻译的 RNA-蛋白质复合物形成的一个固有特征。对于核糖体合成,先前的研究表明,在细菌核糖体生物发生过程中,rRNA 结构域的严格转录顺序可能不是必需的,因为一系列环状排列的 rRNA 是可行的。在这项工作中,我们基于使用一组环状排列的(CiPer)rRNA 在体外核糖体合成过程中积累的中间物的 cryo-EM 密度图,报道了细菌核糖体大亚基(LSU)组装的结构见解。观察到的 23 个解析核糖体大亚基中间物的集合揭示了保守的组装途径,其中存在合作组装块之间的基本层次结构。从 rRNA 的环状排列中可以看出,关键结构 rRNA 螺旋的形成存在复杂的相互依存关系。虽然结构域合成的顺序不是必需的,但结构域关联的顺序似乎确实以特定的顺序进行,这可能是由于对有效核糖体合成的强烈进化压力。这项工作加强了已知细菌大亚基核糖体组装层次结构的稳健性,并提供了一个连贯的观点,说明如何在这种情况下理解 CiPer rRNA 的有效组装。