Institute of Biochemistry, Genetics and Microbiology, Institute of Microbiology and Archaea Centre, Single-Molecule Biochemistry Lab and Regensburg Center for Biochemistry, University of Regensburg, Regensburg, Bavaria 93053, Germany.
Regensburg Center for Biochemistry, Biochemistry III-Institute for Biochemistry, Genetics and Microbiology, University of Regensburg, Regensburg, Bavaria 93053, Germany.
RNA. 2023 Aug;29(8):1255-1273. doi: 10.1261/rna.079636.123. Epub 2023 May 16.
Ribosomal RNA (rRNA) maturation in archaea is a complex multistep process that requires well-defined endo- and exoribonuclease activities to generate fully mature linear rRNAs. However, technical challenges prevented detailed mapping of rRNA processing steps and a systematic analysis of rRNA maturation pathways across the tree of life. In this study, we used long-read (PCR)-cDNA and direct RNA nanopore-based sequencing to study rRNA maturation in three archaeal model organisms, namely the Euryarchaea and and the Crenarchaeon Compared to standard short-read protocols, nanopore sequencing facilitates simultaneous readout of 5'- and 3'-positions, which is required for the classification of rRNA processing intermediates. More specifically, we (i) accurately detect and describe rRNA maturation stages by analysis of terminal read positions of cDNA reads and thereupon (ii) explore the stage-dependent installation of the KsgA-mediated dimethylations in using base-calling and signal characteristics of direct RNA reads. Due to the single-molecule sequencing capacity of nanopore sequencing, we could detect hitherto unknown intermediates with high confidence, revealing details about the maturation of archaea-specific circular rRNA intermediates. Taken together, our study delineates common principles and unique features of rRNA processing in euryarchaeal and crenarchaeal representatives, thereby significantly expanding our understanding of rRNA maturation pathways in archaea.
古菌核糖体 RNA(rRNA)成熟是一个复杂的多步骤过程,需要明确的内切和外切核糖核酸酶活性来生成完全成熟的线性 rRNA。然而,技术挑战阻止了对 rRNA 加工步骤的详细映射和对生命之树中 rRNA 成熟途径的系统分析。在这项研究中,我们使用长读(PCR)-cDNA 和直接 RNA 纳米孔测序来研究三个古菌模型生物中的 rRNA 成熟,即广古菌界和泉古菌界和泉古菌。与标准短读协议相比,纳米孔测序有利于同时读取 5'-和 3'-位置,这是分类 rRNA 加工中间体所必需的。更具体地说,我们(i)通过分析 cDNA 读取的末端读取位置准确检测和描述 rRNA 成熟阶段,并据此(ii)使用直接 RNA 读取的碱基调用和信号特征探索 中 KsgA 介导的二甲基化的阶段依赖性安装。由于纳米孔测序的单分子测序能力,我们可以高度自信地检测到迄今为止未知的中间体,揭示了古菌特异性环状 rRNA 中间体成熟的细节。总之,我们的研究描绘了广古菌界和泉古菌界代表中 rRNA 加工的共同原则和独特特征,从而大大扩展了我们对古菌 rRNA 成熟途径的理解。