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In vivo structure probing of RNA in Archaea: novel insights into the ribosome structure of Methanosarcina acetivorans

机译:古细菌RNA的体内结构探测:对甲烷肉动物核糖体结构的新见解

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Structure probing combined with next-generation sequencing (NGS) has provided novel insights into RNA structure-function relationships. To date, such studies have focused largely on bacteria and eukaryotes, with little attention given to the third domain of life, archaea. Furthermore, functional RNAs have not been extensively studied in archaea, leaving open questions about RNA structure and function within this domain of life. With archaeal species being diverse and having many similarities to both bacteria and eukaryotes, the archaea domain has the potential to be an evolutionary bridge. In this study, we introduce a method for probing RNA structure in vivo in the archaea domain of life. We investigated the structure of ribosomal RNA (rRNA) from Methanosarcina acetivorans, a well-studied anaerobic archaeal species, grown with either methanol or acetate. After probing the RNA in vivo with dimethyl sulfate (DMS), Structure-seq2 libraries were generated, sequenced, and analyzed. We mapped the reactivity of DMS onto the secondary structure of the ribosome, which we determined independently with comparative analysis, and confirmed the accuracy of DMS probing in M. acetivorans Accessibility of the rRNA to DMS in the two carbon sources was found to be quite similar, although some differences were found. Overall, this study establishes the Structure-seq2 pipeline in the archaea domain of life and informs about ribosomal structure within M. acetivorans.
机译:结构探测与下一代测序(NGS)相结合,为RNA结构-功能关系提供了新的见解。迄今为止,这些研究主要集中在细菌和真核生物上,很少关注生命的第三个领域,即古细菌。此外,功能性RNA尚未在古细菌中得到广泛研究,因此在这一生命领域中留下了关于RNA结构和功能的悬而未决的问题。由于古细菌物种多种多样,并且与细菌和真核生物有许多相似之处,因此古细菌领域有可能成为进化的桥梁。在这项研究中,我们介绍了一种在古细菌生命领域中探测体内RNA结构的方法。我们研究了来自甲烷肉动物的核糖体RNA(rRNA)的结构,这是一种经过充分研究的厌氧古细菌物种,用甲醇或乙酸盐生长。用硫酸二甲酯 (DMS) 探测体内 RNA 后,生成、测序和分析 Structure-seq2 文库。我们将DMS的反应性映射到核糖体的二级结构上,我们通过比较分析独立确定,并确认了DMS探测在乙酌猪分枝杆菌中的准确性 发现两种碳源中rRNA对DMS的可及性非常相似,尽管发现了一些差异。总体而言,这项研究在古细菌生命领域建立了 Structure-seq2 管道,并告知了 M. acetivorans 中的核糖体结构。

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