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自我剪切核酶的共转录分析及其配体依赖性。

Co-transcriptional Analysis of Self-Cleaving Ribozymes and Their Ligand Dependence.

机构信息

Department of Pharmaceutical Sciences, University of California, Irvine, CA, USA.

Department of Molecular Biology and Biochemistry, University of California, Irvine, CA, USA.

出版信息

Methods Mol Biol. 2021;2167:13-24. doi: 10.1007/978-1-0716-0716-9_2.

Abstract

Self-cleaving ribozymes are RNA molecules that catalyze a site-specific self-scission reaction. Analysis of self-cleavage is a crucial aspect of the biochemical study and understanding of these molecules. Here we describe a co-transcriptional assay that allows the analysis of self-cleaving ribozymes in different reaction conditions and in the presence of desired ligands and/or cofactors. Utilizing a standard T7 RNA polymerase in vitro transcription system under limiting Mg concentration, followed by a 25-fold dilution of the reaction in desired conditions of self-cleavage (buffer, ions, ligands, pH, temperature, etc.) to halt the synthesis of new RNA molecules, allows the study of self-scission of these molecules without the need for purification or additional preparation steps, such as refolding procedures. Furthermore, because the transcripts are not denatured, this assay likely yields RNAs in conformations relevant to co-transcriptionally folded species in vivo.

摘要

自我剪切核酶是能够催化特定位点自我剪切反应的 RNA 分子。对自我剪切的分析是这些分子的生化研究和理解的关键方面。在这里,我们描述了一种共转录分析方法,该方法允许在不同的反应条件下以及在所需配体和/或辅助因子的存在下分析自我剪切核酶。在有限的 Mg 浓度下利用标准的 T7 RNA 聚合酶体外转录系统,然后将反应在所需的自我剪切条件(缓冲液、离子、配体、pH 值、温度等)下进行 25 倍稀释以停止新 RNA 分子的合成,允许在无需纯化或额外准备步骤(例如复性程序)的情况下研究这些分子的自我剪切。此外,由于转录本没有变性,因此该测定法可能产生与体内共转录折叠物种相关的构象的 RNA。

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