Rieder Renate, Höbartner Claudia, Micura Ronald
Institute of Organic Chemistry, Leopold Franzens University, Innrain 52a, A-6020, Innsbruck, Austria.
Methods Mol Biol. 2009;540:15-24. doi: 10.1007/978-1-59745-558-9_2.
One of the most versatile riboswitch classes refers to purine nucleoside metabolism. In the cell, purine riboswitches of the respective mRNAs either act at the transcriptional or translational level and off- or on-regulate genes upon binding to their dedicated ligands. Biophysical studies on ligand-induced folding of these RNA domains in vitro contribute to understanding their regulation mechanisms in vivo. For such studies, in particular, for approaches using fluorescence spectroscopy, the preparation of large RNAs with site-specific chemical modifications is required. Here, we describe a strategy for the preparation of riboswitch aptamers and aptamers adjoined to their expression platforms by chemical synthesis and enzymatic ligation. The modular design enables fast access to a large number of purine riboswitch derivatives with the modification of interest at any strand position. We exemplarily provide a detailed protocol for the preparation of adenosine deaminase (add) A-riboswitch variants with 2-aminopurine (AP) modifications at the 40-nmol scale.
最通用的核糖开关类别之一涉及嘌呤核苷代谢。在细胞中,各自mRNA的嘌呤核糖开关要么在转录水平起作用,要么在翻译水平起作用,并在与它们特定的配体结合后关闭或开启对基因的调控。对这些RNA结构域在体外配体诱导折叠的生物物理研究有助于理解它们在体内的调控机制。对于此类研究,特别是对于使用荧光光谱的方法,需要制备具有位点特异性化学修饰的大RNA。在这里,我们描述了一种通过化学合成和酶促连接制备核糖开关适体及其与其表达平台相连的适体的策略。模块化设计使得能够快速获得大量在任何链位置具有感兴趣修饰的嘌呤核糖开关衍生物。我们示例性地提供了一个详细的方案,用于制备在40 nmol规模上具有2-氨基嘌呤(AP)修饰的腺苷脱氨酶(add)A-核糖开关变体。