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Preparation of modified long-mer RNAs and analysis of FMN binding to the ypaA aptamer from B. subtilis

机译:修饰的长链RNA的制备和FMN与枯草芽孢杆菌ypaA适体结合的分析

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In recent years, RNA has been shown to fulfil a number of cellular functions. This has led to much interest in elucidation of the structure of functional RNA molecules, and thus, in the preparation of suitably functionalized RNAs. The chemical synthesis of RNAs allows for the site-specific modification; however, is limited to sequences of about 60-70 nucleotides in length. At the example of the flavine mononucleotide (FMN) responsive aptamer of the ypaA riboswitch from B. subtilis, we demonstrate the highly efficient preparation of site-specifically modified long-mer RNAs. Our strategy consists of the chemical synthesis of fragments followed by enzymatic or chemical ligation. Splint ligation with T4 RNA ligase turned out to be most successful among the enyzymatic protocols. Highly efficient chemical ligation was performed by azide-alkyne cycloaddition of suitably modified RNA fragments. Wild-type and 2-aminopurine (2-AP)-modified variants of the ypaA aptamer were prepared. FMN binding to all synthesized ypaA aptamer variants is demonstrated. However, dissociation of FMN from its binding site by reduction of the isoalloxazin unit as demonstrated before for a small-hairpin-derived aptazyme could not be shown. This implies that either FMN is less accessible to reduction when it is bound to its natural aptamer; that reduced FMN remains bound to the aptamer; or that FMN upon reduction indeed is released from its binding site, without the aptamer folding back in the natural ligand-free state. The results of this study are of general interest to the preparation of site-specifically modified RNAs for investigation into structure and function.
机译:近年来,RNA已显示出可实现多种细胞功能。这引起了对阐明功能性RNA分子的结构,从而对制备适当地功能化的RNA的兴趣。 RNA的化学合成可以进行位点特异性修饰。但是,仅限于长度约为60-70个核苷酸的序列。在枯草芽孢杆菌ypaA核糖开关的黄素单核苷酸(FMN)响应适体的例子,我们证明了位点特异性修饰的长链RNA的高效制备。我们的策略包括化学合成片段,然后进行酶或化学连接。在酶促方案中,用T4 RNA连接酶进行夹板连接最成功。通过叠氮化物-炔烃环加成适当修饰的RNA片段进行高效的化学连接。制备了ypaA适体的野生型和2-氨基嘌呤(2-AP)修饰的变体。证明了FMN与所有合成的ypaA适体变体的结合。然而,如先前对于小发夹衍生的适体酶所证实的,通过减少异恶唑嗪单元使FMN从其结合位点解离无法显示。这意味着,当FMN与其天然适体结合时,它就不太容易还原。减少的FMN仍然与适体绑定;或FMN还原后确实从其结合位点释放,而适体没有以天然的无配体折叠回去。这项研究的结果对于制备用于研究结构和功能的位点特异性修饰的RNA具有普遍意义。

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