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An improved method for surface immobilisation of RNA: application to small Non-Coding RNA - mRNA pairing

机译:一种改进的RNa表面固定方法:应用于小的非编码RNa - mRNa配对

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摘要

Characterisation of RNA and its intermolecular interactions is increasing in importance as the inventory of known RNA functions continues to expand. RNA-RNA interactions are central to post-transcriptional gene regulation mechanisms in bacteria, and the interactions of bacterial small non-coding RNAs (sRNAs) with their mRNA targets are the subject of much current research. The technology of surface plasmon resonance (SPR) is an attractive approach to studying these interactions since it is highly sensitive, and allows interaction measurements to be recorded in real-time. Whilst a number of approaches exist to label RNAs for surface-immobilisation, the method documented here is simple, quick, efficient, and utilises the high-affinity streptavidin-biotin interaction. Specifically, we ligate a biotinylated nucleotide to the 3′ end of RNA using T4 RNA ligase. Although this is a previously recognised approach, we have optimised the method by our discovery that the incorporation of four or more adenine nucleotides at the 3′ end of the RNA (a poly-A-tail) is required in order to achieve high ligation efficiencies. We use this method within the context of investigating small non-coding RNA (sRNA) - mRNA interactions through the application of surface technologies, including quantitative SPR assays. We first focus on validating the method using the recently characterised Escherichia coli sRNA-mRNA pair, MicA-ompA, specifically demonstrating that the addition of the poly-A-tail to either RNA does not affect its subsequent binding interactions with partner molecules. We then apply this method to investigate the novel interactions of a Vibrio cholerae Qrr sRNA with partner mRNAs, hapR and vca0939; RNA-RNA pairings that are important in mediating pathogenic virulence. The calculated binding parameters allow insights to be drawn regarding sRNA-mRNA interaction mechanisms.
机译:随着已知RNA功能清单的不断扩大,RNA及其分子间相互作用的表征越来越重要。 RNA-RNA相互作用是细菌中转录后基因调控机制的核心,细菌小非编码RNA(sRNA)及其mRNA靶标之间的相互作用是当前许多研究的主题。表面等离振子共振(SPR)技术是研究这些相互作用的一种有吸引力的方法,因为它非常灵敏,并且可以实时记录相互作用的测量值。尽管存在许多标记RNA进行表面固定的方法,但此处记录的方法简单,快速,有效,并利用了高亲和力的链霉亲和素与生物素的相互作用。具体而言,我们使用T4 RNA连接酶将生物素化的核苷酸连接到RNA的3'端。尽管这是一种先前公认的方法,但我们通过发现为实现高连接效率需要在RNA 3'末端掺入四个或更多个腺嘌呤核苷酸(poly-A-tail)来优化了该方法。我们在调查小型非编码RNA(sRNA)-mRNA通过表面技术(包括定量SPR分析)的应用中的相互作用的情况下使用此方法。我们首先着重于使用最近鉴定的大肠杆菌sRNA-mRNA对MicA-ompA验证该方法,具体证明向任一RNA添加poly-A-tail不会影响其随后与伴侣分子的结合相互作用。然后,我们应用这种方法研究霍乱弧菌Qrr sRNA与伴侣mRNA,hapR和vca093​​9的新型相互作用。在介导致病性毒力中很重要的RNA-RNA配对。计算的结合参数使得可以得出有关sRNA-mRNA相互作用机制的见解。

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