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A yeast RNA-hybrid system for the detection of RNA-RNA interactions in vivo.

机译:一种用于检测体内RNA-RNA相互作用的酵母RNA杂交系统。

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摘要

RNA-RNA interactions play a crucial role at many different levels of the cellular metabolism such as plasmid replication control, viral encapsidation, or transcriptional and translational regulation. Therefore, methods are necessary to investigate the molecular determinants of given interactions, including their stabilities, or to screen for new interacting partners. We designed an RNA-hybrid system in S. cerevisiae, based on the yeast three-hybrid system. In this setup, the activation of a reporter gene is dependent on the interaction of two RNAs. A loop-loop interaction similar to the dimerization initiation site of the HIV genome was used as a model system, demonstrating that in this novel RNA-hybrid system only cognate RNAs promote the activation of the reporter gene. Levels of reporter activation correlate well with interaction stabilities determined in vitro by UV melting analyses, suggesting that conditions used for the analysis of in vitro structural stabilities translate well into the intracellular environment. Furthermore, the system was applicable for a screen against a test library. Nine out of ten selected clones were identified as predicted interaction partners for the bait RNA. In summary, we present a yeast reporter system depending on RNA-RNA interactions, which can be used alternatively for analysis of known interactions or for screening libraries in search for new interaction partners.
机译:RNA-RNA相互作用在细胞代谢的许多不同水平上发挥着至关重要的作用,例如质粒复制控制,病毒衣壳化或转录和翻译调控。因此,有必要研究给定相互作用的分子决定因素(包括其稳定性)或筛选新的相互作用伴侣的方法。基于酵母三杂化系统,我们在酿酒酵母中设计了一种RNA杂化系统。在这种设置中,报告基因的激活取决于两个RNA的相互作用。将类似于HIV基因组二聚化起始位点的环-环相互作用用作模型系统,表明在这种新型RNA杂交系统中,只有同源RNA才能促进报告基因的激活。报道分子激活水平与通过紫外线熔解分析在体外确定的相互作用稳定性密切相关,这表明用于分析体外结构稳定性的条件很好地转化为细胞内环境。此外,该系统适用于针对测试库的屏幕。在十个选定克隆中,有九个被确定为诱饵RNA的预测相互作用伴侣。总而言之,我们提出了一种依赖于RNA-RNA相互作用的酵母报道系统,该系统可以替代性地用于已知相互作用的分析或筛选文库以寻找新的相互作用伴侣。

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