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Responsive self-assembly of tectoRNAs with loop-receptor interactions from the tetrahydrofolate (THF) riboswitch

机译:与四氢氢溶胶(THF)Riboswitch的环 - 受体相互作用的响应性自组装

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摘要

Naturally occurring RNAs are known to exhibit a high degree of modularity, whereby specific structural modules (or motifs) can be mixed and matched to create new molecular architectures. The modular nature of RNA also affords researchers the ability to characterize individual structural elements in controlled synthetic contexts in order to gain new and critical insights into their particular structural features and overall performance. Here, we characterized the binding affinity of a unique loop-receptor interaction found in the tetrahydrofolate (THF) riboswitch using rationally designed self-assembling tectoRNAs. Our work suggests that the THF loop-receptor interaction has been fine-tuned for its particular role as a riboswitch component. We also demonstrate that the thermodynamic stability of this interaction can be modulated by the presence of folinic acid, which induces a local structural change at the level of the loop-receptor. This corroborates the existence of a THF binding site within this tertiary module and paves the way for its potential use as a THF responsive module for RNA nanotechnology and synthetic biology.
机译:已知天然存在的RNA表现出高度的模块化,由此可以混合和匹配特定的结构模块(或图案)以产生新的分子架构。 RNA的模块化性质也提供了研究人员,该研究人员能够在受控综合环境中表征个体结构元素,以获得对其特定结构特征和整体性能的新的和关键洞察。这里,我们表征了使用合理设计的自组装固特罗具在四氢脱水(THF)Riboswitch中发现的独特环受体相互作用的结合亲和力。我们的作品表明,THF环路接收器相互作用已经微调其特殊作用作为核糖部分。我们还证明,该相互作用的热力学稳定性可以通过存在氟酸的存在来调节,这在环受体的水平下诱导局部结构变化。这使得该三级模块内的THF结合位点的存在性,并为RNA纳米技术和合成生物学的THF响应模块铺平了途径。

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