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Using in-cell SHAPE-Seq and simulations to probe structure–function design principles of RNA transcriptional regulators

机译:使用细胞内sHapE-seq和模拟来探测RNa转录调节因子的结构 - 功能设计原​​理

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摘要

Antisense RNA-mediated transcriptional regulators are powerful tools for controlling gene expression and creating synthetic gene networks. RNA transcriptional repressors derived from natural mechanisms called attenuators are particularly versatile, though their mechanistic complexity has made them difficult to engineer. Here we identify a new structure–function design principle for attenuators that enables the forward engineering of new RNA transcriptional repressors. Using in-cell SHAPE-Seq to characterize the structures of attenuator variants within Escherichia coli, we show that attenuator hairpins that facilitate interaction with antisense RNAs require interior loops for proper function. Molecular dynamics simulations of these attenuator variants suggest these interior loops impart structural flexibility. We further observe hairpin flexibility in the cellular structures of natural RNA mechanisms that use antisense RNA interactions to repress translation, confirming earlier results from in vitro studies. Finally, we design new transcriptional attenuators in silico using an interior loop as a structural requirement and show that they function as desired in vivo. This work establishes interior loops as an important structural element for designing synthetic RNA gene regulators. We anticipate that the coupling of experimental measurement of cellular RNA structure and function with computational modeling will enable rapid discovery of structure–function design principles for a diverse array of natural and synthetic RNA regulators.
机译:反义RNA介导的转录调节因子是控制基因表达和创建合成基因网络的强大工具。从称为衰减器的自然机制衍生的RNA转录阻遏物特别通用,尽管它们的机制复杂性使其难以设计。在这里,我们确定了衰减器的新结构-功能设计原​​理,该原理使得能够对新的RNA转录阻遏物进行正向工程设计。使用细胞内SHAPE-Seq表征大肠杆菌内减毒变体的结构,我们显示了促进与反义RNA相互作用的减毒发夹需要内部环才能正常运行。这些衰减器变体的分子动力学模拟表明,这些内部环赋予了结构灵活性。我们进一步观察了使用反义RNA相互作用抑制翻译的天然RNA机制的细胞结构中的发夹结构灵活性,从而证实了体外研究的早期结果。最后,我们使用内部环作为结构要求,在计算机上设计了新的转录衰减子,并表明它们在体内具有所需的功能。这项工作将内部环确定为设计合成RNA基因调节剂的重要结构要素。我们预计,将细胞RNA结构和功能的实验测量与计算建模相结合,将能够快速发现各种天然和合成RNA调节剂的结构-功能设计原​​理。

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