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PNAS Plus: Tuning a riboswitch response through structural extension of a pseudoknot

机译:PNAS Plus:通过伪结的结构扩展来调整核糖开关响应

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摘要

Structural and dynamic features of RNA folding landscapes represent critical aspects of RNA function in the cell and are particularly central to riboswitch-mediated control of gene expression. Here, using single-molecule fluorescence energy transfer imaging, we explore the folding dynamics of the preQ1 class II riboswitch, an upstream mRNA element that regulates downstream encoded modification enzymes of queuosine biosynthesis. For reasons that are not presently understood, the classical pseudoknot fold of this system harbors an extra stem–loop structure within its 3′-terminal region immediately upstream of the Shine–Dalgarno sequence that contributes to formation of the ligand-bound state. By imaging ligand-dependent preQ1 riboswitch folding from multiple structural perspectives, we reveal that the extra stem–loop strongly influences pseudoknot dynamics in a manner that decreases its propensity to spontaneously fold and increases its responsiveness to ligand binding. We conclude that the extra stem–loop sensitizes this RNA to broaden the dynamic range of the ON/OFF regulatory switch.
机译:RNA折叠景观的结构和动态特征代表了细胞中RNA功能的关键方面,在核糖开关介导的基因表达控制中尤其重要。在这里,我们使用单分子荧光能量转移成像技术,探索了preQ1 II类核糖开关的折叠动力学,preQ1 II类核糖开关是一种上游mRNA元件,它调节奎索因生物合成的下游编码修饰酶。由于目前尚不清楚的原因,该系统的经典假结折叠在Shine-Dalgarno序列的紧靠其3'-末端区域内具有额外的茎-环结构,这有助于形成配体结合态。通过从多个结构角度对依赖配体的preQ1核糖开关折叠进行成像,我们揭示了额外的茎环以降低其自发折叠倾向并增加其对配体结合的响应性的方式强烈影响假结动力学。我们得出的结论是,额外的茎环使该RNA敏感,从而扩大了ON / OFF调节开关的动态范围。

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