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Single transcriptional and translational preQ1 riboswitches adopt similar pre-folded ensembles that follow distinct folding pathways into the same ligand-bound structure

机译:单个转录和翻译的preQ1核糖开关采用相似的预折叠体沿着不同的折叠路径进入相同的配体结合结构

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摘要

Riboswitches are structural elements in the 5′ untranslated regions of many bacterial messenger RNAs that regulate gene expression in response to changing metabolite concentrations by inhibition of either transcription or translation initiation. The preQ1 (7-aminomethyl-7-deazaguanine) riboswitch family comprises some of the smallest metabolite sensing RNAs found in nature. Once ligand-bound, the transcriptional Bacillus subtilis and translational Thermoanaerobacter tengcongensis preQ1 riboswitch aptamers are structurally similar RNA pseudoknots; yet, prior structural studies have characterized their ligand-free conformations as largely unfolded and folded, respectively. In contrast, through single molecule observation, we now show that, at near-physiological Mg2+ concentration and pH, both ligand-free aptamers adopt similar pre-folded state ensembles that differ in their ligand-mediated folding. Structure-based Gō-model simulations of the two aptamers suggest that the ligand binds late (Bacillus subtilis) and early (Thermoanaerobacter tengcongensis) relative to pseudoknot folding, leading to the proposal that the principal distinction between the two riboswitches lies in their relative tendencies to fold via mechanisms of conformational selection and induced fit, respectively. These mechanistic insights are put to the test by rationally designing a single nucleotide swap distal from the ligand binding pocket that we find to predictably control the aptamers′ pre-folded states and their ligand binding affinities.
机译:核糖开关是许多细菌信使RNA 5'非翻译区域中的结构元件,通过抑制转录或翻译起始来响应代谢物浓度的变化来调节基因表达。 preQ1(7-氨基甲基-7-脱氮鸟嘌呤)核糖开关家族包含一些自然界中最小的代谢物感应RNA。一旦与配体结合,转录枯草芽孢杆菌和翻译嗜热厌氧杆菌滕Q1核糖开关适体是结构相似的RNA假结。然而,先前的结构研究已经将它们的无配体构象分别表征为基本上未折叠和折叠。相比之下,通过单分子观察,我们现在显示,在接近生理学的Mg 2 + 浓度和pH值下,两个不含配体的适体均采用相似的预折叠态集成体,但它们的配体介导介导的状态不同折叠。对两个适体的基于结构的Gō模型模拟表明,相对于假结折叠,配体结合较晚(枯草芽孢杆菌)和较早(嗜热厌氧杆菌tengcongensis),从而提出了两个核糖开关之间的主要区别在于它们的相对倾向。分别通过构象选择和诱导适合的机制折叠。通过合理设计远离配体结合袋的单个核苷酸交换,我们对这些机制的见解进行了测试,我们发现该交换可预测地控制适体的预折叠状态及其配体结合亲和力。

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