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首页> 外文期刊>eLife journal >Allosteric mechanism of the V. vulnificus adenine riboswitch resolved by four-dimensional chemical mapping
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Allosteric mechanism of the V. vulnificus adenine riboswitch resolved by four-dimensional chemical mapping

机译:二维化学作图法解析创伤弧菌腺嘌呤核糖开关的变构机理

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The structural interconversions that mediate the gene regulatory functions of RNA molecules may be different from classic models of allostery, but the relevant structural correlations have remained elusive in even intensively studied systems. Here, we present a four-dimensional expansion of chemical mapping called lock-mutate-map-rescue (LM 2 R), which integrates multiple layers of mutation with nucleotide-resolution chemical mapping. This technique resolves the core mechanism of the adenine-responsive V. vulnificus add riboswitch, a paradigmatic system for which both Monod-Wyman-Changeux (MWC) conformational selection models and non-MWC alternatives have been proposed. To discriminate amongst these models, we locked each functionally important helix through designed mutations and assessed formation or depletion of other helices via compensatory rescue evaluated by chemical mapping. These LM 2 R measurements give strong support to the pre-existing correlations predicted by MWC models, disfavor alternative models, and suggest additional structural heterogeneities that may be general across ligand-free riboswitches.
机译:介导RNA分子基因调控功能的结构互变可能不同于经典的变构模型,但即使在深入研究的系统中,相关的结构相关性仍然难以捉摸。在这里,我们提出了一种化学映射的二维扩展方法,称为锁突变映射救援(LM 2 R),它结合了具有核苷酸分辨率化学映射的多层突变。该技术解决了腺嘌呤响应性创伤弧菌添加核糖开关的核心机制,该系统是已提出Monod-Wyman-Changeux(MWC)构象选择模型和非MWC替代方案的范式系统。为了在这些模型之间进行区分,我们通过设计的突变锁定了每个功能上重要的螺旋,并通过化学图谱评估的补偿性拯救评估了其他螺旋的形成或消耗。这些LM 2 R测量结果为MWC模型所预测的现有相关性提供了有力的支持,不利于替代模型,并提出了可能在无配体的核糖开关中普遍存在的其他结构异质性。

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