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配体诱导腺苷核糖开关中适体末端螺旋的稳定。

Ligand-induced stabilization of the aptamer terminal helix in the add adenine riboswitch.

出版信息

RNA. 2013 Nov;19(11):1517-24. doi: 10.1261/rna.040493.113. Epub 2013 Sep 19.

Abstract

Riboswitches are structured mRNA elements that modulate gene expression. They undergo conformational changes triggered by highly specific interactions with sensed metabolites. Among the structural rearrangements engaged by riboswitches, the forming and melting of the aptamer terminal helix, the so-called P1 stem, is essential for genetic control. The structural mechanisms by which this conformational change is modulated upon ligand binding mostly remain to be elucidated. Here, we used pulling molecular dynamics simulations to study the thermodynamics of the P1 stem in the add adenine riboswitch. The P1 ligand-dependent stabilization was quantified in terms of free energy and compared with thermodynamic data. This comparison suggests a model for the aptamer folding in which direct P1-ligand interactions play a minor role on the conformational switch when compared with those related to the ligand-induced aptamer preorganization.

摘要

核糖开关是调节基因表达的结构 mRNA 元件。它们通过与感应代谢物的高度特异性相互作用发生构象变化。在核糖开关参与的结构重排中,适体末端螺旋(所谓的 P1 茎)的形成和熔化对于遗传控制至关重要。配体结合时调节这种构象变化的结构机制在很大程度上仍有待阐明。在这里,我们使用拉伸分子动力学模拟来研究添加腺嘌呤核糖开关中 P1 茎的热力学。根据自由能定量描述了 P1 配体依赖性稳定,并与热力学数据进行了比较。该比较提出了适体折叠的模型,其中与配体诱导的适体预组织相关的相互作用相比,直接的 P1-配体相互作用在构象开关中起次要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8234/3851719/9b35cdc9e194/1517fig1.jpg

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