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Observation of long-range tertiary interactions during ligand binding by the TPP riboswitch aptamer

机译:TPP核糖开关适体与配体结合期间的长距离三级相互作用的观察

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摘要

The thiamine pyrophosphate (TPP) riboswitch is a cis-regulatory element in mRNA that modifies gene expression in response to TPP concentration. Its specificity is dependent upon conformational changes that take place within its aptamer domain. Here, the role of tertiary interactions in ligand binding was studied at the single-molecule level by combined force spectroscopy and Förster resonance energy transfer (smFRET), using an optical trap equipped for simultaneous smFRET. The ‘Force-FRET’ approach directly probes secondary and tertiary structural changes during folding, including events associated with binding. Concurrent transitions observed in smFRET signals and RNA extension revealed differences in helix-arm orientation between two previously-identified ligand-binding states that had been undetectable by spectroscopy alone. Our results show that the weaker binding state is able to bind to TPP, but is unable to form a tertiary docking interaction that completes the binding process. Long-range tertiary interactions stabilize global riboswitch structure and confer increased ligand specificity.>DOI:
机译:硫胺焦磷酸盐(TPP)核糖开关是mRNA中的顺式调节元件,可响应TPP浓度而修饰基因表达。其特异性取决于在其适体结构域内发生的构象变化。在这里,通过装备有同时进行smFRET的光阱,通过联合力谱和福斯特共振能量转移(smFRET)在单分子水平上研究了三级相互作用在配体结合中的作用。 “ Force-FRET”方法可直接探测折叠过程中的二级和三级结构变化,包括与结合相关的事件。在smFRET信号和RNA延伸中观察到的并发转变揭示了两个以前确定的配体结合状态之间的螺旋臂方向差异,而这是单独用光谱法无法检测到的。我们的结果表明,较弱的结合状态能够与TPP结合,但是无法形成第三对接相互作用,从而完成结合过程。远程三级相互作用可稳定全局核糖开关结构并提高配体特异性。> DOI:

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