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Comparison of Solution and Crystal Structures of PreQ1 Riboswitch Reveals Calcium-Induced Changes in Conformation and Dynamics

机译:PreQ1核糖开关的溶液和晶体结构的比较揭示了钙诱导的构象和动力学变化

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摘要

Riboswitches regulate gene expression via specific recognition of cognate metabolites by their aptamer domains, which fold into stable conformations upon ligand binding. However, the recently reported solution and crystal structures of the Bacillus subtilis preQ1 riboswitch aptamer show small but significant differences, suggesting that there may be conformational heterogeneity in the ligand-bound state. We present a structural and dynamic characterization of this aptamer by solution NMR spectroscopy. The aptamer−preQ1 complex is intrinsically flexible in solution, with two regions that undergo motions on different time scales. Three residues move in concert on the micro-to-millisecond time scale and may serve as the lid of the preQ1-binding pocket. Several Ca2+ ions are present in the crystal structure, one of which binds with an affinity of 47 ± 2 μM in solution to a site that is formed only upon ligand binding. Addition of Ca2+ to the aptamer−preQ1 complex in solution results in conformational changes that account for the differences between the solution and crystal structures. Remarkably, the Ca2+ ions present in the crystal structure, which were proposed to be important for folding and ligand recognition, are not required for either in solution.
机译:核糖开关通过其适体结构域对同源代谢物的特异性识别来调节基因表达,所述适体结构域在配体结合后折叠成稳定的构象。但是,最近报道的枯草芽孢杆菌preQ1核糖开关适体的溶液和晶体结构显示出微小但显着的差异,表明在配体结合状态可能存在构象异质性。我们通过溶液NMR光谱介绍了这种适体的结构和动态表征。 aptamer-preQ1复合体在解决方案方面具有内在的灵活性,其中两个区域在不同的时标上进行运动。三个残基在微秒至毫秒级的范围内一致移动,并且可能充当preQ1结合口袋的盖子。晶体结构中存在多个Cass2 + 离子,其中一个以47±2μM的亲和力在溶液中结合至仅在配体结合时形成的位点。将Ca 2 + 添加到溶液中的aptamer-preQ1复合物中会导致构象变化,这说明了溶液和晶体结构之间的差异。值得注意的是,溶液中都不要求存在于晶体结构中的Ca 2 + 离子,这对折叠和配体识别很重要。

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