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首页> 外文期刊>Journal of Molecular Biology >Role of the adenine ligand on the stabilization of the secondary and tertiary interactions in the adenine riboswitch.
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Role of the adenine ligand on the stabilization of the secondary and tertiary interactions in the adenine riboswitch.

机译:腺嘌呤配体对腺嘌呤核糖开关中二级和三级相互作用的稳定作用。

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摘要

Riboswitches are RNA-based genetic control elements that function via a conformational transition mechanism when a specific target molecule binds to its binding pocket. To facilitate an atomic detail interpretation of experimental investigations on the role of the adenine ligand on the conformational properties and kinetics of folding of the add adenine riboswitch, we performed molecular dynamics simulations in both the presence and the absence of the ligand. In the absence of ligand, structural deviations were observed in the J23 junction and the P1 stem. Destabilization of the P1 stem in the absence of ligand involves the loss of direct stabilizing interactions with the ligand, with additional contributions from the J23 junction region. The J23 junction of the riboswitch is found to be more flexible, and the tertiary contacts among the junction regions are altered in the absence of the adenine ligand; results suggest that the adenine ligand associates and dissociates from the riboswitch in the vicinity of J23. Good agreement was obtained with the experimental data with the results indicating dynamic behavior of the adenine ligand on the nanosecond time scale to be associated with the dynamic behavior of hydrogen bonding with the riboswitch. Results also predict that direct interactions of the adenine ligand with U74 of the riboswitch are not essential for stable binding although it is crucial for its recognition. The possibility of methodological artifacts and force-field inaccuracies impacting the present observations was checked by additional molecular dynamics simulations in the presence of 2,6-diaminopurine and in the crystal environment.
机译:核糖开关是基于RNA的遗传控制元件,当特定的靶分子与其结合袋结合时,其通过构象转变机制起作用。为了促进对腺嘌呤配体对构象性质和添加的腺嘌呤核糖开关的折叠动力学的作用的实验研究的原子细节解释,我们在存在和不存在配体的情况下进行了分子动力学模拟。在不存在配体的情况下,在J23连接和P1茎中观察到结构偏差。在不存在配体的情况下,P1茎的失稳涉及与配体的直接稳定相互作用的丧失,以及J23连接区的额外贡献。发现核糖开关的J23接头更具柔性,并且在没有腺嘌呤配体的情况下,接头区域之间的三级接触发生了变化。结果表明,腺嘌呤配体在J23附近与核糖开关缔合和解离。与实验数据获得了很好的一致性,结果表明腺嘌呤配体在纳秒时间尺度上的动态行为与氢与核糖开关键合的动态行为有关。结果还预测,腺嘌呤配体与核糖开关的U74的直接相互作用对于稳定结合不是必需的,尽管对于其识别至关重要。在2,6-二氨基嘌呤存在下和晶体环境中,通过附加的分子动力学模拟检查了方法学假象和力场不准确影响本研究结果的可能性。

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