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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Exploring the Free Energy and Conformational Landscape of tRNA at High Temperature and Pressure
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Exploring the Free Energy and Conformational Landscape of tRNA at High Temperature and Pressure

机译:探索高温高压下tRNA的自由能和构象态势

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摘要

A combined temperature- and pressure-dependent study was employed to reveal the conformational and free-energy landscape of phenylalanine transfer RNA (tRNA(Phe)), a known model for RNA function, to elucidate the features that are essential in determining its stability. These studies also help explore its structural properties under extreme environmental conditions, such as low/high temperatures and high pressures. To this end, fluorescence and FTIR spectroscopies, calorimetric and small-angle scattering measurements were carried out at different ion concentrations over a wide range of temperatures and pressures up to several hundred MPa. Compared with the pronounced temperature effect, the pressure-dependent structural changes of tRNA(Phe) are small. A maximum of only 15% unpaired bases is observed upon pressurization up to 1 GPa. RNA unfolding differs not only from protein unfolding, but also from DNA melting. Its pressure stability seems to be similar to that of noncanonical DNA structures.
机译:结合温度和压力的一项综合研究,揭示了已知的RNA功能模型苯丙氨酸转移RNA(tRNA(Phe))的构象和自由能态,以阐明对其稳定性至关重要的特征。这些研究还有助于探索其在极端环境条件下的结构特性,例如低温/高温和高压。为此,在高达数百MPa的宽温度和压力范围内,以不同的离子浓度进行了荧光和FTIR光谱,量热和小角散射测量。与明显的温度效应相比,tRNA(Phe)的压力依赖性结构变化较小。加压至1 GPa时最多只能观察到15%的未配对碱基。 RNA的展开不仅与蛋白质的展开不同,而且与DNA的熔解不同。它的压力稳定性似乎与非规范DNA结构相似。

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