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Tryptophan Conformations Associated with Partial Unfolding in Ribonuclease T1

机译:与核糖核酸酶T1中的部分展开相关的色氨酸构象。

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摘要

The origin of the biexponential fluorescence decay of Trp in ribonuclease T1 under mildly destabilizing conditions, such as increased pH or temperature, or the presence of detergent, is still not understood. We have performed two extended replica-exchange molecular dynamics simulations to obtain a detailed representation of the native state at two protonation states corresponding to a high and low pH. At high pH, the appearance of partially unfolded states is evident. We found that this pH-induced destabilization originates from increased global repulsion as well as reduced local favorable electrostatic interactions and reduced H-bonding strength of His27, His40, and His92. At high pH, alternative tryptophan rotamers appear and are linked to a distorted environment of the tryptophan, which also acts as a separate source of ground-state heterogeneity. The total population of these alternative conformations agrees well with the amplitude of the experimentally observed secondary fluorescence lifetime.
机译:核糖核酸酶T1中的Trp在温和不稳定的条件下(例如,pH值或温度升高或去污剂存在)的双指数荧光衰减的起因仍然未知。我们已经执行了两个扩展的复制-交换分子动力学模拟,以获取对应于高和低pH的两个质子化状态的原始状态的详细表示。在高pH值下,部分展开状态的出现是明显的。我们发现,这种pH诱导的不稳定源于全局排斥力增加,以及局部有利的静电相互作用降低,His 27 ,His 40 和His的H键强度降低 92 。在高pH值下,出现了其他色氨酸旋转异构体,并与扭曲的色氨酸环境相关联,后者还充当了基态异质性的单独来源。这些替代构象的总种群与实验观察到的次级荧光寿命的幅度非常吻合。

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