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The flexibility of hydrated bovine serum albumin investigated by THz spectroscopy and molecular modeling

机译:太赫兹光谱法和分子模型研究了牛血清中水合白蛋白的柔韧性

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The native cellular environment represents a crowded system comprising high concentrations of soluble molecules that interact mostly in a nonspecific manner. Some of the macromolecular crowding effects occurring in biological media are conformational changes and macromolecular associations. Most of our knowledge on protein folding and protein-protein interactions was acquired from experiments on proteins in dilute solutions or from theoretical models of isolated proteins in either explicit or implicit solvent. Here we present a 50% w/w bovine serum albumin (BSA) solution model that comprises two solute molecules included in a single water box. We determined the vibration spectrum of the 50% w/w BSA solution using THz spectroscopy and we calculated the theoretical THz spectrum. We observed a good correlation between the experimental and theoretical spectra for the frequency range of 0.3 - 1.5 THz. We also investigated the contribution of each BSA molecule to the solution THz spectrum by simulating THz spectra of the two BSA molecules from the solution model and water, each accounting for a 50% w/w BSA solution. The spectra appear to be similar. As the two molecules in our solution model have different conformations, we investigated the importance of the apparently insignificant differences between simulated THz spectra of the two proteins. We found that the differences should be considered significant, as they reflect differences between the flexibility of the two BSA molecules.
机译:天然细胞环境代表拥挤的系统,该系统包含主要以非特异性方式相互作用的高浓度可溶性分子。在生物介质中发生的一些大分子拥挤效应是构象变化和大分子缔合。我们关于蛋白质折叠和蛋白质-蛋白质相互作用的大多数知识是从稀溶液中蛋白质的实验或从显性或隐性溶剂中分离的蛋白质的理论模型中获得的。在这里,我们介绍了一个50%w / w的牛血清白蛋白(BSA)解决方案模型,该模型包含一个水箱中包含的两个溶质分子。我们使用太赫兹光谱法确定了50%w / w BSA溶液的振动光谱,并计算了理论太赫兹光谱。我们观察到了在0.3-1.5 THz频率范围内的实验光谱与理论光谱之间的良好相关性。我们还通过模拟溶液模型和水中的两个BSA分子的THz光谱,研究了每个BSA分子对溶液THz光谱的贡献,每个BSA分子占50%w / w BSA溶液。光谱看起来相似。由于我们的溶液模型中的两个分子具有不同的构象,因此我们研究了两种蛋白质的模拟THz谱之间看似无关紧要的差异的重要性。我们发现差异应该被认为是重要的,因为它们反映了两个BSA分子柔韧性之间的差异。

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