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Interfacial Water at Protein Surfaces: Wide-Line NMR and DSC Characterization of Hydration in Ubiquitin Solutions

机译:蛋白质表面的界面水:泛素溶液中水合的宽线NMR和DSC表征

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摘要

Wide-line 1H-NMR and differential scanning calorimetry measurements were done in aqueous solutions and on lyophilized samples of human ubiquitin between −70°C and +45°C. The measured properties (size, thermal evolution, and wide-line NMR spectra) of the protein-water interfacial region are substantially different in the double-distilled and buffered-water solutions of ubiquitin. The characteristic transition in water mobility is identified as the melting of the nonfreezing/hydrate water. The amount of water in the low-temperature mobile fraction is 0.4 g/g protein for the pure water solution. The amount of mobile water is higher and its temperature dependence more pronounced for the buffered solution. The specific heat of the nonfreezing/hydrate water was evaluated using combined differential scanning calorimetry and NMR data. Considering the interfacial region as an independent phase, the values obtained are 5.0–5.8 J·g−1·K−1, and the magnitudes are higher than that of pure/bulk water (4.2 J·g−1·K−1). This unexpected discrepancy can only be resolved in principle by assuming that hydrate water is in tight H-bond coupling with the protein matrix. The specific heat for the system composed of the protein molecule and its hydration water is 2.3 J·g−1·K−1. It could be concluded that the protein ubiquitin and its hydrate layer behave as a highly interconnected single phase in a thermodynamic sense.
机译:宽线1H-NMR和差示扫描量热法的测量是在水溶液中以及在-70°C至+ 45°C之间的人泛素冻干样品上进行的。在遍在蛋白的双重蒸馏和缓冲水溶液中,蛋白质-水界面区域的测量性质(大小,热演化和宽谱NMR光谱)有很大不同。水流动性的特征转变被确定为非冻结/水合水的熔化。对于纯水溶液,低温移动级分中的水量为0.4 g / g蛋白质。对于缓冲溶液,流动水的量更高,并且其温度依赖性更加明显。使用组合差示扫描量热法和NMR数据评估非冻结/水合物水的比热。以界面区域为独立相,获得的值为5.0–5.8 J·g-1·K-1,其幅度高于纯净水/散装水的幅度(4.2 J·g-1·K-1)。 。原则上,只能通过假设水合物水与蛋白质基质紧密H键结合来解决这种意料之外的差异。由蛋白质分子及其水合水组成的系统的比热为2.3 J·g-1·K-1。可以得出结论,在热力学意义上,蛋白质泛素及其水合层表现为高度相互连接的单相。

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