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Structural and Dynamical Examination of the Low-Temperature Glass Transition in Serum Albumin

机译:血清白蛋白的低温玻璃化转变的结构和动力学检查

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摘要

The nuclear magnetic transverse decay and the proton second moment of bovine serum albumin samples dry and hydrated with different water isotope compositions show that at temperatures around 170 K, there is a dramatic change in the dynamics of the water associated with the protein interface. By comparison, observation of the protein protons when hydrated with deuterium oxide provides no evidence for significant dynamical changes near 170 K. The proton second moment of the hydrated protein shows that the protein structure becomes more open with increasing hydration from the lyophilized condition and that the side chains extend from the protein surface into the solvent in the hydrated but not the dry cases. The proton second moment of serum albumin hydrated with H2O increases dramatically with decreasing temperature near 170 K, demonstrating that the water forms a rigid solid around the protein which effectively fills the surface irregularities created by the protein fold. Solvation with dimethyl sulfoxide yields small effects compared with water.
机译:牛血清白蛋白样品经不同水同位素组成干燥和水合后的核磁横向衰变和质子二阶矩表明,在170 K左右的温度下,与蛋白质界面相关的水动力学发生了巨大变化。相比之下,观察到当与氘化水合时蛋白质质子没有证据表明在170 K附近有显着的动力学变化。水合蛋白质的质子第二矩表明,随着冻干条件下水合程度的增加,蛋白质结构变得更加开放。在水合情况下,侧链从蛋白质表面延伸到溶剂中,而在干燥情况下则不然。随着170 K附近温度的降低,水合血清白蛋白的质子二阶矩急剧增加,这表明水在蛋白质周围形成了刚性固体,有效填充了由蛋白质折叠产生的表面不规则性。与水相比,使用二甲基亚砜的溶剂作用较小。

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