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首页> 外文期刊>The Journal of Chemical Physics >Hydration shells of proteins probed by depolarized light scattering and dielectric spectroscopy: Orientational structure is significant, positional structure is not
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Hydration shells of proteins probed by depolarized light scattering and dielectric spectroscopy: Orientational structure is significant, positional structure is not

机译:用去偏振光散射和介电谱探测蛋白质的水合壳:取向结构很重要,位置结构没有

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Water interfacing hydrated proteins carry properties distinct from those of the bulk and is often described as a separate entity, a "biological water." We address here the question of which dynamical and structural properties of hydration water deserve this distinction. The study focuses on different aspects of the density and orientational fluctuations of hydration water and the ability to separate them experimentally by combining depolarized light scattering with dielectric spectroscopy. We show that the dynamics of the density fluctuations of the hydration shells reflect the coupled dynamics of the solute and solvent and do not require a special distinction as "biological water." The orientations of shell water molecules carry dramatically different physics and do require a separation into a sub-ensemble. Depending on the property considered, the perturbation of water's orientational structure induced by the protein propagates 3-5 hydration shells into the bulk at normal temperature. (C) 2014 AIP Publishing LLC.
机译:与水结合的水合蛋白质具有与大部分蛋白质不同的性质,通常被称为独立的实体,即“生物水”。我们在这里解决的问题是,哪些水合动力和结构特性值得这种区别。这项研究集中在水化水密度和取向波动的不同方面,以及通过将去偏振光散射与介电光谱学相结合,通过实验将它们分离的能力。我们表明,水合壳的密度波动的动力学反映了溶质和溶剂的耦合动力学,不需要作为“生物水”进行特殊区分。壳水分子的取向具有截然不同的物理原理,并且确实需要分离成一个整体。根据所考虑的特性,在正常温度下,蛋白质诱导的水取向结构的扰动会将3-5个水合壳传播到整个主体中。 (C)2014 AIP Publishing LLC。

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