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C-Phycocyanin Hydration Water Dynamics in the Presence of Trehalose: An Incoherent Elastic Neutron Scattering Study at Different Energy Resolutions

机译:海藻糖存在下的C-藻蓝蛋白水合水动力学:不同能量分辨率下的非相干弹性中子散射研究

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摘要

We present a study of C-phycocyanin hydration water dynamics in the presence of trehalose by incoherent elastic neutron scattering. By combining data from two backscattering spectrometers with a 10-fold difference in energy resolution we extract a scattering law S(Q,ω) from the Q-dependence of the elastic intensities without sampling the quasielastic range. The hydration water is described by two dynamically different populations—one diffusing inside a sphere and the other diffusing quasifreely—with a population ratio that depends on temperature. The scattering law derived describes the experimental data from both instruments excellently over a large temperature range (235–320 K). The effective diffusion coefficient extracted is reduced by a factor of 10–15 with respect to bulk water at corresponding temperatures. Our approach demonstrates the benefits and the efficiency of using different energy resolutions in incoherent elastic neutron scattering over a large angular range for the study of biological macromolecules and hydration water.
机译:我们提出了在海藻糖存在下通过非相干弹性中子散射对C-藻蓝蛋白水合水动力学的研究。通过将来自两个反向散射光谱仪的数据进行比较,它们的能量分辨率相差10倍,我们可以从弹性强度的Q相关性中提取散射定律S(Q,ω),而无需对准弹性范围进行采样。水化水由两个动态不同的种群(一个在球体内部扩散,另一个在准自由扩散)下描述,其种群比率取决于温度。得出的散射定律很好地描述了两种仪器在较大温度范围(235–320 K)内的实验数据。相对于相应温度下的散装水,提取的有效扩散系数降低了10-15倍。我们的方法证明了在大角度范围内非相干弹性中子散射中使用不同能量分辨率来研究生物大分子和水合水的益处和效率。

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