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Collective Dynamics Of Protein Hydration Water By Brillouinneutron Spectroscopy

机译:布里渊中子光谱法研究蛋白质水合水的集体动力学

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By a detailed experimental study of THz dynamics in the ribonuclease protein, we could detect the propagation of coherent collective density fluctuations within the protein hydration shell. The emerging picture indicates the presence of both a dispersing mode, traveling with a speed greater than 3000 m/s, and a nondispersing one, characterized by an almost constant energy of 6-7 meV. In agreement with molecular dynamics simulations [Phys. Rev. Lett. 2002, 89, 275501], the features of the dispersion curves closely resemble those observed in pure liquid water [Phys. Rev. E: Stat. Phys., Plasmas, Fluids, Relat. Interdiscip. Top. 2004, 69, 061203]. On the contrary, the observed damping factors are much larger than in bulk water, with the dispersing mode becoming overdamped at Q = 0.6 A~(-1) already. Such novel experimental findings are discussed as a dynamic signature of the disordering effect induced by the protein surface on the local structure of water.
机译:通过对核糖核酸酶蛋白中太赫兹动力学的详细实验研究,我们可以检测到蛋白水合壳内相干集体密度波动的传播。出现的图像表明,存在以高于3000 m / s的速度传播的分散模式和以6-7 meV的几乎恒定能量为特征的非分散模式。与分子动力学模拟[物理。牧师2002,89,275501],色散曲线的特征非常类似于在纯液态水中观察到的[Phys。版本E:统计物理,等离子,流体,相关。跨学科的最佳。 2004,69,061203]。相反,观测到的阻尼因子远大于散装水中的阻尼因子,在Q = 0.6 A〜(-1)时,分散模式已变得过阻尼。这种新颖的实验发现被讨论为蛋白质表面对水的局部结构诱导的无序效应的动态特征。

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