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Protein and solvent dynamics as studied by QENS and dielectric spectroscopy

机译:通过QENS和介电谱研究的蛋白质和溶剂动力学

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摘要

We have investigated the dynamics of a protein (hemoglobin) in three different solvents by broadband dielectric spectroscopy and quasi-elastic neutron scattering (QENS). The solvents used were water, glycerol and methanol. From the dielectric measurements we were able to extract four relaxation processes, where the fastest process is due to solvent dynamics, and the three slower processes arise from protein motions of a different nature, and hence, visible on different time and temperature scales. The results from the mean square displacement (MSD) obtained by quasi-elastic neutron scattering indicate that the fast and local protein motions are strongly related (slaved) by the fastest and most local solvent motions in the case of water and glycerol. In contrast, for methanol we found the low temperature dynamics are dominated by the CH3 group rotation, which does not promote any protein dynamics. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们已经通过宽带介电谱和准弹性中子散射(QENS)研究了三种不同溶剂中蛋白质(血红蛋白)的动力学。使用的溶剂是水,甘油和甲醇。从介电测量中,我们能够提取出四个弛豫过程,其中最快的过程是由于溶剂动力学引起的,而三个较慢的过程是由于性质不同的蛋白质运动引起的,因此在不同的时间和温度范围内可见。通过准弹性中子散射获得的均方位移(MSD)结果表明,在水和甘油的情况下,最快和最局部的溶剂运动与快速和局部蛋白质运动密切相关(从动)。相反,对于甲醇,我们发现低温动力学受CH3基团旋转的支配,而CH3基团的旋转并没有促进任何蛋白质动力学。 (c)2006 Elsevier B.V.保留所有权利。

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