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通过非相干弹性中子散射测量溶液和粉末中的蛋白质动力学:Q范围和能量分辨率的影响。

Protein dynamics in solution and powder measured by incoherent elastic neutron scattering: the influence of Q-range and energy resolution.

作者信息

Gabel Frank

机构信息

Institut de Biologie Structurale, 41 rue Jules Horowitz, 38027 Grenoble Cedex 1, France.

出版信息

Eur Biophys J. 2005 Feb;34(1):1-12. doi: 10.1007/s00249-004-0433-0. Epub 2004 Sep 16.

Abstract

Incoherent elastic neutron scattering (IENS) has been widely used to measure intramolecular atomic mean square displacements (MSDs) of proteins in powder and in solution. The instrumental energy resolution and the wave vector transfer (Q-range) determine, respectively, the time and length scales of observable motions. In order to investigate contributions of diffusive motions to MSDs measured by this method, we calculated the elastic intensity for several simple scattering functions. We showed that continuous translational diffusion contributes to MSDs in a Q-range where the energy width of the scattering function is of the order of the instrumental energy resolution. We discuss the choice of instruments adapted to focus on intramolecular motions in the presence of solvent or global macromolecular diffusion. The concepts developed are applied to interpret experimental data from H(2)O- and D(2)O-hydrated proteins. Finally, analogies between the Gaussian approximation in IENS and the Guinier approximation in small-angle scattering are discussed.

摘要

非相干弹性中子散射(IENS)已被广泛用于测量粉末状和溶液中蛋白质的分子内原子均方位移(MSD)。仪器的能量分辨率和波矢转移(Q范围)分别决定了可观测运动的时间和长度尺度。为了研究扩散运动对用该方法测量的MSD的贡献,我们计算了几种简单散射函数的弹性强度。我们表明,连续平移扩散在散射函数的能量宽度与仪器能量分辨率相当的Q范围内对MSD有贡献。我们讨论了在存在溶剂或整体大分子扩散的情况下,适用于关注分子内运动的仪器的选择。所提出的概念被应用于解释来自H₂O和D₂O水合蛋白质的实验数据。最后,讨论了IENS中的高斯近似与小角散射中的吉尼埃近似之间的类比。

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