Liu Haiguang, Poon Billy K, Saldin Dilano K, Spence John C H, Zwart Peter H
Department of Physics, Arizona State University, Tempe, AZ 85287, USA.
Acta Crystallogr A. 2013 Jul;69(Pt 4):365-73. doi: 10.1107/S0108767313006016. Epub 2013 May 8.
Femtosecond X-ray pulses from X-ray free-electron laser sources make it feasible to conduct room-temperature solution scattering experiments far below molecular rotational diffusion timescales. Owing to the ultra-short duration of each snapshot in these fluctuation scattering experiments, the particles are effectively frozen in space during the X-ray exposure. In contrast to standard small-angle scattering experiments, the resulting scattering patterns are anisotropic. The intensity fluctuations observed in the diffraction images can be used to obtain structural information embedded in the average angular correlation of the Fourier transform of the scattering species, of which standard small-angle scattering data are a subset. The additional information contained in the data of these fluctuation scattering experiments can be used to determine the structure of macromolecules in solution without imposing symmetry or spatial restraints during model reconstruction, reducing ambiguities normally observed in solution scattering studies. In this communication, a method that utilizes fluctuation X-ray scattering data to determine low-resolution solution structures is presented. The method is validated with theoretical data calculated from several representative molecules and applied to the reconstruction of nanoparticles from experimental data collected at the Linac Coherent Light Source.
来自X射线自由电子激光源的飞秒X射线脉冲使得在远低于分子旋转扩散时间尺度的条件下进行室温溶液散射实验成为可能。由于这些涨落散射实验中每个快照的持续时间极短,在X射线曝光期间粒子在空间中实际上被冻结。与标准小角散射实验不同,所得散射图案是各向异性的。在衍射图像中观察到的强度涨落可用于获取包含在散射物质傅里叶变换的平均角相关性中的结构信息,标准小角散射数据是其中的一个子集。这些涨落散射实验数据中包含的额外信息可用于确定溶液中大分子的结构,而在模型重建过程中无需施加对称性或空间限制,减少了溶液散射研究中通常观察到的模糊性。在本通讯中,提出了一种利用涨落X射线散射数据确定低分辨率溶液结构的方法。该方法通过从几个代表性分子计算出的理论数据进行了验证,并应用于根据在直线加速器相干光源收集的实验数据重建纳米颗粒。