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Asymmetry in serial femtosecond crystallography data

机译:串行Femtosecond晶体学数据的不对称性

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Serial crystallography is an increasingly important approach to protein crystallography that exploits both X-ray free-electron laser (XFEL) and synchrotron radiation. Serial crystallography recovers complete X-ray diffraction data by processing and merging diffraction images from thousands of randomly oriented non-uniform microcrystals, of which all observations are partial Bragg reflections. Random fluctuations in the XFEL pulse energy spectrum, variations in the size and shape of microcrystals, integrating over millions of weak partial observations and instabilities in the XFEL beam position lead to new types of experimental errors. The quality of Bragg intensity estimates deriving from serial crystallography is therefore contingent upon assumptions made while modeling these data. Here it is observed that serial femtosecond crystallography (SFX) Bragg reflections do not follow a unimodal Gaussian distribution and it is recommended that an idealized assumption of single Gaussian peak profiles be relaxed to incorporate apparent asymmetries when processing SFX data. The phenomenon is illustrated by re-analyzing data collected from microcrystals of the Blastochloris viridis photosynthetic reaction center and comparing these intensity observations with conventional synchrotron data. The results show that skewness in the SFX observations captures the essence of the Wilson plot and an empirical treatment is suggested that can help to separate the diffraction Bragg intensity from the background.
机译:连续晶体学是一种越来越重要的蛋白质晶体学的方法,其利用X射线自由电子激光器(XFEL)和同步辐射辐射。通过处理和合并来自数千个随机定向的非均匀微晶的衍射图像来串联晶体术恢复完整的X射线衍射数据,其中所有观察结果都是部分布拉格反射。 XFEL脉冲能谱中的随机波动,微晶的尺寸和形状的变化,整合在XFEL光束位置中的数百万个弱部分观测和稳定性导致新类型的实验误差。因此,从串行结晶术中得出的布拉格强度估计的质量在建模这些数据的同时制作的假设上取决于假设。这里观察到,串行飞秒晶体学(SFX)布拉格反射不遵循单向高斯分布,建议放宽单个高斯峰值轮廓的理想化假设,以在处理SFX数据时结合明显的不对称。通过重新分析从Blotochloris viridis光合反应中心的微晶间收集的数据进行分析数据来说明现象,并将这些强度观察与传统的同步数据进行比较。结果表明,SFX观测中的偏差捕获了威尔逊情节的本质,建议有助于将衍射布拉格强度与背景分开。

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