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Simulations on time-resolved structure determination of uncrystallized biomolecules in the presence of shot noise

机译:散粒噪声存在下非结晶生物分子时间分辨结构测定的模拟

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Determination of fast structural changes of biomolecules is usually performed on crystalline samples in a time-resolved pump-probe experiment. Changes in the structure are found by the difference Fourier method using phases of a known reference structure. As we showed recently, such changes can also be determined from diffraction of uncrystallized molecules in random orientations. In this case, the difference in the angular correlations of the diffraction patterns is used to find structural changes. Similar to the difference Fourier method, there is no need for iterative phasing. We validated this approach previously with simulations in the absence of noise. In this paper, we show that the effects of noise can be adequately suppressed by averaging over a sufficiently large ensemble as they can be obtained using an X-ray free electron laser.
机译:通常在时间分辨的泵浦探针实验中,对晶体样品进行生物分子快速结构变化的测定。通过使用已知参考结构的相的傅立叶差分法发现结构的变化。正如我们最近所显示的,这种变化也可以通过未结晶分子在随机方向上的衍射来确定。在这种情况下,衍射图案的角度相关性的差异被用于寻找结构变化。类似于差分傅立叶方法,不需要迭代定相。我们之前在没有噪声的情况下通过仿真验证了该方法。在本文中,我们表明,通过对足够大的集合进行平均,可以充分抑制噪声的影响,因为可以使用X射线自由电子激光获得噪声。

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