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Resolving indexing ambiguities in X-ray free-electron laser diffraction patterns

机译:解决X射线自由电子激光衍射图中的分度歧义

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摘要

Processing X-ray free-electron laser (XFEL) diffraction images poses challenges, as an XFEL pulse is powerful enough to destroy or damage the diffracting volume and thereby yields only one diffraction image per volume. Moreover, the crystal is stationary during the femtosecond pulse, so reflections are generally only partially recorded. Therefore, each XFEL diffraction image must be scaled individually and, ideally, corrected for partiality prior to merging. An additional complication may arise owing to indexing ambiguities when the symmetry of the Bravais lattice is higher than that of the space group, or when the unit-cell dimensions are similar to each other. Here, an automated method is presented that diagnoses these indexing ambiguities based on the Brehm–Diederichs algorithm [Brehm & Diederichs (2014), Acta Cryst. D>70, 101–109] and produces a consistent indexing choice for the large majority of diffraction images. This method was applied to an XFEL diffraction data set measured from crystals of the neuronal SNARE–complexin-1–synaptotagmin-1 complex. After correcting the indexing ambiguities, substantial improvements were observed in the merging statistics and the atomic model refinement R values. This method should be a useful addition to the arsenal of tools for the processing of XFEL diffraction data sets.
机译:处理X射线自由电子激光(XFEL)衍射图像提出了挑战,因为XFEL脉冲的功率足以破坏或破坏衍射体积,因此每体积仅产生一个衍射图像。此外,在飞秒脉冲期间晶体是静止的,因此反射通常仅部分记录。因此,每个XFEL衍射图像必须单独缩放,并且理想情况下,在合并之前针对局部性进行校正。当Bravais晶格的对称性高于空间组的对称性时,或者当晶胞尺寸彼此相似时,由于索引不明确而可能导致其他复杂化。在这里,提出了一种基于Brehm–Diederichs算法[Brehm&Diederichs(2014),Acta Cryst。 D > 70 ,101-109],并为大多数衍射图像提供了一致的索引选择。该方法应用于从神经元SNARE–complexin-1–synaptotagmin-1复合物的晶体测量的XFEL衍射数据集。校正索引歧义后,在合并统计数据和原子模型细化R值中观察到了实质性的改进。该方法应该是XFEL衍射数据集处理工具库中的有用补充。

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