Department for Atomically Resolved Dynamics, Max Planck Institute for the Structure and Dynamics of Matter, Luruper Chaussee 149, 22761 Hamburg, Germany.
Department of Medical Biophysics, University of Toronto, 101 College Street, Toronto, Ontario M5G 1L7, Canada.
Sci Adv. 2021 Mar 17;7(12). doi: 10.1126/sciadv.abf1380. Print 2021 Mar.
For the two proteins myoglobin and fluoroacetate dehalogenase, we present a systematic comparison of crystallographic diffraction data collected by serial femtosecond (SFX) and serial synchrotron crystallography (SSX). To maximize comparability, we used the same batch of micron-sized crystals, the same sample delivery device, and the same data analysis software. Overall figures of merit indicate that the data of both radiation sources are of equivalent quality. For both proteins, reasonable data statistics can be obtained with approximately 5000 room-temperature diffraction images irrespective of the radiation source. The direct comparability of SSX and SFX data indicates that the quality of diffraction data obtained from these samples is linked to the properties of the crystals rather than to the radiation source. Therefore, for other systems with similar properties, time-resolved experiments can be conducted at the radiation source that best matches the desired time resolution.
对于肌红蛋白和氟代乙酸脱卤酶这两种蛋白质,我们系统比较了通过连续飞秒(SFX)和连续同步辐射晶体学(SSX)收集的晶体学衍射数据。为了最大化可比性,我们使用了同一批微米大小的晶体、相同的样品输送装置和相同的数据分析软件。总体质量指标表明,两种辐射源的数据质量相当。对于这两种蛋白质,无论辐射源如何,大约 5000 张室温衍射图像就可以获得合理的数据统计。SSX 和 SFX 数据的直接可比性表明,从这些样品中获得的衍射数据的质量与晶体的性质有关,而与辐射源无关。因此,对于具有类似性质的其他系统,可以在最符合所需时间分辨率的辐射源上进行时间分辨实验。