Svensson Olof, Malbet-Monaco Stéphanie, Popov Alexander, Nurizzo Didier, Bowler Matthew W
European Synchrotron Radiation Facility, 71 Avenue des Martyrs, CS 40220, 38043 Grenoble, France.
European Molecular Biology Laboratory, Grenoble Outstation, 71 Avenue des Martyrs, CS 90181, 38042 Grenoble, France.
Acta Crystallogr D Biol Crystallogr. 2015 Aug;71(Pt 8):1757-67. doi: 10.1107/S1399004715011918. Epub 2015 Jul 31.
Considerable effort is dedicated to evaluating macromolecular crystals at synchrotron sources, even for well established and robust systems. Much of this work is repetitive, and the time spent could be better invested in the interpretation of the results. In order to decrease the need for manual intervention in the most repetitive steps of structural biology projects, initial screening and data collection, a fully automatic system has been developed to mount, locate, centre to the optimal diffraction volume, characterize and, if possible, collect data from multiple cryocooled crystals. Using the capabilities of pixel-array detectors, the system is as fast as a human operator, taking an average of 6 min per sample depending on the sample size and the level of characterization required. Using a fast X-ray-based routine, samples are located and centred systematically at the position of highest diffraction signal and important parameters for sample characterization, such as flux, beam size and crystal volume, are automatically taken into account, ensuring the calculation of optimal data-collection strategies. The system is now in operation at the new ESRF beamline MASSIF-1 and has been used by both industrial and academic users for many different sample types, including crystals of less than 20 µm in the smallest dimension. To date, over 8000 samples have been evaluated on MASSIF-1 without any human intervention.
即便对于成熟且稳定的体系,在同步辐射光源下评估大分子晶体仍需投入大量精力。这项工作的大部分是重复性的,所花费的时间可以更好地用于结果解读。为了减少结构生物学项目中最具重复性的步骤(初始筛选和数据收集)对人工干预的需求,已开发出一种全自动系统,用于安装、定位、将晶体中心对准最佳衍射区域、表征晶体,并在可能的情况下从多个低温冷却晶体收集数据。利用像素阵列探测器的功能,该系统与人工操作速度相当,根据样品大小和所需表征水平,每个样品平均耗时6分钟。通过基于快速X射线的程序,样品会被系统地定位并置于衍射信号最强的位置,同时自动考虑用于样品表征的重要参数,如通量、光束尺寸和晶体体积,从而确保计算出最佳的数据收集策略。该系统目前在欧洲同步辐射装置(ESRF)的新光束线MASSIF - 1上运行,已被工业界和学术界用户用于多种不同类型的样品,包括最小尺寸小于20微米的晶体。迄今为止,在MASSIF - 1上已对8000多个样品进行了评估,且无任何人工干预。