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Collecting data in the home laboratory: evolution of X-ray sources detectors and working practices

机译:在家庭实验室中收集数据:X射线源探测器和工作方法的演变

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摘要

While the majority of macromolecular X-ray data are currently collected using highly efficient beamlines at an ever-increasing number of synchrotrons, there is still a need for high-performance reliable systems for in-house experiments. In addition to crystal screening and optimization of data-collection parameters before a synchrotron trip, the home system allows the collection of data as soon as the crystals are produced to obtain the solution of novel structures, especially by the molecular-replacement method, and is invaluable in achieving the quick turnover that is often required for ligand-binding studies in the pharmaceutical industry. There has been a continuous evolution of X-ray sources, detectors and software developed for in-house use in recent years and a diverse range of tools for structural biology laboratories are available. An overview of the main directions of these developments and examples of specific solutions available to the macromolecular crystallography community are presented in this paper, showing that data collection ‘at home’ is still an attractive proposition complementing the use of synchrotron beamlines.
机译:尽管目前大多数的X射线大分子数据是使用高效束线以越来越多的同步加速器收集的,但仍然需要用于室内实验的高性能可靠系统。除了在同步加速器跳闸之前进行晶体筛选和优化数据收集参数外,家用系统还允许在晶体生产后立即收集数据,从而获得新颖结构的解决方案,尤其是通过分子置换方法。在实现制药行业配体结合研究通常需要的快速周转方面具有不可估量的价值。近年来,为内部使用而开发的X射线源,检测器和软件一直在不断发展,并且有各种用于结构生物学实验室的工具可供使用。本文介绍了这些发展的主要方向,以及大分子晶体学界可用的特定解决方案的示例,表明“在家”进行数据收集仍然是对同步加速器束线使用的一种有吸引力的主张。

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