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用于固定靶连续同步辐射晶体学的集成样品处理和安装系统。

Integrated sample-handling and mounting system for fixed-target serial synchrotron crystallography.

机构信息

Department of Chemistry and Chemical Biology, Cornell University, Ithaca, NY 14853, USA.

MiTeGen LLC, PO Box 3867, Ithaca, NY 14850, USA.

出版信息

Acta Crystallogr D Struct Biol. 2021 May 1;77(Pt 5):628-644. doi: 10.1107/S2059798321001868. Epub 2021 Apr 19.

Abstract

Serial synchrotron crystallography (SSX) is enabling the efficient use of small crystals for structure-function studies of biomolecules and for drug discovery. An integrated SSX system has been developed comprising ultralow background-scatter sample holders suitable for room and cryogenic temperature crystallographic data collection, a sample-loading station and a humid `gloveless' glovebox. The sample holders incorporate thin-film supports with a variety of designs optimized for different crystal-loading challenges. These holders facilitate the dispersion of crystals and the removal of excess liquid, can be cooled at extremely high rates, generate little background scatter, allow data collection over >90° of oscillation without obstruction or the risk of generating saturating Bragg peaks, are compatible with existing infrastructure for high-throughput cryocrystallography and are reusable. The sample-loading station allows sample preparation and loading onto the support film, the application of time-varying suction for optimal removal of excess liquid, crystal repositioning and cryoprotection, and the application of sealing films for room-temperature data collection, all in a controlled-humidity environment. The humid glovebox allows microscope observation of the sample-loading station and crystallization trays while maintaining near-saturating humidities that further minimize the risks of sample dehydration and damage, and maximize working times. This integrated system addresses common problems in obtaining properly dispersed, properly hydrated and isomorphous microcrystals for fixed-orientation and oscillation data collection. Its ease of use, flexibility and optimized performance make it attractive not just for SSX but also for single-crystal and few-crystal data collection. Fundamental concepts that are important in achieving desired crystal distributions on a sample holder via time-varying suction-induced liquid flows are also discussed.

摘要

连续同步辐射晶体学(SSX)正在实现小晶体在生物分子结构功能研究和药物发现中的高效利用。我们开发了一个集成的 SSX 系统,包括适用于室温及低温晶体学数据收集的超低背景散射样品架、样品加载站和无手套湿手套箱。样品架采用各种设计的薄膜支撑,优化用于不同的晶体加载挑战。这些支架有助于晶体的分散和多余液体的去除,可实现极高的冷却速率,产生的背景散射很少,在不产生饱和布拉格峰的情况下允许进行>90°的振荡数据收集,与现有的高通量 cryocrystallography 基础设施兼容,并且可重复使用。样品加载站允许在控制湿度的环境中进行样品制备和加载到支撑膜上、应用时变吸力以最佳去除多余液体、晶体重新定位和晶体保护、以及应用密封膜进行室温数据收集。湿手套箱允许在保持接近饱和湿度的情况下对样品加载站和结晶托盘进行显微镜观察,这进一步降低了样品脱水和损坏的风险,并最大限度地延长了工作时间。该集成系统解决了在固定取向和振荡数据收集方面获得适当分散、适当水合和同构微晶体方面的常见问题。其易用性、灵活性和优化性能使其不仅对 SSX 而且对单晶和少数晶体数据收集都具有吸引力。我们还讨论了通过时变吸力诱导的液体流动在样品架上实现所需晶体分布的重要基本概念。

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