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Acoustic methods for high-throughput protein crystal mounting at next-generation macromolecular crystallographic beamlines

机译:下一代大分子晶体束线高通量蛋白质晶体的声学方法

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摘要

To take full advantage of advanced data collection techniques and high beam flux at next-generation macromolecular crystallography beamlines, rapid and reliable methods will be needed to mount and align many samples per second. One approach is to use an acoustic ejector to eject crystal-containing droplets onto a solid X-ray transparent surface, which can then be positioned and rotated for data collection. Proof-of-concept experiments were conducted at the National Synchrotron Light Source on thermolysin crystals acoustically ejected onto a polyimide ‘conveyor belt’. Small wedges of data were collected on each crystal, and a complete dataset was assembled from a well diffracting subset of these crystals. Future developments and implementation will focus on achieving ejection and translation of single droplets at a rate of over one hundred per second.
机译:为了充分利用先进的数据收集技术和下一代大分子晶体学光束线的高光束通量,将需要快速且可靠的方法来每秒安装和对准许多样品。一种方法是使用声学喷射器将包含晶体的液滴喷射到固体X射线透明表面上,然后可以对其进行定位和旋转以收集数据。概念验证实验是在国家同步加速器光源上进行的,以声学方式喷射到聚酰亚胺“传送带”上的热敏晶体进行了实验。在每个晶体上收集少量数据,并从这些晶体的良好衍射子集中组装出完整的数据集。未来的发展和实施将集中于以每秒一百多个的速度实现单个液滴的喷射和移动。

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