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Fixed-target serial oscillation crystallography at room temperature

机译:室温下的固定目标串联振荡晶体学

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A fixed-target approach to high-throughput room-temperature serial synchrotron crystallography with oscillation is described. Patterned silicon chips with microwells provide high crystal-loading density with an extremely high hit rate. The microfocus, undulator-fed beamline at CHESS, which has compound refractive optics and a fast-framing detector, was built and optimized for this experiment. The high-throughput oscillation method described here collects 1–5° of data per crystal at room temperature with fast (10° s−1) oscillation rates and translation times, giving a crystal-data collection rate of 2.5 Hz. Partial datasets collected by the oscillation method at a storage-ring source provide more complete data per crystal than still images, dramatically lowering the total number of crystals needed for a complete dataset suitable for structure solution and refinement – up to two orders of magnitude fewer being required. Thus, this method is particularly well suited to instances where crystal quantities are low. It is demonstrated, through comparison of first and last oscillation images of two systems, that dose and the effects of radiation damage can be minimized through fast rotation and low angular sweeps for each crystal.
机译:描述了具有振荡的高通量室温串行同步加速器晶体学的固定目标方法。具有微孔的图案化硅芯片可提供很高的晶体装载密度和极高的命中率。 CHESS的微焦点,起伏器馈送的光束线具有复合折射光学器件和快速成帧检测器,并为此实验进行了优化。这里描述的高通量振荡方法在室温下以快速的(10°s-1)振荡速率和转换时间收集每个晶体1-5°的数据,从而获得2.5 Hz的晶体数据收集速率。通过振荡方法在存储环源处收集的部分数据集比静止图像提供的每个晶体更完整的数据,从而显着减少了适用于结构求解和精细化的完整数据集所需的晶体总数–最多减少了两个数量级需要。因此,该方法特别适合于晶体数量少的情况。通过比较两个系统的第一个和最后一个振荡图像,可以证明,通过快速旋转和低角度扫掠每个晶体,可以将剂量和辐射损伤的影响降至最低。

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