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Nanosecond pump-probe device for time-resolved serial femtosecond crystallography developed at SACLA

机译:SACLA研发的用于时间分辨系列飞秒晶体学的纳秒泵浦探针装置

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摘要

X-ray free-electron lasers (XFELs) have opened new opportunities for timeresolved X-ray crystallography. Here a nanosecond optical-pump XFEL-probe device developed for time-resolved serial femtosecond crystallography (TRSFX) studies of photo-induced reactions in proteins at the SPring-8 Angstrom Compact free-electron LAser (SACLA) is reported. The optical-fiber-based system is a good choice for a quick setup in a limited beam time and allows pump illumination from two directions to achieve high excitation efficiency of protein microcrystals. Two types of injectors are used: one for extruding highly viscous samples such as lipidic cubic phase (LCP) and the other for pulsed liquid droplets. Under standard sample flow conditions from the viscous-sample injector, delay times from nanoseconds to tens of milliseconds are accessible, typical time scales required to study large protein conformational changes. A first demonstration of a TR-SFX experiment on bacteriorhodopsin in bicelle using a setup with a droplet-type injector is also presented.
机译:X射线自由电子激光器(XFEL)为时间分辨X射线晶体学打开了新的机遇。在此报道了为在SPring-8埃致密自由电子激光(SACLA)中对蛋白质中的光诱导反应进行时间分辨的串联飞秒晶体学(TRSFX)研究而开发的纳秒级光学泵XFEL探针设备。基于光纤的系统是在有限的光束时间内快速设置的理想选择,并允许从两个方向进行泵浦照明以实现蛋白质微晶的高激发效率。使用两种类型的进样器:一种用于挤出高粘性样品(如脂质立方相(LCP)),另一种用于脉冲液滴。在粘性样品进样器的标准样品流条件下,延迟时间可以从纳秒到数十毫秒不等,这是研究大的蛋白质构象变化所需的典型时间范围。还介绍了使用带液滴型注射器的装置对比索中细菌视紫红质进行TR-SFX实验的首次演示。

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