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Time-resolved protein nanocrystallography using an X-ray free-electron laser

机译:使用X射线自由电子激光的时间分辨蛋白质纳米晶体学

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摘要

We demonstrate the use of an X-ray free electron laser synchronized with an optical pump laser to obtain X-ray diffraction snapshots from the photoactivated states of large membrane protein complexes in the form of nanocrystals flowing in a liquid jet. Light-induced changes of Photosystem I-Ferredoxin co-crystals were observed at time delays of 5 to 10 µs after excitation. The result correlates with the microsecond kinetics of electron transfer from Photosystem I to ferredoxin. The undocking process that follows the electron transfer leads to large rearrangements in the crystals that will terminally lead to the disintegration of the crystals. We describe the experimental setup and obtain the first time-resolved femtosecond serial X-ray crystallography results from an irreversible photo-chemical reaction at the Linac Coherent Light Source. This technique opens the door to time-resolved structural studies of reaction dynamics in biological systems.
机译:我们展示了与光泵浦激光器同步使用的X射线自由电子激光器,以从大型膜蛋白复合物的光激活状态以液体射流形式流动的纳米晶体的形式获得X射线衍射快照。激发后5到10 µs的时间延迟观察到光诱导的Photosystem I-Ferredoxin共晶体的变化。结果与电子从光系统I转移到铁氧还蛋白的微秒动力学有关。电子转移之后的解链过程导致晶体中发生大的重排,最终将导致晶体的分解。我们描述了实验装置,并从直线加速器相干光源上不可逆的光化学反应获得了第一时间分辨的飞秒系列X射线晶体学结果。该技术为生物系统中反应动力学的时间分辨结构研究打开了大门。

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