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Lipidic cubic phase injector is a viable crystal delivery system for time-resolved serial crystallography

机译:脂质立方相注射器是用于时间分辨串联晶体学的可行的晶体输送系统

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摘要

Serial femtosecond crystallography (SFX) using X-ray free-electron laser sources is an emerging method with considerable potential for time-resolved pump-probe experiments. Here we present a lipidic cubic phase SFX structure of the light-driven proton pump bacteriorhodopsin (bR) to 2.3 Å resolution and a method to investigate protein dynamics with modest sample requirement. Time-resolved SFX (TR-SFX) with a pump-probe delay of 1 ms yields difference Fourier maps compatible with the dark to M state transition of bR. Importantly, the method is very sample efficient and reduces sample consumption to about 1 mg per collected time point. Accumulation of M intermediate within the crystal lattice is confirmed by time-resolved visible absorption spectroscopy. This study provides an important step towards characterizing the complete photocycle dynamics of retinal proteins and demonstrates the feasibility of a sample efficient viscous medium jet for TR-SFX.
机译:使用X射线自由电子激光源的连续飞秒晶体学(SFX)是一种新兴的方法,具有潜力可用于时间分辨泵浦探针实验。在这里,我们介绍了光驱动质子泵细菌视紫红质(bR)的脂质立方相SFX结构,其分辨率达到2.3Å,并且以适度的样品需求研究了蛋白质动力学。时间分辨SFX(TR-SFX)的泵浦探测延迟为1µms,产生的差分傅里叶图与bR的从暗到M状态跃迁兼容。重要的是,该方法具有很高的样品效率,并且可以将每个采集时间点的样品消耗降低至约1μmg。通过时间分辨的可见吸收光谱法确认了M中间体在晶格中的积累。这项研究为表征视网膜蛋白的完整光循环动力学提供了重要的一步,并证明了用于TR-SFX的样品有效粘性介质喷射器的可行性。

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