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Drop-on-demand sample delivery for studying biocatalysts in action at X-ray free-electron lasers

机译:按需滴送样品,用于研究在X射线自由电子激光器中起作用的生物催化剂

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摘要

X-ray crystallography at X-ray free-electron laser sources is a powerful method for studying macromolecules at biologically relevant temperatures. Moreover, when combined with complementary techniques like X-ray emission spectroscopy, both global structures and chemical properties of metalloenzymes can be obtained concurrently, providing insights into the interplay between the protein structure and dynamics and the chemistry at an active site. The implementation of such a multimodal approach can be compromised by conflicting requirements to optimize each individual method. In particular, the method used for sample delivery greatly affects the data quality. We present here a robust way of delivering controlled sample amounts on demand using acoustic droplet ejection coupled with a conveyor belt drive that is optimized for crystallography and spectroscopy measurements of photochemical and chemical reactions over a wide range of time scales. Studies with photosystem II, the phytochrome photoreceptor, and ribonucleotide reductase R2 illustrate the power and versatility of this method.
机译:X射线自由电子激光源的X射线晶体学是研究在生物学相关温度下大分子的有力方法。此外,当与X射线发射光谱等辅助技术结合使用时,可以同时获得金属酶的整体结构和化学性质,从而洞悉蛋白质结构与动力学之间的相互作用以及活性部位的化学作用。为了优化每个单独的方法,相互矛盾的要求可能会损害这种多模式方法的实现。特别是,用于样品输送的方法极大地影响了数据质量。我们在这里介绍一种可靠的方法,该方法使用声滴喷射结合输送带驱动器按需提供受控样品量,该输送带驱动器针对在宽泛的时间范围内对光化学和化学反应的晶体学和光谱学测量进行了优化。用光系统II,植物色素光感受器和核糖核苷酸还原酶R2进行的研究说明了该方法的功能和多功能性。

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