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Macromolecular structures probed by combining single-shot free-electron laser diffraction with synchrotron coherent X-ray imaging

机译:通过单次自由电子激光衍射与同步加速器相干X射线成像相结合来探测大分子结构

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Nanostructures formed from biological macromolecular complexes utilizing the self-assembly properties of smaller building blocks such as DNA and RNA hold promise for many applications, including sensing and drug delivery. New tools are required for their structural characterization. Intense, femtosecond X-ray pulses from X-ray free-electron lasers enable single-shot imaging allowing for instantaneous views of nanostructures at ambient temperatures. When combined judiciously with synchrotron X-rays of a complimentary nature, suitable for observing steady-state features, it is possible to perform ab initio structural investigation. Here we demonstrate a successful combination of femtosecond X-ray single-shot diffraction with an X-ray free-electron laser and coherent diffraction imaging with synchrotron X-rays to provide an insight into the nanostructure formation of a biological macromolecular complex: RNA interference microsponges. This newly introduced multimodal analysis with coherent X-rays can be applied to unveil nano-scale structural motifs from functional nanomaterials or biological nanocomplexes, without requiring a priori knowledge.
机译:由生物大分子复合物形成的纳米结构利用较小的构建基块(如DNA和RNA)的自组装特性,有望在许多应用中使用,包括传感和药物递送。需要使用新工具进行结构表征。来自X射线自由电子激光器的强烈飞秒X射线脉冲使单次成像成为可能,从而可以在环境温度下即时观察纳米结构。当明智地与具有互补性质的同步加速器X射线结合使用时(适合观察稳态特征),可以进行从头开始的结构研究。在这里,我们证明了飞秒X射线单次衍射与X射线自由电子激光以及相干衍射成像与同步加速器X射线的成功结合,可提供对生物大分子复合物纳米结构形成的见解:RNA干扰微海绵。这种新近引入的具有相干X射线的多峰分析可用于揭示功能性纳米材料或生物纳米复合物的纳米级结构图案,而无需先验知识。

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