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Correlations in Scattered X-Ray Laser Pulses Reveal Nanoscale Structural Features of Viruses

机译:散射X射线激光脉冲中的相关性揭示了病毒的纳米级结构特征。

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摘要

We use extremely bright and ultrashort pulses from an x-ray free-electron laser (XFEL) to measure correlations in x rays scattered from individual bioparticles. This allows us to go beyond the traditional crystallography and single-particle imaging approaches for structure investigations. We employ angular correlations to recover the three-dimensional (3D) structure of nanoscale viruses from x-ray diffraction data measured at the Linac Coherent Light Source. Correlations provide us with a comprehensive structural fingerprint of a 3D virus, which we use both for model-based and ab initio structure recovery. The analyses reveal a clear indication that the structure of the viruses deviates from the expected perfect icosahedral symmetry. Our results anticipate exciting opportunities for XFEL studies of the structure and dynamics of nanoscale objects by means of angular correlations.
机译:我们使用来自X射线自由电子激光(XFEL)的极亮和超短脉冲来测量从单个生物颗粒散射的X射线的相关性。这使我们能够超越传统的晶体学和单颗粒成像方法进行结构研究。我们采用角度相关性,从直线加速器相干光源处测得的X射线衍射数据中恢复了纳米级病毒的三维(3D)结构。相关性为我们提供了3D病毒的全面结构指纹,我们将其用于基于模型的恢复和从头开始的结构恢复。分析表明,病毒的结构明显偏离了预期的理想二十面体对称性。我们的结果为通过XFEL研究通过角度相关的纳米尺度物体的结构和动力学提供了令人兴奋的机会。

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