首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >High-resolution structure of viruses from random diffraction snapshots
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High-resolution structure of viruses from random diffraction snapshots

机译:来自随机衍射快照的高分辨率病毒结构

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摘要

The advent of the X-ray free-electron laser (XFEL) has made it possible to record diffraction snapshots of biological entities injected into the X-ray beam before the onset of radiation damage. Algorithmic means must then be used to determine the snapshot orientations and thence the three-dimensional structure of the object. Existing Bayesian approaches are limited in reconstruction resolution typically to 1/10 of the object diameter, with the computational expense increasing as the eighth power of the ratio of diameter to resolution. We present an approach capable of exploiting object symmetries to recover three-dimensional structure to high resolution, and thus reconstruct the structure of the satellite tobacco necrosis virus to atomic level. Our approach offers the highest reconstruction resolution for XFEL snapshots to date and provides a potentially powerful alternative route for analysis of data from crystalline and nano-crystalline objects.
机译:X射线自由电子激光器(XFEL)的出现使得有可能在辐射损坏发生之前记录注入X射线束中的生物实体的衍射快照。然后必须使用算法手段确定快照方向,然后确定对象的三维结构。现有的贝叶斯方法通常将重建分辨率限制为物体直径的1/10,而计算费用则随直径与分辨率之比的八次方增加而增加。我们提出一种能够利用对象对称性将三维结构恢复到高分辨率的方法,从而将卫星烟草坏死病毒的结构重建到原子水平。我们的方法为XFEL快照提供了迄今为止最高的重建分辨率,并为分析晶体和纳米晶体物体的数据提供了潜在强大的替代途径。

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