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利用高压冷冻保存的低温X射线衍射显微镜技术。

Cryogenic x-ray diffraction microscopy utilizing high-pressure cryopreservation.

作者信息

Lima Enju, Chushkin Yuriy, van der Linden Peter, Kim Chae Un, Zontone Federico, Carpentier Philippe, Gruner Sol M, Pernot Petra

机构信息

Photon Sciences, Brookhaven National Laboratory, Upton, NY, 11973 USA.

European Synchrotron Radiation Facility, 71, avenue des Martyrs 38000 Grenoble, France.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Oct;90(4):042713. doi: 10.1103/PhysRevE.90.042713. Epub 2014 Oct 15.

Abstract

We present cryo x-ray diffraction microscopy of high-pressure-cryofixed bacteria and report high-convergence imaging with multiple image reconstructions. Hydrated D. radiodurans cells were cryofixed at 200 MPa pressure into ∼10-μm-thick water layers and their unstained, hydrated cellular environments were imaged by phasing diffraction patterns, reaching sub-30-nm resolutions with hard x-rays. Comparisons were made with conventional ambient-pressure-cryofixed samples, with respect to both coherent small-angle x-ray scattering and the image reconstruction. The results show a correlation between the level of background ice signal and phasing convergence, suggesting that phasing difficulties with frozen-hydrated specimens may be caused by high-background ice scattering.

摘要

我们展示了高压冷冻固定细菌的低温X射线衍射显微镜技术,并报告了通过多次图像重建实现的高收敛成像。将水合状态的耐辐射球菌细胞在200兆帕压力下冷冻固定在约10微米厚的水层中,通过对衍射图案进行相位分析对其未染色的水合细胞环境进行成像,使用硬X射线达到了亚30纳米的分辨率。在相干小角X射线散射和图像重建方面,将其与传统常压冷冻固定样品进行了比较。结果表明背景冰信号水平与相位收敛之间存在相关性,这表明冷冻水合标本的相位分析困难可能是由高背景冰散射引起的。

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