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水痘病毒感染细胞的冷冻 X 射线纳米断层扫描。

Cryo X-ray nano-tomography of vaccinia virus infected cells.

机构信息

Centro Nacional de Biotecnología-Consejo Superior de Investigaciones Científicas, Campus Cantoblanco, 28049 Madrid, Spain.

出版信息

J Struct Biol. 2012 Feb;177(2):202-11. doi: 10.1016/j.jsb.2011.12.001. Epub 2011 Dec 8.

Abstract

We have performed full-field cryo X-ray microscopy in the water window photon energy range on vaccinia virus (VACV) infected cells to produce tomographic reconstructions. PtK2 cells were infected with a GFP-expressing VACV strain and frozen by plunge fast freezing. The infected cells were selected by light fluorescence microscopy of the GFP marker and subsequently imaged in the X-ray microscope under cryogenic conditions. Tomographic tilt series of X-ray images were used to yield three-dimensional reconstructions showing different cell organelles (nuclei, mitochondria, filaments), together with other structures derived from the virus infection. Among them, it was possible to detect viral factories and two types of viral particles related to different maturation steps of VACV (immature and mature particles), which were compared to images obtained by standard electron microscopy of the same type of cells. In addition, the effect of radiation damage during X-ray tomographic acquisition was analyzed. Thin sections studied by electron microscopy revealed that the morphological features of the cells do not present noticeable changes after irradiation. Our findings show that cryo X-ray nano-tomography is a powerful tool for collecting three-dimensional structural information from frozen, unfixed, unstained whole cells with sufficient resolution to detect different virus particles exhibiting distinct maturation levels.

摘要

我们在水窗光子能量范围内对感染牛痘病毒(VACV)的细胞进行了全场冷冻 X 射线显微镜检查,以生成断层重建图像。PtK2 细胞被 GFP 表达的 VACV 株感染,并通过骤冷快速冷冻进行冷冻。通过 GFP 标记的荧光显微镜选择感染的细胞,然后在低温条件下的 X 射线显微镜下进行成像。使用 X 射线图像的断层倾斜系列来产生三维重建,显示不同的细胞细胞器(核、线粒体、纤维),以及来自病毒感染的其他结构。其中,可以检测到病毒工厂和两种与 VACV 不同成熟阶段相关的病毒颗粒(不成熟和成熟颗粒),并将其与相同类型细胞的标准电子显微镜获得的图像进行比较。此外,还分析了 X 射线断层扫描采集过程中的辐射损伤效应。电子显微镜研究的薄切片显示,照射后细胞的形态特征没有明显变化。我们的研究结果表明,冷冻 X 射线纳米断层扫描是一种从冷冻、未固定、未染色的整个细胞中收集三维结构信息的强大工具,具有足够的分辨率,可以检测到不同的病毒颗粒,这些颗粒表现出不同的成熟水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29cc/7119024/f8b65f6297b4/gr1_lrg.jpg

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