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Using size-selected gold clusters on graphene oxide films to aid cryo-transmission electron tomography alignment

机译:在氧化石墨烯膜上使用尺寸选择的金团簇来辅助低温透射电子层析成像对准

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摘要

A three-dimensional reconstruction of a nano-scale aqueous object can be achieved by taking a series of transmission electron micrographs tilted at different angles in vitreous ice: cryo-Transmission Electron Tomography. Presented here is a novel method of fine alignment for the tilt series. Size-selected gold clusters of ~2.7 nm (Au561 ± 14), ~3.2 nm (Au923 ± 22), and ~4.3 nm (Au2057 ± 45) in diameter were deposited onto separate graphene oxide films overlaying holes on amorphous carbon grids. After plunge freezing and subsequent transfer to cryo-Transmission Electron Tomography, the resulting tomograms have excellent (de-)focus and alignment properties during automatic acquisition. Fine alignment is accurate when the evenly distributed 3.2 nm gold particles are used as fiducial markers, demonstrated with a reconstruction of a tobacco mosaic virus. Using a graphene oxide film means the fiducial markers are not interfering with the ice bound sample and that automated collection is consistent. The use of pre-deposited size-selected clusters means there is no aggregation and a user defined concentration. The size-selected clusters are mono-dispersed and can be produced in a wide size range including 2–5 nm in diameter. The use of size-selected clusters on a graphene oxide films represents a significant technical advance for 3D cryo-electron microscopy.
机译:可以通过拍摄一系列在玻璃冰中以不同角度倾斜的透射电子显微照片来实现纳米尺度水体的三维重建:低温透射电子层析成像。本文介绍了一种新颖的倾斜系列精细对准方法。直径选择的直径约为〜2.7 nm(Au561±14),〜3.2 nm(Au923±22)和〜4.3 nm(Au2057±45)的金簇沉积在单独的氧化石墨膜上,覆盖在无定形碳网格上的孔上。急速冷冻并随后转移至低温透射电子断层扫描后,所生成的断层图在自动采集过程中具有出色的(散焦)聚焦和对准特性。当均匀分布的3.2 nm的金颗粒用作基准标记时,精细对齐是准确的,并通过烟草花叶病毒的重建得到证明。使用氧化石墨烯膜意味着基准标记不会干扰冰结样本,并且自动收集是一致的。使用预先选择的大小选择的群集意味着没有聚集并且用户定义了集中度。尺寸选择的团簇是单分散的,可以在很宽的尺寸范围内生产,包括直径2–5 nm。在氧化石墨烯膜上使用尺寸选择的簇代表了3D低温电子显微镜的重要技术进步。

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