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Fully Mechanically Controlled Automated Electron Microscopic Tomography

机译:全机械控制的自动电子显微断层扫描

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摘要

Knowledge of three-dimensional (3D) structures of each individual particles of asymmetric and flexible proteins is essential in understanding those proteins’ functions; but their structures are difficult to determine. Electron tomography (ET) provides a tool for imaging a single and unique biological object from a series of tilted angles, but it is challenging to image a single protein for three-dimensional (3D) reconstruction due to the imperfect mechanical control capability of the specimen goniometer under both a medium to high magnification (approximately 50,000–160,000×) and an optimized beam coherence condition. Here, we report a fully mechanical control method for automating ET data acquisition without using beam tilt/shift processes. This method could reduce the accumulation of beam tilt/shift that used to compensate the error from the mechanical control, but downgraded the beam coherence. Our method was developed by minimizing the error of the target object center during the tilting process through a closed-loop proportional-integral (PI) control algorithm. The validations by both negative staining (NS) and cryo-electron microscopy (cryo-EM) suggest that this method has a comparable capability to other ET methods in tracking target proteins while maintaining optimized beam coherence conditions for imaging.
机译:不对称和灵活的蛋白质的每个单独颗粒的三维(3D)结构知识对于理解这些蛋白质的功能至关重要。但是它们的结构很难确定。电子断层扫描(ET)提供了一种从一系列倾斜角度对单个唯一的生物对象成像的工具,但是由于标本的机械控制能力不完善,很难对单个蛋白质进行三维(3D)重建成像测角仪在中等至高倍率(约50,000–160,000×)和最佳光束相干条件下均可使用。在这里,我们报告了一种完全机械控制的方法,用于自动进行ET数据采集,而无需使用光束倾斜/移位过程。这种方法可以减少用于补偿机械控制误差的光束倾斜/移位累积,但会降低光束相干性。我们的方法是通过使用闭环比例积分(PI)控制算法将倾斜过程中目标物体中心的误差最小化而开发的。阴性染色(NS)和冷冻电子显微镜(cryo-EM)的验证表明,该方法在追踪目标蛋白的同时,还具有与其他ET方法相当的能力,同时可以保持优化的成像束相干条件。

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