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Automated screening of 2D crystallization trials using transmission electron microscopy: A high-throughput tool-chain for sample preparation and microscopic analysis

机译:使用透射电子显微镜自动筛选2D结晶试验:用于样品制备和微观分析的高通量工具链

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摘要

We have built and extensively tested a tool-chain to prepare and screen two-dimensional crystals of membrane proteins by transmission electron microscopy (TEM) at room temperature. This automated process is an extension of a new procedure described recently that allows membrane protein 2D crystallization in parallel (Iacovache et al., 2010). The system includes a gantry robot that transfers and prepares the crystalline solutions on grids suitable for TEM analysis and an entirely automated microscope that can analyze 96 grids at once without human interference. The operation of the system at the user level is solely controlled within the MATLAB environment: the commands to perform sample handling (loading/unloading in the microscope), microscope steering (magnification, focus, image acquisition, etc.) as well as automatic crystal detection have been implemented. Different types of thin samples can efficiently be screened provided that the particular detection algorithm is adapted to the specific task. Hence, operating time can be shared between multiple users. This is a major step towards the integration of transmission electron microscopy into a high throughput work-flow.
机译:我们已经建立和广泛地测试了一种工具链,以通过在室温下通过透射电子显微镜(TEM)制备膜蛋白的二维晶体。该自动化过程是最近描述的新程序的延伸,其允许并行膜蛋白2D结晶(IACovache等,2010)。该系统包括龙门机器人,其转移并准备适于TEM分析的网格上的晶体溶液和完全自动显微镜,可以一次分析96个网格而没有人为干扰。在用户级别的系统的操作单独控制在MATLAB环境中:执行样品处理的命令(在显微镜中加载/卸载),显微镜转向(放大,焦点,图像采集等)以及自动晶体已经实施了检测。可以有效地筛选不同类型的薄样本,条件是特定检测算法适用于特定任务。因此,可以在多个用户之间共享操作时间。这是朝向将透射电子显微镜集成到高吞吐量工作流程的主要步骤。

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