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Protein and Organic-Molecular Crystallography With 300kV Electrons on a Direct Electron Detector

机译:蛋白质和有机分子结晶与直接电子检测器上的300kV电子

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Electron 3D crystallography can reveal the atomic structure from undersized crystals of various samples owing to the strong scattering power of electrons. Here, a direct electron detector DE64 was tested for small and thin crystals of protein and an organic molecule using a JEOL CRYO ARM 300 electron microscope. The microscope is equipped with a cold-field emission gun operated at an accelerating voltage of 300 kV, quad condenser lenses for parallel illumination, an in-column energy filter, and a stable rotational goniometer stage. Rotational diffraction data were collected in an unsupervised manner from crystals of a heme-binding enzyme catalase and a representative organic semiconductor material Ph-BTBT-C10. The structures were determined by molecular replacement for catalase and by the direct method for Ph-BTBT-C10. The analyses demonstrate that the system works well for electron 3D crystallography of these molecules with less damaging than using the conventional scintillator-coupled camera.
机译:由于电子的强散射力,电子3D晶体学可以揭示来自各种样品的口径的原子结构。这里,使用Jeol Cryo臂300电子显微镜测试直接电子检测器DE64的蛋白质和有机分子的小和薄晶体。显微镜配备有冷场发射枪,其在300kV的加速电压下操作,用于平行照明,列电能过滤器和稳定的旋转焦仪级。从血红结合酶过氧化氢酶的晶体和代表性有机半导体材料pH-BTBT-C10的晶体中以无预测的方式收集旋转衍射数据。该结构通过分子置换过氧化氢酶和PH-BTBT-C10的直接方法来确定。分析表明,该系统适用于这些分子的电子3D晶体学,这些分子的损坏较小而不是使用传统的闪烁体耦合的相机。

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