bioRxiv · 10.1101/557827
Programming conventional electron microscopes for solving ultrahigh-resolution structures of small and macro-molecules
Abstract
Microcrystal electron diffraction (MicroED) is becoming a powerful tool in determining the crystal structures of biological macromolecules and small organic compounds. However, wide applications of this technique are still limited by the special requirement for radiation-tolerated movie-mode camera and the lacking of automated data collection method. Herein, we develop a stage-camera synchronization scheme to minimize the hardware requirements and enable the use of the conventional electron cryo-microscope with single-frame CCD camera, which ensures not only the acquisition of ultrahigh-resolution diffraction data but also low cost in practice. This method renders the structure determination of both peptide and small organic compounds at ultrahigh resolution up to ~0.60 [A] with unambiguous assignment of nearly all hydrogen atoms. The present work provides a widely applicable solution for routine structure determination of MicroED, and demonstrates the capability of the low-end 120kV microscope with a CCD camera in solving ultra-high resolution structures of both organic compound and biological macromolecules.
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Zhou, H., Luo, F., Luo, Z., Li, D., Liu, C., Li, X.. 2019-02-22. Programming conventional electron microscopes for solving ultrahigh-resolution structures of small and macro-molecules. https://doi.org/10.1101/557827
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