Rodriguez J A, Gonen T
UCLA-DOE Institute, University of California, Los Angeles CA, United States.
Janelia Research Campus, Howard Hughes Medical Institute, Ashburn VA, United States.
Methods Enzymol. 2016;579:369-92. doi: 10.1016/bs.mie.2016.04.017. Epub 2016 Jun 16.
Microelectron diffraction (MicroED) is a new cryo-electron microscopy (cryo-EM) method capable of determining macromolecular structures at atomic resolution from vanishingly small 3D crystals. MicroED promises to solve atomic resolution structures from even the tiniest of crystals, less than a few hundred nanometers thick. MicroED complements frontier advances in crystallography and represents part of the rebirth of cryo-EM that is making macromolecular structure determination more accessible for all. Here we review the concept and practice of MicroED, for both the electron microscopist and crystallographer. Where other reviews have addressed specific details of the technique (Hattne et al., 2015; Shi et al., 2016; Shi, Nannenga, Iadanza, & Gonen, 2013), we aim to provide context and highlight important features that should be considered when performing a MicroED experiment.
微电子衍射(MicroED)是一种新型低温电子显微镜(cryo-EM)方法,能够从极小的三维晶体中以原子分辨率确定大分子结构。MicroED有望解析出甚至最微小晶体(厚度不到几百纳米)的原子分辨率结构。MicroED补充了晶体学的前沿进展,是低温电子显微镜复兴的一部分,这使得大分子结构测定对所有人来说都更容易实现。在此,我们为电子显微镜工作者和晶体学家回顾了MicroED的概念和实践。其他综述已探讨了该技术的具体细节(哈特内等人,2015年;施等人,2016年;施、南嫩加、亚丹扎和戈嫩,2013年),我们旨在提供背景信息,并突出进行MicroED实验时应考虑的重要特征。