Nicolas William J, Gillman Cody, Weaver Sara J, Clabbers Max T B, Shiriaeva Anna, Her Ampon Sae, Martynowycz Michael W, Gonen Tamir
Howard Hughes Medical Institute, University of California Los Angeles, Los Angeles, CA, USA.
Department of Biological Chemistry, University of California Los Angeles, Los Angeles, CA, USA.
Nat Protoc. 2025 May;20(5):1275-1309. doi: 10.1038/s41596-024-01088-7. Epub 2024 Dec 20.
Microcrystal electron diffraction (MicroED) has advanced structural methods across a range of sample types, from small molecules to proteins. This cryogenic electron microscopy (cryo-EM) technique involves the continuous rotation of small 3D crystals in the electron beam, while a high-speed camera captures diffraction data in the form of a movie. The crystal structure is subsequently determined by using established X-ray crystallographic software. MicroED is a technique still under development, and hands-on expertise in sample preparation, data acquisition and processing is not always readily accessible. This comprehensive guide on MicroED sample preparation addresses commonly used methods for various sample categories, including room temperature solid-state small molecules and soluble and membrane protein crystals. Beyond detailing the steps of sample preparation for new users, and because every crystal requires unique growth and sample-preparation conditions, this resource provides instructions and optimization strategies for MicroED sample preparation. The protocol is suitable for users with expertise in biochemistry, crystallography, general cryo-EM and crystallography data processing. MicroED experiments, from sample vitrification to final structure, can take anywhere from one workday to multiple weeks, especially when cryogenic focused ion beam milling is involved.
微晶电子衍射(MicroED)已经推动了从小分子到蛋白质等一系列样品类型的结构分析方法的发展。这种低温电子显微镜(cryo-EM)技术涉及在电子束中对小型三维晶体进行连续旋转,同时高速相机以电影形式捕捉衍射数据。随后使用成熟的X射线晶体学软件确定晶体结构。MicroED仍是一项正在发展的技术,样品制备、数据采集和处理方面的实际操作专业知识并非总是容易获得。这本关于MicroED样品制备的综合指南介绍了针对各种样品类别的常用方法,包括室温固态小分子以及可溶性和膜蛋白晶体。除了为新用户详细介绍样品制备步骤外,由于每种晶体都需要独特的生长和样品制备条件,本资源还提供了MicroED样品制备的说明和优化策略。该方案适用于具有生物化学、晶体学、通用低温电子显微镜和晶体学数据处理专业知识的用户。从样品玻璃化到最终结构的MicroED实验可能需要一个工作日到数周的时间,特别是当涉及低温聚焦离子束铣削时。