低温电镜综合微晶电子衍射样品制备。

IF 13.1 1区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
William J Nicolas, Cody Gillman, Sara J Weaver, Max T B Clabbers, Anna Shiriaeva, Ampon Sae Her, Michael W Martynowycz, Tamir Gonen
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引用次数: 0

摘要

微晶体电子衍射(MicroED)在从小分子到蛋白质的一系列样品类型中具有先进的结构方法。这种低温电子显微镜(cryo-EM)技术涉及电子束中小3D晶体的连续旋转,同时高速摄像机以电影的形式捕获衍射数据。晶体结构随后由已建立的x射线晶体学软件确定。MicroED是一种仍在发展中的技术,在样品制备、数据采集和处理方面的实际专业知识并不总是很容易获得。MicroED样品制备的综合指南解决了各种样品类别的常用方法,包括室温固态小分子和可溶性膜蛋白晶体。除了详细说明新用户的样品制备步骤,因为每个晶体需要独特的生长和样品制备条件,该资源提供了MicroED样品制备的说明和优化策略。该协议适用于具有生物化学,晶体学,一般低温电镜和晶体学数据处理专业知识的用户。MicroED实验,从样品玻璃化到最终结构,可能需要一个工作日到几个星期的时间,特别是当涉及低温聚焦离子束铣削时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comprehensive microcrystal electron diffraction sample preparation for cryo-EM.

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.

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来源期刊
Nature Protocols
Nature Protocols 生物-生化研究方法
CiteScore
29.10
自引率
0.70%
发文量
128
审稿时长
4 months
期刊介绍: Nature Protocols focuses on publishing protocols used to address significant biological and biomedical science research questions, including methods grounded in physics and chemistry with practical applications to biological problems. The journal caters to a primary audience of research scientists and, as such, exclusively publishes protocols with research applications. Protocols primarily aimed at influencing patient management and treatment decisions are not featured. The specific techniques covered encompass a wide range, including but not limited to: Biochemistry, Cell biology, Cell culture, Chemical modification, Computational biology, Developmental biology, Epigenomics, Genetic analysis, Genetic modification, Genomics, Imaging, Immunology, Isolation, purification, and separation, Lipidomics, Metabolomics, Microbiology, Model organisms, Nanotechnology, Neuroscience, Nucleic-acid-based molecular biology, Pharmacology, Plant biology, Protein analysis, Proteomics, Spectroscopy, Structural biology, Synthetic chemistry, Tissue culture, Toxicology, and Virology.
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