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Variations on Negative Stain Electron Microscopy Methods: Tools for Tackling Challenging Systems

机译:负染色电子显微镜方法的变化:解决挑战性系统的工具

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摘要

Negative stain electron microscopy (EM) allows relatively simple and quick observation of macromolecules and macromolecular complexes through the use of contrast enhancing stain reagent. Although limited in resolution to a maximum of ~18 - 20 Å, negative stain EM is useful for a variety of biological problems and also provides a rapid means of assessing samples for cryo-electron microscopy (cryo-EM). The negative stain workflow is straightforward method; the sample is adsorbed onto a substrate, then a stain is applied, blotted, and dried to produce a thin layer of electron dense stain in which the particles are embedded. Individual samples can, however, behave in markedly different ways under varying staining conditions. This has led to the development of a large variety of substrate preparation techniques, negative staining reagents, and grid washing and blotting techniques. Determining the most appropriate technique for each individual sample must be done on a case-by-case basis and a microscopist must have access to a variety of different techniques to achieve the highest-quality negative stain results. Detailed protocols for two different substrate preparation methods and three different blotting techniques are provided, and an example of a sample that shows markedly different results depending on the method used is shown. In addition, the preparation of some common negative staining reagents, and two novel Lanthanide-based stains, is described with discussion regarding the use of each.
机译:负染色电子显微镜(EM)通过使用对比增强染色剂,可以相对简单快速地观察大分子和大分子复合物。尽管最大分辨率限制在〜18-20Å,负染色EM可用于多种生物学问题,并且还提供了一种快速评估冷冻电子显微镜(cryo-EM)样品的方法。负染工作流程是简单明了的方法。将样品吸附到基质上,然后施加污渍,吸干并干燥,以产生一层薄薄的电子致密污渍,其中嵌入了颗粒。但是,在变化的染色条件下,各个样品的表现方式可能会明显不同。这导致了各种各样的底物制备技术,阴性染色试剂以及网格洗涤和印迹技术的发展。为每个单独的样品确定最合适的技术必须视具体情况而定,显微镜师必须可以使用各种不同的技术来获得最高质量的负染色结果。提供了两种不同的底物制备方法和三种不同的印迹技术的详细方案,并显示了根据所使用的方法显示出明显不同结果的样品示例。另外,通过讨论每种试剂的用法描述了一些常见的阴性染色试剂和两种新型镧系元素染料的制备方法。

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