Institute for Physical and Theoretical Chemistry-NanoBioSciences, Technische Universität Braunschweig, Braunschweig, Germany.
Nat Protoc. 2014;9(6):1367-91. doi: 10.1038/nprot.2014.079. Epub 2014 May 15.
Validating and testing a fluorescence microscope or a microscopy method requires defined samples that can be used as standards. DNA origami is a new tool that provides a framework to place defined numbers of small molecules such as fluorescent dyes or proteins in a programmed geometry with nanometer precision. The flexibility and versatility in the design of DNA origami microscopy standards makes them ideally suited for the broad variety of emerging super-resolution microscopy methods. As DNA origami structures are durable and portable, they can become a universally available specimen to check the everyday functionality of a microscope. The standards are immobilized on a glass slide, and they can be imaged without further preparation and can be stored for up to 6 months. We describe a detailed protocol for the design, production and use of DNA origami microscopy standards, and we introduce a DNA origami rectangle, bundles and a nanopillar as fluorescent nanoscopic rulers. The protocol provides procedures for the design and realization of fluorescent marks on DNA origami structures, their production and purification, quality control, handling, immobilization, measurement and data analysis. The procedure can be completed in 1-2 d.
验证和测试荧光显微镜或显微镜方法需要定义的样本,这些样本可以作为标准。DNA 折纸术是一种新工具,它提供了一个框架,可以将定义数量的小分子(如荧光染料或蛋白质)以纳米精度放置在编程的几何形状中。DNA 折纸术显微镜标准在设计上的灵活性和多功能性使它们非常适合各种新兴的超分辨率显微镜方法。由于 DNA 折纸术结构耐用且易于携带,因此它们可以成为一种普遍可用的标本,用于检查显微镜的日常功能。这些标准被固定在载玻片上,可以在无需进一步准备的情况下进行成像,并可以储存长达 6 个月。我们描述了设计、制作和使用 DNA 折纸术显微镜标准的详细方案,并介绍了 DNA 折纸术矩形、束和纳米柱作为荧光纳米级标尺。该方案提供了在 DNA 折纸术结构上设计和实现荧光标记、生产和纯化、质量控制、处理、固定、测量和数据分析的程序。整个过程可以在 1-2 天内完成。