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细胞试剂的制备和使用:一个低资源分子生物学试剂平台。

Preparation and Use of Cellular Reagents: A Low-resource Molecular Biology Reagent Platform.

机构信息

Department of Molecular Biosciences, College of Natural Sciences, The University of Texas at Austin, Austin, Texas.

Center for Systems and Synthetic Biology, The University of Texas at Austin, Austin, Texas.

出版信息

Curr Protoc. 2022 Mar;2(3):e387. doi: 10.1002/cpz1.387.

Abstract

Protein reagents are indispensable for most molecular and synthetic biology procedures. Most conventional protocols rely on highly purified protein reagents that require considerable expertise, time, and infrastructure to produce. In consequence, most proteins are acquired from commercial sources, reagent expense is often high, and accessibility may be hampered by shipping delays, customs barriers, geopolitical constraints, and the need for a constant cold chain. Such limitations to the widespread availability of protein reagents, in turn, limit the expansion and adoption of molecular biology methods in research, education, and technology development and application. Here, we describe protocols for producing a low-resource and locally sustainable reagent delivery system, termed "cellular reagents," in which bacteria engineered to overexpress proteins of interest are dried and can then be used directly as reagent packets in numerous molecular biology reactions, without the need for protein purification or a constant cold chain. As an example of their application, we describe the execution of polymerase chain reaction (PCR) and loop-mediated isothermal amplification (LAMP) using cellular reagents, detailing how to replace pure protein reagents with optimal amounts of rehydrated cellular reagents. We additionally describe a do-it-yourself fluorescence visualization device for using these cellular reagents in common molecular biology applications. The methods presented in this article can be used for low-cost, on-site production of commonly used molecular biology reagents (including DNA and RNA polymerases, reverse transcriptases, and ligases) with minimal instrumentation and expertise, and without the need for protein purification. Consequently, these methods should generally make molecular biology reagents more affordable and accessible. © 2022 Wiley Periodicals LLC. Basic Protocol 1: Preparation of cellular reagents Alternate Protocol 1: Preparation of lyophilized cellular reagents Alternate Protocol 2: Evaluation of bacterial culture growth via comparison to McFarland turbidity standards Support Protocol 1: SDS-PAGE for protein expression analysis of cellular reagents Basic Protocol 2: Using Taq DNA polymerase cellular reagents for PCR Basic Protocol 3: Using Br512 DNA polymerase cellular reagents for loop-mediated isothermal amplification (LAMP) Support Protocol 2: Building a fluorescence visualization device.

摘要

蛋白质试剂是大多数分子和合成生物学实验不可或缺的。大多数传统的方案依赖于高度纯化的蛋白质试剂,这些试剂需要大量的专业知识、时间和基础设施来生产。因此,大多数蛋白质都是从商业来源获得的,试剂费用通常很高,而且由于运输延迟、海关壁垒、地缘政治限制以及对冷链的需求,可获得性可能会受到阻碍。蛋白质试剂的广泛供应受到这种限制,反过来又限制了分子生物学方法在研究、教育和技术开发和应用中的扩展和采用。在这里,我们描述了一种生产低资源和本地可持续试剂输送系统的方案,称为“细胞试剂”,其中过表达感兴趣的蛋白质的细菌被干燥,然后可以直接用作许多分子生物学反应中的试剂包,而无需进行蛋白质纯化或保持冷链。作为其应用的一个例子,我们描述了使用细胞试剂进行聚合酶链反应(PCR)和环介导等温扩增(LAMP)的执行情况,详细说明了如何用最佳量的复水细胞试剂替代纯蛋白质试剂。我们还描述了一种用于在常见分子生物学应用中使用这些细胞试剂的 DIY 荧光可视化设备。本文介绍的方法可以使用最小的仪器和专业知识,以低成本、现场生产常用的分子生物学试剂(包括 DNA 和 RNA 聚合酶、逆转录酶和连接酶),而无需进行蛋白质纯化。因此,这些方法通常应该使分子生物学试剂更经济实惠和易于获得。© 2022 威立公司。基础方案 1:细胞试剂的制备备选方案 1:冻干细胞试剂的制备备选方案 2:通过与麦克法兰浊度标准比较评估细菌培养物的生长支持方案 1:SDS-PAGE 用于细胞试剂的蛋白质表达分析基本方案 2:使用 Taq DNA 聚合酶细胞试剂进行 PCR 基本方案 3:使用 Br512 DNA 聚合酶细胞试剂进行环介导等温扩增(LAMP)支持方案 2:构建荧光可视化设备。

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