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A reproducible and scalable procedure for preparing bacterial extracts for cell-free protein synthesis

机译:一种可再现且可扩展的程序用于制备用于无细胞蛋白质合成的细菌提取物

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摘要

Cell-free protein synthesis is a useful method for preparing proteins for functional or structural analyses. However, batch-to-batch variability with regard to protein synthesis activity remains a problem for large-scale production of cell extract in the laboratory. To address this issue, we have developed a novel procedure for large-scale preparation of bacterial cell extract with high protein synthesis activity. The developed procedure comprises cell cultivation using a fermentor, harvesting and washing of cells by tangential flow filtration, cell disruption with high-pressure homogenizer and continuous diafiltration. By optimizing and combining these methods, ∼100 ml of the cell extract was prepared from 150 g of cells. The protein synthesis activities, defined as the yield of protein per unit of absorbance at 260 nm of the cell extract, were shown to be reproducible, and the average activity of several batches was twice that obtained using a previously reported method. In addition, combinatorial use of the high-pressure homogenizer and diafiltration increased the scalability, indicating that the cell concentration at disruption varies from 0.04 to 1 g/ml. Furthermore, addition of Gam protein and examinations of the N-terminal sequence rendered the extract prepared here useful for rapid screening with linear DNA templates.
机译:无细胞蛋白质合成是制备蛋白质以进行功能或结构分析的有用方法。然而,对于蛋白质合成活性而言,批次间的可变性仍然是实验室中大规模生产细胞提取物的问题。为了解决这个问题,我们开发了一种新的程序,用于大规模制备具有高蛋白质合成活性的细菌细胞提取物。开发的程序包括使用发酵罐进行细胞培养,通过切向流过滤收集和洗涤细胞,用高压均质器破碎细胞并进行连续渗滤。通过优化和组合这些方法,从150 g细胞中制备了约100 ml细胞提取物。蛋白质合成活性定义为细胞提取物在260 nm处每单位吸光度的蛋白质产量,可再现,并且几批的平均活性是使用先前报道的方法获得的两倍。此外,高压均质器和渗滤的组合使用增加了可扩展性,表明破裂时的细胞浓度从0.04到1 g / ml不等。此外,添加Gam蛋白和检查N端序列使此处制备的提取物可用于线性DNA模板的快速筛选。

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