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首页> 外文期刊>Journal of Laboratory Automation >Edwin: A Robotic Platform for Automated RNA Extraction and Analysis during Reporter Gene–Based Dynamic Characterization of Bacterial Promoters
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Edwin: A Robotic Platform for Automated RNA Extraction and Analysis during Reporter Gene–Based Dynamic Characterization of Bacterial Promoters

机译:Edwin:一个基于Reporter基因的细菌启动子动态表征过程中自动RNA提取和分析的机器人平台

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Characterization of gene expression is a central tenet of the synthetic biology design cycle. Sometimes it requires high-throughput approaches that allow quantification of the gene expression of different elements in diverse conditions. Recently, several large-scale studies have highlighted the importance of posttranscriptional regulation mechanisms and their impact on correlations between mRNA and protein abundance. Here, we introduce Edwin, a robotic workstation that enables the automated propagation of microbial cells and the dynamic characterization of gene expression. We developed an automated procedure that integrates customized RNA extraction and analysis into the typical high-throughput characterization of reporter gene expression. To test the system, we engineered Escherichia coli strains carrying different promoter/gfp fusions. We validated Edwin’s abilities: (1) preparation of custom cultures of microbial cells and (2) dynamic quantification of fluorescence signal and bacterial growth and simultaneous RNA extraction and analysis at different time points. We confirmed that RNA obtained during this automated process was suitable for use in qPCR analysis. Our results established that Edwin is a powerful platform for the automated analysis of microbial gene expression at the protein and RNA level. This platform could be used in a high-throughput manner to characterize not only natural regulatory elements but also synthetic ones.
机译:基因表达的表征是合成生物学设计周期的中心宗旨。有时,它需要高通量的方法,可以量化不同条件下不同元素的基因表达。最近,几项大规模研究强调了转录后调控机制的重要性及其对mRNA和蛋白质丰度之间相关性的影响。在这里,我们介绍一种机器人工作站Edwin,它可以实现微生物细胞的自动繁殖和基因表达的动态表征。我们开发了一种自动化程序,该程序将定制的RNA提取和分析集成到报告基因表达的典型高通量表征中。为了测试该系统,我们设计了携带不同启动子/ gfp融合蛋白的大肠杆菌菌株。我们验证了埃德温(Edwin)的能力:(1)准备定制的微生物细胞培养物;(2)动态定量荧光信号和细菌生长,以及在不同时间点同时进行RNA提取和分析。我们确认在此自动化过程中获得的RNA适合用于qPCR分析。我们的结果表明,埃德温是在蛋白质和RNA水平上自动分析微生物基因表达的强大平台。该平台可以高通量使用,不仅可以表征天然调控元素,还可以表征合成调控元素。

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