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Fluorescent Reporter Genes and the Analysis of Bacterial Regulatory Networks

机译:荧光报告基因和细菌调控网络的分析

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The understanding of the regulatory networks controlling the adaptation of bacteria to changes in their environment is critically dependent on the ability to monitor the dynamics of gene expression. Here, we review the use of fluorescent reporter genes for dynamically quantifying promoter activity and other quantities characterizing gene expression. We discuss critical physical and biological parameters in the design, development, and use of fluorescent reporter strains. Moreover, we review measurement models that have been proposed to interpret primary fluorescence data and inference methods for estimating gene expression profiles from these data. As an illustration of the use of fluorescent reporter strains for analyzing bacterial regulatory networks, we consider two applications in the model bacterium Escherichia coli in some detail: the joint control of gene expression by global physiological effects and specific regulatory interactions, and the importance of protein stability for the inference and analysis of transcriptional regulatory networks. We conclude by discussing some current trends in the use of fluorescent reporter genes.
机译:对控制细菌适应其环境变化的调控网络的理解,关键取决于监测基因表达动态的能力。在这里,我们审查使用荧光报告基因动态量化启动子活性和其他数量的基因表达特征。我们讨论了荧光报告菌株的设计,开发和使用中的关键物理和生物学参数。此外,我们审查了已提出的解释原始荧光数据的测量模型和用于从这些数据估计基因表达谱的推断方法。为了说明使用荧光报告菌株分析细菌调控网络的过程,我们详细考虑了模型细菌大肠杆菌中的两个应用:通过整体生理效应和特定调控相互作用共同控制基因表达,以及蛋白质的重要​​性转录调控网络的推断和分析的稳定性。最后,我们讨论了荧光报告基因使用中的一些当前趋势。

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