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Comparison between Effects of Retroactivity and Resource Competition upon Change in Downstream Reporter Genes of Synthetic Genetic Circuits

机译:追溯力和资源竞争对合成遗传回路下游报道基因变化的影响比较

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摘要

Reporter genes have contributed to advancements in molecular biology. Binding of an upstream regulatory protein to a downstream reporter promoter allows quantification of the activity of the upstream protein produced from the corresponding gene. In studies of synthetic biology, analyses of reporter gene activities ensure control of the cell with synthetic genetic circuits, as achieved using a combination of in silico and in vivo experiments. However, unexpected effects of downstream reporter genes on upstream regulatory genes may interfere with in vivo observations. This phenomenon is termed as retroactivity. Using in silico and in vivo experiments, we found that a different copy number of regulatory protein-binding sites in a downstream gene altered the upstream dynamics, suggesting retroactivity of reporters in this synthetic genetic oscillator. Furthermore, by separating the two sources of retroactivity (titration of the component and competition for degradation), we showed that, in the dual-feedback oscillator, the level of the fluorescent protein reporter competing for degradation with the circuits’ components is important for the stability of the oscillations. Altogether, our results indicate that the selection of reporter promoters using a combination of in silico and in vivo experiments is essential for the advanced design of genetic circuits.
机译:记者基因促进了分子生物学的发展。上游调节蛋白与下游报告子启动子的结合允许对由相应基因产生的上游蛋白的活性进行定量。在合成生物学研究中,对报告基因活性的分析可确保通过合成遗传回路控制细胞,这是通过计算机模拟和体内实验相结合而实现的。但是,下游报告基因对上游调节基因的意外影响可能会干扰体内观察。这种现象称为追溯性。使用计算机模拟和体内实验,我们发现下游基因中不同数量的调节蛋白结合位点改变了上游动力学,这提示了该合成基因振荡器的报道分子具有追溯力。此外,通过分离追溯力的两个来源(组分的滴定和降解竞争),我们发现,在双反馈振荡器中,荧光蛋白报道分子与电路组分竞争降解的水平对振荡的稳定性。总之,我们的结果表明,结合计算机模拟和体内实验选择报告启动子对于基因回路的高级设计至关重要。

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