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Gene networks that compensate for crosstalk with crosstalk

机译:通过串扰补偿串扰的基因网络

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摘要

Crosstalk is a major challenge to engineering sophisticated synthetic gene networks. A common approach is to insulate signal-transduction pathways by minimizing molecular-level crosstalk between endogenous and synthetic genetic components, but this strategy can be difficult to apply in the context of complex, natural gene networks and unknown interactions. Here, we show that synthetic gene networks can be engineered to compensate for crosstalk by integrating pathway signals, rather than by pathway insulation. We demonstrate this principle using reactive oxygen species (ROS)-responsive gene circuits in Escherichia coli that exhibit concentration-dependent crosstalk with non-cognate ROS. We quantitatively map the degree of crosstalk and design gene circuits that introduce compensatory crosstalk at the gene network level. The resulting gene network exhibits reduced crosstalk in the sensing of the two different ROS. Our results suggest that simple network motifs that compensate for pathway crosstalk can be used by biological networks to accurately interpret environmental signals.
机译:串扰是工程化复杂的合成基因网络的主要挑战。一种常见的方法是通过最小化内源和合成遗传成分之间的分子水平串扰来隔离信号传导途径,但是这种策略在复杂,天然基因网络和未知相互作用的情况下可能难以应用。在这里,我们表明合成基因网络可以通过整合途径信号而不是途径绝缘来进行工程设计,以补偿串扰。我们证明了在大肠埃希氏大肠杆菌中使用反应性氧物种(ROS)响应基因电路显示与非同源ROS浓度依赖性串扰的这一原理。我们定量地绘制了串扰的程度,并设计了在基因网络水平引入补偿性串扰的基因电路。所得的基因网络在两种不同ROS的检测中表现出降低的串扰。我们的结果表明,生物网络可以使用简单的网络图案来补偿通路的串扰,从而准确地解释环境信号。

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