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Engineered Orthogonal Quorum Sensing Systems for Synthetic Gene Regulation in Escherichia coli

机译:工程化正交仲裁感应系统用于大肠杆菌中的合成基因调控。

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摘要

Gene regulators that are controlled by membrane-permeable compounds called homoserine lactones (HSLs) have become popular tools for building synthetic gene networks that coordinate behaviors across populations of engineered bacteria. Synthetic HSL-signaling systems are derived from natural DNA and protein elements from microbial quorum signaling pathways. Crosstalk, where a single HSL can activate multiple regulators, can lead to faults in networks composed of parallel signaling pathways. Here, we report an investigation of quorum sensing components to identify synthetic pathways that exhibit little to no crosstalk in liquid and solid cultures. In previous work, we characterized the response of a single regulator (LuxR) to 10 distinct HSL-synthase enzymes. Our current study determined the responses of five different regulators (LuxR, LasR, TraR, BjaR, and AubR) to the same set of synthases. We identified two sets of orthogonal synthase-regulator pairs (BjaI/BjaR + EsaI/TraR and LasI/LasR + EsaI/TraR) that show little to no crosstalk when they are expressed in Escherichia coli BL21. These results expand the toolbox of characterized components for engineering microbial communities.
机译:由膜渗透性化合物称为高丝氨酸内酯(HSLs)控制的基因调节剂已成为构建合成基因网络的通用工具,这些基因网络可协调跨工程细菌种群的行为。合成的HSL信号系统来自微生物群体信号通路的天然DNA和蛋白质元素。单个HSL可以激活多个调节器的串扰会导致由并行信令路径组成的网络出现故障。在这里,我们报告调查群体感应组件,以识别在液体和固体培养物中几乎没有串扰的合成途径。在以前的工作中,我们表征了单个调节剂(LuxR)对10种不同的HSL合酶的反应。我们目前的研究确定了五种不同的调节剂(LuxR,LasR,TraR,BjaR和AubR)对同一组合酶的反应。我们鉴定了两组正交合酶-调节子对(BjaI / BjaR + EsaI / TraR和LasI / LasR + EsaI / TraR),当它们在大肠杆菌BL21中表达时几乎没有串扰。这些结果扩展了工程微生物群落特征性组分的工具箱。

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