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In Vivo Programmed Gene Expression Based on Artificial Quorum Networks

机译:基于人工仲裁网络的体内程序化基因表达

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摘要

The quorum sensing (QS) system, as a well-functioning population-dependent gene switch, has been widely applied in many gene circuits in synthetic biology. In our work, an efficient cell density-controlled expression system (QS) was established via engineering of the Vibrio fischeri luxI-luxR quorum sensing system. In order to achieve in vivo programmed gene expression, a synthetic binary regulation circuit (araQS) was constructed by assembling multiple genetic components, including the quorum quenching protein AiiA and the arabinose promoter ParaBAD, into the QS system. In vitro expression assays verified that the araQS system was initiated only in the absence of arabinose in the medium at a high cell density. In vivo expression assays confirmed that the araQS system presented an in vivo-triggered and cell density-dependent expression pattern. Furthermore, the araQS system was demonstrated to function well in different bacteria, indicating a wide range of bacterial hosts for use. To explore its potential applications in vivo, the araQS system was used to control the production of a heterologous protective antigen in an attenuated Edwardsiella tarda strain, which successfully evoked efficient immune protection in a fish model. This work suggested that the araQS system could program bacterial expression in vivo and might have potential uses, including, but not limited to, bacterial vector vaccines.
机译:群体感应(QS)系统作为一种功能良好的种群相关基因开关,已广泛应用于合成生物学的许多基因电路中。在我们的工作中,通过对费氏弧菌luxI-luxR群体感应系统的工程设计,建立了有效的细胞密度控制表达系统(QS)。为了实现体内编程的基因表达,通过将包括群体猝灭蛋白AiiA和阿拉伯糖启动子ParaBAD在内的多个遗传成分组装到QS系统中,构建了一个合成的二进制调控电路(araQS)。体外表达分析证实,araQS系统仅在培养基中以高细胞密度存在阿拉伯糖时才启动。体内表达测定证实了araQS系统呈现了体内触发的且依赖细胞密度的表达模式。此外,证明了araQS系统在不同细菌中也能很好地发挥作用,这表明使用的细菌宿主范围很广。为了探索其在体内的潜在应用,使用了araQS系统来控制减毒的爱德华氏菌tarda菌株中异源保护性抗原的产生,该菌株成功地在鱼类模型中引起了有效的免疫保护。这项工作表明,araQS系统可以在体内编程细菌表达,并且可能具有潜在用途,包括但不限于细菌载体疫苗。

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