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Electronic control of gene expression and cell behaviour in Escherichia coli through redox signalling

机译:通过氧化还原信号传导对大肠杆菌中基因表达和细胞行为的电子控制

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摘要

The ability to interconvert information between electronic and ionic modalities has transformed our ability to record and actuate biological function. Synthetic biology offers the potential to expand communication ‘bandwidth’ by using biomolecules and providing electrochemical access to redox-based cell signals and behaviours. While engineered cells have transmitted molecular information to electronic devices, the potential for bidirectional communication stands largely untapped. Here we present a simple electrogenetic device that uses redox biomolecules to carry electronic information to engineered bacterial cells in order to control transcription from a simple synthetic gene circuit. Electronic actuation of the native transcriptional regulator SoxR and transcription from the P soxS promoter allows cell response that is quick, reversible and dependent on the amplitude and frequency of the imposed electronic signals. Further, induction of bacterial motility and population based cell-to-cell communication demonstrates the versatility of our approach and potential to drive intricate biological behaviours.
机译:在电子和离子形态之间相互转换信息的能力已经改变了我们记录和激活生物学功能的能力。合成生物学通过使用生物分子并提供基于氧化还原的细胞信号和行为的电化学途径,提供了扩大通信“带宽”的潜力。尽管工程化的细胞已经将分子信息传递给了电子设备,但双向通信的潜力尚未得到开发。在这里,我们介绍了一个简单的电生成设备,该设备使用氧化还原生物分子将电子信息携带到工程细菌细胞中,以控制从简单的合成基因电路进行的转录。天然转录调节因子SoxR的电子驱动和P soxS启动子的转录使细胞反应迅速,可逆,并取决于施加的电子信号的幅度和频率。此外,细菌运动的诱导和基于群体的细胞间通讯证明了我们方法的多功能性和驱动复杂生物行为的潜力。

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