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Rapidly Characterizing the Fast Dynamics of RNA Genetic Circuitry with Cell-Free Transcription Translation (TX-TL) Systems

机译:无细胞转录翻译(TX-TL)系统快速表征RNA遗传电路的快速动力学

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摘要

RNA regulators are emerging as powerful tools to engineer synthetic genetic networks or rewire existing ones. A potential strength of RNA networks is that they may be able to propagate signals on time scales that are set by the fast degradation rates of RNAs. However, a current bottleneck to verifying this potential is the slow design-build-test cycle of evaluating these networks in vivo. Here, we adapt an Escherichia coli-based cell-free transcription-translation (TX-TL) system for rapidly prototyping RNA networks. We used this system to measure the response time of an RNA transcription cascade to be approximately five minutes per step of the cascade. We also show that this response time can be adjusted with temperature and regulator threshold tuning. Finally, we use TX-TL to prototype a new RNA network, an RNA single input module, and show that this network temporally stages the expression of two genes in vivo.
机译:RNA调节剂正在成为工程合成基因网络或重新连接现有基因网络的强大工具。 RNA网络的潜在优势在于它们可能能够在时间尺度上传播信号,该时间尺度是由RNA的快速降解速率设定的。但是,验证这种潜力的当前瓶颈是在体内评估这些网络的缓慢的设计-构建-测试周期。在这里,我们将基于大肠杆菌的无细胞转录翻译(TX-TL)系统改编为快速原型RNA网络。我们使用该系统来测量RNA转录级联的响应时间,该响应时间大约为级联每步五分钟。我们还表明,可以通过温度和调节器阈值调整来调整此响应时间。最后,我们使用TX-TL来原型化一个新的RNA网络,一个RNA单输入模块,并显示该网络在体内暂时分阶段表达两个基因。

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