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Synthesis of orthogonal transcription- translation networks

机译:正交转录翻译网络的合成

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Orthogonal, parallel and independent, systems are one key foundation for synthetic biology. The synthesis of orthogonal systems that are uncoupled from evolutionary constraints, and selectively abstracted from cellular regulation, is an emerging approach to making biology more amenable to engineering. Here, we combine orthogonal transcription by T7 RNA polymerase and translation by orthogonal ribosomes (O-ribosomes), creating an orthogonal gene expression pathway in Escherichia coli. We design and implement compact, orthogonal gene expression networks. In particular we focus on creating transcription-translation feed-forward loops (FFLs). The transcription-translation FFLs reported cannot be created by using the cells' gene expression machinery and introduce information-processing delays on the order of hours into gene expression. We refactor the rRNA operon, uncoupling the synthesis of the orthogonal 16S rRNA for the O-ribosome from the synthesis and processing of the rest of the rRNA operon, thereby defining a minimal module that can be added to the cell for O-ribosome production. The minimal O-ribosome permits the rational alteration of the delay in an orthogonal gene expression FFL. Overall this work demonstrates that system-level dynamic properties are amenable to rational manipulation and design in orthogonal systems. In the future this system may be further evolved and tuned to provide a spectrum of tailored dynamics in gene expression and investigate the effects of delays in cellular decision-making processes.
机译:正交,并行和独立的系统是合成生物学的重要基础之一。正交系统的合成与进化的限制脱钩,并有选择地从细胞调节中抽象出来,是使生物学更易于工程化的新兴方法。在这里,我们结合了T7 RNA聚合酶的正交转录和正交核糖体(O-核糖体)的翻译,在大肠杆菌中创建了正交基因表达途径。我们设计和实现紧凑的正交基因表达网络。特别是,我们专注于创建转录翻译前馈环(FFL)。报告的转录翻译FFL不能通过使用细胞的基因表达机制来创建,并且会在基因表达中引入大约数小时的信息处理延迟。我们重构了rRNA操纵子,从其余rRNA操纵子的合成和加工中分离了O-核糖体的正交16S rRNA的合成,从而定义了可以添加到细胞中以生产O-核糖体的最小模块。最小的O-核糖体允许合理改变正交基因表达FFL中的延迟。总的来说,这项工作表明,系统级的动态特性适合正交系统中的合理操纵和设计。将来,该系统可能会进一步发展和调整,以在基因表达中提供一系列定制动态,并研究细胞决策过程中延迟的影响。

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