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Construction of Boolean logic gates based on dual-vector circuits of multiple gene regulatory elements

机译:基于多基因监管元素双矢量电路的布尔逻辑门建设

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Gene circuits are constructed to run complex logical operations for the precise regulation of biological metabolic processes. At present, the implementation of most genetic circuits is based on the regulatory mechanism of various circuit components, but we hope to realize complex logic gates through biological metabolic pathways of organisms. In this study, we matched the regulatory elements of different functional mechanisms to build a Boolean logic gate model by means of a dual-vector circuit. In Escherichia coli, we made 12 circuit logic gate modules and validated the functions of four of the logic gates, including AND, NAND, OR and NOR by the expression and analysis of a reporter gene. The inputs were converted into outputs by an intermediate product of the host metabolism. The results indicated that these logic gate circuits had the expected efficacy and regulatory characteristics. Our study provides new ideas for designing genetic circuits and precisely controlling metabolic pathways.
机译:基因电路被构造成运行复杂的逻辑操作,以确切地调节生物代谢过程。目前,大多数遗传电路的实施是基于各种电路元件的调节机制,但我们希望通过生物体的生物代谢途径实现复杂的逻辑栅极。在这项研究中,我们匹配不同功能机制的监管元素,通过双向矢量电路构建布尔逻辑栅极模型。在大肠杆菌中,我们制造了12个电路逻辑门模块,并验证了四个逻辑门的功能,包括和,NAND,或者以及记者基因的表达和分析。通过宿主代谢的中间产物将输入转化为输出。结果表明,这些逻辑门电路具有预期的疗效和监管特征。我们的研究为设计遗传电路和精确控制代谢途径提供了新的思路。

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