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Probing the operability regime of an engineered ribocomputing unit in terms of dynamic range maintenance with extracellular changes and time

机译:在具有细胞外变化和时间的动态范围维护方面探测工程磁性仿性单元的可操作性制度

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Synthetic biology aims at engineering gene regulatory circuits to end with cells (re)programmed on purpose to implement novel functions or discover natural behaviors. However, one overlooked question is whether the resulting circuits perform as intended in variety of environments or with time. Here, we considered a recently engineered genetic system that allows programming the cell to work as a minimal computer (arithmetic logic unit) in order to analyze its operability regime. This system involves transcriptional and post-transcriptional regulations. In particular, we studied the analog behavior of the system, the effect of physicochemical changes in the environment, the impact on cell growth rate of the heterologous expression, and the ability to maintain the arithmetic functioning over time. Conclusively, our results suggest 1) that there are wide input concentration ranges that the system can correctly process, the resulting outputs being predictable with a simple mathematical model, 2) that the engineered circuitry is quite sensitive to temperature effects, 3) that the expression of heterologous small RNAs is costly for the cell, not only of heterologous proteins, and 4) that a proper genetic reorganization of the system to reduce the amount of heterologous DNA in the cell can improve its evolutionary stability.
机译:合成生物学旨在工程基因调节电路,以便以目的而设计的细胞(RE),以实施新颖的功能或发现自然行为。然而,一个被忽视的问题是所得到的电路是否按照各种环境或随时间进行。在这里,我们考虑了最近的工程化基因系统,其允许将小区编程为最小计算机(算术逻辑单元),以便分析其可操作性制度。该系统涉及转录和转录后的法规。特别是,我们研究了系统的模拟行为,物理化学变化在环境中的影响,对异源表达的细胞生长速率的影响,以及维持算术随时间的能力。得出结论,我们的结果表明,系统可以正确处理的宽输入浓度范围,由此产生的输出具有简单的数学模型,2)将工程电路对温度效应非常敏感,3)表达式异源小RNA昂贵的细胞,不仅具有异源蛋白和4),该系统的适当遗传重组可以降低细胞中异源DNA的量可以改善其进化稳定性。

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