Robustness Analysis of Genetic Circuits Constructed by Bottom-Up Strategy

M. Inoue, Takayuki Arai, J. Imura, K. Kashima, K. Aihara
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引用次数: 1

Abstract

Abstract We analyze the robustness of a system-level genetic circuit which is constructed by a bottom-up strategy. The latest trend in synthetic biology is to create large-scale and complex genetic circuits realizing desired programmable functions. An approach for the creation is bottom-up construction, that is, well-characterized small-scale circuits are coupled into large-scale system-level circuits involving desired programmable functions that can be predicted from the modules. However, in general, an intrinsic property in a circuit may be broken by internally connecting external circuits. We analyze a successful circuit created by a bottom-up construction strategy to identify the reason behind a successful synthesis. Utilizing the robustness analysis method based on the structured singular value, we can guarantee the validity of the bottom-up construction.
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自底向上策略构建遗传电路的鲁棒性分析
摘要本文分析了由自下而上策略构建的系统级遗传电路的鲁棒性。合成生物学的最新趋势是创造大规模和复杂的遗传电路来实现所需的可编程功能。创建的一种方法是自下而上的构建,也就是说,将具有良好特征的小规模电路耦合到大型系统级电路中,其中包括可以从模块中预测的所需可编程功能。然而,一般来说,电路的固有特性可能会通过内部连接外部电路而被破坏。我们分析了一个由自下而上构建策略创建的成功电路,以确定成功合成背后的原因。利用基于结构奇异值的鲁棒性分析方法,可以保证自底向上构造的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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