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Optimization-based synthesis of stochastic biocircuits with statistical specifications

机译:具有统计规格的基于优化的随机生物电路合成

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摘要

Model-guided design has become a standard approach to engineering biomolecular circuits in synthetic biology. However, the stochastic nature of biomolecular reactions is often overlooked in the design process. As a result, cell–cell heterogeneity causes unexpected deviation of biocircuit behaviours from model predictions and requires additional iterations of design–build–test cycles. To enhance the design process of stochastic biocircuits, this paper presents a computational framework to systematically specify the level of intrinsic noise using well-defined metrics of statistics and design highly heterogeneous biocircuits based on the specifications. Specifically, we use descriptive statistics of population distributions as an intuitive specification language of stochastic biocircuits and develop an optimization-based computational tool that explores parameter configurations satisfying design requirements. Sensitivity analysis methods are also performed to ensure the robustness of a biocircuit design against extrinsic perturbations. These design tools are formulated with convex optimization programs to enable rigorous and efficient quantification of the statistics. We demonstrate these features by designing a stochastic negative feedback biocircuit that satisfies multiple statistical constraints and perform an in-depth study of noise propagation and regulation in negative feedback pathways.
机译:模型指导的设计已成为在合成生物学中工程化生物分子电路的标准方法。但是,生物分子反应的随机性在设计过程中常常被忽略。结果,单元之间的异质性导致了生物回路行为与模型预测的出乎意料的偏离,并且需要设计-构建-测试周期的额外迭代。为了增强随机生物电路的设计过程,本文提出了一个计算框架,可使用定义明确的统计指标系统地指定固有噪声的水平,并根据规范设计高度异构的生物电路。具体来说,我们使用人口分布的描述性统计数据作为随机生物电路的直观说明语言,并开发基于优化的计算工具来探索满足设计要求的参数配置。还执行了灵敏度分析方法,以确保生物电路设计对外部干扰的鲁棒性。这些设计工具采用凸优化程序制定,可以对统计数据进行严格而有效的量化。我们通过设计满足多个统计约束条件的随机负反馈生物电路来演示这些功能,并对负反馈路径中的噪声传播和调节进行深入研究。

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