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A general computational method for robustness analysis with applications to synthetic gene networks

机译:鲁棒性分析的通用计算方法及其在合成基因网络中的应用

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摘要

>Motivation: Robustness is the capacity of a system to maintain a function in the face of perturbations. It is essential for the correct functioning of natural and engineered biological systems. Robustness is generally defined in an ad hoc, problem-dependent manner, thus hampering the fruitful development of a theory of biological robustness, recently advocated by Kitano.>Results: In this article, we propose a general definition of robustness that applies to any biological function expressible in temporal logic LTL (linear temporal logic), and to broad model classes and perturbation types. Moreover, we propose a computational approach and an implementation in BIOCHAM 2.8 for the automated estimation of the robustness of a given behavior with respect to a given set of perturbations. The applicability and biological relevance of our approach is demonstrated by testing and improving the robustness of the timed behavior of a synthetic transcriptional cascade that could be used as a biological timer for synthetic biology applications.>Availability: Version 2.8 of BIOCHAM and the transcriptional cascade model are available at >Contact:
机译:>动机:稳健性是系统在遇到麻烦时保持功能的能力。这对于自然和工程生物学系统的正确运行至关重要。健壮性通常以临时的,依赖于问题的方式进行定义,从而阻碍了北野最近提出的生物学健壮性理论的丰硕成果。>结果:在本文中,我们提出了“健壮性”的一般定义适用于时态逻辑LTL(线性时态逻辑)中可表达的任何生物功能,以及广泛的模型类别和扰动类型的鲁棒性。此外,我们提出了一种计算方法和BIOCHAM 2.8中的实现,用于针对给定的一组扰动自动估计给定行为的鲁棒性。我们的方法的适用性和生物学相关性通过测试和提高合成转录级联的定时行为的鲁棒性来证明,该级联行为可用作合成生物学应用的生物计时器。>可用性: BIOCHAM和转录级联模型可在>联系人:

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