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通过对GAL调控系统双稳态特性的鲁棒性分析验证其模型

Validation of a model of the GAL regulatory system via robustness analysis of its bistability characteristics.

作者信息

Salerno Luca, Cosentino Carlo, Merola Alessio, Bates Declan G, Amato Francesco

机构信息

Dipartimento di Medicina Sperimentale e Clinica, Università degli Studi Magna Græcia di Catanzaro, Catanzaro, Italy.

出版信息

BMC Syst Biol. 2013 May 17;7:39. doi: 10.1186/1752-0509-7-39.

Abstract

BACKGROUND

In Saccharomyces cerevisiæ, structural bistability generates a bimodal expression of the galactose uptake genes (GAL) when exposed to low and high glucose concentrations. This indicates that yeast cells can decide between using either the limited amount of glucose or growing on galactose under changing environmental conditions. A crucial requirement for any plausible mechanistic model of this system is that it reproduces the robustness of the bistable response observed in vivo against inter-individual parametric variability and fluctuating environmental conditions.

RESULTS

We show how a control-theoretic analysis of the robustness of a model of the GAL regulatory network may be used to establish the model's plausibility in characterizing the persistent memory of different carbon sources, without the need for extensive simulations. Chemical Reaction Network Theory is used to establish that the proposed network model is compatible with structural bistability. The robustness of each of the two operative conditions against fluctuations of the species concentrations is demonstrated by studying the Domains of Attraction of the corresponding equilibrium points. Finally, we use a global robustness analysis method based on Semi-Definite Programming to evaluate the modification of the bistable steady states induced by multiple parametric variations throughout bounded regions of the parameter space.

CONCLUSIONS

Our analysis provides convincing evidence for the robustness, and hence plausibility, of the GAL regulatory network model. The proposed workflow also demonstrates the power of analytical methods from control theory to provide a direct quantitative characterization of the dynamics of multistable biomolecular regulatory systems without recourse to extensive computer simulations.

摘要

背景

在酿酒酵母中,结构双稳性在暴露于低葡萄糖浓度和高葡萄糖浓度时会产生半乳糖摄取基因(GAL)的双峰表达。这表明酵母细胞能够在不断变化的环境条件下,在利用有限量的葡萄糖和以半乳糖生长之间做出选择。对于该系统任何合理的机理模型而言,一个关键要求是它能再现体内观察到的双稳响应针对个体间参数变异性和波动环境条件的稳健性。

结果

我们展示了如何通过对GAL调控网络模型的稳健性进行控制理论分析,来确定该模型在表征不同碳源的持续记忆方面的合理性,而无需进行广泛的模拟。利用化学反应网络理论确定所提出的网络模型与结构双稳性兼容。通过研究相应平衡点的吸引域,证明了两种操作条件下每一种对物种浓度波动的稳健性。最后,我们使用基于半定规划的全局稳健性分析方法,来评估在参数空间的有界区域内多个参数变化所引起的双稳稳态的改变。

结论

我们的分析为GAL调控网络模型的稳健性以及合理性提供了令人信服的证据。所提出的工作流程还展示了控制理论分析方法的强大作用,即无需借助广泛的计算机模拟就能直接定量表征多稳态生物分子调控系统的动力学。

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