Department of Scientific Computing, Florida State University, Tallahassee, FL 32310-4120, USA.
Adv Exp Med Biol. 2010;680:189-97. doi: 10.1007/978-1-4419-5913-3_22.
The tryptophan system present in Escherichia coli represents an important regulatory unit described by multiple feedback loops. The role of these feedback loops is crucial for the analysis of the dynamical behavior of the tryptophan synthesis. We analyze the robust stability of this system which models the dynamics of both fast state, such as transcription and synthesis of free operator, and slow state, such as translation and tryptophan synthesis under consideration of nonlinear uncertainties. In addition, we analyze the role of these feedback loops as key design components of this regulatory unit responsible for its physiological performance. The range of allowed parameter perturbations and the conditions that ensure the existence of asymptotically stable equilibria of the perturbed system are determined. We also analyze two important alternate regulatory designs for the tryptophan synthesis pathway and derive the stability conditions.
大肠杆菌中的色氨酸系统代表了一个重要的调节单元,由多个反馈回路描述。这些反馈回路的作用对于分析色氨酸合成的动态行为至关重要。我们分析了该系统的鲁棒稳定性,该系统模型了快速状态(如转录和游离操作子的合成)和缓慢状态(如翻译和色氨酸合成)的动态,同时考虑了非线性不确定性。此外,我们分析了这些反馈回路作为负责其生理性能的调节单元的关键设计组件的作用。确定了允许的参数扰动范围和确保受扰系统存在渐近稳定平衡点的条件。我们还分析了色氨酸合成途径的两种重要替代调节设计,并推导出了稳定性条件。