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Theoretical Basis for Dynamic Label Propagation in Stationary Metabolic Networks under Step and Periodic Inputs

机译:阶跃和周期输入下平稳代谢网络中动态标签传播的理论基础

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摘要

The dynamics of label propagation in a stationary metabolic network during an isotope labeling experiment can provide highly valuable information on the network topology, metabolic fluxes, and on the size of metabolite pools. However, major issues, both in the experimental set-up and in the accompanying numerical methods currently limit the application of this approach. Here, we propose a method to apply novel types of label inputs, sinusoidal or more generally periodic label inputs, to address both the practical and numerical challenges of dynamic labeling experiments. By considering a simple metabolic system, i.e. a linear, non-reversible pathway of arbitrary length, we develop mathematical descriptions of label propagation for both classical and novel label inputs. Theoretical developments and computer simulations show that the application of rectangular periodic pulses has both numerical and practical advantages over other approaches. We applied the strategy to estimate fluxes in a simulated experiment performed on a complex metabolic network (the central carbon metabolism of Escherichia coli), to further demonstrate its value in conditions which are close to those in real experiments. This study provides a theoretical basis for the rational interpretation of label propagation curves in real experiments, and will help identify the strengths, pitfalls and limitations of such experiments. The cases described here can also be used as test cases for more general numerical methods aimed at identifying network topology, analyzing metabolic fluxes or measuring concentrations of metabolites.
机译:在同位素标记实验期间,固定代谢网络中标记传播的动力学可以提供有关网络拓扑结构,代谢通量和代谢物库大小的极有价值的信息。但是,无论是实验设置还是数值方法中的主要问题,目前都限制了该方法的应用。在这里,我们提出一种方法来应用新颖类型的标签输入,正弦或更一般的周期性标签输入,以应对动态标签实验的实际和数字挑战。通过考虑一个简单的代谢系统,即任意长度的线性,不可逆的途径,我们开发了用于经典和新颖标签输入的标签传播的数学描述。理论上的发展和计算机仿真表明,矩形周期脉冲的应用在数值和实践上均优于其他方法。我们在复杂的代谢网络(大肠杆菌的中央碳代谢)上进行的模拟实验中应用了该策略来估算通量,以进一步证明其在与真实实验接近的条件下的价值。该研究为在实际实验中合理解释标签传播曲线提供了理论基础,并将有助于确定此类实验的优势,缺陷和局限性。这里描述的案例也可以用作测试案例,用于更通用的数值方法,旨在识别网络拓扑,分析代谢通量或测量代谢物的浓度。

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