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The Signaling Petri Net-Based Simulator: A Non-Parametric Strategy for Characterizing the Dynamics of Cell-Specific Signaling Networks

机译:基于信令Petri网的仿真器:一种用于表征特定于小区的信令网络动力学的非参数策略

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摘要

Reconstructing cellular signaling networks and understanding how they work are major endeavors in cell biology. The scale and complexity of these networks, however, render their analysis using experimental biology approaches alone very challenging. As a result, computational methods have been developed and combined with experimental biology approaches, producing powerful tools for the analysis of these networks. These computational methods mostly fall on either end of a spectrum of model parameterization. On one end is a class of structural network analysis methods; these typically use the network connectivity alone to generate hypotheses about global properties. On the other end is a class of dynamic network analysis methods; these use, in addition to the connectivity, kinetic parameters of the biochemical reactions to predict the network's dynamic behavior. These predictions provide detailed insights into the properties that determine aspects of the network's structure and behavior. However, the difficulty of obtaining numerical values of kinetic parameters is widely recognized to limit the applicability of this latter class of methods.
机译:重建细胞信号网络并了解其工作原理是细胞生物学的主要工作。但是,这些网络的规模和复杂性使得仅使用实验生物学方法进行分析非常具有挑战性。结果,开发了计算方法并将其与实验生物学方法相结合,从而产生了用于分析这些网络的强大工具。这些计算方法大多落在模型参数化范围的两端。一方面是一类结构网络分析方法。这些通常仅使用网络连接来生成有关全局属性的假设。另一方面是一类动态网络分析方法。除了连接性,这些还使用生化反应的动力学参数来预测网络的动态行为。这些预测为确定网络结构和行为各方面的属性提供了详细的见解。但是,广泛地认识到获得动力学参数数值的困难,以限制后一类方法的适用性。

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