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Modelling the MAPK Signalling Pathway Using a Two-Stage Identification Algorithm

机译:使用两阶段识别算法对MAPK信号通路进行建模

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Signal transduction pathways describe the dynamics of cellular response to input signalling molecules at receptors on the cell membrane. The Mitogen-Activated Protein Kinase (MAPK) cascade is one of such pathways that axe involved in many important cellular processes including cell growth and proliferation. This paper describes a black-box model of this pathway created using an advanced two-stage identification algorithm. Identification allows us to capture the unique features and dynamics of the pathway and also opens up the possibility of regulatory control design. In the approach described, an optimal model is obtained by performing model subset selection in two stages, where the terms are first determined by a forward selection method and then modified using a backward selection model refinement. The simulation results demonstrate that the model selected using the two-stage algorithm performs better than with the forward selection method alone.
机译:信号转导途径描述了细胞对输入信号分子在细胞膜受体上的反应的动力学。丝裂原激活的蛋白激酶(MAPK)级联反应是许多参与细胞生长和增殖等重要细胞过程的途径之一。本文介绍了使用高级两阶段识别算法创建的该途径的黑匣子模型。识别使我们能够捕获路径的独特特征和动态,也为监管控制设计提供了可能性。在所描述的方法中,通过在两个阶段中执行模型子集选择来获得最佳模型,其中首先通过正向选择方法确定项,然后使用向后选择模型细化进行修改。仿真结果表明,与仅使用前向选择方法相比,使用两阶段算法选择的模型性能更好。

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