Miwa Yoshimasa, Li Chen, Ge Qi-Wei, Matsuno Hiroshi, Miyano Satoru
Graduate School of Science and Engineering, Yamaguchi University, Yamaguchi, Japan.
Stud Health Technol Inform. 2011;162:204-21.
Parameter determination is important in modeling and simulating biological pathways including signaling pathways. Parameters are determined according to biological facts obtained from biological experiments and scientific publications. However, such reliable data describing detailed reactions are not reported in most cases. This prompted us to develop a general methodology of determining the parameters of a model in the case of that no information of the underlying biological facts is provided. In this study, we use the Petri net approach for modeling signaling pathways, and propose a method to determine firing delay times of transitions for Petri net models of signaling pathways by introducing stochastic decision rules. Petri net technology provides a powerful approach to modeling and simulating various concurrent systems, and recently have been widely accepted as a description method for biological pathways. Our method enables to determine the range of firing delay time which realizes smooth token flows in the Petri net model of a signaling pathway. The availability of this method has been confirmed by the results of an application to the interleukin-1 induced signaling pathway.
参数确定在对包括信号通路在内的生物途径进行建模和模拟时非常重要。参数是根据从生物学实验和科学出版物中获得的生物学事实来确定的。然而,在大多数情况下,并未报告描述详细反应的此类可靠数据。这促使我们开发一种在未提供潜在生物学事实信息的情况下确定模型参数的通用方法。在本研究中,我们使用Petri网方法对信号通路进行建模,并通过引入随机决策规则,提出一种确定信号通路Petri网模型中变迁触发延迟时间的方法。Petri网技术为各种并发系统的建模和模拟提供了一种强大的方法,并且最近已被广泛接受为生物途径的一种描述方法。我们的方法能够确定触发延迟时间的范围,从而在信号通路的Petri网模型中实现平滑的令牌流。通过将该方法应用于白细胞介素 - 1诱导的信号通路的结果,已证实了该方法的有效性。