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Boolean modeling: a logic-based dynamic approach for understanding signaling and regulatory networks and for making useful predictions

机译:布尔建模:基于逻辑的动态方法,用于了解信号和监管网络并做出有用的预测

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The biomolecules inside or near cells form a complex interacting system. Cellular phenotypes and behaviors arise from the totality of interactions among the components of this system. A fruitful way of modeling interacting biomolecular systems is by network-based dynamic models that characterize each component by a state variable, and describe the change in the state variables due to the interactions in the system. Dynamic models can capture the stable state patterns of this interacting system and can connect them to different cell fates or behaviors. A Boolean or logic model characterizes each biomolecule by a binary state variable that relates the abundance of that molecule to a threshold abundance necessary for downstream processes. The regulation of this state variable is described in a parameter free manner, making Boolean modeling a practical choice for systems whose kinetic parameters have not been determined. Boolean models integrate the body of knowledge regarding the components and interactions of biomolecular systems, and capture the system's dynamic repertoire, for example the existence of multiple cell fates. These models were used for a variety of systems and led to important insights and predictions. Boolean models serve as an efficient exploratory model, a guide for follow-up experiments, and as a foundation for more quantitative models. (C) 2014 Wiley Periodicals, Inc.
机译:细胞内部或附近的生物分子形成复杂的相互作用系统。细胞表型和行为是由该系统各组成部分之间相互作用的总和引起的。对相互作用的生物分子系统建模的一种有效方法是通过基于网络的动态模型,该模型通过状态变量来表征每个组件,并描述由于系统中的相互作用而导致的状态变量的变化。动态模型可以捕获此交互系统的稳定状态模式,并将它们连接到不同的细胞命运或行为。布尔或逻辑模型通过二进制状态变量来表征每个生物分子,该二进制状态变量将该分子的丰度与下游过程所需的阈值丰度相关联。该状态变量的调节以无参数的方式进行描述,使得布尔模型成为尚未确定其动力学参数的系统的实际选择。布尔模型整合了有关生物分子系统的组成和相互作用的知识体系,并捕获了系统的动态库,例如多个细胞命运的存在。这些模型被用于各种系统,并产生了重要的见解和预测。布尔模型可以用作有效的探索性模型,后续实验的指南,并且可以作为更定量模型的基础。 (C)2014威利期刊公司

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