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生物调控网络的模块化

The modularity of biological regulatory networks.

作者信息

Thieffry D, Romero D

机构信息

Instituto de Materátilas, National University of Mexico, Cuernavala, Morelos.

出版信息

Biosystems. 1999 Apr;50(1):49-59. doi: 10.1016/s0303-2647(98)00087-2.

Abstract

A useful approach to complex regulatory networks consists of modeling their elements and interactions by Boolean equations. In this context, feedback circuits (i.e. circular sequences of interactions) have been shown to play key dynamical roles: whereas positive circuits are able to generate multistationarity, negative circuits may generate oscillatory behavior. In this paper, we principally focus on the case of gene networks. These are represented by fully connected Boolean networks where each element interacts with all elements including itself. Flexibility in network design is introduced by the use of Boolean parameters, one associated with each interaction or group of interactions affecting a given element. Within this formalism, a feedback circuit will generate its typical dynamical behavior (i.e. multistationarity or oscillations) only for appropriate values of some of the logical parameters. Whenever it does, we say that the circuit is 'functional'. More interestingly, this formalism allows the computation of the constraints on the logical parameters to have any feedback circuit functional in a network. Using this methodology, we found that the fraction of the total number of consistent combinations of parameter values that make a circuit functional decreases geometrically with the circuit length. From a biological point of view, this suggests that regulatory networks could be decomposed into small and relatively independent feedback circuits or 'regulatory modules'.

摘要

一种研究复杂调控网络的有效方法是通过布尔方程对其元件和相互作用进行建模。在这种情况下,反馈回路(即相互作用的循环序列)已被证明发挥着关键的动力学作用:正回路能够产生多稳态,而负回路可能产生振荡行为。在本文中,我们主要关注基因网络的情况。这些由全连接布尔网络表示,其中每个元件与包括自身在内的所有元件相互作用。通过使用布尔参数引入网络设计的灵活性,每个布尔参数与影响给定元件的每个相互作用或相互作用组相关联。在这种形式体系中,反馈回路仅在某些逻辑参数取适当值时才会产生其典型的动力学行为(即多稳态或振荡)。只要出现这种情况,我们就说该回路是“功能性的”。更有趣的是,这种形式体系允许计算对逻辑参数的约束,以使网络中的任何反馈回路具有功能性。使用这种方法,我们发现使回路具有功能性的参数值一致组合总数的比例随回路长度呈几何级数下降。从生物学角度来看,这表明调控网络可以分解为小的且相对独立的反馈回路或“调控模块”。

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