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生物网络的简化模型。

Simplified models of biological networks.

机构信息

Niels Bohr Institute, DK-2100, Copenhagen, Denmark.

出版信息

Annu Rev Biophys. 2010;39:43-59. doi: 10.1146/annurev.biophys.093008.131241.

Abstract

The function of living cells is controlled by complex regulatory networks that are built of a wide diversity of interacting molecular components. The sheer size and intricacy of molecular networks of even the simplest organisms are obstacles toward understanding network functionality. This review discusses the achievements and promise of a bottom-up approach that uses well-characterized subnetworks as model systems for understanding larger networks. It highlights the interplay between the structure, logic, and function of various types of small regulatory circuits. The bottom-up approach advocates understanding regulatory networks as a collection of entangled motifs. We therefore emphasize the potential of negative and positive feedback, as well as their combinations, to generate robust homeostasis, epigenetics, and oscillations.

摘要

活细胞的功能受到复杂调控网络的控制,这些网络由广泛多样的相互作用的分子组件构成。即使是最简单的生物体的分子网络的巨大规模和复杂性,也成为了理解网络功能的障碍。本文综述了一种自下而上的方法的成就和前景,该方法使用特征明确的子网作为模型系统来理解更大的网络。它强调了各种类型的小调控回路的结构、逻辑和功能之间的相互作用。自下而上的方法主张将调控网络理解为纠缠基序的集合。因此,我们强调负反馈和正反馈以及它们的组合产生稳健的内稳态、表观遗传学和振荡的潜力。

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