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Monotonicity, frustration, and ordered response: an analysis of the energy landscape of perturbed large-scale biological networks

机译:单调性,挫败感和有序响应:受扰动的大规模生物网络的能量格局分析

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Background For large-scale biological networks represented as signed graphs, the index of frustration measures how far a network is from a monotone system, i.e., how incoherently the system responds to perturbations. Results In this paper we find that the frustration is systematically lower in transcriptional networks (modeled at functional level) than in signaling and metabolic networks (modeled at stoichiometric level). A possible interpretation of this result is in terms of energetic cost of an interaction: an erroneous or contradictory transcriptional action costs much more than a signaling/metabolic error, and therefore must be avoided as much as possible. Averaging over all possible perturbations, however, we also find that unlike for transcriptional networks, in the signaling/metabolic networks the probability of finding the system in its least frustrated configuration tends to be high also in correspondence of a moderate energetic regime, meaning that, in spite of the higher frustration, these networks can achieve a globally ordered response to perturbations even for moderate values of the strength of the interactions. Furthermore, an analysis of the energy landscape shows that signaling and metabolic networks lack energetic barriers around their global optima, a property also favouring global order. Conclusion In conclusion, transcriptional and signaling/metabolic networks appear to have systematic differences in both the index of frustration and the transition to global order. These differences are interpretable in terms of the different functions of the various classes of networks.
机译:背景技术对于以符号图表示的大规模生物网络,挫折指数衡量的是网络与单调系统的距离,即系统对扰动的响应程度。结果在本文中,我们发现转录网络(在功能水平上建模)的沮丧程度比信号传递和代谢网络(在化学计量水平上建模)的沮丧程度更低。对这种结果的可能解释是在交互的能量消耗方面:错误或矛盾的转录作用比信号/代谢错误花费更多,因此必须尽可能避免。对所有可能的扰动取平均后,我们还发现,与转录网络不同,在信号/代谢网络中,发现系统处于最低受挫状态的可能性也较高,这与中等能量状态相对应,这意味着,尽管受挫程度更高,但即使对于中等强度的交互作用,这些网络也可以实现对扰动的全局有序响应。此外,对能源格局的分析表明,信号和代谢网络缺乏围绕其全局最优的能量屏障,该属性也有利于全局秩序。结论总之,转录和信号/代谢网络似乎在挫折指数和向整体秩序的转变方面都具有系统性差异。这些差异可以用各种网络类别的不同功能来解释。

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