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首页> 外文期刊>BMC Genomics >Functional organization and its implication in evolution of the human protein-protein interaction network
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Functional organization and its implication in evolution of the human protein-protein interaction network

机译:功能组织及其在人类蛋白质相互作用网络进化中的意义

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Background Based on the distinguishing properties of protein-protein interaction networks such as power-law degree distribution and modularity structure, several stochastic models for the evolution of these networks have been purposed, motivated by the idea that a validated model should reproduce similar topological properties of the empirical network. However, being able to capture topological properties does not necessarily mean it correctly reproduces how networks emerge and evolve. More importantly, there is already evidence suggesting functional organization and significance of these networks. The current stochastic models of evolution, however, grow the network without consideration for biological function and natural selection. Results To test whether protein interaction networks are functionally organized and their impacts on the evolution of these networks, we analyzed their evolution at both the topological and functional level. We find that the human network is shown to be functionally organized, and its function evolves with the topological properties of the network. Our analysis suggests that function most likely affects local modularity of the network. Consistently, we further found that the topological unit is also the functional unit of the network. Conclusion We have demonstrated functional organization of a protein interaction network. Given our observations, we suggest that its significance should not be overlooked when studying network evolution.
机译:背景技术基于蛋白质-蛋白质相互作用网络的独特特性,例如幂律度分布和模块化结构,旨在建立一些随机模型来发展这些网络,其目的是通过一个经过验证的模型应再现与之相似的拓扑特性。经验网络。但是,能够捕获拓扑属性并不一定意味着它正确地再现了网络的出现和发展方式。更重要的是,已经有证据表明这些网络的功能组织和重要性。但是,当前的随机演化模型会在不考虑生物学功能和自然选择的情况下扩展网络。结果为了测试蛋白质相互作用网络是否功能性组织以及它们对这些网络进化的影响,我们在拓扑和功能水平上分析了它们的进化。我们发现,人的网络显示出功能上的组织,其功能随着网络的拓扑特性而发展。我们的分析表明,功能最有可能影响网络的本地模块化。一致地,我们进一步发现拓扑单元也是网络的功能单元。结论我们已经证明了蛋白质相互作用网络的功能组织。根据我们的观察,我们建议在研究网络演进时不应忽视其重要性。

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