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Topological Properties of Protein-Protein and Metabolic Interaction Networks of Drosophila melanogaster

机译:果蝇蛋白质-蛋白质和代谢相互作用网络的拓扑特性

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The underlying principle governing the natural phenomena of life is one of the critical issues receiving due importance in recent years. A key feature of the scale-free architecture is the vitality of the most connected nodes (hubs). The major objective of this article was to analyze the protein-protein and metabolic interaction networks of Drosophila melanogaster by considering the architectural patterns and the consequence of removal of hubs on the topological parameter of the two interaction systems. Analysis showed that both interaction networks follow a scale-free model, establishing the fact that most real world networks, from varied situations, conform to the small world pattern. The average path length showed a two-fold and a three-fold increase (changing from 9.42 to 20.93 and from 5.29 to 17.75, respectively) for the protein-protein and metabolic interaction networks, respectively, due to the deletion of hubs. On the contrary, the arbitrary elimination of nodes did not show any remarkable disparity in the topological parameter of the protein-protein and metabolic interaction networks (average path length: 9.42±0.02 and 5.27±0.01, respectively). This aberrant behavior for the two cases underscores the significance of the most linked nodes to the natural topology of the networks.
机译:控制生命自然现象的基本原理是近年来受到应有重视的关键问题之一。无标度体系结构的关键功能是连接最紧密的节点(集线器)的活力。本文的主要目的是通过考虑两个相互作用系统的拓扑参数的构架模式和去除集线器的结果,分析果蝇的蛋白质-蛋白质和代谢相互作用网络。分析表明,两个交互网络都遵循无标度模型,从而建立了这样一个事实,即大多数现实世界网络在各种情况下都符合小世界模式。由于中枢的缺失,蛋白质-蛋白质和代谢相互作用网络的平均路径长度分别显示了两倍和三倍的增长(分别从9.42变为20.93和从5.29变为17.75)。相反,任意消除结节在蛋白质-蛋白质和代谢相互作用网络的拓扑参数中没有显示任何明显的差异(平均路径长度分别为9.42±0.02和5.27±0.01)。两种情况下的这种异常行为强调了链接最多的节点对于网络自然拓扑的重要性。

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