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Comparisons of the protein-protein interaction networks constructed from the DIP database with different version

机译:从DIP数据库构建的具有不同版本的蛋白质-蛋白质相互作用网络的比较

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Protein-protein interactions (PPI) play the most important role in the interactomics systems in living cells. The protein- protein interaction network (PIN) is displayed as an undirected graph, in which the biological functions of proteins were properly encoded. In this paper, the complex network theory was used in analyzing the protein-protein interactions from Database of Interacting Protein (DIP). The general topological features: right-skewed degree distributions, relatively small clustering coefficients and short characteristic path lengths were introduced to character the properties of the giant component of PIN (GCOP). While, tests were done on the degree distributions of GCOPs in order to find the best-fit power low model. At last, the Comparisons were made between the different PINs constructed on the DIP database with different version. The results led to the findings that the PINs lack modularity and tree structure should be the framework of these topologies. Moreover, the PINs are not well connected, the PPI data is substantially incomplete, the PPI between different components should be substantially explored.
机译:蛋白质-蛋白质相互作用(PPI)在活细胞的相互作用组学系统中起着最重要的作用。蛋白质-蛋白质相互作用网络(PIN)显示为无向图,在该图中正确编码了蛋白质的生物学功能。在本文中,复杂网络理论被用于分析相互作用蛋白数据库(DIP)中的蛋白-蛋白相互作用。介绍了一般的拓扑特征:右偏度分布,相对较小的聚类系数和较短的特征路径长度,以表征PIN(GCOP)巨型组件的特性。同时,对GCOP的度数分布进行了测试,以找到最合适的低功耗模型。最后,对在DIP数据库上构建的具有不同版本的不同PIN进行了比较。结果导致发现PIN缺乏模块化,并且树形结构应该是这些拓扑的框架。此外,PIN不能很好地连接,PPI数据基本上是不完整的,应该充分探索不同组件之间的PPI。

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