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Counting motifs in the human interactome

机译:计数人类交互组中的图案

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Small over-represented motifs in biological networks often form essential functional units of biological processes. A natural question is to gauge whether a motif occurs abundantly or rarely in a biological network. Here we develop an accurate method to estimate the occurrences of a motif in the entire network from noisy and incomplete data, and apply it to eukaryotic interactomes and cell-specific transcription factor regulatory networks. The number of triangles in the human interactome is about 194 times that in the Saccharomyces cerevisiae interactome. A strong positive linear correlation exists between the numbers of occurrences of triad and quadriad motifs in human cell-specific transcription factor regulatory networks. Our findings show that the proposed method is general and powerful for counting motifs and can be applied to any network regardless of its topological structure.RI Choi, Kwok Pui/J-9269-2013
机译:在生物网络中小的过度代表的图案通常形成生物过程的基本功能单元。一个自然的问题是评估一个基序是在生物网络中大量出现还是很少出现。在这里,我们开发了一种准确的方法,可以根据嘈杂的数据和不完整的数据来估计整个网络中某个基序的出现,并将其应用于真核相互作用组和细胞特异性转录因子调控网络。人类交互组中的三角形数量约为啤酒酵母交互组中三角形的数量的194倍。在人类细胞特异性转录因子调节网络中,三重和四重基序的出现次数之间存在很强的线性正相关。我们的发现表明,所提出的方法对于计数主题是通用且功能强大的,并且无论其拓扑结构如何,都可以应用到任何网络中。崔崔,郭培/ J-9269-2013

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