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首页> 外文期刊>Protein and Peptide Letters >Fast Revelation of the Motif Mode for a Yeast Protein Interaction Network Through Intelligent Agent-Based Distributed Computing
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Fast Revelation of the Motif Mode for a Yeast Protein Interaction Network Through Intelligent Agent-Based Distributed Computing

机译:通过基于智能代理的分布式计算,酵母蛋白质相互作用网络的母题模式的快速启示

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摘要

In the yeast protein-protein interaction network, motif mode, a collection of motifs of special combinations of protein nodes annotated by the molecular function terms of the Gene Ontology, has revealed differences in the conservation constraints within the same topology. In this study, by employing an intelligent agent-based distributed computing method, we are able to discover motif modes in a fast and adaptive manner. Moreover, by focusing on the highly evolutionarily conserved motif modes belonging to the same biological function, we find a large downshift in the distance between nodes belonging to the same motif mode compared with the whole, suggesting that nodes with the same motif mode tend to congregate in a network. Several motif modes with a high conservation of the motif constituents were revealed, but from a new perspective, including that with a three-node motif mode engaged in the protein fate and that with three four-node motif modes involved in the genome maintenance, cellular organization, and transcription. The network motif modes discovered from this method can be linked to the wealth of biological data which require further elucidation with regard to biological functions.
机译:在酵母蛋白质-蛋白质相互作用网络中,基序模式是由基因本体的分子功能术语标注的蛋白质节点特殊组合的一组基序集合,揭示了相同拓扑结构内保守性约束的差异。在这项研究中,通过采用基于智能主体的分布式计算方法,我们能够以快速,自适应的方式发现主题模式。此外,通过关注属于同一生物学功能的高度进化保守的基序模式,我们发现属于同一基序模式的节点之间的距离与整体相比有较大的下移,这表明具有相同基序模式的节点趋向于聚集在网络中。揭示了几种具有高度保守的基序成分的基序模式,但是从一个新的角度来看,包括具有参与蛋白质命运的三节点基序模式和具有参与基因组维护的三个四节点基序模式的细胞模式。组织和转录。通过这种方法发现的网络主题模式可以与大量生物学数据相关联,这些生物学数据需要进一步阐明生物学功能。

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