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Global alignment of protein–protein interaction networks by graph matching methods

机译:通过图匹配方法进行蛋白质间相互作用网络的全局比对

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摘要

>Motivation: Aligning protein–protein interaction (PPI) networks of different species has drawn a considerable interest recently. This problem is important to investigate evolutionary conserved pathways or protein complexes across species, and to help in the identification of functional orthologs through the detection of conserved interactions. It is, however, a difficult combinatorial problem, for which only heuristic methods have been proposed so far.>Results: We reformulate the PPI alignment as a graph matching problem, and investigate how state-of-the-art graph matching algorithms can be used for that purpose. We differentiate between two alignment problems, depending on whether strict constraints on protein matches are given, based on sequence similarity, or whether the goal is instead to find an optimal compromise between sequence similarity and interaction conservation in the alignment. We propose new methods for both cases, and assess their performance on the alignment of the yeast and fly PPI networks. The new methods consistently outperform state-of-the-art algorithms, retrieving in particular 78% more conserved interactions than IsoRank for a given level of sequence similarity.>Availability: All data and codes are freely and publicly available upon request.>Contact:
机译:>动机:最近,不同物种的蛋白质间相互作用(PPI)网络引起了人们的极大兴趣。这个问题对于研究跨物种的进化保守途径或蛋白质复合物,以及通过检测保守相互作用来帮助鉴定功能直向同源物非常重要。但是,这是一个困难的组合问题,到目前为止,仅针对其提出了启发式方法。>结果:我们将PPI对齐方式重新构建为图匹配问题,并研究状态如何美术图形匹配算法可用于该目的。我们根据序列相似性,是根据对蛋白质匹配的严格限制,还是根据目标是在序列相似性和比对中的相互作用保守性之间寻求最佳折衷,来区分两个比对问题。我们针对这两种情况提出了新的方法,并评估了它们在酵母和果蝇PPI网络比对中的性能。新方法始终优于最新算法,在给定的序列相似性水平下,与IsoRank相比,检索到的保守交互尤其多78%。>可用性:所有数据和代码均可免费公开获得根据要求。>联系方式:

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