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Overlap maximum matching ratio (OMMR): a new measure to evaluate overlaps of essential modules

机译:重叠最大匹配率(OMMR):一种评估基本模块重叠的新方法

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Protein complexes are the basic units of macro-molecular organizations and help us to understand the cell’s mechanism. The development of the yeast two-hybrid, tandem affinity purification, and mass spectrometry high-throughput proteomic techniques supplies a large amount of protein-protein interaction data, which make it possible to predict overlapping complexes through computational methods. Research shows that overlapping complexes can contribute to identifying essential proteins, which are necessary for the organism to survive and reproduce, and for life’s activities. Scholars pay more attention to the evaluation of protein complexes. However, few of them focus on predicted overlaps. In this paper, an evaluation criterion called overlap maximum matching ratio (OMMR) is proposed to analyze the similarity between the identified overlaps and the benchmark overlap modules. Comparison of essential proteins and gene ontology (GO) analysis are also used to assess the quality of overlaps. We perform a comprehensive comparison of serveral overlapping complexes prediction approaches, using three yeast protein-protein interaction (PPI) networks. We focus on the analysis of overlaps identified by these algorithms. Experimental results indicate the important of overlaps and reveal the relationship between overlaps and identification of essential proteins.
机译:蛋白质复合物是大分子组织的基本单位,可帮助我们了解细胞的机制。酵母双杂交,串联亲和纯化和质谱高通量蛋白质组学技术的发展提供了大量的蛋白质-蛋白质相互作用数据,这使得可以通过计算方法预测重叠的复合物。研究表明,重叠的复合物可以帮助识别必需的蛋白质,这些蛋白质对于有机体的生存和繁殖以及生命活动都是必需的。学者更加关注蛋白质复合物的评估。但是,它们中很少有人关注预测的重叠。在本文中,提出了一种称为重叠最大匹配率(OMMR)的评估标准,以分析识别出的重叠与基准重叠模块之间的相似性。基本蛋白质的比较和基因本体论(GO)分析也用于评估重叠的质量。我们使用三个酵母蛋白质-蛋白质相互作用(PPI)网络对服务器重叠复合物的预测方法进行全面比较。我们专注于分析由这些算法确定的重叠。实验结果表明了重叠的重要性,并揭示了重叠与必需蛋白质鉴定之间的关系。

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