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Construction of a Pig Physical Interactome Using Sequence Homology and a Comprehensive Reference Human Interactome

机译:利用序列同源性和综合参考人际交互技术构建猪物理交互技术

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摘要

The analysis of interaction networks is crucial for understanding molecular function and has an essential impact for genomewide studies. However, the interactomes of most species are largely incomplete and computational strategies that take into account sequence homology can help compensating for this lack of information using cross-species analysis. In this work we report the construction of a porcine interactome resource. We applied sequence homology matching and carried out bi-directional BLASTp searches for the currently available protein sequence collections of human and pig. Using this homology we were able to recover, on average, 71% of the proteins annotated for human pathways for the pig. Porcine protein-protein interactions were deduced from homologous proteins with known interactions in human. The result of this work is a resource comprising 204,699 predicted porcine interactions that can be used in genome analyses in order to enhance functional interpretation of data. The data can be visualized and downloaded from http://cpdb.molgen.mpg.de/pig.
机译:相互作用网络的分析对于理解分子功能至关重要,并且对全基因组研究具有重要影响。但是,大多数物种的相互作用组在很大程度上是不完整的,考虑到序列同源性的计算策略可以使用跨物种分析来帮助弥补这种信息的不足。在这项工作中,我们报告了猪相互作用基因组资源的构建。我们应用了序列同源性匹配,并进行了双向BLASTp搜索,以搜索人和猪当前可用的蛋白序列。使用这种同源性,我们平均可以回收到猪中人类途径注释的蛋白质的71%。猪蛋白相互作用是从人类已知相互作用的同源蛋白中推导出来的。这项工作的结果是一种包含204,699个预测的猪相互作用的资源,可用于基因组分析以增强数据的功能性解释。可以将数据可视化并从http://cpdb.molgen.mpg.de/pig下载。

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