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Looking Into the Binary Interactome of Enterobacteriaceae Family of Bacteria

机译:调查细菌肠杆菌科的二元相互作用组

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Protein-protein interactions (PPIs) regulate most of the biological activities within a cell. A set of pairwise PPIs in seven genera of bacterial pathogens (Salmonella, Escherichia, Shigella, Yersinia, Klebsiella, Photorhabdus, and Pantoea) of Enterobacteriaceae family was analysed. At genotypic level, the correlation coefficient analysis of the mutation spectra of the ten sets of directly interacting protein partners in Escherichia coli recognised all the 'interacting partners' in Escherichia coli. Extending the correlation analysis to include strains from the rest of the bacterial genera decreased the recognition efficiency providing quantitative evidence that binary interactome have incomplete superposition across species. At phenotype level, a reliable classification of bacterial pathogens was obtained by measuring PPI variations in terms of between phylogenetic distance correlation distances among ten sets of proteins partners. This forces us to rethink upon the possibility of PPI rewiring with a consequent change in physiological role of the same protein.
机译:蛋白质-蛋白质相互作用(PPI)调节细胞内的大多数生物活性。分析了肠杆菌科七种细菌病原体(沙门氏菌,大肠埃希氏菌,志贺氏菌,耶尔森氏菌,克雷伯菌,光杆菌和泛菌)的成对PPI。在基因型水平上,对大肠杆菌中十组直接相互作用的蛋白质伴侣的突变谱的相关系数分析识别出了大肠杆菌中的所有“相互作用伴侣”。将相关分析扩展到包括其余细菌属的菌株,将降低识别效率,从而提供定量证据,证明二元相互作用组在物种间不完全重叠。在表型水平上,通过测量十组蛋白质伴侣之间的系统发生距离相关距离之间的PPI变化,获得了可靠的细菌病原体分类。这迫使我们重新考虑PPI重新布线的可能性,从而改变了同一蛋白质的生理作用。

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