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Comparative interactomics analysis of protein family interaction networks using PSIMAP (protein structural interactome map)

机译:使用PSIMAP(蛋白质结构相互作用图谱)进行蛋白质家族相互作用网络的比较相互作用组学分析

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Motivation: Many genomes have been completely sequenced. However, detecting and analyzing their protein-protein interactions by experimental methods such as co-immunoprecipitation, tandem affinity purification and Y2H is not as fast as genome sequencing. Therefore, a computational prediction method based on the known protein structural interactions will be useful to analyze large-scale protein-protein interaction rules within and among complete genomes.Results: We confirmed that all the predicted protein family interactomes (the full set of protein family interactions within a proteome) of 146 species are scale-free networks, and they share a small core network comprising 36 protein families related to indispensable cellular functions. We found two fundamental differences among prokaryotic and eukaryotic interactomes: (1) eukarya had significantly more hub families than archaea and bacteria and (2) certain special hub families determined the topology of the eukaryotic interactomes. Our comparative analysis suggests that a very small number of expansive protein families led to the evolution of interactomes and seemed tohave played a key role in species diversification.Contact: jong@kribb.re.krSupplementary information: http://interactomics.org
机译:动机:许多基因组已完全测序。但是,通过实验方法(例如免疫共沉淀,串联亲和纯化和Y2H)检测和分析它们的蛋白质-蛋白质相互作用并不像基因组测序那么快。因此,基于已知蛋白质结构相互作用的计算预测方法将有助于分析完整基因组内部和之间的大规模蛋白质-蛋白质相互作用规则。结果:我们确认了所有预测的蛋白质家族相互作用组(完整的蛋白质家族) 146种蛋白质组中的相互作用是无标度的网络,它们共享一个包含36个与必不可少的细胞功能相关的蛋白质家族的小型核心网络。我们发现原核和真核相互作用基因组之间有两个根本区别:(1)真核生物的轮毂家族比古细菌和细菌要多得多;(2)某些特殊的轮毂家族决定了真核相互作用基因组的拓扑结构。我们的比较分析表明,极少数的膨胀蛋白家族导致了相互作用基因组的进化,似乎在物种多样化中发挥了关键作用。联系人:jong@kribb.re.kr补充信息:http://interactomics.org

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