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Large-scale co-evolution analysis of protein structural interlogues using the global protein structural interactome map (PSIMAP)

机译:使用全局蛋白质结构相互作用图谱(PSIMAP)进行蛋白质结构对话的大规模共进化分析

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Motivation: Interacting pairs of proteins should co-evolve to maintain functional and structural complementarity. Consequently, such a pair of protein families shows similarity between their phylogenetic trees. Although the tendency of co-evolution has been known for various ligand–receptor pairs, it has not been studied systematically in the widest possible scope. We investigated the degree of co-evolution for more than 900 family pairs in a global protein structural interactome map (PSIMAP—a map of all the structural domain–domain interactions in the PDB). Results: There was significant correlation in 45% of the total SCOPs Family level pairs, rising to 78% in 454 reliable family interactions. Expectedly, the intra-molecular interactions between protein families showed stronger co-evolution than inter-molecular interactions. However, both types of interaction have a fundamentally similar pattern of co-evolution except for cases where different interfaces are involved. These results validate the use of co-evolution analysis with predictive methods such as PSIMAP to improve the accuracy of prediction based on ‘homologous interaction’. The tendency of co-evolution enabled a nearly 5-fold enrichment in the identification of true interactions among the potential interlogues in PSIMAP. The estimated sensitivity was 79.2%, and the specificity was 78.6%.
机译:动机:相互作用的蛋白质对应共同进化以维持功能和结构的互补性。因此,这样的一对蛋白质家族在它们的系统发育树之间显示出相似性。尽管对于各种配体-受体对,共同进化的趋势已为人所知,但尚未在尽可能广泛的范围内进行系统的研究。我们研究了全球蛋白质结构相互作用图谱(PSIMAP,即PDB中所有结构域-结构域相互作用的图)中900多个家族对的协同进化程度。结果:在SCOPs家庭水平对总数中,有45%有显着相关性,在454个可靠的家庭互动中上升到78%。预期地,蛋白质家族之间的分子内相互作用显示出比分子间相互作用更强的共同进化。但是,除了涉及不同接口的情况之外,两种类型的交互都具有基本相似的协同进化模式。这些结果验证了将协同进化分析与预测方法(例如PSIMAP)一起使用以提高基于“同源交互”的预测准确性的有效性。共同进化的趋势使得在PSIMAP中潜在的内在同源物之间的真正相互作用的鉴定中,富集了近5倍。估计的敏感性为79.2%,特异性为78.6%。

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