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A Conserved Mammalian Protein Interaction Network
Authors:?sa Pérez-Bercoff  Corey M Hudson  Gavin C Conant
Institution:1. Smurfit Institute of Genetics, University of Dublin, Trinity College, Dublin, Ireland.; 2. Informatics Institute, University of Missouri, Columbia, Missouri, United States of America.; 3. Division of Animal Sciences, University of Missouri, Columbia, Missouri, United States of America.; King Abdullah University of Science and Technology, Saudi Arabia,
Abstract:Physical interactions between proteins mediate a variety of biological functions, including signal transduction, physical structuring of the cell and regulation. While extensive catalogs of such interactions are known from model organisms, their evolutionary histories are difficult to study given the lack of interaction data from phylogenetic outgroups. Using phylogenomic approaches, we infer a upper bound on the time of origin for a large set of human protein-protein interactions, showing that most such interactions appear relatively ancient, dating no later than the radiation of placental mammals. By analyzing paired alignments of orthologous and putatively interacting protein-coding genes from eight mammals, we find evidence for weak but significant co-evolution, as measured by relative selective constraint, between pairs of genes with interacting proteins. However, we find no strong evidence for shared instances of directional selection within an interacting pair. Finally, we use a network approach to show that the distribution of selective constraint across the protein interaction network is non-random, with a clear tendency for interacting proteins to share similar selective constraints. Collectively, the results suggest that, on the whole, protein interactions in mammals are under selective constraint, presumably due to their functional roles.
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