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Trees on networks: resolving statistical patterns of phylogenetic similarities among interacting proteins

机译:网络上的树:解决相互作用蛋白之间系统相似性的统计模式

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Background Phylogenies capture the evolutionary ancestry linking extant species. Correlations and similarities among a set of species are mediated by and need to be understood in terms of the phylogenic tree. In a similar way it has been argued that biological networks also induce correlations among sets of interacting genes or their protein products. Results We develop suitable statistical resampling schemes that can incorporate these two potential sources of correlation into a single inferential framework. To illustrate our approach we apply it to protein interaction data in yeast and investigate whether the phylogenetic trees of interacting proteins in a panel of yeast species are more similar than would be expected by chance. Conclusions While we find only negligible evidence for such increased levels of similarities, our statistical approach allows us to resolve the previously reported contradictory results on the levels of co-evolution induced by protein-protein interactions. We conclude with a discussion as to how we may employ the statistical framework developed here in further functional and evolutionary analyses of biological networks and systems.
机译:背景系统发生学捕获与现有物种相关的进化祖先。一组物种之间的相关性和相似性是由系统发育树介导的,需要根据系统树进行理解。有人以类似的方式认为,生物网络还可以诱导相互作用的基因组或其蛋白质产物之间的相关性。结果我们开发了合适​​的统计重采样方案,可以将这两个潜在的相关性来源合并到一个推断框架中。为了说明我们的方法,我们将其应用于酵母中的蛋白质相互作用数据,并研究一组酵母物种中相互作用蛋白的系统树是否比偶然期望的相似。结论虽然我们发现这种相似性水平升高的证据微不足道,但我们的统计方法使我们能够解决先前报道的由蛋白质相互作用引起的协同进化水平上相互矛盾的结果。最后,我们讨论了如何在生物学网络和系统的进一步功能和进化分析中运用本文开发的统计框架。

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