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Phylogenomics of Orthologous Protein Families in Prokaryotes: Comparison of Evolutionary Profiles

机译:原核生物直系同源蛋白质家族的系统生物学:进化谱的比较。

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The sequence similarity relationships between the members of a protein family contain information on its evolutionary history, such as the relative time of horizontal transfer events, and the differential acceleration or deceleration of evolution in particular organisms in response to selective pressures. This paper presents a quantitative representation and comparison of evolutionary profiles of proteins, and finds correlations between evolutionary profile similarities and evolutionary or functional links between proteins. Using a dataset of 84 orthologous protein families ubiquitous in prokaryotes, we obtain the evolutionary profile of each family as a vector of inter-sequence distances. We then compare the family-specific evolutionary vectors and quantitate the evolutionary similarity between families. Two primary methods for vector comparison were used, namely the angle between vectors and correlation distance between vectors. Both approaches are powerful enough to recognize known evolutionary similarities, and yield similar inter-family relationships, but they also display important differences. These differences are shown to exist because the two methods recognize different aspects of the evolutionary profile. The inter-vector angle is an effective measure of the difference in the overall form of phylogenetic trees even in cases where the topology of the tree is not well-defined, whereas the correlation distance is especially effective in recognizing similarities in topology. When the protein families are clustered based on either the angle or the correlation distance between them, the cluster dendrogram shows a core cluster consisting of ancient protein families with the standard phylogeny. In addition, evolutionary profile comparison also detects plausible evolutionary similarities between unannotated proteins and proteins of known function. For instance, the bacterial yjeF gene and the ygjD/ydiE gene are both predicted to be involved in cell envelope biogenesis. In summary, we describe quantitative comparisons of protein family specific evolutionary profiles, and illustrate their power in detecting broader evolutionary trends and specific functional relationships between proteins.
机译:蛋白质家族成员之间的序列相似性关系包含有关其进化历史的信息,例如水平转移事件的相对时间,以及特定生物响应选择压力而产生的差异加速或减速。本文提出了蛋白质进化图谱的定量表示和比较,并发现了进化图谱相似性与蛋白质之间的进化或功能联系之间的相关性。使用原核生物中普遍存在的84个直系同源蛋白质家族的数据集,我们获得了每个家族的进化谱,作为序列间距离的向量。然后,我们比较了特定于家族的进化载体,并定量了家族之间的进化相似性。使用了两种主要的矢量比较方法,即矢量之间的角度和矢量之间的相关距离。两种方法都具有强大的功能,足以识别已知的进化相似性,并产生相似的家族关系,但它们也显示出重要的差异。这些差异之所以存在,是因为这两种方法都可以识别进化轮廓的不同方面。即使在树的拓扑结构未明确定义的情况下,向量间角度也可以有效地衡量系统发育树整体形式的差异,而相关距离对于识别拓扑结构的相似性尤其有效。当蛋白质家族根据它们之间的角度或相关距离进行聚类时,聚类树状图显示出一个核心聚类,该聚类由具有标准系统发育史的古老蛋白质家族组成。另外,进化谱比较还检测了未注释蛋白与已知功能蛋白之间可能的进化相似性。例如,细菌的yjeF基因和ygjD / ydiE基因都被预测与细胞包膜的生物发生有关。总而言之,我们描述了蛋白质家族特异性进化谱的定量比较,并阐明了它们在检测更广泛的进化趋势和蛋白质之间特定功能关系中的作用。

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