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Systematic Differences in Signal Emitting and Receiving Revealed by PageRank Analysis of a Human Protein Interactome

机译:在信号发射和接收系统的差异对人类蛋白质相互作用组学的pageRank的分析显示

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摘要

Most protein PageRank studies do not use signal flow direction information in protein interactions because this information was not readily available in large protein databases until recently. Therefore, four questions have yet to be answered: A) What is the general difference between signal emitting and receiving in a protein interactome? B) Which proteins are among the top ranked in directional ranking? C) Are high ranked proteins more evolutionarily conserved than low ranked ones? D) Do proteins with similar ranking tend to have similar subcellular locations? In this study, we address these questions using the forward, reverse, and non-directional PageRank approaches to rank an information-directional network of human proteins and study their evolutionary conservation. The forward ranking gives credit to information receivers, reverse ranking to information emitters, and non-directional ranking mainly to the number of interactions. The protein lists generated by the forward and non-directional rankings are highly correlated, but those by the reverse and non-directional rankings are not. The results suggest that the signal emitting/receiving system is characterized by key-emittings and relatively even receivings in the human protein interactome. Signaling pathway proteins are frequent in top ranked ones. Eight proteins are both informational top emitters and top receivers. Top ranked proteins, except a few species-related novel-function ones, are evolutionarily well conserved. Protein-subunit ranking position reflects subunit function. These results demonstrate the usefulness of different PageRank approaches in characterizing protein networks and provide insights to protein interaction in the cell.
机译:大多数蛋白质PageRank研究并未在蛋白质相互作用中使用信号流方向信息,因为直到最近才在大型蛋白质数据库中容易获得此信息。因此,有四个问题尚待解答:A)蛋白质相互作用组中信号发射和接收之间的一般区别是什么? B)哪些蛋白质在定向排名中排名最高? C)高等级的蛋白质比低等级的蛋白质在进化上更保守吗? D)具有相似排名的蛋白质是否倾向于具有相似的亚细胞位置?在这项研究中,我们使用正向,反向和无方向PageRank方法对人类蛋白质的信息方向网络进行排名并研究其进化保守性,从而解决了这些问题。前向排名归功于信息接收者,反向排名归功于信息发布者,而非定向排名则主要归功于交互次数。前向和非定向排名生成的蛋白质列表高度相关,而反向和非定向排名生成的蛋白质列表则不相关。结果表明,信号发射/接收系统的特征在于人蛋白质相互作用组中的关键发射和相对均匀的接收。信号通路蛋白在排名靠前的蛋白中很常见。八个蛋白质既是信息性的主要发射器,又是信息性的接收器。除了一些与物种相关的新功能蛋白以外,排名靠前的蛋白在进化上也得到了很好的保存。蛋白质亚基排名位置反映了亚基功能。这些结果证明了不同PageRank方法在表征蛋白质网络中的有用性,并提供了对细胞中蛋白质相互作用的见解。

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