Estrada Ernesto
Complex System Research Group, X-rays Unit, RIAIDT, University of Santiago de Compostela, Edificio CACTUS, Santiago de Compostela 15782, Spain.
J Proteome Res. 2006 Sep;5(9):2177-84. doi: 10.1021/pr060106e.
Protein-protein interaction networks (PINs) are structured by means of a few highly connected proteins linked to a large number of less-connected ones. Essential proteins have been found to be more abundant among these highly connected proteins. Here we demonstrate that the likelihood that removal of a protein in a PIN will prove lethal to yeast correlates with the lack of bipartivity of the protein. A protein is bipartite if it can be partitioned in such a way that there are two groups of proteins with intergroup, but not intragroup, interactions. The abundance of essential proteins found among the least bipartite proteins clearly exceeds that found among the most connected ones. For instance, among the top 50 proteins ranked by their lack of bipartivity 62% are essential proteins. However, this percentage is only 38% for proteins ranked according to their number of interactions. Protein bipartivity also surpasses another 5 measures of protein centrality in yeast PIN in identifying essential proteins and doubles the number of essential proteins selected at random. We propose a possible mechanism for the evolution of essential proteins in yeast PIN based on the duplication-divergence scheme. We conclude that a replica protein evolving from a nonbipartite target will also be nonbipartite with high probability. Consequently, these new replicas evolving from nonbipartite (essential) targets will with high probability be essential.
蛋白质-蛋白质相互作用网络(PINs)是由少数高度连接的蛋白质与大量连接较少的蛋白质构成的。已发现必需蛋白质在这些高度连接的蛋白质中更为丰富。在此我们证明,在PIN中去除一种蛋白质对酵母具有致死性的可能性与该蛋白质缺乏二分性相关。如果一种蛋白质能够以这样一种方式进行划分,即存在两组蛋白质,它们之间存在组间相互作用但不存在组内相互作用,那么这种蛋白质就是二分的。在二分性最低的蛋白质中发现的必需蛋白质的丰度明显超过在连接性最高的蛋白质中发现的必需蛋白质的丰度。例如,在按二分性缺失排名的前50种蛋白质中,62%是必需蛋白质。然而,对于按相互作用数量排名的蛋白质,这一比例仅为38%。在酵母PIN中识别必需蛋白质时,蛋白质二分性也超过了另外5种蛋白质中心性度量,并且随机选择的必需蛋白质数量增加了一倍。我们基于复制-分化模式提出了酵母PIN中必需蛋白质进化的一种可能机制。我们得出结论,从非二分目标进化而来的复制蛋白质也极有可能是非二分的。因此,从非二分(必需)目标进化而来的这些新复制蛋白质极有可能是必需的。