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Why Do Hubs in the Yeast Protein Interaction Network Tend To Be Essential: Reexamining the Connection between the Network Topology and Essentiality

机译:酵母蛋白质相互作用网络中的集线器为何变得必不可少:重新检查网络拓扑与本质之间的联系

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摘要

The centrality-lethality rule, which notes that high-degree nodes in a protein interaction network tend to correspond to proteins that are essential, suggests that the topological prominence of a protein in a protein interaction network may be a good predictor of its biological importance. Even though the correlation between degree and essentiality was confirmed by many independent studies, the reason for this correlation remains illusive. Several hypotheses about putative connections between essentiality of hubs and the topology of protein–protein interaction networks have been proposed, but as we demonstrate, these explanations are not supported by the properties of protein interaction networks. To identify the main topological determinant of essentiality and to provide a biological explanation for the connection between the network topology and essentiality, we performed a rigorous analysis of six variants of the genomewide protein interaction network for Saccharomyces cerevisiae obtained using different techniques. We demonstrated that the majority of hubs are essential due to their involvement in Essential Complex Biological Modules, a group of densely connected proteins with shared biological function that are enriched in essential proteins. Moreover, we rejected two previously proposed explanations for the centrality-lethality rule, one relating the essentiality of hubs to their role in the overall network connectivity and another relying on the recently published essential protein interactions model.
机译:集中度-致死性规则指出蛋白质相互作用网络中的高度结点倾向于与必需的蛋白质相对应,这表明蛋白质相互作用网络中蛋白质的拓扑突出可能是其生物学重要性的良好预测指标。尽管许多独立研究证实了程度与必要性之间的相关性,但这种相关性的原因仍然是虚幻的。已经提出了关于集线器的必要性和蛋白质-蛋白质相互作用网络的拓扑之间的假定联系的几种假设,但是正如我们所证明的,蛋白质相互作用网络的性质不支持这些解释。为了确定必要性的主要拓扑决定因素并为网络拓扑结构和必要性之间的联系提供生物学解释,我们对酿酒酵母的全基因组蛋白质相互作用网络的六个变体进行了严格的分析,这些变体使用不同的技术获得。我们证明了大多数集线器是必不可少的,因为它们参与了“必需的复杂生物模块”,即一组具有共享生物学功能的紧密连接的蛋白质,这些蛋白质富含必需的蛋白质。此外,我们拒绝了先前提出的关于集中度-致命性规则的两种解释,一种将集线器的重要性与其在整个网络连接中的作用联系起来,另一种依赖于最近发布的必需蛋白质相互作用模型。

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