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首页> 外文期刊>PLoS Genetics >Why Do Hubs Tend to Be Essential in Protein Networks?
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Why Do Hubs Tend to Be Essential in Protein Networks?

机译:为什么集线器在蛋白质网络中趋向于必不可少?

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The protein–protein interaction (PPI) network has a small number of highly connected protein nodes (known as hubs) and many poorly connected nodes. Genome-wide studies show that deletion of a hub protein is more likely to be lethal than deletion of a non-hub protein, a phenomenon known as the centrality-lethality rule. This rule is widely believed to reflect the special importance of hubs in organizing the network, which in turn suggests the biological significance of network architectures, a key notion of systems biology. Despite the popularity of this explanation, the underlying cause of the centrality-lethality rule has never been critically examined. We here propose the concept of essential PPIs, which are PPIs that are indispensable for the survival or reproduction of an organism. Our network analysis suggests that the centrality-lethality rule is unrelated to the network architecture, but is explained by the simple fact that hubs have large numbers of PPIs, therefore high probabilities of engaging in essential PPIs. We estimate that ~ 3% of PPIs are essential in the yeast, accounting for ~ 43% of essential genes. As expected, essential PPIs are evolutionarily more conserved than nonessential PPIs. Considering the role of essential PPIs in determining gene essentiality, we find the yeast PPI network functionally more robust than random networks, yet far less robust than the potential optimum. These and other findings provide new perspectives on the biological relevance of network structure and robustness.
机译:蛋白质间相互作用(PPI)网络具有少量高度连接的蛋白质节点(称为集线器)和许多不良连接的节点。全基因组研究表明,与非中心蛋白的缺失相比,中心蛋白的缺失更可能具有致死性,这种现象被称为中心致死性规则。人们普遍认为,该规则反映了集线器在组织网络方面的特殊重要性,这反过来又暗示了网络体系结构(系统生物学的关键概念)的生物学意义。尽管这种解释很流行,但集中度-致命性规则的根本原因从未受到严格审查。我们在这里提出基本PPI的概念,这些PPI是有机体生存或繁殖必不可少的PPI。我们的网络分析表明,集中度-致命性规则与网络体系结构无关,但可以通过以下简单事实来解释:集线器具有大量PPI,因此参与基本PPI的可能性很高。我们估计,酵母中约有3%的PPI是必需的,约占必需基因的43%。不出所料,基本PPI在进化上比非必需PPI更保守。考虑到必需PPI在确定基因必需性中的作用,我们发现酵母PPI网络在功能上比随机网络更健壮,但远不及潜在的最佳方法强大。这些发现和其他发现为网络结构和健壮性的生物学相关性提供了新的视角。

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