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Linear Motif-Mediated Interactions Have Contributed to the Evolution of Modularity in Complex Protein Interaction Networks

机译:线性母题介导的相互作用促进了复杂蛋白质相互作用网络中模块性的发展。

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摘要

The modular architecture of protein-protein interaction (PPI) networks is evident in diverse species with a wide range of complexity. However, the molecular components that lead to the evolution of modularity in PPI networks have not been clearly identified. Here, we show that weak domain-linear motif interactions (DLIs) are more likely to connect different biological modules than strong domain-domain interactions (DDIs). This molecular division of labor is essential for the evolution of modularity in the complex PPI networks of diverse eukaryotic species. In particular, DLIs may compensate for the reduction in module boundaries that originate from increased connections between different modules in complex PPI networks. In addition, we show that the identification of biological modules can be greatly improved by including molecular characteristics of protein interactions. Our findings suggest that transient interactions have played a unique role in shaping the architecture and modularity of biological networks over the course of evolution.
机译:蛋白质-蛋白质相互作用(PPI)网络的模块化体系结构在具有广泛复杂性的不同物种中显而易见。但是,导致PPI网络模块化发展的分子成分尚未明确鉴定。在这里,我们显示弱域-线性基序相互作用(DLI)比强域-域相互作用(DDI)更可能连接不同的生物模块。这种分子分工对于多种真核生物物种的复杂PPI网络中模块性的发展至关重要。特别地,DLI可以补偿由于复杂的PPI网络中不同模块之间的增加的连接而引起的模块边界的减小。此外,我们表明,通过包括蛋白质相互作用的分子特征,可以大大改善生物模块的鉴定。我们的发现表明,瞬时相互作用在进化过程中对塑造生物网络的结构和模块性起了独特的作用。

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