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The properties of hub proteins in a yeast-aggregated cell cycle network and its phase sub-networks

机译:酵母聚集的细胞周期网络及其相子网络中毂蛋白的特性

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Currently, most researches on the properties of interacting proteins, hubs in particular, are mainly based on an aggregated network of binary interactions. Here, by projecting a yeast-aggregated cell cycle network into four phase (G1, S, G2 and M) sub-networks, we explored the properties of the hubs of the aggregated network. We found, as expected that only 69% (103 of 149) of hubs still act as hubs in at least one of the four sub-networks. Interestingly, those (19%) that are not hubs in any phase tend to perform multiple functions and differ from the others in their network positions. We also analyzed the potential biological features among the dynamic and static hubs. Finally, we investigated the dynamic properties of two complexes, the anaphase-promoting complex and the chromatin-remodeling complex. The dynamic function of the anaphase-promoting complex is represented by its interactions with CDC28 at different stages of mitotic cell cycle. The chromatin-remodeling complex is assembled when its dynamic component, ARP7, is periodically expressed in S phase to function in chromatin remodeling, which could reflect the just-in-time assembly of protein complexes. In conclusion, the study of decomposing the aggregated network and characterizing the hubs in decomposed sub-networks is useful for further understanding the dynamic functions of yeast cell cycle.
机译:当前,大多数有关相互作用蛋白特性的研究,特别是集线器,主要基于二元相互作用的聚集网络。在这里,通过将酵母聚集的细胞周期网络投影到四个阶段(G1,S,G2和M)子网络,我们探索了聚集网络的集线器的属性。正如预期的那样,我们发现只有69%(149个中的103个)的集线器仍在四个子网中的至少一个中充当集线器。有趣的是,在任何阶段都不是集线器的那些(19%)倾向于执行多种功能,并且在网络位置上与其他功能不同。我们还分析了动态和静态集线器之间的潜在生物学特征。最后,我们研究了两种复合物的动力学性质,即后期促进复合物和染色质重塑复合物。后期促进复合物的动态功能由其在有丝分裂细胞周期不同阶段与CDC28的相互作用表示。当染色质重塑复合物的动态成分ARP7在S期中周期性表达,从而在染色质重塑中起作用时,组装了染色质重塑复合物,这可能反映了蛋白质复合物的实时组装。总之,对聚合网络进行分解和表征分解子网中集线器的研究有助于进一步了解酵母细胞周期的动态功能。

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