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From Hub Proteins to Hub Modules: The Relationship Between Essentiality and Centrality in the Yeast Interactome at Different Scales of Organization

机译:从集线器到集线器模块:不同组织酵母蛋白酶的基本性和中心性之间的关系

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Numerous studies have suggested that hub proteins in the S. cerevisiae physical interaction network are more likely to be essential than other proteins. The proposed reasons underlying this observed relationship between topology and functioning have been subject to some controversy, with recent work suggesting that it arises due to the participation of hub proteins in essential complexes and processes. However, do these essential modules themselves have distinct network characteristics, and how do their essential proteins differ in their topological properties from their non-essential proteins? We aimed to advance our understanding of protein essentiality by analyzing proteins, complexes and processes within their broader functional context and by considering physical interactions both within and across complexes and biological processes. In agreement with the view that essentiality is a modular property, we found that the number of intracomplex or intraprocess interactions that a protein has is a better indicator of its essentiality than its overall number of interactions. Moreover, we found that within an essential complex, its essential proteins have on average more interactions, especially intracomplex interactions, than its non-essential proteins. Finally, we built a module-level interaction network and found that essential complexes and processes tend to have higher interaction degrees in this network than non-essential complexes and processes; that is, they exhibit a larger amount of functional cross-talk than their non-essential counterparts.
机译:许多研究表明,S.酿酒酵母物理相互作用网络中的轮毂蛋白更可能与其他蛋白质是必不可少的。这种观察到的拓扑和运作之间的关系的拟议原因一直受到一些争议的影响,最近的工作表明它由于中心蛋白在基本复合物和过程中的参与而产生。但是,这些基本模块本身是否具有不同的网络特征,以及它们的基本蛋白质如何与其非必需蛋白质的拓扑特性不同?我们旨在通过在更广泛的功能背景下分析蛋白质,复合物和过程,并通过考虑复合物和生物过程中的物理相互作用来推进蛋白质基质的理解。同意,本质性是一种模块化性质,我们发现蛋白质具有比其基本性的更好指标,其基本程度优于其整体的相互作用。此外,我们发现在一个必不可写的综合体内,其基本蛋白质的平均相互作用,特别是肠内络合相互作用,而不是其非必需蛋白。最后,我们建立了一个模块级交互网络,发现本网中的基本复合体和过程往往比非必需复合物和过程具有更高的互动度;也就是说,它们表现出比其非必要对应物更大的功能串扰。

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