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Dynamic Hubs Show Competitive and Static Hubs Non-Competitive Regulation of Their Interaction Partners

机译:活力的城市展示自己的人际竞争和静态集线器非竞争规则

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摘要

Date hub proteins have 1 or 2 interaction interfaces but many interaction partners. This raises the question of whether all partner proteins compete for the interaction interface of the hub or if the cell carefully regulates aspects of this process? Here, we have used real-time rendering of protein interaction networks to analyse the interactions of all the 1 or 2 interface hubs of Saccharomyces cerevisiae during the cell cycle. By integrating previously determined structural and gene expression data, and visually hiding the nodes (proteins) and their edges (interactions) during their troughs of expression, we predict when interactions of hubs and their partners are likely to exist. This revealed that 20 out of all 36 one- or two- interface hubs in the yeast interactome fell within two main groups. The first was dynamic hubs with static partners, which can be considered as ‘competitive hubs’. Their interaction partners will compete for the interaction interface of the hub and the success of any interaction will be dictated by the kinetics of interaction (abundance and affinity) and subcellular localisation. The second was static hubs with dynamic partners, which we term ‘non-competitive hubs’. Regulatory mechanisms are finely tuned to lessen the presence and/or effects of competition between the interaction partners of the hub. It is possible that these regulatory processes may also be used by the cell for the regulation of other, non-cell cycle processes.
机译:数据中心蛋白具有1个或2个相互作用界面,但有许多相互作用伴侣。这就提出了一个问题,即所有的伴侣蛋白是否都在竞争枢纽的相互作用界面,或者细胞是否仔细调节了这一过程的各个方面?在这里,我们已经使用蛋白质相互作用网络的实时渲染来分析酿酒酵母在细胞周期中所有1个或2个接口集线器的相互作用。通过整合先前确定的结构和基因表达数据,并在表达槽中可视地隐藏节点(蛋白质)及其边缘(相互作用),我们可以预测何时可能存在集线器及其伴侣的相互作用。这表明酵母相互作用组中的所有36个1或2接口枢纽中有20个属于两个主要类别。首先是具有静态合作伙伴的动态中心,可以将其称为“竞争中心”。他们的相互作用伙伴将竞争枢纽的相互作用界面,任何相互作用的成功都将取决于相互作用的动力学(丰度和亲和力)和亚细胞定位。第二个是具有动态合作伙伴的静态中心,我们称之为“非竞争中心”。精细调整了监管机制,以减少枢纽互动伙伴之间竞争的存在和/或影响。这些调节过程也有可能被细胞用于调节其他非细胞周期过程。

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    Apurv Goel; Marc R. Wilkins;

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  • 年(卷),期 -1(7),10
  • 年度 -1
  • 页码 e48209
  • 总页数 9
  • 原文格式 PDF
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