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预测 29 个人体组织中 Ras 效应物相互作用的“连接景观”。

Predicted 'wiring landscape' of Ras-effector interactions in 29 human tissues.

机构信息

UCD Charles Institute of Dermatology, School of Medicine, University College Dublin, Belfield, Dublin, 4, Ireland.

Systems Biology Ireland, School of Medicine, University College Dublin, Belfield, Dublin, 4, Ireland.

出版信息

NPJ Syst Biol Appl. 2021 Feb 12;7(1):10. doi: 10.1038/s41540-021-00170-0.

Abstract

Ras is a plasma membrane (PM)-associated signaling hub protein that interacts with its partners (effectors) in a mutually exclusive fashion. We have shown earlier that competition for binding and hence the occurrence of specific binding events at a hub protein can modulate the activation of downstream pathways. Here, using a mechanistic modeling approach that incorporates high-quality proteomic data of Ras and 56 effectors in 29 (healthy) human tissues, we quantified the amount of individual Ras-effector complexes, and characterized the (stationary) Ras "wiring landscape" specific to each tissue. We identified nine effectors that are in significant amount in complex with Ras in at least one of the 29 tissues. We simulated both mutant- and stimulus-induced network re-configurations, and assessed their divergence from the reference scenario, specifically discussing a case study for two stimuli in three epithelial tissues. These analyses pointed to 32 effectors that are in significant amount in complex with Ras only if they are additionally recruited to the PM, e.g. via membrane-binding domains or domains binding to activated receptors at the PM. Altogether, our data emphasize the importance of tissue context for binding events at the Ras signaling hub.

摘要

Ras 是一种质膜(PM)相关的信号枢纽蛋白,以相互排斥的方式与其伙伴(效应物)相互作用。我们之前已经表明,结合的竞争,因此在枢纽蛋白上发生特定的结合事件,可以调节下游途径的激活。在这里,我们使用一种机械建模方法,该方法结合了 29 个人类组织中 Ras 和 56 种效应物的高质量蛋白质组学数据,定量了单个 Ras-效应物复合物的数量,并描述了特定于每种组织的(静态)Ras“布线景观”。我们鉴定了 9 种效应物,它们在至少 29 种组织中的一种中以大量复合物的形式与 Ras 存在。我们模拟了突变体和刺激诱导的网络重新配置,并评估了它们与参考情况的差异,特别是在三种上皮组织中对两个刺激的案例研究。这些分析指出,如果 32 种效应物除了通过膜结合结构域或与 PM 上激活的受体结合的结构域被募集到质膜之外,它们与 Ras 以大量复合物的形式存在是非常重要的。总之,我们的数据强调了组织背景对 Ras 信号枢纽结合事件的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6dc/7881153/b38f17432af5/41540_2021_170_Fig1_HTML.jpg

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