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首页> 外文期刊>Journal of Molecular Biology >Global network analysis of lipid-raft-related proteins reveals their centrality in the network and their roles in multiple biological processes.
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Global network analysis of lipid-raft-related proteins reveals their centrality in the network and their roles in multiple biological processes.

机译:脂筏相关蛋白的全球网络分析揭示了它们在网络中的中心地位及其在多种生物学过程中的作用。

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摘要

Lipid rafts are specialized cholesterol-enriched microdomains in the cell membrane. They have been known as a platform for protein-protein interactions and to take part in multiple biological processes. Nevertheless, how lipid rafts influence protein properties at the proteomic level is still an open question for researchers using traditional biochemical approaches. Here, by annotating the lipid raft localization of proteins in human protein-protein interaction networks, we performed a systematic analysis of the function of proteins related to lipid rafts. Our results demonstrated that lipid raft proteins and their interactions were critical for the structure and stability of the whole network, and that the interactions between them were significantly enriched. Furthermore, for each protein in the network, we calculated its "lipid raft dependency (LRD)," which indicates how close it is topologically associated with lipid rafts, and we then uncovered the connection between LRD and protein functions. Proteins with high LRD tended to be essential for mammalian development, and malfunction of these proteins was inclined to cause human diseases. Coordinated with their neighbors, high-LRD proteins participated in multiple biological processes and targeted many pathways in diseases pathogenesis. High-LRD proteins were also found to have tissue specificity of expression. In summary, our network-based analysis denotes that lipid raft proteins have higher centrality in the network, and that lipid-raft-related proteins have multiple functions and are probably concerned with many biological processes in disease development.
机译:脂质筏是细胞膜中专门富集胆固醇的微区。它们被称为蛋白质相互作用的平台,并参与多种生物学过程。然而,对于使用传统生化方法的研究人员而言,脂筏如何在蛋白质组学水平上影响蛋白质特性仍然是一个悬而未决的问题。在这里,通过注释人类蛋白质-蛋白质相互作用网络中蛋白质的脂质筏定位​​,我们对与脂质筏相关的蛋白质的功能进行了系统分析。我们的结果表明,脂筏蛋白及其相互作用对于整个网络的结构和稳定性至关重要,并且它们之间的相互作用显着丰富。此外,对于网络中的每种蛋白质,我们计算了其“脂质筏依赖性(LRD)”,这表明它与脂质筏在拓扑上的关联程度如何,然后我们发现了LRD与蛋白质功能之间的联系。具有高LRD的蛋白质往往是哺乳动物发育必不可少的,而这些蛋白质的功能失调倾向于引起人类疾病。高LRD蛋白与其邻居协调,参与了多种生物学过程,并靶向了疾病发病机理中的许多途径。还发现高LRD蛋白具有表达的组织特异性。总而言之,我们基于网络的分析表明,脂筏蛋白在网络中具有较高的中心性,脂筏相关蛋白具有多种功能,可能与疾病发展中的许多生物学过程有关。

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