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对CD36相互作用组的研究为抗血管生成信号传导所需的多分子复合物提供了见解。

Investigation of CD36 interactome provides insights into multimolecular complexes necessary for anti-angiogenic signalling.

作者信息

Saini Arashdeep, Cardona Erik Gomez, Huang Han, Khaing Swai Mon, Klein Katie, Jaqaman Khuloud, Julien Olivier, Touret Nicolas

机构信息

Department of Biochemistry, University of Alberta, Edmonton, AB, Canada, T6G 2H7.

Current address: Faculty of Medicine, University of British Columbia, Vancouver, BC, Canada, V5Z 4H4.

出版信息

bioRxiv. 2025 Jul 16:2025.07.15.664851. doi: 10.1101/2025.07.15.664851.

Abstract

Signal transduction is a fundamental process that enables cells to adapt to external cues and organize adequate responses including survival, death, growth, and homeostasis. A key mechanism modulating signal transduction relies on the formation of multimolecular complexes optimized for specificity, modularity and signal amplification. The scavenger receptor CD36, which binds diverse ligands in different cellular contexts, illustrates this principle. To uncover the nature of CD36 multimolecular complexes, we employed a proximity biotinylation labeling approach on human endothelial cells, where CD36 binds to thrombospondin-1 (TSP-1) to initiate a signaling cascade promoting programmed cell death. Using biotin capture and mass spectrometry protein identification, we uncovered a list of proteins in the vicinity of CD36. This list of candidates was refined by proximity ligation assays. The relationship between key CD36 interacting molecules, in particular active integrin beta-1 (ITGB1) and CD9, was further decoded by conditional colocalization analysis, providing support for their association within a tri-molecular complex. The implication of selected candidates in the signaling function of CD36 was further evaluated using shRNA knockdown, revealing that active ITGB1 is essential for Fyn activation downstream of CD36, with the tetraspanin playing a connecting role between CD36 and active ITGB1. Our approach to investigating CD36 complexes emphasizes the complexity and fundamental role of protein-protein interactions and coordination in the context of transmembrane signal transduction.

摘要

信号转导是一个基本过程,它使细胞能够适应外部信号并组织适当的反应,包括存活、死亡、生长和内环境稳态。调节信号转导的一个关键机制依赖于形成针对特异性、模块化和信号放大而优化的多分子复合物。清道夫受体CD36在不同细胞环境中结合多种配体,说明了这一原理。为了揭示CD36多分子复合物的性质,我们在人内皮细胞上采用了邻近生物素化标记方法,在该细胞中CD36与血小板反应蛋白-1(TSP-1)结合以启动促进程序性细胞死亡的信号级联反应。通过生物素捕获和质谱蛋白质鉴定,我们发现了CD36附近的一系列蛋白质。通过邻近连接分析对这一候选蛋白列表进行了优化。通过条件共定位分析进一步解析了关键的CD36相互作用分子,特别是活性整合素β-1(ITGB1)和CD9之间的关系,为它们在三分子复合物中的关联提供了支持。使用短发夹RNA敲低进一步评估了所选候选蛋白在CD36信号功能中的作用,结果表明活性ITGB1对于CD36下游的Fyn激活至关重要,四跨膜蛋白在CD36和活性ITGB1之间起连接作用。我们研究CD36复合物的方法强调了蛋白质-蛋白质相互作用和协调在跨膜信号转导背景下的复杂性和基本作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61d8/12338606/751e621a6d27/nihpp-2025.07.15.664851v1-f0001.jpg

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