Microchemistry, Proteomics and Lipidomics, Genentech, South San Francisco, CA 94080;
Microchemistry, Proteomics and Lipidomics, Genentech, South San Francisco, CA 94080.
Proc Natl Acad Sci U S A. 2021 Sep 28;118(39). doi: 10.1073/pnas.2025451118.
Cell surface receptors are critical for cell signaling and constitute a quarter of all human genes. Despite their importance and abundance, receptor interaction networks remain understudied because of difficulties associated with maintaining membrane proteins in their native conformation and their typically weak interactions. To overcome these challenges, we developed an extracellular vesicle-based method for membrane protein display that enables purification-free and high-throughput detection of receptor-ligand interactions in membranes. We demonstrate that this platform is broadly applicable to a variety of membrane proteins, enabling enhanced detection of extracellular interactions over a wide range of binding affinities. We were able to recapitulate and expand the interactome for prominent members of the B7 family of immunoregulatory proteins such as PD-L1/CD274 and B7-H3/CD276. Moreover, when applied to the orphan cancer-associated fibroblast protein, LRRC15, we identified a membrane-dependent interaction with the tumor stroma marker TEM1/CD248. Furthermore, this platform enabled profiling of cellular receptors for target-expressing as well as endogenous extracellular vesicles. Overall, this study presents a sensitive and easy to use screening platform that bypasses membrane protein purification and enables characterization of interactomes for any cell surface-expressed target of interest in its native state.
细胞表面受体对于细胞信号转导至关重要,它们构成了所有人类基因的四分之一。尽管这些受体非常重要且丰富,但由于维持膜蛋白的天然构象及其通常较弱的相互作用存在困难,受体相互作用网络的研究仍相对较少。为了克服这些挑战,我们开发了一种基于细胞外囊泡的膜蛋白展示方法,该方法可实现膜受体-配体相互作用的无需纯化和高通量检测。我们证明了该平台具有广泛的适用性,可以增强对各种膜蛋白的检测,从而在广泛的结合亲和力范围内检测细胞外相互作用。我们能够重现和扩展免疫调节蛋白 B7 家族中一些重要成员(如 PD-L1/CD274 和 B7-H3/CD276)的相互作用组。此外,当将其应用于孤儿癌症相关成纤维蛋白 LRRC15 时,我们鉴定出其与肿瘤基质标志物 TEM1/CD248 之间的一种膜依赖性相互作用。此外,该平台还能够对表达靶标的细胞受体以及内源性细胞外囊泡进行分析。总的来说,本研究提出了一种灵敏且易于使用的筛选平台,该平台绕过了膜蛋白的纯化,能够以其天然状态对任何感兴趣的细胞表面表达的靶标进行相互作用组的特征分析。