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利用均相时间分辨荧光共振能量转移和代谢糖工程分析细胞表面受体-配体相互作用:在跨膜和 GPI 锚定受体中的应用。

Cell-Surface Receptor-Ligand Interaction Analysis with Homogeneous Time-Resolved FRET and Metabolic Glycan Engineering: Application to Transmembrane and GPI-Anchored Receptors.

机构信息

AbbVie, Inc. , 1 North Waukegan Road, North Chicago, Illinois 60064, United States.

出版信息

J Am Chem Soc. 2017 Nov 22;139(46):16822-16829. doi: 10.1021/jacs.7b09359. Epub 2017 Nov 9.

Abstract

Ligand-binding assays are the linchpin of drug discovery and medicinal chemistry. Cell-surface receptors and their ligands have traditionally been characterized by radioligand-binding assays, which have low temporal and spatial resolution and entail safety risks. Here, we report a powerful alternative (GlycoFRET), where terbium-labeled fluorescent reporters are irreversibly attached to receptors by metabolic glycan engineering. For the first time, we show time-resolved fluorescence resonance energy transfer between receptor glycans and fluorescently labeled ligands. We describe GlycoFRET for a GPI-anchored receptor, a G-protein-coupled receptor, and a heterodimeric cytokine receptor in living cells with excellent sensitivity and high signal-to-background ratios. In contrast to previously described methods, GlycoFRET does not require genetic engineering or antibodies to label receptors. Given that all cell-surface receptors are glycosylated, we expect that GlycoFRET can be generalized with applications in chemical biology and biotechnology, such as target engagement, receptor pharmacology, and high-throughput screening.

摘要

配体结合分析是药物发现和药物化学的关键。细胞表面受体及其配体传统上通过放射性配体结合分析来表征,这种方法的时空分辨率较低,并且存在安全风险。在这里,我们报告了一种强大的替代方法(GlycoFRET),其中铽标记的荧光报告分子通过代谢糖基工程不可逆地连接到受体上。我们首次展示了受体糖基和荧光标记配体之间的时间分辨荧光共振能量转移。我们描述了 GlycoFRET 在活细胞中用于 GPI 锚定受体、G 蛋白偶联受体和异二聚体细胞因子受体的情况,具有出色的灵敏度和高信号与背景比。与以前描述的方法相比,GlycoFRET 不需要基因工程或抗体来标记受体。鉴于所有细胞表面受体都被糖基化,我们预计 GlycoFRET 可以推广应用于化学生物学和生物技术,例如靶标结合、受体药理学和高通量筛选。

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