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首页> 外文期刊>Frontiers in Endocrinology >A Broad G Protein-Coupled Receptor Internalization Assay that Combines SNAP-Tag Labeling, Diffusion-Enhanced Resonance Energy Transfer, and a Highly Emissive Terbium Cryptate
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A Broad G Protein-Coupled Receptor Internalization Assay that Combines SNAP-Tag Labeling, Diffusion-Enhanced Resonance Energy Transfer, and a Highly Emissive Terbium Cryptate

机译:结合了SNAP标签,扩散增强的共振能量转移和高发射态C的G蛋白偶联受体内在化检测方法

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Although G protein-coupled receptor (GPCR) internalization has long been considered as a major aspect of the desensitization process that tunes ligand responsiveness, internalization is also involved in receptor resensitization and signaling, as well as the ligand scavenging function of some atypical receptors. Internalization thus contributes to the diversity of GPCR-dependent signaling, and its dynamics and quantification in living cells has generated considerable interest. We developed a robust and sensitive assay to follow and quantify ligand-induced and constitutive-induced GPCR internalization but also receptor recycling in living cells. This assay is based on diffusion-enhanced resonance energy transfer (DERET) between cell surface GPCRs labeled with a luminescent terbium cryptate donor and a fluorescein acceptor present in the culture medium. GPCR internalization results in a quantifiable reduction of energy transfer. This method yields a high signal-to-noise ratio due to time-resolved measurements. For various GPCRs belonging to different classes, we demonstrated that constitutive and ligand-induced internalization could be monitored as a function of time and ligand concentration, thus allowing accurate quantitative determination of kinetics of receptor internalization but also half-maximal effective or inhibitory concentrations of compounds. In addition to its selectivity and sensitivity, we provided evidence that DERET-based internalization assay is particularly suitable for characterizing biased ligands. Furthermore, the determination of a Z′-factor value of 0.45 indicates the quality and suitability of DERET-based internalization assay for high-throughput screening (HTS) of compounds that may modulate GPCRs internalization.
机译:尽管G蛋白偶联受体(GPCR)的内在作用长期以来一直被视为调节配体响应性的脱敏过程的主要方面,但内在化也参与受体的重新敏化和信号传导以及某些非典型受体的配体清除功能。因此,内在化促进了GPCR依赖性信号转导的多样性,其在活细胞中的动态变化和定量引起了人们的极大兴趣。我们开发了一种强大而灵敏的测定方法,以追踪和定量配体诱导和组成性诱导的GPCR内在化,以及活细胞中的受体回收。该测定基于细胞表面GPCR之间的扩散增强共振能量转移(DERET),该表面被存在于培养基中的发光加密供体和荧光素受体标记。 GPCR内在化可导致能量转移的量化减少。由于时间分辨的测量,该方法产生高的信噪比。对于属于不同类别的各种GPCR,我们证明了本构和配体诱导的内在化可以作为时间和配体浓度的函数进行监测,从而可以准确定量测定受体内在化的动力学,但还可以将化合物的最大有效浓度或抑制浓度定为一半。除了其选择性和敏感性外,我们还提供了证据表明,基于DERET的内化分析特别适合于表征有偏差的配体。此外,确定的Z'因子值为0.45表示基于DERET的内在化分析的质量和适用性,以进行可能调节GPCR内在化的化合物的高通量筛选(HTS)。

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