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Quantitative measurement of cell membrane receptor internalization by the nanoluciferase reporter: Using the G protein-coupled receptor RXFP3 as a model

机译:纳米荧光素酶报道分子对细胞膜受体内在化的定量测量:使用G蛋白偶联受体RXFP3作为模型

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Nanoluciferase (NanoLuc) is a newly developed small luciferase reporter with the brightest bioluminescence to date. In the present work, we developed NanoLuc as a sensitive bioluminescent reporter to measure quantitatively the internalization of cell membrane receptors, based on the pH dependence of the reporter activity. The G protein-coupled receptor RXFP3, the cognate receptor of relaxin-3/INSL7, was used as a model receptor. We first generated stable HEK293T cells that inducibly coexpressed a C-terminally NanoLuc-tagged human RXFP3 and a C-terminally enhanced green fluorescent protein (EGFP)-tagged human RXFP3. The C-terminal EGFP-tag and NanoLuc-tag had no detrimental effects on the ligand-binding potency and intracellular trafficking of RXFP3. Based on the fluorescence of the tagged EGFP reporter, the ligand-induced RXFP3 internalization was visualized directly under a fluorescence microscope. Based on the bioluminescence of the tagged NanoLuc reporter, the ligand-induced RXFP3 internalization was measured quantitatively by a convenient bioluminescent assay. Coexpression of an EGFP-tagged inactive [E141R]RXFP3 had no detrimental effect on the ligand-binding potency and ligand-induced internalization of the NanoLuc-tagged wild-type RXFP3, suggesting that the mutant RXFP3 and wild-type RXFP3 worked independently. The present bioluminescent internalization assay could be extended to other G protein-coupled receptors and other cell membrane receptors to study ligand-receptor and receptor-receptor interactions. (C) 2014 Elsevier B.V. All rights reserved.
机译:纳米荧光素酶(NanoLuc)是一种新型的小型荧光素酶报道分子,具有迄今为止最亮的生物发光。在当前的工作中,我们开发了NanoLuc作为敏感的生物发光报告分子,可根据报告分子活性的pH依赖性来定量测量细胞膜受体的内在化。 G蛋白偶联受体RXFP3(松弛素3 / INSL7的同源受体)用作模型受体。我们首先生成了稳定的HEK293T细胞,该细胞可诱导共表达C端NanoLuc标记的人RXFP3和C端增强绿色荧光蛋白(EGFP)标记的人RXFP3。 C端EGFP标签和NanoLuc标签对RXFP3的配体结合力和细胞内运输没有有害影响。基于标记的EGFP报告基因的荧光,配体诱导的RXFP3内部化可以在荧光显微镜下直接观察到。基于标记的NanoLuc报道分子的生物发光,通过便利的生物发光分析定量测量了配体诱导的RXFP3内在化。带有EGFP标签的无活性[E141R] RXFP3的共表达对NanoLuc标签的野生型RXFP3的配体结合力和配体诱导的内在化没有不利影响,这表明突变体RXFP3和野生型RXFP3可以独立发挥作用。本生物发光内在化分析可以扩展到其他G蛋白偶联受体和其他细胞膜受体,以研究配体-受体和受体-受体的相互作用。 (C)2014 Elsevier B.V.保留所有权利。

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