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Cell-based bioluminescent assay for monitoring the interaction between PCSK9 and the LDL receptor

机译:基于细胞的生物发光测定法用于监测PCSK9和LDL受体之间的相互作用

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摘要

Monitoring the expression of cell-surface receptors, their interaction with extracellular ligands, and their fate upon ligand binding is important for understanding receptor function and developing new therapies. We describe a cell-based method that utilizes bioluminescent protein complementation technology to interrogate binding of a cellular receptor with its extracellular protein ligand, specifically LDL receptor (LDLR) and proprotein convertase subtilisin/kexin type 9 (PCSK9). Purified, full-length tagged PCSK9 is added to assay wells containing cells that stably express LDLR with an extracellular complementary tag. When the tagged PCSK9 binds the receptor, a bright luminescence signal is generated. The interaction is detected at the cell membrane with add-and-read simplicity, no wash steps, and flexibility, allowing data to be collected in endpoint format, kinetically, or with bioluminescent imaging. The assay is flexible, is rapid, and reports accurate biology. It is amenable to 96-well and 384-well formats, and the robustness allows for screening of new drug candidates (Z′ = 0.83). The assay reports correct potencies for antibody titrations across a 50%–150% potency range and detects potency changes due to heat stress, suggesting that it may be useful during drug development. This assay technology can be broadly applied when studying other receptors with their extracellular ligands, whether protein or small-molecule binding partners.
机译:监测细胞表面受体的表达,它们与细胞外配体的相互作用以及配体结合后的命运对于理解受体功能和开发新疗法很重要。我们描述了一种基于细胞的方法,该方法利用生物发光蛋白互补技术来询问细胞受体与其细胞外蛋白配体的结合,特别是LDL受体(LDLR)和前蛋白转化酶枯草杆菌蛋白酶/ kexin 9型(PCSK9)。将纯化的,全长标记的PCSK9添加到含有稳定表达带有细胞外互补标签的LDLR的细胞的测定孔中。当标记的PCSK9结合受体时,会产生明亮的发光信号。在细胞膜上以添加和读取的简单性,无洗涤步骤和灵活性的方式检测到相互作用,从而可以以终点格式,动力学或生物发光成像方式收集数据。该测定法灵活,快速且报告了准确的生物学信息。它适用于96孔和384孔形式,并且坚固性允许筛选新候选药物(Z'= 0.83)。该测定法报告了在50%–150%的效价范围内抗体滴定的正确效价,并检测了由于热应激引起的效价变化,这表明它在药物开发过程中可能有用。当研究具有细胞外配体的其他受体,无论是蛋白质还是小分子结合伴侣时,该测定技术均可广泛应用。

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