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CANDLES an assay for monitoring GPCR induced cAMP generation in cell cultures

机译:CANDLES一种用于监测GPCR诱导的细胞培养物中cAMP生成的方法

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摘要

BackgroundG protein-coupled receptors (GPCRs) represent a physiologically and pharmacologically important family of receptors that upon coupling to GαS stimulate cAMP production catalyzed by adenylyl cyclase. Thus, developing assays to monitor cAMP production is crucial to screen for ligands in studies of GPCR signaling. Primary cell cultures represent a more robust model than cell lines to study GPCR signaling since they physiologically resemble the parent tissue. Current cAMP assays have two fundamental limitations: 1) absence of cAMP kinetics as competition-based assays require cell lysis and measure only a single time-point, and 2) high variation with separate samples needed to measure consecutive time points. The utility of real-time cAMP biosensors is also limited in primary cell cultures due to their poor transfection efficiency, variable expression levels and inability to select stable clones. We therefore, decided to develop an assay that can measure cAMP not only at a single time-point but the entire cAMP kinetics after GPCR activation in untransfected primary cells.
机译:背景G蛋白偶联受体(GPCR)代表了生理和药理学上重要的受体家族,与GαS偶联后可刺激腺苷酸环化酶催化的cAMP产生。因此,在GPCR信号研究中,开发监测cAMP产生的检测方法对于筛选配体至关重要。由于原代细胞培养物在生理上类似于亲本组织,因此它代表了一种比研究GPCR信号的细胞系更强大的模型。当前的cAMP分析具有两个基本局限性:1)由于基于竞争的分析需要细胞裂解并仅测量单个时间点,因此不存在cAMP动力学;以及2)测量连续时间点所需的单独样品的变异性很大。由于实时cAMP生物传感器的转染效率低,表达水平可变且无法选择稳定的克隆,因此其在原代细胞培养中的应用也受到限制。因此,我们决定开发一种不仅可以在单个时间点测量cAMP的测定方法,而且还可以在未转染的原代细胞中GPCR激活后测量整个cAMP动力学。

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