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开发一种新型的基于细胞的细胞内western/ERK检测系统,用于高通量筛选作用于δ-阿片受体的激动剂。

Development of a novel cell-based, In-Cell Western/ERK assay system for the high-throughput screening of agonists acting on the delta-opioid receptor.

作者信息

Asghar Junaid, Latif Liaque, Alexander Stephen P H, Kendall David A

机构信息

Faculty of Pharmacy, Gomal University, Dera Ismail Khan, Pakistan.

School of Life Sciences, Faculty of Medicine and Health Sciences, Medical School, QMC, University of Nottingham, Nottingham, United Kingdom.

出版信息

Front Pharmacol. 2022 Sep 26;13:933356. doi: 10.3389/fphar.2022.933356. eCollection 2022.

Abstract

Extracellular signal-regulated kinases (ERKs) are important signaling mediators in mammalian cells and, as a result, one of the major areas of research focus. The detection and quantification of ERK phosphorylation as an index of activation is normally conducted using immunoblotting, which does not allow high-throughput drug screening. Plate-based immunocytochemical assays provide a cheaper and relatively high-throughput alternative method for quantifying ERK phosphorylation. Here, we present optimization steps aimed to increase assay sensitivity and reduce variance and cost using the LI-COR In-Cell Western (I-CW) system in a recombinant CHO-K1 cell line, over-expressing the human delta-opioid receptor (hDOPr) as a model. Cells cultured in 96-well microassay plates were stimulated with three standard/selective DOPr agonists (SNC80, ADL5859, and DADLE) and a novel selective DOPr agonist (PN6047) to elicit a phospho-ERK response as an index of activation. A number of experimental conditions were investigated during the assay development. Preliminary experiments revealed a clearly visible edge-effect which significantly increased assay variance across the plate and which was reduced by pre-incubation for 30 min at room temperature. ERK phosphorylation was detectable as early as 1 min after agonist addition, with a distinct peak at 3-5 min. Optimization of the cell seeding densities showed that 25,000 cells per well have the lowest basal phospho-ERK response and an optimal agonist ERK1/2 signal. Pre-incubation with apyrase (an ATPase) did not reduce the basal or agonist responses. All agonists produced concentration-dependent increases in phospho-ERK activation, and pertussis toxin was able to attenuate these ERK responses. Naltrindole, which is a selective DOPr antagonist, was able to antagonize the DOPr-mediated ERK activation of the ligands. We have developed an optimization protocol and highlighted a number of considerations when performing this high-throughput fluorescence immunocytochemical (ICC) assay measuring ERK phosphorylation in the human DOPr. The optimized protocol was found to be a more conducive option for the screening of delta agonists. This provides a basis for additional assay development to investigate opioid pharmacology. This protocol should be widely applicable for measuring ERK phosphorylation in any cell line and investigating other protein targets in GPCR drug discovery.

摘要

细胞外信号调节激酶(ERK)是哺乳动物细胞中重要的信号传导介质,因此也是主要的研究重点领域之一。通常使用免疫印迹法检测和定量ERK磷酸化作为激活指标,但该方法不适合高通量药物筛选。基于平板的免疫细胞化学分析提供了一种更便宜且相对高通量的替代方法来定量ERK磷酸化。在此,我们展示了优化步骤,旨在使用LI-COR细胞内 Western(I-CW)系统,以过表达人δ-阿片受体(hDOPr)的重组CHO-K1细胞系为模型,提高分析灵敏度、降低变异度并降低成本。将培养在96孔微量分析板中的细胞用三种标准/选择性DOPr激动剂(SNC80、ADL5859和DADLE)以及一种新型选择性DOPr激动剂(PN6047)刺激,以引发磷酸化ERK反应作为激活指标。在分析方法开发过程中研究了许多实验条件。初步实验揭示了明显的边缘效应,该效应显著增加了平板上的分析变异度,通过在室温下预孵育30分钟可降低此效应。在添加激动剂后1分钟即可检测到ERK磷酸化,在3 - 5分钟出现明显峰值。细胞接种密度的优化表明,每孔接种25,000个细胞具有最低的基础磷酸化ERK反应和最佳的激动剂ERK1/2信号。用腺苷三磷酸双磷酸酶(一种ATP酶)预孵育不会降低基础或激动剂反应。所有激动剂均使磷酸化ERK激活呈浓度依赖性增加,百日咳毒素能够减弱这些ERK反应。纳曲吲哚是一种选择性DOPr拮抗剂,能够拮抗配体介导的DOPr对ERK的激活。我们制定了一种优化方案,并强调了在进行这种测量人DOPr中ERK磷酸化的高通量荧光免疫细胞化学(ICC)分析时的一些注意事项。发现优化后的方案更有利于δ激动剂的筛选。这为进一步开展阿片类药物药理学分析开发提供了基础。该方案应广泛适用于测量任何细胞系中的ERK磷酸化以及在GPCR药物发现中研究其他蛋白质靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d34/9549385/0140df792be3/fphar-13-933356-g001.jpg

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