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评估细胞阻抗测定法用于检测G蛋白偶联受体(GPCR)的多效性信号传导和功能选择性。

Evaluating cellular impedance assays for detection of GPCR pleiotropic signaling and functional selectivity.

作者信息

Peters Matthew F, Scott Clay W

机构信息

Lead Generation Department, AstraZeneca Pharmaceuticals LP, Wilmington, Delaware 19810, USA.

出版信息

J Biomol Screen. 2009 Mar;14(3):246-55. doi: 10.1177/1087057108330115. Epub 2009 Feb 11.

Abstract

G-protein-coupled receptors can couple to different signal transduction pathways in different cell types (termed cell-specific signaling) and can activate different signaling pathways depending on the receptor conformation(s) stabilized by the activating ligand (functional selectivity). These concepts offer potential for developing pathway-specific drugs that increase efficacy and reduce side effects. Despite significant interest, functional selectivity has been difficult to exploit in drug discovery, in part due to the burden of multiple assays. Cellular impedance assays use an emerging technology that can qualitatively distinguish Gs, Gi/o, and Gq signaling in a single assay and is thereby suited for studying these pharmacological concepts. Cellular impedance confirmed cell-specific Gs and Gq coupling for the melanocortin-4 receptor and dual Gi and Gs signaling with the cannabinoid-1 (CB1) receptor. The balance of Gi versus Gs signaling depended on the cell line. In CB1-HEKs, Giand Gs-like responses combined to yield a novel impedance profile demonstrating the dynamic nature of these traces. Cellspecific signaling was observed with endogenous D1 receptor in U-2 cells and SK-N-MC cells, yet the pharmacological profile of partial and full agonists was similar in both cell lines. We conclude that the dynamic impedance profile encodes valuable relative signaling information and is sufficiently robust to help evaluate cell-specific signaling and functional selectivity.

摘要

G蛋白偶联受体可在不同细胞类型中与不同的信号转导途径偶联(称为细胞特异性信号传导),并且可根据由激活配体稳定的受体构象(功能选择性)激活不同的信号传导途径。这些概念为开发能提高疗效并减少副作用的途径特异性药物提供了潜力。尽管人们对此兴趣浓厚,但功能选择性在药物发现中一直难以利用,部分原因是多种检测带来的负担。细胞阻抗检测使用了一种新兴技术,该技术可以在单一检测中定性区分Gs、Gi/o和Gq信号传导,因此适合于研究这些药理学概念。细胞阻抗证实了黑皮质素-4受体的细胞特异性Gs和Gq偶联以及大麻素-1(CB1)受体的Gi和Gs双重信号传导。Gi与Gs信号传导的平衡取决于细胞系。在CB1-HEK细胞中,类似Gi和Gs的反应相结合,产生了一种新的阻抗图谱,证明了这些信号的动态性质。在U-2细胞和SK-N-MC细胞中,用内源性D1受体观察到了细胞特异性信号传导,但部分激动剂和完全激动剂在这两种细胞系中的药理学特征相似。我们得出结论,动态阻抗图谱编码了有价值的相对信号信息,并且足够稳健,有助于评估细胞特异性信号传导和功能选择性。

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