通过使用系列激动剂暴露方案,提高无标记细胞测定的通量,以研究 G 蛋白偶联受体的活化。

IF 1.4 4区 生物学 Q4 CELL BIOLOGY
J A Stolwijk, M Skiba, C Kade, G Bernhardt, A Buschauer, H Hübner, P Gmeiner, J Wegener
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引用次数: 2

摘要

在评估 G 蛋白偶联受体(GPCR)配体时,无标记的整体测定法(例如监测电极上细胞的阻抗)越来越受欢迎。这些方法的优势在于能以非侵入式、高度自动化的方式提供综合细胞反应,其时间分辨率可低至几毫秒。然而,随着需要并行研究的样本数量不断增加,可用的时间分辨率会降低,一次性传感器阵列的成本也会受到限制。受器官药理学协议的启发,我们研究了一种简单的序列激动剂添加测定法,以规避基于阻抗的细胞测定中的这些限制。通过连续添加浓度不断增加的 GPCR 激动剂,同时持续监测样品的阻抗,我们在单层内源性表达组胺 1 受体 (H1R) 的 U-373 MG 细胞上建立了内源性激动剂组胺的完整浓度-反应曲线。这种方法与传统的并行激动剂添加方案和使用甲吡胺等 H1R 拮抗剂的研究相比得到了验证。串联激动剂添加试验还适用于其他通过 Gq、Gi/0 或 Gs 等典型 G 蛋白通路之一发出信号的 GPCR。序列激动剂添加方案有望进一步加强对 GPCR 激活的无标记分析结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Increasing the throughput of label-free cell assays to study the activation of G-protein-coupled receptors by using a serial agonist exposure protocol.

Label-free, holistic assays, monitoring, for example, the impedance of cells on electrodes, are gaining increasing popularity in the evaluation of G-protein-coupled receptor (GPCR) ligands. It is the strength of these approaches to provide the integrated cellular response non-invasively, highly automated and with a device-dependent time resolution down to several milliseconds. With an increasing number of samples to be studied in parallel, the available time resolution is, however, reduced and the cost for the disposable sensor arrays may become limiting. Inspired by protocols from organ pharmacology, we investigated a simple serial agonist addition assay that circumvents these limitations in impedance-based cellular assays. Using a serial addition of increasing concentrations of a GPCR agonist while continuously monitoring the sample's impedance, we were able to establish a full concentration-response curve for the endogenous agonist histamine on a single layer of U-373 MG cells endogenously expressing the histamine 1 receptor (H1R). This approach is validated with respect to conventional, parallel agonist addition protocols and studies using H1R antagonists such as mepyramine. Applicability of the serial agonist addition assay was shown for other GPCRs known for their signaling via one of the canonical G-protein pathways, Gq, Gi/0 or Gs as well. The serial agonist addition protocol has the potential to further strengthen the output of label-free analysis of GPCR activation.

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来源期刊
Integrative Biology
Integrative Biology 生物-细胞生物学
CiteScore
4.90
自引率
0.00%
发文量
15
审稿时长
1 months
期刊介绍: Integrative Biology publishes original biological research based on innovative experimental and theoretical methodologies that answer biological questions. The journal is multi- and inter-disciplinary, calling upon expertise and technologies from the physical sciences, engineering, computation, imaging, and mathematics to address critical questions in biological systems. Research using experimental or computational quantitative technologies to characterise biological systems at the molecular, cellular, tissue and population levels is welcomed. Of particular interest are submissions contributing to quantitative understanding of how component properties at one level in the dimensional scale (nano to micro) determine system behaviour at a higher level of complexity. Studies of synthetic systems, whether used to elucidate fundamental principles of biological function or as the basis for novel applications are also of interest.
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