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一种动态、基于双荧光素酶的迷你 G 蛋白传感器,可用于对所有四种组胺受体亚型的配体进行功能表征。

A Dynamic, Split-Luciferase-Based Mini-G Protein Sensor to Functionally Characterize Ligands at All Four Histamine Receptor Subtypes.

机构信息

Institute of Pharmacy, Faculty of Chemistry and Pharmacy, University of Regensburg, 93040 Regensburg, Germany.

出版信息

Int J Mol Sci. 2020 Nov 10;21(22):8440. doi: 10.3390/ijms21228440.

Abstract

In drug discovery, assays with proximal readout are of great importance to study target-specific effects of potential drug candidates. In the field of G protein-coupled receptors (GPCRs), the determination of GPCR-G protein interactions and G protein activation by means of radiolabeled GTP analogs ([S]GTPγS, [γ-P]GTP) has widely been used for this purpose. Since we were repeatedly faced with insufficient quality of radiolabeled nucleotides, there was a requirement to implement a novel proximal functional assay for the routine characterization of putative histamine receptor ligands. We applied the split-NanoLuc to the four histamine receptor subtypes (HR, HR, HR, HR) and recently engineered minimal G (mini-G) proteins. Using this method, the functional response upon receptor activation was monitored in real-time and the four mini-G sensors were evaluated by investigating selected standard (inverse) agonists and antagonists. All potencies and efficacies of the studied ligands were in concordance with literature data. Further, we demonstrated a significant positive correlation of the signal amplitude and the mini-G protein expression level in the case of the HR, but not for the HR or the HR. The pEC values of histamine obtained under different mini-G expression levels were consistent. Moreover, we obtained excellent dynamic ranges (Z' factor) and the signal spans were improved for all receptor subtypes in comparison to the previously performed [S]GTPγS binding assay.

摘要

在药物发现中,具有直接读出的测定法对于研究潜在药物候选物的靶标特异性作用非常重要。在 G 蛋白偶联受体 (GPCR) 领域,通过放射性标记的 GTP 类似物 ([S]GTPγS、[γ-P]GTP) 测定 GPCR-G 蛋白相互作用和 G 蛋白激活已被广泛用于此目的。由于我们反复面临放射性标记核苷酸质量不足的问题,因此需要为潜在组胺受体配体的常规表征实施一种新的直接读出功能测定法。我们将分离的 NanoLuc 应用于四种组胺受体亚型 (HR、HR、HR、HR) 和最近工程化的最小 G (mini-G) 蛋白。使用这种方法,可以实时监测受体激活后的功能反应,并通过研究选定的标准 (反向) 激动剂和拮抗剂来评估四个 mini-G 传感器。所研究的配体的所有效力和功效都与文献数据一致。此外,我们证明了在 HR 的情况下,信号幅度与 mini-G 蛋白表达水平之间存在显著的正相关,但在 HR 或 HR 中则没有。在不同 mini-G 表达水平下获得的组胺 pEC 值是一致的。此外,与之前进行的[S]GTPγS 结合测定法相比,我们获得了所有受体亚型的出色动态范围 (Z' 因子),并且信号跨度得到了改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/805f/7698210/6094fa6b0ed4/ijms-21-08440-g001.jpg

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