PharmaCenter Bonn, Pharmaceutical Institute, Pharmaceutical & Medicinal Chemistry, Rheinische Friedrich-Wilhelms-Universität Bonn, An der Immenburg 4, D-53121 Bonn, Germany.
Institute of Cellular Neuroscience, Medical Faculty, Rheinische Friedrich-Wilhelms-Universität Bonn, Venusberg-Campus 1, D-53127 Bonn, Germany.
Int J Mol Sci. 2021 Jan 31;22(3):1417. doi: 10.3390/ijms22031417.
Connexin gap junctions (Cx GJs) enable the passage of small molecules and ions between cells and are therefore important for cell-to-cell communication. Their dysfunction is associated with diseases, and small molecules acting as modulators of GJs may therefore be useful as therapeutic drugs. To identify GJ modulators, suitable assays are needed that allow compound screening. In the present study, we established a novel assay utilizing HeLa cells recombinantly expressing Cx43. Donor cells additionally expressing the Gs protein-coupled adenosine A receptor, and biosensor cells expressing a cAMP-sensitive GloSensor luciferase were established. Adenosine A receptor activation in the donor cells using a selective agonist results in intracellular cAMP production. The negatively charged cAMP migrates via the Cx43 gap junctions to the biosensor cells and can there be measured by the cAMP-dependent luminescence signal. Cx43 GJ modulators can be expected to impact the transfer of cAMP from the donor to the biosensor cells, since cAMP transit is only possible via GJs. The new assay was validated by testing the standard GJ inhibitor carbenoxolon, which showed a concentration-dependent inhibition of the signal and an IC value that was consistent with previously reported values. The assay was demonstrated to be suitable for high-throughput screening.
缝隙连接(Connexin gap junctions,Cx GJs)允许小分子和离子在细胞之间通过,因此对于细胞间通讯非常重要。它们的功能障碍与疾病有关,因此作为 GJ 调节剂的小分子可能是有用的治疗药物。为了识别 GJ 调节剂,需要合适的测定方法来进行化合物筛选。在本研究中,我们建立了一种利用重组表达 Cx43 的 HeLa 细胞的新型测定方法。还建立了表达 Gs 蛋白偶联腺苷 A 受体的供体细胞和表达 cAMP 敏感 GloSensor 荧光素酶的生物传感器细胞。使用选择性激动剂激活供体细胞中的腺苷 A 受体,导致细胞内 cAMP 产生。带负电荷的 cAMP 通过 Cx43 间隙连接迁移到生物传感器细胞,并可通过 cAMP 依赖性发光信号进行测量。Cx43 GJ 调节剂有望影响 cAMP 从供体细胞向生物传感器细胞的转移,因为 cAMP 转运只能通过 GJs 进行。通过测试标准 GJ 抑制剂 carbenoxolon 验证了新测定方法,结果显示信号呈浓度依赖性抑制,IC 值与先前报道的值一致。该测定方法适用于高通量筛选。