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A high-throughput assay for connexin 43 (Cx43, GJA1) gap junctions using codon-optimized aequorin

机译:使用密码子优化的水母发光蛋白进行连接蛋白43(Cx43,GJA1)间隙连接的高通量检测

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Gap junctions (GJs) are intercellular channels which are composed of the connexin family of proteins that allow electrical and chemical communications and synchronization in tissue ensembles. Evidence suggests that pharmaceutical modulators of these channels may have therapeutic potential or carry undesired liability. In this report, we exogenously expressed human connexin 43 (Cx43, GJA1) and demonstrated functionality in a 96-well flow cytometry assay detecting intercellular transfer of the calcein dye. We have designed a 384-well high-throughput method for detecting the transfer of calcium between HeLa cells expressing Cx43. In this assay, donor cells coexpress Cx43 and the ??1A adrenergic G??-coupled receptor, while recipient cells coexpress Cx43 and the cytoplasmic version of the calcium-sensitive luminescent protein aequorin enhanced by codon optimization (cytoAeq). The two cell populations were mixed, dispensed to 384-well plates, and incubated for 3 h to allow the formation of GJs. Activation of ??1A by epinephrine in donor cells led to dose-dependent calcium increases in recipient cells, which were detected by measuring the intensity of aequorin luminescence. The response was dependent on the expression of Cx43 and inhibited by the GJ blocker 18??-glycyrrhetinic acid, suggesting Cx43 GJ-mediated activity. In a parallel experiment with capsaicin and the TrpV1 ion channel in place of phenylephrine and ??1A, a similar magnitude of difference in the maximal calcium response was detected in both donor and recipient cells, suggesting that calcium is likely the permeant ion through the GJ. This assay may pave the way for high-throughput screening of GJ modulators for drug discovery. ? 2013 Mary Ann Liebert, Inc.
机译:间隙连接(GJ)是细胞间通道,由连接蛋白家族的蛋白质组成,可在组织集合体中实现电气和化学通讯以及同步。有证据表明,这些通道的药物调节剂可能具有治疗潜力或承担不希望的责任。在此报告中,我们外源性表达人连接蛋白43(Cx43,GJA1),并在96孔流式细胞仪测定中证明了钙黄绿素染料的细胞间转移,证明了其功能性。我们设计了一种384孔高通量方法来检测表达Cx43的HeLa细胞之间的钙转移。在该测定中,供体细胞共表达Cx43和Δ1A肾上腺素Gβ偶联受体,而受体细胞共表达Cx43和通过密码子优化(cytoAeq)增强的钙敏感发光蛋白水母发光蛋白的细胞质形式。混合两个细胞群,分配到384孔板中,孵育3小时以形成GJ。肾上腺素激活供体细胞中的?? 1A导致受体细胞中剂量依赖性钙的增加,这通过测量水母发光蛋白的发光强度来检测。该反应依赖于Cx43的表达,并被GJ阻滞剂18 18-甘草次酸抑制,表明Cx43 GJ介导的活性。在用辣椒素和TrpV1离子通道代替去氧肾上腺素和?? 1A的平行实验中,在供体和受体细胞中都检测到了最大钙反应的相似大小差异,这表明钙很可能是通过GJ的渗透离子。该测定法可以为用于药物发现的GJ调节剂的高通量筛选铺平道路。 ? 2013 Mary Ann Liebert,Inc.

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