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Inhibition of gap junctional intercellular communication by an anti-migraine agent, flunarizine

机译:抗偏头痛,氟嗪对间隙结肠间通信的抑制作用

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Gap junctions (GJs), which consist of proteins called connexins, are intercellular channels that allow the passage of ions, second messengers, and small molecules. GJs and connexins are considered as emerging therapeutic targets for various diseases. Previously, we screened numerous compounds using our recently developed iodide yellow fluorescent protein gap junctional intercellular communication (I-YFP GJIC) assay and found that flunarizine (FNZ), used for migraine prophylaxis and as an add-on therapy for epilepsy, inhibits GJIC in LN215 human glioma cells. In this study, we confirmed that FNZ inhibits GJIC using the I-YFP GJIC assay. We demonstrated that FNZ inhibits GJ activities via a mechanism that is independent of calcium channels and dopaminergic D 2 , histaminergic H 1 , or 5-HT receptors. In addition, we showed that FNZ significantly increases connexin 43 (Cx43) phosphorylation on the cell surface, but does not alter the total amount of Cx43. The beneficial effects of FNZ on migraines and epilepsy might be related to GJ inhibition.
机译:由称为Connexins的蛋白质组成的间隙结(GJS)是细胞间通道,允许离子,第二信使和小分子通过。 GJS和Connexins被认为是各种疾病的新兴治疗靶标。以前,我们使用最近初始型碘化物黄色荧光蛋白间隙连接细胞间通信(I-YFP GJIC)测定筛选了许多化合物,发现氟嗪(FNZ)用于偏头痛预防和作为癫痫的附加治疗,抑制GJIC LN215人类胶质瘤细胞。在这项研究中,我们证实FNZ使用I-YFP GJIC测定抑制GJIC。我们证明FNZ通过独立于钙通道和多巴胺能D 2,组蛋白能H1或5-HT受体的机制抑制GJ活性。此外,我们表明FNZ显着增加了细胞表面上的Connexin 43(CX43)磷酸化,但不改变CX43的总量。 FNZ对偏头痛和癫痫的有益效果可能与GJ抑制有关。

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