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Human ether-a-go-go-related gene 1 channels are physically linked to beta(1) integrins and modulate adhesion-dependent signaling

机译:人与人有关的基因1通道与β(1)整合素物理连接并调节粘附依赖性信号传导

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Adhesive receptors of the integrin family are primarily involved in cell-extracellular matrix adhesion. Additionally, integrins trigger multiple signaling pathways that are involved in cell migration, proliferation, survival, and differentiation. We previously demonstrated that the activation of integrins containing the beta(1) subunit leads to a selective increase in potassium currents carried by the human ether-a-go-go-related gene (hERG) channels in neuroblastoma and leukemia cells; this current activation modulates adhesion-dependent differentiation in these cells. We hypothesized that the cross-talk between integrins and hERG channels could be traced back to the assembly of a macromolecular signaling complex comprising the two proteins. We tested this hypothesis in both SH-SY5Y neuroblastoma cells and in human embryonic kidney 293 cells stably transfected with hERG1 and, therefore, expressing only the full-length hERG1 protein on the plasma membrane. The beta(1) integrin and hERG1 coprecipitate in these cells and colocalize in both intracellular and surface membrane compartments. The two proteins also coprecipitate with caveolin-1, suggesting the localization of the complex in lipid rafts/caveolae. hERG1-transfected cells undergo an activation of hERG currents after beta(1) integrin-mediated adhesion to fibronectin; concomitant with this activation, the focal adhesion kinase associates with the hERG1 protein and becomes tyrosine phosphorylated. Using hERG1-specific inhibitors, we show that the tyrosine phosphorylation of focal adhesion kinase is strictly dependent on hERG channel activity. Similarly, the activity of the small GTPase Rac1 turned out to be dependent on hERG currents. On the whole, these data indicate that the hERG1 protein associates with beta(1) integrins and modulates adhesion receptor signaling.
机译:整联蛋白家族的粘附受体主要参与细胞-细胞外基质的粘附。另外,整联蛋白触发了涉及细胞迁移,增殖,存活和分化的多个信号传导途径。我们先前证明了含有β(1)亚基的整合素的激活导致神经母细胞瘤和白血病细胞中人类以太相关基因(hERG)通道携带的钾电流的选择性增加;该电流激活调节了这些细胞中粘附依赖性的分化。我们假设整联蛋白和hERG通道之间的串扰可以追溯到包含这两种蛋白的大分子信号复合物的组装。我们在稳定转染了hERG1的SH-SY5Y神经母细胞瘤细胞和人胚肾293细胞中测试了这一假设,因此在质膜上仅表达全长hERG1蛋白。 β(1)整合素和hERG1在这些细胞中共沉淀,并在细胞内和表面膜区室中共定位。这两种蛋白质还与小窝蛋白1共沉淀,表明复合物在脂质筏/小窝中的定位。在β(1)整合素介导的纤连蛋白粘附后,hERG1转染的细胞经历了hERG电流的激活;与此激活相关的是,粘着斑激酶与hERG1蛋白缔合,酪氨酸被磷酸化。使用hERG1特异性抑制剂,我们显示了粘着斑激酶的酪氨酸磷酸化严格取决于hERG通道活性。同样,小GTPase Rac1的活性也取决于hERG电流。总体而言,这些数据表明hERG1蛋白与beta(1)整合素缔合并调节粘附受体信号传导。

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