istituto di Biofisica - CNR, via De Marini 6, 16149, Genova, Italy.
Sci Rep. 2017 Sep 6;7(1):10683. doi: 10.1038/s41598-017-10645-y.
Voltage-dependent sodium channels are responsible of the rising phase of the action potential in excitable cells. These membrane integral proteins are composed by a pore-forming α-subunit, and one or more auxiliary β subunits. Mutation E87Q of the β1 subunit is correlated with Brugada syndrome, a genetic disease characterised by ventricular fibrillation, right precordial ST segment elevation on ECG and sudden cardiac death. Heterologous expression of E87Q-β1 subunit in CHO cells determines a reduced sodium channel functional expression. The effect the E87Q mutation of the β1 subunit on sodium currents and α protein expression is correlated with a reduced availability of the mature form of the α subunit in the plasma membrane. This finding offers a new target for the treatment of the Brugada syndrome, based on protein maturation management. This work highlights the role played by the β1 subunit in the maturation and expression of the entire sodium channel complex and underlines how the defective interaction between the sodium channel constituents could lead to a disabling pathological condition.
电压门控钠离子通道负责可兴奋细胞动作电位的上升相。这些膜整合蛋白由一个形成孔的α亚基和一个或多个辅助β亚基组成。β1 亚基的 E87Q 突变与 Brugada 综合征有关,Brugada 综合征是一种遗传性疾病,其特征为心室颤动、心电图上右胸前导联 ST 段抬高和心源性猝死。E87Q-β1 亚基在 CHO 细胞中的异源表达导致钠离子通道功能表达减少。β1 亚基 E87Q 突变对钠电流和α蛋白表达的影响与成熟形式的α亚基在质膜中的可用性降低有关。这一发现为基于蛋白质成熟管理的 Brugada 综合征治疗提供了一个新的靶点。这项工作强调了β1 亚基在整个钠离子通道复合物的成熟和表达中的作用,并强调了钠离子通道成分之间的缺陷相互作用如何导致功能障碍的病理状况。