Life and Medical Sciences (LIMES) Institute, Molecular Genetics, University of Bonn, Bonn, Germany.
J Mol Cell Cardiol. 2013 Dec;65:19-32. doi: 10.1016/j.yjmcc.2013.09.008. Epub 2013 Sep 21.
Atrial fibrillation (AF) is the most common type of cardiac arrhythmia and a major cause of stroke. In the mammalian heart the gap junction proteins connexin40 (Cx40) and connexin43 (Cx43) are strongly expressed in the atrial myocardium mediating effective propagation of electrical impulses. Different heterozygous mutations in the coding region for Cx40 were identified in patients with AF. We have generated transgenic Cx40A96S mice harboring one of these mutations, the loss-of-function Cx40A96S mutation, as a model for atrial fibrillation. Cx40A96S mice were characterized by immunochemical and electrophysiological analyses. Significantly reduced atrial conduction velocities and strongly prolonged episodes of atrial fibrillation were found after induction in Cx40A96S mice. Analyses of the gating properties of Cx40A96S channels in cultured HeLa cells also revealed significantly lower junctional conductance and enhanced sensitivity voltage gating of Cx40A96S in comparison to Cx40 wild-type gap junctions. This is caused by reduced open probabilities of Cx40A96S gap junction channels, while single channel conductance remained the same. Similar to the corresponding patient, heterozygous Cx40A96S mice revealed normal expression levels and localization of the Cx40 protein. We conclude that heterozygous Cx40A96S mice exhibit prolonged episodes of induced atrial fibrillation and severely reduced atrial conduction velocities similar to the corresponding human patient.
心房颤动(AF)是最常见的心律失常类型,也是中风的主要原因。在哺乳动物心脏中,缝隙连接蛋白 connexin40(Cx40)和 connexin43(Cx43)在心房心肌中强烈表达,介导有效的电脉冲传播。在 AF 患者中鉴定出编码区中的不同杂合突变。我们已经生成了携带有这些突变之一的转基因 Cx40A96S 小鼠,该突变导致功能丧失的 Cx40A96S 突变,作为心房颤动的模型。通过免疫化学和电生理分析对 Cx40A96S 小鼠进行了表征。在 Cx40A96S 小鼠中诱导后,发现心房传导速度明显降低,心房颤动发作时间明显延长。在培养的 HeLa 细胞中分析 Cx40A96S 通道的门控特性也表明,与 Cx40 野生型缝隙连接相比,Cx40A96S 的连接电导明显降低,电压门控敏感性增强。这是由于 Cx40A96S 缝隙连接通道的开放概率降低,而单通道电导保持不变。与相应的患者相似,杂合型 Cx40A96S 小鼠显示出 Cx40 蛋白的正常表达水平和定位。我们得出结论,杂合型 Cx40A96S 小鼠表现出与相应人类患者相似的延长诱导性心房颤动发作时间和严重降低的心房传导速度。