Life and Medical Sciences (LIMES) Institute, Molecular Genetics, University of Bonn, Carl-Troll-Str. 31, 53115, Bonn, Germany.
Basic Res Cardiol. 2013 May;108(3):348. doi: 10.1007/s00395-013-0348-y. Epub 2013 Apr 5.
The cardiac intercalated disc harbors mechanical and electrical junctions as well as ion channel complexes mediating propagation of electrical impulses. Cardiac connexin43 (Cx43) co-localizes and interacts with several of the proteins located at intercalated discs in the ventricular myocardium. We have generated conditional Cx43D378stop mice lacking the last five C-terminal amino acid residues, representing a binding motif for zonula occludens protein-1 (ZO-1), and investigated the functional consequences of this mutation on cardiac physiology and morphology. Newborn and adult homozygous Cx43D378stop mice displayed markedly impaired and heterogeneous cardiac electrical activation properties and died from severe ventricular arrhythmias. Cx43 and ZO-1 were co-localized at intercalated discs in Cx43D378stop hearts, and the Cx43D378stop gap junction channels showed normal coupling properties. Patch clamp analyses of isolated adult Cx43D378stop cardiomyocytes revealed a significant decrease in sodium and potassium current densities. Furthermore, we also observed a significant loss of Nav1.5 protein from intercalated discs in Cx43D378stop hearts. The phenotypic lethality of the Cx43D378stop mutation was very similar to the one previously reported for adult Cx43 deficient (Cx43KO) mice. Yet, in contrast to Cx43KO mice, the Cx43 gap junction channel was still functional in the Cx43D378stop mutant. We conclude that the lethality of Cx43D378stop mice is independent of the loss of gap junctional intercellular communication, but most likely results from impaired cardiac sodium and potassium currents. The Cx43D378stop mice reveal for the first time that Cx43 dependent arrhythmias can develop by mechanisms other than impairment of gap junction channel function.
心脏闰盘含有机械和电连接,以及介导电脉冲传播的离子通道复合物。心脏连接蛋白 43(Cx43)与位于心室心肌闰盘中的几种蛋白质共同定位和相互作用。我们生成了条件性缺乏最后五个 C 末端氨基酸残基的 Cx43D378stop 小鼠,代表了与封闭蛋白-1(ZO-1)结合的基序,并研究了这种突变对心脏生理学和形态学的功能后果。新生和成年纯合子 Cx43D378stop 小鼠表现出明显受损和异质性的心脏电激活特性,并死于严重的室性心律失常。Cx43 和 ZO-1 在 Cx43D378stop 心脏的闰盘中共同定位,Cx43D378stop 间隙连接通道显示正常的偶联特性。分离的成年 Cx43D378stop 心肌细胞的膜片钳分析显示钠电流和钾电流密度显著降低。此外,我们还观察到 Cx43D378stop 心脏闰盘中 Nav1.5 蛋白的显著丢失。Cx43D378stop 突变的表型致死性与之前报道的成年 Cx43 缺失(Cx43KO)小鼠非常相似。然而,与 Cx43KO 小鼠不同,Cx43D378stop 突变体中的 Cx43 间隙连接通道仍然具有功能。我们得出结论,Cx43D378stop 小鼠的致死性不依赖于间隙连接细胞间通讯的丧失,但很可能是由于心脏钠和钾电流受损所致。Cx43D378stop 小鼠首次揭示,Cx43 依赖性心律失常可能通过除了间隙连接通道功能障碍以外的机制发展。