Jassim Arjewan, Aoyama Hiroshi, Ye Willy G, Chen Honghong, Bai Donglin
Department of Physiology and Pharmacology, University of Western Ontario, London, Ontario, Canada.
Graduate School of Pharmaceutical Sciences, Osaka University, Osaka, Japan.
J Mol Cell Cardiol. 2016 Jan;90:11-20. doi: 10.1016/j.yjmcc.2015.11.026. Epub 2015 Dec 2.
Gap junction (GJ) channels provide low resistance passages for rapid action potential propagation in the heart. Both connexin40 (Cx40) and Cx43 are abundantly expressed in and frequently co-localized between atrial myocytes, possibly forming heterotypic GJ channels. However, conflicting results have been obtained on the functional status of heterotypic Cx40/Cx43 GJs. Here we provide experimental evidence that the docking and formation of heterotypic Cx40/Cx43 GJs can be substantially increased by designed Cx40 variants on the extracellular domains (E1 and E2). Specifically, Cx40 D55N and P193Q, substantially increased the probability to form GJ plaque-like structures at the cell-cell interfaces with Cx43 in model cells. More importantly the coupling conductance (Gj) of D55N/Cx43 and P193Q/Cx43 GJ channels are significantly increased from the Gj of Cx40/Cx43 in N2A cells. Our homology models indicate the electrostatic interactions and surface structures at the docking interface are key factors preventing Cx40 from docking to Cx43. Improving heterotypic Gj of these atrial connexins might be potentially useful in improving the coupling and synchronization of atrial myocardium.
缝隙连接(GJ)通道为心脏中动作电位的快速传播提供了低电阻通路。连接蛋白40(Cx40)和Cx43在心房肌细胞中均大量表达且常常共定位,可能形成异型GJ通道。然而,关于异型Cx40/Cx43 GJ的功能状态,已得到相互矛盾的结果。在此,我们提供实验证据表明,通过设计细胞外结构域(E1和E2)上的Cx40变体,异型Cx40/Cx43 GJ的对接和形成可大幅增加。具体而言,Cx40 D55N和P193Q在模型细胞中显著增加了与Cx43在细胞 - 细胞界面形成GJ斑块样结构的概率。更重要的是,在N2A细胞中,D55N/Cx43和P193Q/Cx43 GJ通道的偶联电导(Gj)相较于Cx40/Cx43的Gj显著增加。我们的同源模型表明,对接界面处的静电相互作用和表面结构是阻止Cx40与Cx43对接的关键因素。改善这些心房连接蛋白的异型Gj可能对改善心房心肌的偶联和同步化具有潜在作用。