Department of Physiology and Pharmacology, University of Western Ontario, London, Ontario, Canada.
Department of Physiology and Pharmacology, University of Western Ontario, London, Ontario, Canada.
J Mol Cell Cardiol. 2019 Feb;127:185-193. doi: 10.1016/j.yjmcc.2018.12.014. Epub 2018 Dec 27.
Gap junctions (GJs) are intercellular channels directly linking neighbouring cells and are dodecamers of connexins. In the human heart, connexin40 (Cx40), Cx43, and Cx45 are expressed in different regions of the heart forming GJs ensuring rapid propagation of action potentials in the myocardium. Two of these connexins, Cx40 and Cx45, formed functional GJs with prominent transjunctional voltage-dependent gating (V-gating), which can be a mechanism to down regulate coupling conductance (G). It is not clear the effects of temperature on V-gating properties. We expressed Cx40 or Cx45 in N2A cells to study the V-gating extent, the kinetics of deactivation, and the recovery time course from deactivation at 22 °C, 28 °C, and 32 °C. Dynamic uncoupling between cell pairs were evaluated at different temperatures, junctional delays, and/or repeating frequencies. Cx40 or Cx45 GJs showed little changes in the extent of V-gating, but in both cases with a faster deactivation kinetics at high temperatures. The recovery from deactivation was faster at higher temperatures for Cx45 GJs, but not for Cx40 GJs. Cx45 GJs, but not Cx40 GJs, were dynamically uncoupled when sufficient junctional delays and/or repeating frequency in all tested temperatures. Gap junction specific dynamic uncoupling could play an important role in regulating action potential propagation speed in Cx45 enriched nodal cells in the heart.
缝隙连接(GJ)是直接连接相邻细胞的细胞间通道,由连接蛋白构成十二聚体。在人心肌中,连接蛋白 40(Cx40)、Cx43 和 Cx45 表达于心脏的不同区域,形成 GJ,确保心肌中动作电位的快速传播。这两种连接蛋白,Cx40 和 Cx45,与明显的跨连接电压依赖性门控(V 门控)形成功能性 GJ,这可能是下调偶联电导(G)的机制。目前尚不清楚温度对 V 门控特性的影响。我们在 N2A 细胞中表达 Cx40 或 Cx45,以研究 22°C、28°C 和 32°C 时 V 门控程度、失活动力学和失活后恢复时间过程。在不同温度、连接延迟和/或重复频率下,评估细胞对之间的动态去偶联。Cx40 或 Cx45 GJ 的 V 门控程度变化不大,但在高温下失活动力学更快。Cx45 GJ 的失活后恢复更快,但 Cx40 GJ 则不然。在所有测试温度下,当存在足够的连接延迟和/或重复频率时,Cx45 GJ 而不是 Cx40 GJ 会动态去偶联。缝隙连接特异性动态去偶联可能在调节富含 Cx45 的心脏结区细胞动作电位传播速度方面发挥重要作用。