Verheule S, van Kempen M J, Postma S, Rook M B, Jongsma H J
Department of Medical Physiology and Sports Medicine, Utrecht University, 3531 HR Utrecht, The Netherlands.
Am J Physiol Heart Circ Physiol. 2001 May;280(5):H2103-15. doi: 10.1152/ajpheart.2001.280.5.H2103.
In comparison to the cellular basis of pacemaking, the electrical interactions mediating synchronization and conduction in the sinoatrial node are poorly understood. Therefore, we have taken a combined immunohistochemical and electrophysiological approach to characterize gap junctions in the nodal area. We report that the pacemaker myocytes in the center of the rabbit sinoatrial node express the gap junction proteins connexin (Cx)40 and Cx46. In the periphery of the node, strands of pacemaker myocytes expressing Cx43 intermingle with strands expressing Cx40 and Cx46. Biophysical properties of gap junctions in isolated pairs of pacemaker myocytes were recorded under dual voltage clamp with the use of the perforated-patch method. Macroscopic junctional conductance ranged between 0.6 and 25 nS with a mean value of 7.5 nS. The junctional conductance did not show a pronounced sensitivity to the transjunctional potential difference. Single-channel recordings from pairs of pacemaker myocytes revealed populations of single-channel conductances at 133, 202, and 241 pS. With these single-channel conductances, the observed average macroscopic junctional conductance, 7.5 nS, would require only 30-60 open gap junction channels.
与起搏的细胞基础相比,介导窦房结同步化和传导的电相互作用还知之甚少。因此,我们采用免疫组织化学和电生理学相结合的方法来表征结区的缝隙连接。我们报告称,兔窦房结中心的起搏心肌细胞表达缝隙连接蛋白连接蛋白(Cx)40和Cx46。在结的周边,表达Cx43的起搏心肌细胞束与表达Cx40和Cx46的细胞束相互交织。使用穿孔膜片法在双电压钳制下记录分离的成对起搏心肌细胞中缝隙连接的生物物理特性。宏观连接电导在0.6至25 nS之间,平均值为7.5 nS。连接电导对跨连接电位差没有明显的敏感性。成对起搏心肌细胞的单通道记录显示,单通道电导分别为133、202和241 pS。根据这些单通道电导,观察到的平均宏观连接电导为7.5 nS,仅需要30 - 60个开放的缝隙连接通道。