Division of Cardiovascular Medicine, Department of Medicine, Duke University School of Medicine, Box 103031 Med Ctr, Durham, NC, 27710, United States.
Division of Cardiovascular Medicine, Department of Medicine, Duke University School of Medicine, Box 103031 Med Ctr, Durham, NC, 27710, United States.
Cell Calcium. 2020 May;87:102163. doi: 10.1016/j.ceca.2020.102163. Epub 2020 Jan 21.
Pacemaker action potentials emerge from the sinoatrial node (SAN) and rapidly propagate through the atria to the AV node via preferential conduction pathways, including one associated with the coronary sinus. However, few distinguishing features of these tracts are known. Identifying specific molecular markers to distinguish among these conduction pathways will have important implications for understanding atrial conduction and atrial arrhythmogenesis. Using a Stim1 reporter mouse, we discovered stromal interaction molecule 1 (STIM1)-expressing coronary sinus cardiomyocytes (CSC)s in a tract from the SAN to the coronary sinus. Our studies here establish that STIM1 is a molecular marker of CSCs and we propose a role for STIM1-CSCs in interatrial conduction. Deletion of Stim1 from the CSCs slowed interatrial conduction and increased susceptibility to atrial arrhythmias. Store-operated Ca currents (I) in response to Ca store depletion were markedly reduced in CSCs and their action potentials showed electrical remodeling. Our studies identify STIM1 as a molecular marker for a coronary sinus interatrial conduction pathway. We propose a role for SOCE in Ca signaling of CSCs and implicate STIM1 in atrial arrhythmogenesis.
起搏器动作电位源自窦房结 (SAN),并通过优先传导途径迅速传播到心房,包括与冠状窦相关的途径。然而,这些途径的特征知之甚少。确定特定的分子标记物来区分这些传导途径对于理解心房传导和心房心律失常发生具有重要意义。我们使用 Stim1 报告小鼠,在源自 SAN 到冠状窦的一条通路上发现了基质相互作用分子 1 (STIM1) 表达的冠状窦心肌细胞 (CSC)。我们的研究在这里确立了 STIM1 是 CSC 的分子标记物,并提出 STIM1-CSC 在房间隔传导中的作用。从 CSC 中删除 Stim1 会减慢房间隔传导并增加心房心律失常的易感性。对钙库耗竭的反应中的钙库操纵钙电流 (I) 在 CSC 中明显减少,并且它们的动作电位显示出电重塑。我们的研究确定 STIM1 作为冠状窦房间隔传导途径的分子标记物。我们提出 SOCE 在 CSC 的钙信号中的作用,并暗示 STIM1 在心房心律失常发生中的作用。