Xu Yanfang, Tuteja Dipika, Zhang Zhao, Xu Danyan, Zhang Yi, Rodriguez Jennifer, Nie Liping, Tuxson Holly R, Young J Nilas, Glatter Kathryn A, Vázquez Ana E, Yamoah Ebenezer N, Chiamvimonvat Nipavan
Department of Internal Medicine, University of California, Davis, California 95616, USA.
J Biol Chem. 2003 Dec 5;278(49):49085-94. doi: 10.1074/jbc.M307508200. Epub 2003 Sep 17.
The repolarization phase of cardiac action potential is prone to aberrant excitation that is common in cardiac patients. Here, we demonstrate that this phase is markedly sensitive to Ca2+ because of the surprising existence of a Ca2+-activated K+ currents in cardiac cells. The current was revealed using recording conditions that preserved endogenous Ca2+ buffers. The Ca2+-activated K+ current is expressed differentially in atria compared with ventricles. Because of the significant contribution of the current toward membrane repolarization in cardiac myocytes, alterations of the current magnitude precipitate abnormal action potential profiles. We confirmed the presence of a small conductance Ca2+-activated K+ channel subtype (SK2) in human and mouse cardiac myocytes using Western blot analysis and reverse transcription-polymerase chain reaction and have cloned SK2 channels from human atria, mouse atria, and ventricles. Because of the marked differential expression of SK2 channels in the heart, specific ligands for Ca2+-activated K+ currents may offer a unique therapeutic opportunity to modify atrial cells without interfering with ventricular myocytes.
心脏动作电位的复极化阶段容易出现异常兴奋,这在心脏病患者中很常见。在此,我们证明该阶段对Ca2+明显敏感,因为心脏细胞中存在令人惊讶的Ca2+激活的K+电流。该电流是在保留内源性Ca2+缓冲液的记录条件下揭示的。与心室相比,Ca2+激活的K+电流在心房中的表达存在差异。由于该电流对心肌细胞膜复极化有重要贡献,电流大小的改变会导致异常的动作电位波形。我们通过蛋白质印迹分析和逆转录-聚合酶链反应证实了人及小鼠心肌细胞中存在小电导Ca2+激活的K+通道亚型(SK2),并从人心房、小鼠心房和心室中克隆了SK2通道。由于SK2通道在心脏中的明显差异表达,Ca2+激活的K+电流的特异性配体可能提供一个独特的治疗机会,在不干扰心室肌细胞的情况下修饰心房细胞。