Institute of Pharmacology and Toxicology, Technical University of Munich (TUM), 80802, Munich, Germany.
DZHK (German Centre for Cardiovascular Research), partner site Munich Heart Alliance, 80802, Munich, Germany.
Nat Commun. 2022 Jan 11;13(1):220. doi: 10.1038/s41467-021-27856-7.
Abnormalities of ventricular action potential cause malignant cardiac arrhythmias and sudden cardiac death. Here, we aim to identify microRNAs that regulate the human cardiac action potential and ask whether their manipulation allows for therapeutic modulation of action potential abnormalities. Quantitative analysis of the microRNA targetomes in human cardiac myocytes identifies miR-365 as a primary microRNA to regulate repolarizing ion channels. Action potential recordings in patient-specific induced pluripotent stem cell-derived cardiac myocytes show that elevation of miR-365 significantly prolongs action potential duration in myocytes derived from a Short-QT syndrome patient, whereas specific inhibition of miR-365 normalizes pathologically prolonged action potential in Long-QT syndrome myocytes. Transcriptome analyses in these cells at bulk and single-cell level corroborate the key cardiac repolarizing channels as direct targets of miR-365, together with functionally synergistic regulation of additional action potential-regulating genes by this microRNA. Whole-cell patch-clamp experiments confirm miR-365-dependent regulation of repolarizing ionic current I. Finally, refractory period measurements in human myocardial slices substantiate the regulatory effect of miR-365 on action potential in adult human myocardial tissue. Our results delineate miR-365 to regulate human cardiac action potential duration by targeting key factors of cardiac repolarization.
心室动作电位异常可导致恶性心律失常和心脏性猝死。在这里,我们旨在确定调节人心肌动作电位的 microRNAs,并探讨其调控是否可用于治疗性调节动作电位异常。对人心肌细胞 microRNA 靶标组的定量分析确定 miR-365 是调节复极化离子通道的主要 microRNA。在源自短 QT 综合征患者的诱导多能干细胞衍生的心肌细胞中的动作电位记录显示,miR-365 的升高显著延长了来自短 QT 综合征患者的心肌细胞的动作电位持续时间,而特异性抑制 miR-365 可使长 QT 综合征心肌细胞中病理性延长的动作电位正常化。这些细胞的转录组分析在批量和单细胞水平上证实了关键的心脏复极化通道是 miR-365 的直接靶点,同时该 microRNA 还对其他调节动作电位的基因进行了功能协同调节。全细胞膜片钳实验证实了 miR-365 对复极化离子电流 I 的依赖性调节。最后,人心肌切片中的不应期测量证实了 miR-365 对成人人心肌组织中动作电位的调节作用。我们的研究结果表明,miR-365 通过靶向心脏复极化的关键因素来调节人心肌动作电位的持续时间。