L'institut du thorax, INSERM, CNRS, UNIV NANTES, F-44007 Nantes, France.
LabEx Ion Channels, Science & Therapeutics, F-06560 Valbonne, France.
Int J Mol Sci. 2020 Sep 28;21(19):7167. doi: 10.3390/ijms21197167.
I current, a major component of cardiac repolarization, is mediated by human -Related Gene (hERG, K11.1) potassium channels. The blockage of these channels by pharmacological compounds is associated to drug-induced long QT syndrome (LQTS), which is a life-threatening disorder characterized by ventricular arrhythmias and defects in cardiac repolarization that can be illustrated using cardiomyocytes derived from human-induced pluripotent stem cells (hiPS-CMs). This study was meant to assess the modification in hiPS-CMs excitability and contractile properties by BeKm-1, a natural scorpion venom peptide that selectively interacts with the extracellular face of hERG, by opposition to reference compounds that act onto the intracellular face. Using an automated patch-clamp system, we compared the affinity of BeKm-1 for hERG channels with some reference compounds. We fully assessed its effects on the electrophysiological, calcium handling, and beating properties of hiPS-CMs. By delaying cardiomyocyte repolarization, the peptide induces early afterdepolarizations and reduces spontaneous action potentials, calcium transients, and contraction frequencies, therefore recapitulating several of the critical phenotype features associated with arrhythmic risk in drug-induced LQTS. BeKm-1 exemplifies an interesting reference compound in the integrated hiPS-CMs cell model for all drugs that may block the hERG channel from the outer face. Being a peptide that is easily modifiable, it will serve as an ideal molecular platform for the design of new hERG modulators displaying additional functionalities.
我目前,心脏复极的主要成分,由人类相关基因(hERG,K11.1)钾通道介导。这些通道被药理化合物阻断与药物诱导的长 QT 综合征(LQTS)有关,这是一种危及生命的疾病,其特征是室性心律失常和心脏复极缺陷,可以使用源自人类诱导多能干细胞(hiPS-CMs)的心肌细胞来阐明。这项研究旨在评估 BeKm-1(一种与 hERG 选择性相互作用的天然蝎毒液肽)对 hiPS-CMs 兴奋性和收缩特性的修饰作用,与作用于细胞内表面的参考化合物相反。使用自动化膜片钳系统,我们比较了 BeKm-1 与一些参考化合物对 hERG 通道的亲和力。我们全面评估了它对 hiPS-CMs 电生理、钙处理和搏动特性的影响。通过延迟心肌细胞复极,该肽诱导早期后除极并降低自发动作电位、钙瞬变和收缩频率,因此再现了与药物诱导 LQTS 相关的心律失常风险的几个关键表型特征。BeKm-1 是一种有趣的参考化合物,可用于所有可能从外部阻断 hERG 通道的药物的综合 hiPS-CMs 细胞模型。作为一种易于修饰的肽,它将成为设计具有附加功能的新型 hERG 调节剂的理想分子平台。