Verkerk Arie O, Wilders Ronald
Department of Anatomy, Embryology and Physiology, Academic Medical Center, University of Amsterdam, 1105 AZ Amsterdam, The Netherlands.
Int J Mol Sci. 2015 Jan 29;16(2):3071-94. doi: 10.3390/ijms16023071.
Since 2003, several loss-of-function mutations in the HCN4 gene, which encodes the HCN4 protein, have been associated with sinus node dysfunction. In human sinoatrial node (SAN), HCN4 is the most abundant of the four isoforms of the HCN family. Tetramers of HCN subunits constitute the ion channels that conduct the hyperpolarization-activated "funny" current (If), which plays an important modulating role in SAN pacemaker activity. Voltage-clamp experiments on HCN4 channels expressed in COS-7, CHO and HEK-293 cells, as well as in Xenopus oocytes have revealed changes in the expression and kinetics of mutant channels, but the extent to which especially the kinetic changes would affect If flowing during a human SAN action potential often remains unresolved. In our contribution to the Topical Collection on Human Single Nucleotide Polymorphisms and Disease Diagnostics, we provide an updated review of the mutation-induced changes in the expression and kinetics of HCN4 channels and provide an overview of their effects on If during the time course of a human SAN action potential, as assessed in simulated action potential clamp experiments. Future research may solve apparent inconsistencies between data from clinical studies and data from in vitro and in silico experiments.
自2003年以来,编码HCN4蛋白的HCN4基因中的几种功能丧失突变已与窦房结功能障碍相关联。在人类窦房结(SAN)中,HCN4是HCN家族四种亚型中含量最丰富的。HCN亚基的四聚体构成了传导超极化激活的“起搏电流”(If)的离子通道,该电流在SAN起搏器活动中起重要的调节作用。对在COS-7、CHO和HEK-293细胞以及非洲爪蟾卵母细胞中表达的HCN4通道进行的电压钳实验揭示了突变通道在表达和动力学方面的变化,但尤其是动力学变化对人类SAN动作电位期间If流动的影响程度往往仍未得到解决。在我们对人类单核苷酸多态性与疾病诊断专题文集的贡献中,我们提供了关于HCN4通道突变诱导的表达和动力学变化的最新综述,并概述了在模拟动作电位钳实验中评估的它们在人类SAN动作电位过程中对If的影响。未来的研究可能会解决临床研究数据与体外和计算机模拟实验数据之间明显的不一致性。