Linz K W, Meyer R
Physiological Institute, University of Bonn, Germany.
Pflugers Arch. 2000 Mar;439(5):588-99. doi: 10.1007/s004249900212.
The substantial interspecies differences in mammalian cardiac action potentials (APs) are attributed primarily to variations in K+ currents. In a comparative study on isolated ventricular myocytes from guinea-pigs, rabbits and rats, we investigated the influence of the species-based AP differences on the time course of the L-type Ca2+ current (ICa,L). In addition, we tested whether also species-dependent properties of the ICa,L contribute to its time course during the AP. In patch-clamp measurements, ICa,L was characterised using conventional square pulses and digitised APs as command voltages. Special interest was directed to the analysis of the actual time courses of ICa,L, and L-type channel activation and inactivation during APs. Although species-specific differences in AP shape strongly influence the amplitude and the time course of ICa,L, divergence in L-type channel inactivation was found as well. In each species ICa,L inactivation was related to Ca2+ influx via L-type channels. However, while L-type channels showed similar Ca2+ dependency in the rabbit and the rat, a 2-times higher Ca2+ influx was necessary to achieve a given degree of inactivation in the guinea-pig. Thus, inactivation of ICa,L is delayed in the guinea-pig, thereby contributing to the prolonged AP plateau in this species. Comparing the actual time course of ICa,L, and L-type channel activation and inactivation revealed that, in each species, fading of ICa,L during final repolarisation was caused by deactivation (i.e. closure of the channel's d-gate) rather than inactivation.
哺乳动物心脏动作电位(APs)存在显著的种间差异,这主要归因于钾离子电流的变化。在一项对豚鼠、兔子和大鼠分离心室肌细胞的比较研究中,我们研究了基于物种的AP差异对L型钙电流(ICa,L)时间进程的影响。此外,我们还测试了ICa,L的物种依赖性特性是否也对AP期间其时间进程有贡献。在膜片钳测量中,使用传统的方波脉冲和数字化AP作为指令电压来表征ICa,L。特别关注的是对AP期间ICa,L、L型通道激活和失活的实际时间进程的分析。尽管AP形状的物种特异性差异强烈影响ICa,L的幅度和时间进程,但L型通道失活也存在差异。在每个物种中,ICa,L失活与通过L型通道的钙离子内流有关。然而,虽然L型通道在兔子和大鼠中显示出相似的钙离子依赖性,但在豚鼠中需要两倍高的钙离子内流才能达到给定程度的失活。因此,豚鼠中ICa,L的失活延迟,从而导致该物种AP平台期延长。比较ICa,L、L型通道激活和失活的实际时间进程发现,在每个物种中,最终复极化期间ICa,L的衰减是由去激活(即通道d门关闭)而非失活引起的。