Hancox J C, Levi A J, Witchel H J
Department of Physiology, School of Medical Sciences, University Walk, Bristol, BS8 1TD, UK.
Pflugers Arch. 1998 Nov;436(6):843-53. doi: 10.1007/s004240050713.
It is widely believed that HERG (human ether-a-go-go-related gene) encodes the major subunit of the cardiac "rapid" delayed rectifier K channel. The aims of the present study were threefold: (1) to record directly the time course and voltage dependence of expressed HERG current in a mammalian cell line, during an imposed ventricular action potential (AP); (2) to compare this with native rapid delayed rectifier current (IKr) elicited by applying an AP command to isolated guinea-pig ventricular myocytes; (3) to provide mechanistic information regarding the profile of HERG/IKr during the AP. We used the AP clamp technique and conventional whole-cell patch-clamp recordings at 32-34 degreesC. HERG was transiently expressed in Chinese hamster ovary (CHO) cells. There was an outward current in transfected CHO cells, which developed progressively during the AP plateau and slow repolarisation phase. The instantaneous current-voltage (I-V) relation for both leak-subtracted HERG current (n=10) and E-4031-sensitive current (n=6) during AP repolarisation was maximal between -30 mV and -40 mV. The conductance-voltage (G-V) relation was maximal at potentials between -60 and -75 mV. A similar voltage dependence for HERG current was observed during a descending ramp from +60 to -80 mV (n=5), but not during either an ascending ramp (n=5), or a reversed AP waveform (n=8). These data suggest that instantaneous HERG current during the AP does not depend on the instantaneous command voltage alone, but upon the previous voltages during the applied waveform. The time course of activation of HERG current at potentials near the AP plateau was rapid. Tail currents recorded on premature repolarisation at different time points in the AP showed directly that HERG also activates rapidly during the AP. The I-V profiles of fully activated HERG and of current during the AP were very similar. IKr from guinea-pig ventricular myocytes was measured as E-4031-sensitive current during the AP clamp command. The current had a similar I-V and G-V profile to HERG current in CHO cells. These data indicate that HERG current and native IKr are similar during an applied AP waveform. Activation of HERG is rapid during the AP. However, due to rapid inactivation relatively little current flows until the potential becomes less positive than 0 mV. The removal of inactivation then allows more current to flow, giving rise to the distinct instantaneous I-V profile during the AP. The correlation between the voltage dependence of HERG during the AP and the fully activated I-V relation indicates that the contribution of HERG/IKr to AP repolarisation is more significantly determined by the open-channel I-V relation, than the precise activation time course of the current.
人们普遍认为,人类醚 - 去极化相关基因(HERG)编码心脏“快速”延迟整流钾通道的主要亚基。本研究的目的有三个:(1)在施加的心室动作电位(AP)期间,直接记录哺乳动物细胞系中表达的HERG电流的时间进程和电压依赖性;(2)将其与通过向分离的豚鼠心室肌细胞施加AP指令引发的天然快速延迟整流电流(IKr)进行比较;(3)提供关于AP期间HERG/IKr特性的机制信息。我们在32 - 34摄氏度下使用AP钳技术和传统的全细胞膜片钳记录。HERG在中国仓鼠卵巢(CHO)细胞中瞬时表达。转染的CHO细胞中存在外向电流,该电流在AP平台期和缓慢复极化阶段逐渐增大。在AP复极化期间,减去泄漏电流后的HERG电流(n = 10)和E - 4031敏感电流(n = 6)的瞬时电流 - 电压(I - V)关系在 - 30 mV至 - 40 mV之间最大。电导 - 电压(G - V)关系在 - 60至 - 75 mV的电位下最大。在从 + 60 mV降至 - 80 mV的斜坡期间观察到HERG电流有类似的电压依赖性(n = 5),但在上升斜坡(n = 5)或反向AP波形(n = 8)期间未观察到。这些数据表明,AP期间的瞬时HERG电流不仅取决于瞬时指令电压,还取决于施加波形期间的先前电压。在接近AP平台期的电位下,HERG电流的激活时间进程很快。在AP的不同时间点过早复极化时记录的尾电流直接表明,HERG在AP期间也快速激活。完全激活的HERG的I - V曲线和AP期间的电流I - V曲线非常相似。在AP钳指令期间,将豚鼠心室肌细胞的IKr测量为E - 4031敏感电流。该电流与CHO细胞中HERG电流具有相似的I - V和G - V曲线。这些数据表明,在施加的AP波形期间,HERG电流和天然IKr相似。AP期间HERG的激活很快。然而,由于快速失活,直到电位变得比0 mV更正时才会有相对较少的电流流动。失活的消除随后允许更多电流流动,从而在AP期间产生独特的瞬时I - V曲线。AP期间HERG的电压依赖性与完全激活的I - V关系之间的相关性表明,HERG/IKr对AP复极化的贡献更多地由开放通道的I - V关系决定,而不是电流的确切激活时间进程。