Harvey R D, Ten Eick R E
Department of Pharmacology, Northwestern University, Chicago, Illinois 60611.
J Gen Physiol. 1989 Aug;94(2):349-61. doi: 10.1085/jgp.94.2.349.
The inward-rectifying K+ current (IK1) in cat ventricular myocytes, like inward-rectifying K+ currents in many other preparations, exhibited a negative slope conductance region at hyperpolarized membrane potentials that was time-dependent. This was evident as an inactivation of inward current elicited by hyperpolarizing voltage-clamp pulses resulting in a negative slope region of the steady-state current-voltage relationship at potentials negative to -140 mV. Removing extracellular Na+ prevented the development of the negative slope in this voltage region, suggesting that Na+ can block IK1 channels in a time- and voltage-dependent manner. The time and voltage dependence of Cs+-induced block of IK1 was also examined. Cs+ blocked inward current in a manner similar to that of Na+, but the former was much more potent. The fraction of current blocked by Cs+ in the presence of Na+ was reduced in a time- and voltage-dependent manner, which suggested that these blocking ions compete for a common or at least similar site of action. In the absence of Na+, inactivation of IK1 could also be induced by both Cs+ and Li+. However, Li+ was less potent than Na+ in this respect. Calculation of the voltage sensitivity of current block by each of these ions suggests that the mechanism of block by each is similar.
猫心室肌细胞中的内向整流钾电流(IK1),与许多其他标本中的内向整流钾电流一样,在超极化膜电位下呈现出一个与时间相关的负斜率电导区域。这表现为超极化电压钳脉冲引发的内向电流失活,导致在电位低于 -140 mV 时稳态电流 - 电压关系出现负斜率区域。去除细胞外 Na+ 可防止该电压区域出现负斜率,这表明 Na+ 可通过时间和电压依赖性方式阻断 IK1 通道。还研究了 Cs+ 诱导的 IK1 阻断的时间和电压依赖性。Cs+ 以与 Na+ 类似的方式阻断内向电流,但前者的作用更强。在存在 Na+ 的情况下,被 Cs+ 阻断的电流分数以时间和电压依赖性方式降低,这表明这些阻断离子竞争一个共同的或至少相似的作用位点。在没有 Na+ 的情况下,Cs+ 和 Li+ 均可诱导 IK1 失活。然而,在这方面 Li+ 的作用比 Na+ 弱。对这些离子各自引起的电流阻断的电压敏感性计算表明,每种离子的阻断机制相似。