McNulty Megan M, Hanck Dorothy A
Department of Neurobiology, University of Chicago, Illinois, USA.
Mol Pharmacol. 2004 Dec;66(6):1652-61. doi: 10.1124/mol.66.6.1652.
Mibefradil is a T-type Ca2+ channel antagonist with reported cross-reactivity with other classes of ion channels, including K+, Cl-, and Na+ channels. Using whole-cell voltage clamp, we examined mibefradil block of four Na+ channel isoforms expressed in human embryonic kidney cells: Nav1.5 (cardiac), Nav1.4 (skeletal muscle), Nav1.2 (brain), and Nav1.7 (peripheral nerve). Mibefradil blocked Nav1.5 in a use/frequency-dependent manner, indicating preferential binding to states visited during depolarization. Mibefradil blocked currents of all Na+ channel isoforms with similar affinity and a dependence on holding potential, and drug off-rate was slowed at depolarized potentials (k(off) was 0.024/s at -130 mV and 0.007/s at -100 mV for Nav1.5). We further probed the interaction of mibefradil with inactivated Nav1.5 channels. Neither the degree nor the time course of block was dependent on the stimulus duration, which dramatically changed the residency time of channels in the fast-inactivated state. In addition, inhibiting the binding of the fast inactivation lid (Nav1.5 ICM + MTSET) did not alter mibefradil block, confirming that the drug does not preferentially interact with the fast-inactivated state. We also tested whether mibefradil interacted with slow-inactivated state(s). When selectively applied to channels after inducing slow inactivation with a 60-s pulse to -10 mV, mibefradil (1 microM) produced 45% fractional block in Nav1.5 and greater block (88%) in an isoform (Nav1.4) that slow-inactivates more completely. Our results suggest that mibefradil blocks Na+ channels in a state-dependent manner that does not depend on fast inactivation but probably involves interaction with one or more slow-inactivated state(s).
米贝地尔是一种T型Ca2+通道拮抗剂,据报道它与其他类型的离子通道存在交叉反应,包括K+、Cl-和Na+通道。我们使用全细胞电压钳技术,研究了米贝地尔对人胚肾细胞中表达的四种Na+通道亚型的阻断作用:Nav1.5(心脏型)、Nav1.4(骨骼肌型)、Nav1.2(脑型)和Nav1.7(外周神经型)。米贝地尔以使用/频率依赖性方式阻断Nav1.5,表明其优先结合去极化过程中出现的状态。米贝地尔以相似的亲和力和对钳制电位的依赖性阻断所有Na+通道亚型的电流,并且在去极化电位下药物解离速率减慢(对于Nav1.5,在-130 mV时k(off)为0.024/s,在-100 mV时为0.007/s)。我们进一步探究了米贝地尔与失活的Nav1.5通道的相互作用。阻断的程度和时间进程均不依赖于刺激持续时间,而刺激持续时间会显著改变通道在快速失活状态下的停留时间。此外,抑制快速失活门(Nav1.5 ICM + MTSET)的结合并未改变米贝地尔的阻断作用,证实该药物并非优先与快速失活状态相互作用。我们还测试了米贝地尔是否与缓慢失活状态相互作用。当用60秒的-10 mV脉冲诱导缓慢失活后选择性地作用于通道时,米贝地尔(1 microM)在Nav1.5中产生45%的分数阻断,而在一种更完全缓慢失活的亚型(Nav1.4)中产生更大的阻断(88%)。我们的结果表明,米贝地尔以一种状态依赖性方式阻断Na+通道,这种方式不依赖于快速失活,但可能涉及与一个或多个缓慢失活状态的相互作用。