首页> 美国卫生研究院文献>The Journal of Physiology >Mechanism of inhibition of delayed rectifier K+ current by 4-aminopyridine in rabbit coronary myocytes.
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Mechanism of inhibition of delayed rectifier K+ current by 4-aminopyridine in rabbit coronary myocytes.

机译:4-氨基吡啶抑制家兔冠状动脉心肌细胞延迟整流子K +电流的机制。

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摘要

1. The mechanisms involved in the 4-aminopyridine (4-AP)-induced block of delayed rectifier K+ current (IK(V)) in vascular smooth muscle cells were studied in cells enzymatically isolated from the rabbit coronary artery. 2. 4-AP inhibited slowly inactivating IK(V) in a dose-dependent manner (concentration producing half-maximal inhibition, K1/2, = 1.37 mM), and shifted the steady-state activation and inactivation curves of IK(V) by +9 and +16 mV, respectively. 3. The time constant of activation was significantly increased by 4-AP at +20 mV; deactivation kinetics were unaffected upon repolarization to -40 mV. The fast (tau f approximately 1 s) and slow (tau s approximately 5 s) time constants of inactivation (0 and +20 mV), and the recovery kinetics (tau r approximately 6 s) at -60 mV were not significantly affected by 0.5 mM 4-AP. However, tau f disappeared in the presence of 2 mM 4-AP while tau s remained unaffected. 4. Use-dependent unblock of IK(V) was revealed at potentials > or = -10 mV from analyses of the voltage dependence of 4-AP-sensitive currents and the frequency-dependent changes ('reverse use dependence') of IK(V) during the application of repetitive steps (-60 to +20 mV for 250 ms at a rate of 0.25 Hz) in control conditions, in the presence of 0.5 mM 4-AP, and after washout of the drug. These results suggested that 4-AP preferentially binds to the channel in the closed state, and unbinding is promoted by transitions to the open state. 5. The channel was modelled as a simple three-state mathematical loop model incorporating single closed, open and inactivated states. The block by 4-AP was modelled as a state-dependent interaction with 4-AP primarily binding to the closed state. Computer simulations support the hypothesis that 4-AP-induced block of the delayed rectifier K+ (KV) channel in the closed state is relieved during membrane depolarization. 6. Closed state binding of 4-AP to the KV channel depolarizes vascular smooth muscle cells by shifting the activation curve of these channels to more positive potentials.
机译:1.在从兔冠状动脉酶促分离的细胞中研究了4-氨基吡啶(4-AP)诱导的血管平滑肌细胞延迟整流K +电流(IK(V))阻滞的机制。 2. 4-AP以剂量依赖性方式抑制慢速灭活IK(V)(浓度产生最大抑制的一半,K1 / 2,= 1.37 mM),并移动了IK(V)的稳态激活和失活曲线分别为+9和+16 mV。 3. 4-AP在+20 mV时,激活的时间常数显着增加。复极化至-40 mV时,失活动力学不受影响。灭活的快速(tau f约为1 s)和慢速(tau s约5 s)时间常数(0和+20 mV)以及在-60 mV时的恢复动力学(tau r约6 s)不受显着影响。 0.5毫米4-AP。然而,在2 mM 4-AP存在下,tau f消失了,而tau s仍然不受影响。 4.通过分析4-AP敏感电流的电压依赖性和IK(V)的频率依赖性变化(“反向使用依赖性”),发现在大于或等于-10 mV的电位下,IK(V)的使用依赖性无阻滞。 V)在控制条件下,在存在0.5 mM 4-AP的情况下以及在洗出药物后,应用重复步骤(-60至+20 mV,以0.25 Hz的频率持续250 ms的时间)。这些结果表明4-AP在闭合状态下优先结合至通道,并且通过向开放状态的转变促进解除结合。 5.将通道建模为一个简单的三态数学环路模型,其中包含单个闭合,打开和非激活状态。 4-AP的阻滞被建模为与状态相关的交互作用,其中4-AP主要绑定到关闭状态。计算机模拟支持以下假设:在膜去极化过程中,4-AP诱导的处于闭合状态的延迟整流器K +(KV)通道阻滞得以缓解。 6. 4-AP与KV通道的闭合结合使血管平滑肌细胞去极化,方法是将这些通道的激活曲线移动到更正的电位。

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