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Multiple actions of pinacidil on adenosine triphosphate-sensitive potassium channels in guinea-pig ventricular myocytes.

机译:吡那地尔对豚鼠心室肌​​细胞中三磷酸腺苷敏感钾通道的多重作用。

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摘要

1. The patch-clamp method was used to study the effects of pinacidil on the adenosine 5'-triphosphate (ATP)-sensitive K+ channel current in guinea-pig ventricular myocytes. 2. In the inside-out configuration of the patch membranes, the channel activity revealed a nearly fully open state in the absence of ATP, whereas application of ATP (0.1-5 mM) markedly suppressed the channel opening. Addition of pinacidil (0.02-1.0 mM) antagonized the inhibitory action of ATP and induced channel opening without marked change in conductance. An increase in ATP concentration depressed the maximal effect of pinacidil. Consequently, the dose-response relationship of ATP inhibition was shifted to the right, but the shift approached a limiting value as pinacidil concentration was increased. The results indicate that the antagonism between pinacidil and ATP is not competitive. 3. The dose-response curve for activation of the channel by pinacidil examined at -50 mV showed a sigmoidal shape but at +50 mV it had a convex shape, revealing asymmetry in the activating effects of pinacidil at these two voltages. 4. In the absence of ATP, pinacidil produced a voltage-dependent block at positive voltages by decreasing the mean open time and increasing the mean closed time, whereas no such effects were observed at negative voltages. The concentration-block relation at a given voltage was fitted to a first-order Hill saturation function. The Kd (dissociation constant) decreased with depolarization from 2.2 mM at +20 mV to 0.15 mM at + 80 mV. 5. The kinetics of block and unblock by pinacidil were shown to be slow, and were expressed by a first-order transition model. The blocking and unblocking rate constants were voltage dependent. 6. The slow block of single-channel current showed an exponential decay in the ensemble current. The time constant of the decay was voltage dependent, reaching a maximal value at around +50 mV. 7. In the absence of ATP, the channel activity gradually decreased and eventually stopped within 12-20 min, a process known as run-down of channel activity. Calcium accelerated this run-down process. Application of pinacidil partially reactivated the channel. Such channel reactivation by pinacidil during the course of run-down depended upon the conditions of the patch and the time course of the run-down. Pretreatment of the channel with ATP markedly strengthened the reactivation effect of pinacidil. 8. These results indicate that there are multiple sites or processes for interaction of pinacidil with the ATP-sensitive K+ channel.
机译:1.膜片钳法用于研究吡那地尔对豚鼠心室肌​​细胞中5'-三磷酸腺苷(ATP)敏感的K +通道电流的影响。 2.在补片膜由内而外的配置中,通道活性显示在不存在ATP的情况下几乎完全打开,而ATP(0.1-5 mM)的施加显着抑制了通道的打开。吡那地尔(0.02-1.0 mM)的添加可拮抗ATP的抑制作用并诱导通道开放,而电导率没有明显变化。 ATP浓度增加抑制了吡那地尔的最大作用。因此,ATP抑制的剂量-反应关系向右移动,但是随着吡那地尔浓度的增加,该移动接近极限值。结果表明,吡那地尔与ATP之间没有拮抗作用。 3.在-50 mV下检查的吡那地尔激活通道的剂量反应曲线呈S形,但在+50 mV时呈凸形,揭示了在这两个电压下吡那地尔激活作用的不对称性。 4.在不存在ATP的情况下,吡那地尔通过减少平均打开时间和增加平均关闭时间在正电压下产生电压依赖性阻滞,而在负电压下则未观察到这种影响。将给定电压下的浓度-阻断关系拟合到一阶希尔饱和函数。随着去极化,Kd(解离常数)从+20 mV时的2.2 mM降至+80 mV时的0.15 mM。 5.吡那地尔的阻滞和解阻动力学很慢,并由一阶跃迁模型表示。阻塞和解阻塞速率常数取决于电压。 6.单通道电流的缓慢阻滞显示出集成电流的指数衰减。衰减的时间常数取决于电压,在+50 mV左右达到最大值。 7.在没有ATP的情况下,通道活性逐渐降低并最终在12-20分钟内停止,这一过程称为通道活性下降。钙加速了这种分解过程。吡那地尔的应用部分重新激活了通道。吡那地尔在降解过程中的这种通道再活化取决于补丁的条件和降解的时间过程。用ATP预处理通道显着增强了吡那地尔的再激活作用。 8.这些结果表明,吡那地尔与ATP敏感的K +通道有多个相互作用的位点或过程。

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