Chae Yun Ju, Choi Bok Hee, Choi Jin-Sung, Hahn Sang June
Department of Physiology, Cell Death and Disease Research Center, College of Medicine, The Catholic University of Korea, Seoul 137-701, Republic of Korea.
Department of Pharmacology, Institute for Medical Science, Chonbuk National University Medical School, Jeonju, Jeonbuk 561-180, Republic of Korea.
Neurosci Lett. 2014 Aug 22;578:159-64. doi: 10.1016/j.neulet.2014.06.045. Epub 2014 Jun 30.
Trifluoperazine, a trifluoro-methyl phenothiazine derivative, is widely used in the management of schizophrenia and related psychotic disorders. We studied the effects of trifluoperazine on Kv4.3 currents expressed in CHO cells using the whole-cell patch-clamp technique. Trifluoperazine blocked Kv4.3 in a concentration-dependent manner with an IC50 value of 8.0±0.4 μM and a Hill coefficient of 2.1±0.1. Trifluoperazine also accelerated the inactivation and activation (time-to-peak) kinetics in a concentration-dependent manner. The effects of trifluoperazine on Kv4.3 were completely reversible after washout. The effects of trifluoperazine were not affected by the pretreatment of KN93, which is another CaMKII inhibitor. In addition, the inclusion of CaMKII inhibitory peptide 281-309 in the pipette solution did not modify the effect of trifluoperazine on Kv4.3. Trifluoperazine shifted the activation curve of Kv4.3 in a hyperpolarizing direction but did not affect the slope factor. The block of Kv4.3 by trifluoperazine was voltage-dependent with a steep increase across the voltage range of channel activation. Voltage dependence was also observed over the full range of activation (δ=0.18). Trifluoperazine slowed the time course for recovery from inactivation of Kv4.3. Our results indicated that trifluoperazine blocked Kv4.3 by preferentially binding to the open state of the channel. This effect was not mediated via the inhibition of CaMKII activity.
三氟拉嗪是一种三氟甲基吩噻嗪衍生物,广泛用于治疗精神分裂症及相关精神障碍。我们使用全细胞膜片钳技术研究了三氟拉嗪对CHO细胞中表达的Kv4.3电流的影响。三氟拉嗪以浓度依赖性方式阻断Kv4.3,IC50值为8.0±0.4 μM,希尔系数为2.1±0.1。三氟拉嗪还以浓度依赖性方式加速失活和激活(达到峰值时间)动力学。洗脱后,三氟拉嗪对Kv4.3的作用完全可逆。三氟拉嗪的作用不受另一种CaMKII抑制剂KN93预处理的影响。此外,在移液管溶液中加入CaMKII抑制肽281 - 309并没有改变三氟拉嗪对Kv4.3的作用。三氟拉嗪使Kv4.3的激活曲线向超极化方向移动,但不影响斜率因子。三氟拉嗪对Kv4.3的阻断具有电压依赖性,在通道激活的电压范围内急剧增加。在整个激活范围内也观察到电压依赖性(δ = 0.18)。三氟拉嗪减慢了Kv4.3从失活恢复的时间进程。我们的结果表明,三氟拉嗪通过优先结合通道的开放状态来阻断Kv4.3。这种作用不是通过抑制CaMKII活性介导的。