Duncan R S, McPate M J, Ridley J M, Gao Z, James A F, Leishman D J, Leaney J L, Witchel H J, Hancox J C
Department of Physiology and Cardiovascular Research Laboratories, School of Medical Sciences, University Walk, Bristol, BS8 1TD, UK.
Biochem Pharmacol. 2007 Aug 1;74(3):425-37. doi: 10.1016/j.bcp.2007.04.024. Epub 2007 May 3.
HERG (human ether-à-go-go-related gene) encodes channels responsible for the cardiac rapid delayed rectifier potassium current, I(Kr). This study investigated the effects on HERG channels of doxepin, a tricyclic antidepressant linked to QT interval prolongation and cardiac arrhythmia. Whole-cell patch-clamp recordings were made at 37 degrees C of recombinant HERG channel current (I(HERG)), and of native I(Kr) 'tails' from rabbit ventricular myocytes. Doxepin inhibited I(HERG) with an IC(50) value of 6.5+/-1.4 microM and native I(Kr) with an IC(50) of 4.4+/-0.6 microM. The inhibitory effect on I(HERG) developed rapidly upon membrane depolarization, but with no significant dependence on voltage and with little alteration to the voltage-dependent kinetics of I(HERG). Neither the S631A nor N588K inactivation-attenuating mutations (of residues located in the channel pore and external S5-Pore linker, respectively) significantly reduced the potency of inhibition. The S6 point mutation Y652A increased the IC(50) for I(HERG) blockade by approximately 4.2-fold; the F656A mutant also attenuated doxepin's action at some concentrations. HERG channel blockade is likely to underpin reported cases of QT interval prolongation with doxepin. Notably, this study also establishes doxepin as an effective inhibitor of mutant (N588K) HERG channels responsible for variant 1 of the short QT syndrome.
人类醚 - 去极化相关基因(HERG)编码负责心脏快速延迟整流钾电流I(Kr)的通道。本研究调查了三环类抗抑郁药多塞平对HERG通道的影响,多塞平与QT间期延长和心律失常有关。在37摄氏度下,采用全细胞膜片钳记录重组HERG通道电流(I(HERG))以及兔心室肌细胞的天然I(Kr)“尾电流”。多塞平抑制I(HERG)的IC(50)值为6.5±1.4微摩尔,抑制天然I(Kr)的IC(50)为4.4±0.6微摩尔。对I(HERG)的抑制作用在膜去极化时迅速产生,但对电压无明显依赖性,且对I(HERG)的电压依赖性动力学影响很小。位于通道孔和外部S5 - 孔连接区的残基的S631A和N588K失活减弱突变(分别)均未显著降低抑制效力。S6点突变Y652A使I(HERG)阻断的IC(50)增加约4.2倍;F656A突变体在某些浓度下也减弱了多塞平的作用。HERG通道阻断可能是多塞平导致QT间期延长报道病例的基础。值得注意的是,本研究还证实多塞平是负责短QT综合征变体1的突变(N588K)HERG通道的有效抑制剂。