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维司力农对HERG钾通道的开放通道阻滞作用

Open channel block of HERG K(+) channels by vesnarinone.

作者信息

Kamiya K, Mitcheson J S, Yasui K, Kodama I, Sanguinetti M C

机构信息

Department of Circulation, Research Institute of Environmental Medicine, Nagoya University, Nagoya, Japan.

出版信息

Mol Pharmacol. 2001 Aug;60(2):244-53. doi: 10.1124/mol.60.2.244.

Abstract

Vesnarinone, a cardiotonic agent, blocks I(Kr) and, unlike other I(Kr) blockers, produces a frequency-dependent prolongation of action potential duration (APD). To elucidate the mechanisms, we studied the effects of vesnarinone on HERG, the cloned human I(Kr) channel, heterologously expressed in Xenopus laevis oocytes. Vesnarinone caused a concentration-dependent inhibition of HERG currents with an IC(50) value of 17.7 +/- 2.5 microM at 0 mV (n = 6). When HERG was coexpressed with the beta-subunit MiRP1, a similar potency for block was measured (IC(50): 15.0 +/- 3.0 microM at 0 mV, n = 5). Tonic block of the HERG channel current was minimal (<5% at 30 microM, n = 5). The rate of onset of block and the steady-state value for block of current were not significantly different for test potentials ranging from -40 to +40 mV [time constant (tau) = 372 +/- 76 ms at +40 mV, n = 4]. Recovery from block at -60, -90, and -120 mV was not significantly different (tau = 8.5 +/- 1.5 s at -90 mV, n = 4). Vesnarinone produced similar effects on inactivation-removed mutant (G628C/S631C) HERG channels. The IC(50) value was 10.7 +/- 3.7 microM at 0 mV (n = 5), and the onset and recovery from block of current findings were similar to those of wild-type HERG. Amino acids important for the binding of vesnarinone were identified using alanine-scanning mutagenesis of residues believed to line the inner cavity of the HERG channel. Six important residues were identified, including G648, F656, and V659 located in the S6 domain and T623, S624, and V625 located at the base of the pore helix. These residues are similar but not identical to those determined previously for MK-499, an antiarrhythmic drug. In conclusion, vesnarinone preferentially blocks open HERG channels, with little effect on channels in the rested or inactivated state. These actions may contribute to the favorable frequency-dependent prolongation in APD.

摘要

维司力农是一种强心剂,可阻断I(Kr),且与其他I(Kr)阻滞剂不同,它能使动作电位时程(APD)呈频率依赖性延长。为阐明其机制,我们研究了维司力农对非洲爪蟾卵母细胞中异源表达的克隆人I(Kr)通道HERG的作用。维司力农对HERG电流产生浓度依赖性抑制,在0 mV时IC(50)值为17.7±2.5 μM(n = 6)。当HERG与β亚基MiRP1共表达时,测得的阻断效力相似(0 mV时IC(50):15.0±3.0 μM,n = 5)。HERG通道电流的持续性阻断极小(30 μM时<5%,n = 5)。对于-40至+40 mV的测试电位,电流阻断的起始速率和稳态阻断值无显著差异[+40 mV时时间常数(tau)=372±76 ms,n = 4]。在-60、-90和-120 mV时从阻断中恢复无显著差异(-90 mV时tau = 8.5±1.5 s,n = 4)。维司力农对失活去除突变体(G628C/S631C)HERG通道产生类似作用。0 mV时IC(50)值为10.7±3.7 μM(n = 5),电流阻断的起始和恢复情况与野生型HERG相似。通过对被认为位于HERG通道内腔的残基进行丙氨酸扫描诱变,确定了对维司力农结合重要的氨基酸。确定了6个重要残基,包括位于S6结构域的G648、F656和V659,以及位于孔螺旋基部的T623、S624和V625。这些残基与先前确定的抗心律失常药物MK-499的残基相似但不完全相同。总之,维司力农优先阻断开放的HERG通道,对静息或失活状态的通道影响很小。这些作用可能有助于APD出现有利的频率依赖性延长。

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