Department of Pharmacology, Graduate School of Medicine, Osaka University, Osaka 565-0871, Japan.
Biochem Biophys Res Commun. 2012 Feb 3;418(1):161-6. doi: 10.1016/j.bbrc.2011.12.153. Epub 2012 Jan 8.
Human ether-a-go-go-related gene (hERG) channels play a critical role in cardiac action potential repolarization. The unintended block of hERG channels by compounds can prolong the cardiac action potential duration and induce arrhythmia. Several compounds not only block hERG channels but also enhance channel activation after the application of a depolarizing voltage step. This is referred to as facilitation. In this study, we tried to extract the property of compounds that induce hERG channel facilitation. We first examined the facilitation effects of structurally diverse hERG channel blockers in Xenopus oocytes. Ten of 13 assayed compounds allowed facilitation, suggesting that it is an effect common to most hERG channel blockers. We constructed a pharmacophore model for hERG channel facilitation. The model consisted of one positively ionizable feature and three hydrophobic features. Verification experiments suggest that the model well describes the structure-activity relationship for facilitation. Comparison of the pharmacophore for facilitation with that for hERG channel block showed that the spatial arrangement of features is clearly different. It is therefore conceivable that two different interactions of a compound with hERG channels exert two pharmacological effects, block and facilitation.
人 ether-a-go-go 相关基因 (hERG) 通道在心脏动作电位复极化中发挥着关键作用。化合物对 hERG 通道的非预期阻断会延长心脏动作电位持续时间并引发心律失常。一些化合物不仅阻断 hERG 通道,而且在施加去极化电压阶跃后还增强通道激活。这被称为易化。在这项研究中,我们试图提取诱导 hERG 通道易化的化合物的特性。我们首先在非洲爪蟾卵母细胞中检查了结构多样的 hERG 通道阻滞剂的易化作用。在测定的 13 种化合物中有 10 种允许易化,这表明它是大多数 hERG 通道阻滞剂的共同作用。我们构建了 hERG 通道易化的药效团模型。该模型由一个带正电荷的特征和三个疏水性特征组成。验证实验表明,该模型很好地描述了易化的构效关系。易化的药效团与 hERG 通道阻滞的药效团的比较表明,特征的空间排列明显不同。因此,可以想象化合物与 hERG 通道的两种不同相互作用会产生两种药理作用,即阻断和易化。