Ishii Kuniaki, Nagai Mirei, Takahashi Masahiro, Endoh Masao
Department of Pharmacology, Yamagata University School of Medicine, Yamagata, Japan.
Cardiovasc Res. 2003 Mar;57(3):651-9. doi: 10.1016/s0008-6363(02)00774-5.
We have reported identification of the amino acid whose mutation reduces effects of quinidine on the HERG channel. Although the residue (isoleucine at 647) is not in the recently reported methanesulfonanilide binding site, a single concentration of E-4031 (10 microM) was less effective to I647 mutant channels than wild type HERG channel. We designed the present experiment to further investigate influence of mutations at 647 on the effects of methanesulfonanilides.
HERG channels were expressed in Xenopus oocytes and their currents were measured by a two-microelectrode voltage clamp method. Of the two mutations initially studied (I647A and I647F), the I647F had a greater influence and differentially affected the effects of dofetilide and E-4031. The IC(50) for dofetilide of the two mutant channels (I647A and I647F) was increased only 2-fold, but the IC(50) for E-4031 was increased 6-fold (I647A) and 14-fold (I647F). Aromatic residues other than phenylalanine were then substituted for I647, and found to reduce the effects of E-4031. Whereas E-4031 dissociated from the mutant channels during rested state, dofetilide little dissociated. The mutant channels that showed recovery from E-4031 block were inhibited greater at 1 Hz than at 0.1 Hz.
The present results indicate that dissociation of a drug from the HERG channel results in greater block at high frequency. Although the mechanism by which the mutations cause the dissociation of E-4031 is uncertain, it is noteworthy that one methanesulfonanilide dissociates from the channel more easily than another.
我们已报道了对其进行突变会降低奎尼丁对HERG通道作用的氨基酸的鉴定。尽管该残基(647位异亮氨酸)不在最近报道的甲磺酰胺结合位点中,但单一浓度的E - 4031(10微摩尔)对I647突变体通道的作用比对野生型HERG通道的作用更弱。我们设计了本实验以进一步研究647位突变对甲磺酰胺类药物作用的影响。
HERG通道在非洲爪蟾卵母细胞中表达,其电流通过双微电极电压钳法测量。在最初研究的两个突变(I647A和I647F)中,I647F影响更大,且对多非利特和E - 4031的作用有不同影响。两个突变通道(I647A和I647F)对多非利特的半数抑制浓度(IC50)仅增加2倍,但对E - 4031的IC50增加了6倍(I647A)和14倍(I647F)。然后用除苯丙氨酸以外的芳香族残基取代I647,发现这会降低E - 4031的作用。在静息状态下,E - 4031从突变体通道解离,而多非利特几乎不解离。从E - 4031阻滞中恢复的突变体通道在1赫兹时比在0.1赫兹时受到的抑制更大。
目前的结果表明,药物从HERG通道解离会导致在高频时阻滞作用增强。尽管突变导致E - 4031解离的机制尚不确定,但值得注意的是,一种甲磺酰胺比另一种更容易从通道解离。