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卤离子对人内向整流型钾通道特性的影响。

Halide ion effects on human Ether-à-go-go related gene potassium channel properties.

作者信息

Zeng Haoyu, Balasubramanian Bharathi, Penniman Jacob R, Kinose Fumi, Salata Joseph J, Lagrutta Armando

机构信息

Safety Assessment and Laboratory Animal Resources, Merck Research Laboratories , West Point, Pennsylvania.

出版信息

Assay Drug Dev Technol. 2013 Nov-Dec;11(9-10):544-50. doi: 10.1089/adt.2013.531. Epub 2013 Oct 22.

Abstract

The human Ether-à-go-go related gene (hERG) potassium channel has been widely used to counter screen potential pharmaceuticals as a biomarker to predict clinical QT prolongation. Thus, higher throughput assays of hERG are valuable for early in vitro screening of drug candidates to minimize failure in later-stage drug development due to this potentially adverse cardiac risk. We have developed a novel method utilizing potassium fluoride to improve throughput of hERG counter screening with an automated patch clamp system, PatchXpress 7000A. In that method, ∼50% substitution of internal Cl(-) with F(-) greatly increases success rate without substantially altering the biophysical properties of the hERG channel or compromising data quality. However, effect of F(-) or other halide ions on hERG channel properties has not been studied in detail. In this study, we examined effects of complete replacement of Cl(-) in internal solution with halide ions, F(-), or Br(-). We found that (1) F(-) slightly shifts the voltage dependence of hERG channel activation to more positive voltages, while Br(-) shifts it to more negative voltages; (2) Br(-) shifts to more positive voltages both the inactivation-voltage relationship and the peak position of channel full activation of hERG; (3) F(-) slows hERG activation, while both F(-) and Br(-) make the channel close faster; (4) neither F(-) nor Br(-) have any effect on hERG inactivation kinetics. In conclusion, compared to Cl(-), F(-) has subtle effect on hERG activation, while Br(-) has distinct effects on certain, but not all biophysical properties of hERG channel.

摘要

人类醚 - 去极化相关基因(hERG)钾通道已被广泛用作一种生物标志物来反筛选潜在药物,以预测临床QT间期延长。因此,hERG的高通量检测对于早期体外筛选候选药物非常有价值,可将后期药物开发因这种潜在心脏不良风险而失败的情况降至最低。我们开发了一种利用氟化钾的新方法,通过自动膜片钳系统PatchXpress 7000A提高hERG反筛选的通量。在该方法中,用F⁻替代约50%的内部Cl⁻可大幅提高成功率,同时基本不改变hERG通道的生物物理特性或损害数据质量。然而,F⁻或其他卤离子对hERG通道特性的影响尚未得到详细研究。在本研究中,我们研究了用卤离子F⁻或Br⁻完全替代内部溶液中Cl⁻的影响。我们发现:(1)F⁻使hERG通道激活的电压依赖性略微向更正电压偏移,而Br⁻使其向更负电压偏移;(2)Br⁻使hERG的失活 - 电压关系和通道完全激活的峰值位置都向更正电压偏移;(3)F⁻减缓hERG激活,而F⁻和Br⁻都使通道关闭更快;(4)F⁻和Br⁻对hERG失活动力学均无影响。总之,与Cl⁻相比,F⁻对hERG激活有细微影响,而Br⁻对hERG通道的某些但并非所有生物物理特性有明显影响。

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