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活性氧对人类醚 - 去极化相关基因(HERG)钾通道的调节作用

Regulation of the human ether-a-gogo related gene (HERG) K+ channels by reactive oxygen species.

作者信息

Taglialatela M, Castaldo P, Iossa S, Pannaccione A, Fresi A, Ficker E, Annunziato L

机构信息

Section of Pharmacology, Department of Neurosciences, School of Medicine, University of Naples Federico II, Via. S. Pansini 5, 80131 Naples, Italy.

出版信息

Proc Natl Acad Sci U S A. 1997 Oct 14;94(21):11698-703. doi: 10.1073/pnas.94.21.11698.

Abstract

Human ether-a-gogo related gene (HERG) K+ channels are key elements in the control of cell excitability in both the cardiovascular and the central nervous systems. For this reason, the possible modulation by reactive oxygen species (ROS) of HERG and other cloned K+ channels expressed in Xenopus oocytes has been explored in the present study. Exposure of Xenopus oocytes to an extracellular solution containing FeSO4 (25-100 microM) and ascorbic acid (50-200 microM) (Fe/Asc) increased both malondialdehyde content and 2',7'-dichlorofluorescin fluorescence, two indexes of ROS production. Oocyte perfusion with Fe/Asc caused a 50% increase of the outward K+ currents carried by HERG channels, whereas inward currents were not modified. This ROS-induced increase in HERG outward K+ currents was due to a depolarizing shift of the voltage-dependence of channel inactivation, with no change in channel activation. No effect of Fe/Asc was observed on the expressed K+ currents carried by other K+ channels such as bEAG, rDRK1, and mIRK1. Fe/Asc-induced stimulation of HERG outward currents was completely prevented by perfusion of the oocytes with a ROS scavenger mixture (containing 1,000 units/ml catalase, 200 ng/ml superoxide dismutase, and 2 mM mannitol). Furthermore, the scavenger mixture also was able to reduce HERG outward currents in resting conditions by 30%, an effect mimicked by catalase alone. In conclusion, the present results seem to suggest that changes in ROS production can specifically influence K+ currents carried by the HERG channels.

摘要

人醚 - 去极化相关基因(HERG)钾通道是心血管系统和中枢神经系统中控制细胞兴奋性的关键因素。因此,本研究探讨了活性氧(ROS)对非洲爪蟾卵母细胞中HERG及其他克隆钾通道的可能调节作用。将非洲爪蟾卵母细胞暴露于含有硫酸亚铁(25 - 100微摩尔)和抗坏血酸(50 - 200微摩尔)(Fe/Asc)的细胞外溶液中,会增加丙二醛含量和2',7'-二氯荧光素荧光,这是ROS产生的两个指标。用Fe/Asc灌注卵母细胞会使HERG通道携带的外向钾电流增加50%,而内向电流未改变。这种ROS诱导的HERG外向钾电流增加是由于通道失活电压依赖性的去极化偏移,通道激活无变化。未观察到Fe/Asc对其他钾通道如bEAG、rDRK1和mIRK1所表达的钾电流有影响。用ROS清除剂混合物(含有1000单位/毫升过氧化氢酶、200纳克/毫升超氧化物歧化酶和2毫摩尔甘露醇)灌注卵母细胞可完全阻止Fe/Asc诱导的HERG外向电流刺激。此外,清除剂混合物还能在静息状态下使HERG外向电流降低30%,单独使用过氧化氢酶也能模拟这种效果。总之,目前的结果似乎表明ROS产生的变化可特异性影响HERG通道携带的钾电流。

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