Cavarra María S, del Mónaco Silvana M, Assef Yanina A, Ibarra Cristina, Kotsias Basilio A
Laboratorio de Neurofisiología, Instituto de Investigaciones Médicas Alfredo Lanari, Universidad de Buenos Aires-CONICET, C. de Malvinas 3150, Buenos Aires, 1427, Argentina.
J Membr Biol. 2007 Oct;219(1-3):49-61. doi: 10.1007/s00232-007-9060-x. Epub 2007 Sep 1.
The human ether-a-go-go related gene (HERG1) K+ channel is expressed in neoplastic cells, in which it was proposed to play a role in proliferation, differentiation and/or apoptosis. K562 cells (a chronic myeloid leukemic human cell line) express both the full-length (herg1a) and the N-terminally truncated (herg1b) isoforms of the gene, and this was confirmed with Western blots and coimmunoprecipitation experiments. Whole-cell currents were studied with a tail protocol. Seventy-eight percent of cells showed a HERG1-like current: repolarization to voltages negative to -40 mV produced a transient peak inward tail current, characteristic of HERG1 channels. Cells were exposed to a HERG-specific channel blocker, E4031. Half-maximal inhibitory concentration (IC50) of the blocker was 4.69 nM: The kinetics of the HERG1 current in K562 cells resembled the rapid component of the native cardiac delayed rectifier current, known to be conducted by heterotetrameric HERG1 channels. Fast and slow deactivation time constants at -120 mV were 27.5 and 239.5 ms, respectively. Our results in K562 cells suggest the assembling of heterotetrameric channels, with some parameters being dominated by one of the isoforms and other parameters being intermediate. Hydrogen peroxide was shown to increase HERG1a K+ current in heterologous expression systems, which constitutes an apoptotic signal. However, we found that K562 HERG1 whole-cell currents were not activated by H2O2.
人类醚 - 去极化相关基因(HERG1)钾通道在肿瘤细胞中表达,有人提出它在细胞增殖、分化和/或凋亡中发挥作用。K562细胞(一种慢性髓性白血病人类细胞系)表达该基因的全长(herg1a)和N端截短(herg1b)两种异构体,这通过蛋白质免疫印迹法和免疫共沉淀实验得以证实。采用尾电流记录方案研究全细胞电流。78%的细胞表现出类似HERG1的电流:复极化至 -40 mV以下的电压会产生一个瞬时内向尾电流峰值,这是HERG1通道的特征。细胞暴露于HERG特异性通道阻滞剂E4031。该阻滞剂的半数最大抑制浓度(IC50)为4.69 nM:K562细胞中HERG1电流的动力学类似于天然心脏延迟整流电流的快速成分,已知该电流由异源四聚体HERG1通道传导。在 -120 mV时的快速和慢速失活时间常数分别为27.5和239.5 ms。我们在K562细胞中的结果表明异源四聚体通道的组装,其中一些参数由一种异构体主导,而其他参数处于中间状态。在异源表达系统中,过氧化氢可增加HERG1a钾电流,这构成一种凋亡信号。然而,我们发现K562细胞的HERG1全细胞电流未被H2O2激活。