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A novel role for HERG K+ channels: spike-frequency adaptation.

机译:HERG K +通道的新作用:尖峰频率自适应。

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摘要

1. The regular firing of a Hodgkin-Huxley neurone endowed with fast Na+ and delayed K+ channels can be converted into adapting firing by appending HERG (human eag-related gene) channels. 2. The computer model predictions were verified by studying the firing properties of F-11 DRG neurone x neuroblastoma hybrid cells induced to differentiate by long-term exposure to retinoic acid. These cells, which express HERG currents (IHERG), show clear spike-frequency adaptation of their firing when current clamped with long depolarizations. 3. In agreement with the prediction, the selective blocking of IHERG by class III antiarrhythmic drugs always led to the disappearance of the spike-frequency adaptation, and the conversion of adapting firing to regular firing. 4. It is proposed that, in addition to their role in the repolarization of the heart action potential, HERG channels may sustain a process of spike-frequency adaptation, and hence contribute to the control of burst duration in a way that is similar to that of the K+ currents, IAHP, IC and IM. In addition to the known cardiac arrhythmia syndrome (LQT2), genetic mutations or an altered HERG expression could lead to continuous hyperexcitable states sustained by the inability of nerve or endocrine cells to accommodate to repetitive stimuli. This might help in clarifying the pathogenesis of still undefined idiopathic familial epilepsies.
机译:1.通过添加HERG(人类eag相关基因)通道,可以使具有快速Na +和延迟K +通道的霍奇金-赫克斯利神经元的正常放电转换为适应性放电。 2.通过研究长期暴露于视黄酸诱导分化的F-11 DRG神经元x神经母细胞瘤杂交细胞的放电特性,验证了计算机模型的预测。这些表达HERG电流(IHERG)的电池在用长去极化钳位电流时显示出清晰的尖峰频率适应。 3.与预测相符,III类抗心律失常药物对IHERG的选择性阻滞总是导致尖峰频率适应性消失,以及适应性放电转换为常规放电。 4.建议,除了在心脏动作电位复极化中的作用外,HERG通道还可以维持尖峰频率适应的过程,从而以类似于K +电流,IAHP,IC和IM。除了已知的心律不齐综合症(LQT2),遗传突变或HERG表达改变可能导致神经或内分泌细胞无法适应重复刺激而导致持续的过度兴奋状态。这可能有助于阐明尚不清楚的特发性家族性癫痫的发病机理。

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