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首页> 外文期刊>The Journal of Physiology >ERG3 potassium channel‐mediated suppression of neuronal intrinsic excitability and prevention of seizure generation in mice
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ERG3 potassium channel‐mediated suppression of neuronal intrinsic excitability and prevention of seizure generation in mice

机译:ERG3钾通道介导的神经元内在兴奋性和预防小鼠癫痫发作的抑制

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摘要

Key points ERG3 channels have a high expression level in the central nervous system. Knockdown of ERG3 channels enhances neuronal intrinsic excitability (caused by decreased fast afterhyperpolarization, shortened delay time to the generation of an action potential and enhanced summation of somatic excitatory postsynaptic potentials) in hippocampal CA1 pyramidal neurons and dentate gyrus granule cells. The expression of ERG3 protein is reduced in human and mouse hippocampal epileptogenic foci. Knockdown of ERG3 channels in hippocampus enhanced seizure susceptibility, while mice treated with the ERG channel activator NS‐1643 were less prone to epileptogenesis. The results provide strong evidence that ERG3 channels have a crucial role in the regulation of neuronal intrinsic excitability in hippocampal CA1 pyramidal neurons and dentate gyrus granule cells and are critically involved in the onset and development of epilepsy. Abstract The input–output relationship of neuronal networks depends heavily on the intrinsic properties of their neuronal elements. Profound changes in intrinsic properties have been observed in various physiological and pathological processes, such as learning, memory and epilepsy. However, the cellular and molecular mechanisms underlying acquired changes in intrinsic excitability are still not fully understood. Here, we demonstrate that ERG3 channels are critically involved in the regulation of intrinsic excitability in hippocampal CA1 pyramidal neurons and dentate gyrus granule cells. Knock‐down of ERG3 channels significantly increases neuronal intrinsic excitability, which is mainly caused by decreased fast afterhyperpolarization, shortened delay time to the generation of an action potential and enhanced summation of somatic excitatory postsynaptic potentials. Interestingly, the expression level of ERG3 protein is significantly reduced in human and mouse brain tissues with temporal lobe epilepsy. Moreover, ERG3 channel knockdown in hippocampus significantly enhanced seizure susceptibility, while mice treated with the ERG channel activator NS‐1643 were less prone to epileptogenesis. Taken together, our results suggest ERG3 channels play an important role in determining the excitability of hippocampal neurons and dysregulation of these channels may be involved in the generation of epilepsy. ERG3 channels may thus be a novel therapeutic target for the prevention of epilepsy.
机译:关键点ERG3通道在中枢神经系统中具有高表达水平。 ERG3通道的敲低增强了神经元内在兴奋性(通过降低的后经过渗透性引起的,缩短了海马CA1金字塔神经元和牙齿转血颗粒细胞中的延迟时间和体细胞兴奋性突触潜力的增强。人和小鼠海马癫痫病灶中的ERG3蛋白的表达降低。 ERG3通道的敲低在海马中增强了癫痫发作敏感性,而用ERG通道活化剂NS-1643处理的小鼠容易发生癫痫发生。结果提供了强有力的证据表明Erg3通道在海马CA1金字塔神经元和牙齿血晶颗粒细胞中神经元本质激发性中具有至关重要的作用,并且临界性地参与癫痫发作和发育。摘要神经元网络的输入 - 输出关系大量取决于其神经元元素的内在特性。在各种生理和病理过程中观察到内在特性的深刻变化,例如学习,记忆和癫痫。然而,仍然没有完全理解所获得的内在兴奋性变化的细胞和分子机制。在这里,我们证明ERG3通道批判性地参与了海马CA1金字塔神经元和牙齿血晶颗粒细胞的内在兴奋性的调节。 ERG3通道的击倒显着提高了神经元的内在激励性,主要是由于减少的快速后积分,缩短了延迟时间来产生动作潜力和体细胞兴奋性突触潜力的增强。有趣的是,用颞叶癫痫,ERG3蛋白的表达水平显着降低了人和小鼠脑组织。此外,海马的ERG3通道敲低显着增强了癫痫发育敏感性,而用ERG通道激活剂NS-1643处理的小鼠易于癫痫发生。我们的结果表明ERG3频道在确定海马神经元的兴奋和这些通道的失调中可能涉及癫痫的产生的重要作用。因此,ERG3通道可能是预防癫痫的新疗效目标。

著录项

  • 来源
    《The Journal of Physiology》 |2018年第19期|共24页
  • 作者单位

    State Key Laboratory of Natural and Biomimetic DrugsPeking University Health Science CenterBeijing;

    State Key Laboratory of Natural and Biomimetic DrugsPeking University Health Science CenterBeijing;

    State Key Laboratory of Natural and Biomimetic DrugsPeking University Health Science CenterBeijing;

    Department of NeurologyShengjing Hospital affiliated to China Medical UniversityShenyang 110000;

    State Key Laboratory of Natural and Biomimetic DrugsPeking University Health Science CenterBeijing;

    State Key Laboratory of Natural and Biomimetic DrugsPeking University Health Science CenterBeijing;

    State Key Laboratory of Natural and Biomimetic DrugsPeking University Health Science CenterBeijing;

    State Key Laboratory of Natural and Biomimetic DrugsPeking University Health Science CenterBeijing;

    State Key Laboratory of Natural and Biomimetic DrugsPeking University Health Science CenterBeijing;

    Peking University Sixth Hospital (Institute of Mental Health)Beijing 100191 China;

    State Key Laboratory of Natural and Biomimetic DrugsPeking University Health Science CenterBeijing;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    ERG channels; Intrinsic excitability; Epilepsy;

    机译:erg频道;内在兴奋性;癫痫;

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