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[双孔结构域钾通道与偏头痛的分子机制]

[Two-pore-domain potassium channels and molecular mechanisms underlying migraine].

作者信息

Royal Perrine, Ávalos Prado Pablo, Wdziekonski Brigitte, Sandoz Guillaume

机构信息

Université Côte d'Azur, CNRS, INSERM, Institut de Biologie Valrose, Parc Valrose, 06108 Nice, France - Laboratories of Excellence, Ion Channel Science and Therapeutics, Nice, France.

出版信息

Biol Aujourdhui. 2019;213(1-2):51-57. doi: 10.1051/jbio/2019020. Epub 2019 Jul 5.

Abstract

Migraine is a common, disabling neurological disorder with genetic, environmental and hormonal components and a prevalence estimated at ∼15%. Migraine episodes are notably related, among several factors, to electric hyperexcitability in sensory neurons. Their electrical activity is controlled by ion channels that generate current, specifically by the two-pore-domain potassium, K2P, channels, which inhibit electrical activity. Mutation in the gene encoding TRESK, a K2P channel, causes the formation of TRESK-MT1, the expected non-functional C-terminal truncated TRESK channel, and an additional unexpected protein, TRESK-MT2, which corresponds to a non-functional N-terminal truncated TRESK channel, through a mechanism called frameshift mutation-induced Alternative Translation Initiation (fsATI). TRESK-MT1 is inactive but TRESK-M2 targets two other ion channels, TREK1 and TREK2, inducing a great stimulation of the neuronal electrical activity that may cause migraines. These findings identify TREK1 and TREK2 as potential molecular targets for migraine treatment and suggest that fsATI should be considered as a distinct class of mutations.

摘要

偏头痛是一种常见的、使人衰弱的神经系统疾病,具有遗传、环境和激素成分,患病率估计约为15%。在多种因素中,偏头痛发作尤其与感觉神经元的电活动过度兴奋有关。它们的电活动由产生电流的离子通道控制,特别是由抑制电活动的双孔域钾离子通道(K2P通道)控制。编码K2P通道TRESK的基因突变会通过一种称为移码突变诱导的可变翻译起始(fsATI)的机制,导致形成TRESK-MT1(预期的无功能C末端截短的TRESK通道)和另一种意外的蛋白质TRESK-MT2(对应于无功能的N末端截短的TRESK通道)。TRESK-MT1无活性,但TRESK-MT2靶向另外两个离子通道TREK1和TREK2,从而极大地刺激神经元电活动,这可能导致偏头痛。这些发现确定TREK1和TREK2为偏头痛治疗的潜在分子靶点,并表明fsATI应被视为一种独特的突变类型。

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