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偏头痛相关 TRESK K+ 通道突变的功能分析。

Functional analysis of a migraine-associated TRESK K+ channel mutation.

机构信息

Washington University Pain Center and Department of Anesthesiology, Washington University School of Medicine, St Louis, Missouri 63110, USA.

出版信息

J Neurosci. 2013 Jul 31;33(31):12810-24. doi: 10.1523/JNEUROSCI.1237-13.2013.

Abstract

Recent genetic and functional studies suggest that migraine may result from abnormal activities of ion channels and transporters. A frameshift mutation in the human TWIK-related spinal cord K(+) (TRESK) channel has been identified in migraine with aura patients in a large pedigree. In Xenopus oocytes, mutant TRESK subunits exert a dominant-negative effect on whole-cell TRESK currents. However, questions remain as to whether and how mutant TRESK subunits affect the membrane properties and the excitability of neurons in the migraine circuit. Here, we investigated the functional consequences of the mutant TRESK subunits in HEK293T cells and mouse trigeminal ganglion (TG) neurons. First, we found that mutant TRESK subunits exhibited dominant-negative effects not only on the size of the whole-cell TRESK currents, but also on the level of TRESK channels on the plasma membrane in HEK293T cells. This likely resulted from the heterodimerization of wild-type and mutant TRESK subunits. Next, we expressed mutant TRESK subunits in cultured TG neurons and observed a significant decrease in the lamotrigine-sensitive K(+) current, suggesting that the mutant TRESK subunits have a dominant-negative effect on currents through the endogenous TRESK channels. Current-clamp recordings showed that neurons expressing mutant TRESK subunits had a higher input resistance, a lower current threshold for action potential initiation, and a higher spike frequency in response to suprathreshold stimuli, indicating that the mutation resulted in hyperexcitability of TG neurons. Our results suggest a possible mechanism through which the TRESK mutation increases the susceptibility of migraine headache.

摘要

最近的遗传和功能研究表明,偏头痛可能是由于离子通道和转运体的异常活动引起的。在一个大型家族中,已在有先兆偏头痛患者中发现人类 TWIK 相关脊髓 K(+) (TRESK) 通道的框移突变。在非洲爪蟾卵母细胞中,突变 TRESK 亚基对全细胞 TRESK 电流表现出显性负效应。然而,仍存在一些问题,即突变 TRESK 亚基是否以及如何影响偏头痛回路中神经元的膜特性和兴奋性。在这里,我们研究了突变 TRESK 亚基在 HEK293T 细胞和小鼠三叉神经节 (TG) 神经元中的功能后果。首先,我们发现突变 TRESK 亚基不仅对全细胞 TRESK 电流的大小,而且对 HEK293T 细胞质膜上 TRESK 通道的水平都表现出显性负效应。这可能是由于野生型和突变型 TRESK 亚基的异二聚化所致。接下来,我们在培养的 TG 神经元中表达突变 TRESK 亚基,观察到拉莫三嗪敏感的 K(+)电流显著减少,表明突变 TRESK 亚基对通过内源性 TRESK 通道的电流具有显性负效应。电流钳记录显示,表达突变 TRESK 亚基的神经元具有更高的输入电阻、更低的动作电位起始电流阈值和更高的超阈值刺激频率,表明该突变导致 TG 神经元的过度兴奋。我们的结果表明了一种可能的机制,即 TRESK 突变增加了偏头痛头痛的易感性。

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