生理温度下遗传性红斑性肢痛症NaV1.7突变通道的增强运输

Q2 Medicine
Malgorzata A. Mis , Sidharth Tyagi , Elizabeth J. Akin , Mohammad-Reza Ghovanloo , Peng Zhao , Fadia Dib-Hajj , Andrew D. Randall , Stephen G. Waxman , Sulayman D. Dib-Hajj
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引用次数: 0

摘要

NaV1.7是一种在痛觉感受器中广泛表达的钠通道,其功能获得性突变可增强NaV1.7的激活,导致包括遗传性红斑性肢痛症(IEM)在内的人类疼痛疾病。IEM的特征是由温暖引发的远端肢体灼痛发作,对受累肢体进行冷却可以暂时缓解疼痛。我们研究了iem连接的L858F突变体NaV1.7通道在生理正常皮肤温度下(NST, 33-35°C)在ib4阴性DRG感觉神经元中的行为,这些神经元已知包括热传感器。利用NST下的电压钳记录,我们发现NaV1.7-L858F突变通道在激活时表现出与之前在室温记录中发现的特征超极化位移,并且L858F通道的电流密度明显大于WT通道。利用NST的活细胞光脉冲追踪成像方法,我们观察到加速的前向运输显著增加了IB4-神经元突变通道的膜插入。NST下的电流钳记录显示,表达L858F突变通道的IB4-神经元的放电增加,与该生理温度下通道的运输增加一致。我们的研究发现,在正常皮肤温度下,IB4-神经元中L858F突变通道的运输和膜插入增强是iem相关神经元高兴奋性的另一个机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced trafficking of an inherited erythromelalgia NaV1.7 mutant channel at a physiological temperature
Gain-of-function mutations which enhance activation of NaV1.7, a widely expressed sodium channel in nociceptors, cause human pain disorders including inherited erythromelalgia (IEM). IEM is characterized by attacks of burning pain in distal extremities triggered by warmth, with cooling of affected limbs providing temporary relief. We investigated the behaviour of the IEM-linked L858F mutant NaV1.7 channel at physiological normal skin temperature (NST, 33–35 °C) in IB4-negative DRG sensory neurons known to include thermosensors. Using voltage-clamp recordings at NST we found that the NaV1.7-L858F mutant channel shows the characteristic hyperpolarizing shift in activation as has been previously found in recordings at room temperature, and that the current density of the L858F channels is significantly larger than that of WT channels. Using a live-cell optical pulse-chase imaging methodology at NST we observed that accelerated forward-trafficking significantly increases membrane insertion of mutant channels in IB4- neurons. Current-clamp recordings at NST show increased firing of IB4- neurons that express the L858F mutant channel, consistent with increased trafficking of the channel at this physiological temperature. Our findings identify enhanced trafficking and membrane insertion of the L858F mutant channels at normal skin temperature in IB4- neurons as an additional mechanism underlying IEM-related neuronal hyperexcitability.
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来源期刊
Neurobiology of Pain
Neurobiology of Pain Medicine-Anesthesiology and Pain Medicine
CiteScore
4.40
自引率
0.00%
发文量
29
审稿时长
54 days
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