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首页> 外文期刊>Nature Communications >Cold-aggravated pain in humans caused by a hyperactive Na(V)1.9 channel mutant
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Cold-aggravated pain in humans caused by a hyperactive Na(V)1.9 channel mutant

机译:Na(V)1.9通道过度活跃引起的人的冷加重疼痛

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Gain-of-function mutations in the human SCN11A-encoded voltage-gated Na+ channel Na(V)1.9 cause severe pain disorders ranging from neuropathic pain to congenital pain insensitivity. However, the entire spectrum of the Na(V)1.9 diseases has yet to be defined. Applying whole-exome sequencing we here identify a missense change (p.V1184A) in Na(V)1.9, which leads to cold-aggravated peripheral pain in humans. Electrophysiological analysis reveals that p.V1184A shifts the voltage dependence of channel opening to hyperpolarized potentials thereby conferring gain-of-function characteristics to Na(V)1.9. Mutated channels diminish the resting membrane potential of mouse primary sensory neurons and cause cold-resistant hyperexcitability of nociceptors, suggesting a mechanistic basis for the temperature dependence of the pain phenotype. On the basis of direct comparison of the mutations linked to either cold-aggravated pain or pain insensitivity, we propose a model in which the physiological consequence of a mutation, that is, augmented versus absent pain, is critically dependent on the type of Na(V)1.9 hyperactivity.
机译:人SCN11A编码的电压门控Na +通道Na(V)1.9的功能获得性突变导致严重的疼痛疾病,从神经性疼痛到先天性疼痛不敏感。但是,Na(V)1.9疾病的整个范围尚未确定。应用全外显子组测序,我们在此处确定Na(V)1.9中的错义变化(p.V1184A),这会导致人的周围疼痛加剧。电生理分析表明,p.V1184A将通道开口的电压依赖性转变为超极化电势,从而将功能增益特性赋予Na(V)1.9。突变的通道会降低小鼠初级感觉神经元的静息膜电位,并导致伤害感受器的抗寒性过度兴奋,为疼痛表型的温度依赖性提供了机械基础。在直接比较与冷加重疼痛或疼痛不敏感相关的突变的基础上,我们提出了一个模型,其中突变的生理后果(即增加的疼痛与不存在的疼痛)在很大程度上取决于Na( V)1.9多动症。

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