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首页> 外文期刊>The Journal of biological chemistry >Gain-of-function mutation of a voltage-gated sodium channel NaV1.7 associated with peripheral pain and impaired limb development
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Gain-of-function mutation of a voltage-gated sodium channel NaV1.7 associated with peripheral pain and impaired limb development

机译:电压门控钠通道NaV1.7的功能获得性突变与周围性疼痛和肢体发育受损相关

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Dominant mutations in voltage-gated sodium channel NaV1.7 cause inherited erythromelalgia, a debilitating pain disorder characterized by severe burning pain and redness of the distal extremities. NaV1.7 is preferentially expressed within peripheral sensory and sympathetic neurons. Here, we describe a novel NaV1.7 mutation in an 11-year-old male with underdevelopment of the limbs, recurrent attacks of burning pain with erythema, and swelling in his feet and hands. Frequency and duration of the episodes gradually increased with age, and relief by cooling became less effective. The patient's sister had short stature and reported similar complaints of erythema and burning pain, but with less intensity. Genetic analysis revealed a novel missense mutation in NaV1.7 (2567G>C; p.Gly856Arg) in both siblings. The G856R mutation, located within the DII/S4-S5 linker of the channel, substitutes a highly conserved non-polar glycine by a positively charged arginine. Voltage-clamp analysis of G856R currents revealed that the mutation hyperpolarized (?11.2 mV) voltage dependence of activation and slowed deactivation but did not affect fast inactivation, compared with wild-type channels. A mutation of Gly-856 to aspartic acid was previously found in a family with limb pain and limb underdevelopment, and its functional assessment showed hyperpolarized activation, depolarized fast inactivation, and increased ramp current. Structural modeling using the Rosetta computational modeling suite provided structural clues to the divergent effects of the substitution of Gly-856 by arginine and aspartic acid. Although the proexcitatory changes in gating properties of G856R contribute to the pathophysiology of inherited erythromelalgia, the link to limb underdevelopment is not well understood.
机译:电压门控钠通道NaV1.7的显着突变会导致遗传性红斑性肌痛,这是一种使人衰弱的疼痛性疾病,其特征是剧烈的灼痛和四肢发红。 NaV1.7优先在周围的感觉和交感神经元内表达。在这里,我们描述了一个11岁的男性的新的NaV1.7突变,该男性的四肢发育不全,反复发作,灼痛伴红斑,脚和手肿胀。发作的频率和持续时间随着年龄的增长而逐渐增加,而通过降温缓解症状的效果减弱。病人的姐姐身材矮小,并报告了类似的红斑和灼痛感,但强度较轻。遗传分析显示两个兄弟姐妹的NaV1.7(2567G> C; p.Gly856Arg)有一个新的错义突变。位于通道DII / S4-S5接头内的G856R突变通过带正电荷的精氨酸替代了高度保守的非极性甘氨酸。对G856R电流的电压钳分析表明,与野生型通道相比,该突变对激活具有超极化(?11.2 mV)电压依赖性,并减缓了失活,但不影响快速失活。先前在肢体疼痛和肢体发育不佳的家庭中发现了Gly-856突变为天冬氨酸的突变,其功能评估显示超极化激活,去极化快速失活和斜坡电流增加。使用Rosetta计算建模套件进行的结构建模为精氨酸和天冬氨酸取代Gly-856的不同效果提供了结构线索。尽管G856R的门控特性的兴奋性变化有助于遗传性红血丝痛的病理生理,但与肢体发育不足的联系尚不十分清楚。

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