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Gain-of-Function mutations in SCN11A cause familial episodic pain

机译:SCN11A中的功能获得性突变导致家族性发作性疼痛

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Many ion channel genes have been associated with human genetic pain disorders. Here we report two large Chinese families with autosomal- dominant episodic pain. We performed a genome-wide linkage scan with microsatellite markers after excluding mutations in three known genes (SCN9A, SCN10A, and TRPA1) that cause similar pain syndrome to our findings, and we mapped the genetic locus to a 7.81 Mb region on chromosome 3p22.3-p21.32. By using whole-exome sequencing followed by conventional Sanger sequencing, we identified two missense mutations in the gene encoding voltage-gated sodium channel Nav1.9 (SCN11A): c.673C>T (p.Arg225Cys) and c.2423C>G (p.Ala808Gly) (one in each family). Each mutation showed a perfect cosegregation with the pain phenotype in the corresponding family, and neither of them was detected in 1,021 normal individuals. Both missense mutations were predicted to change a highly conserved amino acid residue of the human Nav1.9 channel. We expressed the two SCN11A mutants in mouse dorsal root ganglion (DRG) neurons and showed that both mutations enhanced the channel's electrical activities and induced hyperexcitablity of DRG neurons. Taken together, our results suggest that gain-of-function mutations in SCN11A can be causative of an autosomal-dominant episodic pain disorder.
机译:许多离子通道基因已与人类遗传性疼痛疾病相关。在这里,我们报道了两个常染色体显性遗传性阵痛的中国大家庭。在排除了导致与我们的发现相似的疼痛综合征的三个已知基因(SCN9A,SCN10A和TRPA1)的突变后,我们用微卫星标记物进行了全基因组连锁扫描,并将遗传基因座点定位在3p22染色体上的7.81 Mb区域。 3-p21.32。通过使用全外显子测序和常规的Sanger测序,我们在编码电压门控钠通道Nav1.9(SCN11A)的基因中发现了两个错义突变:c.673C> T(p.Arg225Cys)和c.2423C> G( p.Ala808Gly)(每个家庭一个)。每个突变都与相应家族的疼痛表型表现出完美的共分离,并且在1,021名正常个体中均未检测到。预测这两个错义突变都会改变人Nav1.9通道的高度保守的氨基酸残基。我们在小鼠背根神经节(DRG)神经元中表达了两个SCN11A突变体,并表明这两个突变均增强了通道的电活动并诱导了DRG神经元的过度兴奋。综上所述,我们的结果表明,SCN11A中的功能获得性突变可能是常染色体显性遗传性发作性疼痛病的病因。

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