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An SCN9A channelopathy causes congenital inability to experience pain

机译:SCN9A通道病导致先天性无力体验疼痛

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The complete inability to sense pain in an otherwise healthy individual is a very rare phenotype. In three consanguineous families from northern Pakistan, we mapped the condition as an autosomal-recessive trait to chromosome 2q24.3. This region contains the gene SCN9A, encoding the α-subunit of the voltage-gated sodium channel, Na_v1.7, which is strongly expressed in nociceptive neurons. Sequence analysis of SCN9A in affected individuals revealed three distinct homozygous nonsense mutations (S459X, I767X and W897X). We show that these mutations cause loss of function of Na_v1.7 by co-expression of wild-type or mutant human Na_v1.7 with sodium channel β_1 and β_2 subunits in HEK293 cells. In cells expressing mutant Na_v1.7, the currents were no greater than background. Our data suggest that SCN9A is an essential and non-redundant requirement for nociception in humans. These findings should stimulate the search for novel analgesics that selectively target this sodium channel subunit.
机译:在其他情况下健康的人,完全无法感觉到疼痛是非常罕见的表型。在来自巴基斯坦北部的三个近亲家庭中,我们将该病情定位为染色体2q24.3的常染色体隐性性状。该区域包含基因SCN9A,该基因编码电压门控钠通道Na_v1.7的α亚基,在伤害性神经元中强烈表达。受影响个体中SCN9A的序列分析显示了三个不同的纯合性无义突变(S459X,I767X和W897X)。我们显示这些突变通过在HEK293细胞中与钠通道β_1和β_2亚基共表达野生型或突变型人Na_v1.7而导致Na_v1.7功能丧失。在表达突变体Na_v1.7的细胞中,电流不大于背景。我们的数据表明,SCN9A是人类伤害感受的基本且非冗余的要求。这些发现应能刺激寻找选择性靶向该钠通道亚基的新型镇痛药。

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