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Complete loss of P/Q calcium channel activity caused by CACNA1A missense mutation carried by episodic ataxia type 2 patients.

机译:由发作性共济失调2型患者携带的CACNA1A错义突变引起的P / Q钙通道活性完全丧失。

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摘要

Familial hemiplegic migraine, episodic ataxia type 2 (EA2), and spinocerebellar ataxia type 6 are allelic disorders of the CACNA1A gene (coding for the α1A subunit of P/Q calcium channels), usually associated with different types of mutations (missense, protein truncating, and expansion, respectively). However, the finding of expansion and missense mutations in patients with EA2 has blurred this genotype-phenotype correlation. We report the first functional analysis of a new missense mutation, associated with an EA2 phenotype—that is, T→C transition of nt 4747 in exon 28, predicted to change a highly conserved phenylalanine residue to a serine at codon 1491, located in the putative transmembrane segment S6 of domain III. Patch-clamp recording in HEK 293 cells, coexpressing the mutagenized human α1A-2 subunit, together with human β4 and α2δ subunits, showed that channel activity was completely abolished, although the mutated protein is expressed in the cell. These results indicate that a complete loss of P/Q channel function is the mechanism underlying EA2, whether due to truncating or to missense mutations.
机译:家族性偏瘫偏头痛,发作性共济失调2型(EA2)和脊髓小脑共济失调6型是CACNA1A基因的等位基因疾病(编码P / Q钙通道的α1A亚基),通常与不同类型的突变相关(错义,蛋白截短,和扩展)。但是,在EA2患者中发现扩增和错义突变已经模糊了这种基因型与表型的相关性。我们报告了与EA2表型相关的新错义突变的第一个功能分析-即外显子28中nt 4747的T→C转变,预计会将高度保守的苯丙氨酸残基改变为位于1491位密码子的丝氨酸。域III的推定跨膜区段S6。在HEK 293细胞中进行膜片钳记录,共表达诱变的人α1A-2亚基以及人β4和α2δ亚基,尽管突变的蛋白在细胞中表达,但通道活性已被完全废除。这些结果表明,无论是由于截短突变还是错义突变,P / Q通道功能的完全丧失都是EA2的基础。

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