Human epilepsy associated with dysfunction of the brain P/Q-type calcium channel

被引:281
作者
Jouvenceau, A
Eunson, LH
Spauschus, A
Ramesh, V
Zuberi, SM
Kullmann, DM
Hanna, MG
机构
[1] UCL, Inst Neurol, Dept Clin Neurol, London WC1N 3BG, England
[2] INSERM, U549, F-75014 Paris, France
[3] Univ Bonn, Dept Neurol, D-5300 Bonn, Germany
[4] Newcastle Gen Hosp, Dept Paediat Neurol, Newcastle Upon Tyne NE4 6BE, Tyne & Wear, England
[5] Royal Hosp Sick Children, Fraser Allander Neurosci Unit, Glasgow G3 8SJ, Lanark, Scotland
关键词
D O I
10.1016/S0140-6736(01)05971-2
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background The genetic basis of most common forms of human paroxysmal disorders of the central nervous system, such as epilepsy, remains unidentified. Several animal models of absence epilepsy, commonly accompanied by ataxia, are caused by mutations in the brain P/Q-type voltage-gated calcium (Ca(2+)) channel. We aimed to determine whether the P/Q-type Ca(2+) channel is associated with both epilepsy and episodic ataxia type 2 in human beings. Methods We identified an 11-year-old boy with a complex phenotype comprising primary generalised epilepsy, episodic and progressive ataxia, and mild learning difficulties. We sequenced the entire coding region of the gene encoding the voltage-gated P/Q-type Ca(2+) channel (CACNA1A) on chromosome 19. We then introduced the newly identified heterozygous mutation into the full-length rabbit cDNA and did detailed electrophysiological expression studies of mutant and wild type Ca(2+) channels. Findings We identified a previously undescribed heterozygous point mutation (C5733T) in CACNA1A. This mutation introduces a premature stop codon (RI820stop) resulting in complete loss of the C terminal region of the pore-forming subunit of this Ca 2 channel. Expression studies provided direct evidence that this mutation impairs Ca(2+) channel function. Mutant/wild-type co-expression studies indicated a dominant negative effect. Interpretation Human absence epilepsy can be associated with dysfunction of the brain P/Q-type voltage-gated Ca 2 channel. The phenotype in this patient has striking parallels with the mouse absence epilepsy models.
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页码:801 / 807
页数:7
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