Molecular correlates of age-dependent seizures in an inherited neonatal-infantile epilepsy

被引:136
作者
Liao, Yunxiang [1 ,2 ,3 ]
Deprez, Liesbet [4 ]
Maljevic, Snezana [1 ,2 ,3 ]
Pitsch, Julika [5 ]
Claes, Lieve [4 ]
Hristova, Dimitrina [6 ]
Jordanova, Albena [4 ,7 ]
Ala-Mello, Sirpa [8 ,9 ]
Bellan-Koch, Astrid [2 ,3 ]
Blazevic, Dragica [2 ,3 ]
Schubert, Simone [2 ,3 ]
Thomas, Evan A. [10 ]
Petrou, Steven [10 ,11 ]
Becker, Albert J. [5 ]
De Jonghe, Peter [4 ,12 ]
Lerche, Holger [1 ,2 ,3 ]
机构
[1] Univ Tubingen Hosp, Hertie Inst Clin Brain Res, Dept Neurol & Epileptol, D-72076 Tubingen, Germany
[2] Univ Ulm, Neurol Clin, D-89081 Ulm, Germany
[3] Univ Ulm, Inst Appl Physiol, D-89081 Ulm, Germany
[4] Univ Antwerp VIB, Dept Mol Genet, Neurogenet Grp, B-2610 Antwerp, Belgium
[5] Univ Bonn, Med Ctr, Dept Neuropathol, D-53105 Bonn, Germany
[6] Tokuda Hosp Sofia, Sofia 1407, Bulgaria
[7] Med Univ Sofia, Dept Chem & Biochem, Sofia 1407, Bulgaria
[8] Univ Helsinki, Cent Hosp, Dept Clin Genet, FIN-00290 Helsinki, Finland
[9] Rinnekoti Fdn, Espoo 02980, Finland
[10] Florey Neurosci Inst, Parkville, Vic 3010, Australia
[11] Univ Melbourne, Ctr Neurosci, Melbourne, Vic 3010, Australia
[12] Univ Antwerp Hosp, Div Neurol, Antwerp, Belgium
基金
英国医学研究理事会;
关键词
epilepsy; seizure; sodium channel; development; axon; GATED SODIUM-CHANNEL; PERSISTENT NA+ CURRENT; GENE SCN2A; NA(V)1.2; MUTATION; BRAIN; RAT; INACTIVATION; DISORDERS; DEFECTS;
D O I
10.1093/brain/awq057
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Many idiopathic epilepsy syndromes have a characteristic age dependence, the underlying molecular mechanisms of which are largely unknown. Here we propose a mechanism that can explain that epileptic spells in benign familial neonatal-infantile seizures occur almost exclusively during the first days to months of life. Benign familial neonatal-infantile seizures are caused by mutations in the gene SCN2A encoding the voltage-gated Na(+) channel Na(V)1.2. We identified two novel SCN2A mutations causing benign familial neonatal-infantile seizures and analysed the functional consequences of these mutations in a neonatal and an adult splice variant of the human Na(+) channel Na(V)1.2 expressed heterologously in tsA201 cells together with beta1 and beta2 subunits. We found significant gating changes leading to a gain-of-function, such as an increased persistent Na(+) current, accelerated recovery from fast inactivation or altered voltage-dependence of steady-state activation. Those were restricted to the neonatal splice variant for one mutation, but more pronounced for the adult form for the other, suggesting that a differential developmental splicing does not provide a general explanation for seizure remission. We therefore analysed the developmental expression of Na(V)1.2 and of another voltage-gated Na(+) channel, Na(V)1.6, using immunohistochemistry and real-time reverse transcription-polymerase chain reaction in mouse brain slices. We found that Na(V)1.2 channels are expressed early in development at axon initial segments of principal neurons in the hippocampus and cortex, but their expression is diminished and they are gradually replaced as the dominant channel type by Na(V)1.6 during maturation. This finding provides a plausible explanation for the transient expression of seizures that occur due to a gain-of-function of mutant Na(V)1.2 channels.
引用
收藏
页码:1403 / 1414
页数:12
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