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PMID: 19786696 Published · ppublish English Case Reports Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

De novo mutations of voltage-gated sodium channel alphaII gene SCN2A in intractable epilepsies.

Neurology ·Vol. 73 ·No. 13 ·2009-09-29 ·Pages 1046-53

Ogiwara I, Ito K, Sawaishi Y, Osaka H, Mazaki E, Inoue I, Montal M, Hashikawa T, Shike T, Fujiwara T, Inoue Y, Kaneda M, Yamakawa K

Abstract

Mutations of voltage-gated sodium channel alpha(II) gene, SCN2A, have been described in a wide spectrum of epilepsies. While inherited SCN2A mutations have been identified in multiple mild epilepsy cases, a de novo SCN2A-R102X mutation, which we previously reported in a patient with sporadic intractable childhood localization-related epilepsy, remains unique. To validate the involvement of de novo SCN2A mutations in the etiology of intractable epilepsies, we sought to identify additional instances. We performed mutational analyses on SCN2A in 116 patients with severe myoclonic epilepsy in infancy, infantile spasms, and other types of intractable childhood partial and generalized epilepsies and did whole-cell patch-clamp recordings on Na(v)1.2 channels containing identified mutations. We discovered 2 additional de novo SCN2A mutations. One mutation, SCN2A-E1211K, was identified in a patient with sporadic infantile spasms. SCN2A-E1211K produced channels with altered electrophysiologic properties compatible with both augmented (an approximately 18-mV hyperpolarizing shift in the voltage dependence of activation) and reduced (an approximately 22-mV hyperpolarizing shift in the voltage dependence of steady-state inactivation and a slowed recovery from inactivation) channel activities. The other de novo mutation, SCN2A-I1473M, was identified in a patient with sporadic neonatal epileptic encephalopathy. SCN2A-I1473M caused an approximately 14-mV hyperpolarizing shift in the voltage dependence of activation. The identified de novo mutations SCN2A-E1211K, -I1473M, and -R102X indicate that SCN2A is an etiologic candidate underlying a variety of intractable childhood epilepsies. The phenotypic variations among patients might be due to the different electrophysiologic properties of mutant channels.

MeSH Terms
Amino Acid Sequence Cell Line Conserved Sequence DNA Mutational Analysis Epilepsies, Myoclonic/genetics,physiopathology Fatal Outcome Female Haplotypes Humans Infant, Newborn Kidney/cytology Male Mutation, Missense NAV1.2 Voltage-Gated Sodium Channel Nerve Tissue Proteins/chemistry,genetics,physiology Patch-Clamp Techniques Protein Structure, Tertiary Severity of Illness Index Sodium Channels/chemistry,genetics,physiology Spasms, Infantile/genetics,physiopathology Transfection Young Adult
Chemicals
NAV1.2 Voltage-Gated Sodium Channel Nerve Tissue Proteins SCN2A protein, human Sodium Channels
Authors & Affiliations
13 authors, click to expand affiliations / ORCID
Ogiwara I
Laboratory for Neurogenetics, RIKEN Brain Science Institute, Wako, Saitama, Japan.
Ito K
Sawaishi Y
Osaka H
Mazaki E
Inoue I
Montal M
Hashikawa T
Shike T
Fujiwara T
Inoue Y
Kaneda M
Yamakawa K
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Article Info
Journal
Neurology
Abbr.
Neurology
ISSN
1526-632X
Published
2009-09-29
Pages
1046-53
Language
English
Region
United States
NLM ID
0401060
PMCID
PMC2754324
Subset
IM
Grants
NIGMS NIH HHS · GM-49711 · United States
Corrections
CommentIn
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