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PMID: 24650168 Published · epublish English Case Reports Journal Article Research Support, Non-U.S. Gov't

De novo SCN2A splice site mutation in a boy with Autism spectrum disorder.

BMC medical genetics ·Vol. 15 ·2014-03-20 ·Pages 35

Tavassoli T, Kolevzon A, Wang AT, Curchack-Lichtin J, Halpern D, Schwartz L, Soffes S, Bush L, Grodberg D, Cai G, Buxbaum JD

Abstract

SCN2A is a gene that codes for the alpha subunit of voltage-gated, type II sodium channels, and is highly expressed in the brain. Sodium channel disruptions, such as mutations in SCN2A, may play an important role in psychiatric disorders. Recently, de novo SCN2A mutations in autism spectrum disorder (ASD) have been identified. The current study characterizes a de novo splice site mutation in SCN2A that alters mRNA and protein products. We describe results from clinical and genetic characterizations of a seven-year-old boy with ASD. Psychiatric interview and gold standard autism diagnostic instruments (ADOS and ADI-R) were used to confirm ASD diagnosis, in addition to performing standardized cognitive and adaptive functioning assessments (Leiter-R and Vineland Adaptive Behavior Scale), and sensory reactivity assessments (Sensory Profile and Sensory Processing Scales). Genetic testing by whole exome sequencing revealed four de novo events, including a splice site mutation c.476 + 1G > A in SCN2A, a missense mutation (c.2263G > A) causing a p.V755I change in the TLE1 gene, and two synonymous mutations (c.2943A > G in the BUB1 gene, and c.1254 T > A in C10orf68 gene). The de novo SCN2A splice site mutation produced a stop codon 10 amino acids downstream, possibly resulting in a truncated protein and/or a nonsense-mediated mRNA decay. The participant met new DSM-5 criteria for ASD, presenting with social and communication impairment, repetitive behaviors, and sensory reactivity issues. The participant's adaptive and cognitive skills fell in the low range of functioning. This report indicates that a splice site mutation in SCN2A might be contributing to the risk of ASD. Describing the specific phenotype associated with SCN2A mutations might help to reduce heterogeneity seen in ASD.

MeSH Terms
Amino Acid Sequence Base Sequence Child Child Development Disorders, Pervasive/diagnosis,genetics,psychology Co-Repressor Proteins DNA Mutational Analysis Genetic Association Studies Humans Male Molecular Diagnostic Techniques Molecular Sequence Data Mutation, Missense NAV1.2 Voltage-Gated Sodium Channel/genetics,metabolism Protein Isoforms/genetics,metabolism RNA Splice Sites Repressor Proteins/genetics
Chemicals
Co-Repressor Proteins NAV1.2 Voltage-Gated Sodium Channel Protein Isoforms RNA Splice Sites Repressor Proteins SCN2A protein, human TLE1 protein, human
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Tavassoli Teresa
Seaver Autism Center for Research and Treatment, Icahn School of Medicine at Mount Sinai, New York, NY, USA. [email protected].
Kolevzon Alexander
Wang A Ting
Curchack-Lichtin Jocelyn
Halpern Danielle
Schwartz Lily
Soffes Sarah
Bush Lauren
Grodberg David
Cai Guiqing
Buxbaum Joseph D
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Article Info
Journal
BMC medical genetics
Abbr.
BMC Med Genet
ISSN
1471-2350
Published
2014-03-20
Epub
2014-00-20
Pages
35
Language
English
Region
England
NLM ID
100968552
PMCID
PMC3994485
Subset
IM
Grants
NIGMS NIH HHS · T32 GM082773 · United States
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