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PMID: 15148587 Published · ppublish English Case Reports Journal Article Research Support, Non-U.S. Gov't

The de novo chromosome 16 translocations of two patients with abnormal phenotypes (mental retardation and epilepsy) disrupt the A2BP1 gene.

Journal of human genetics ·Vol. 49 ·No. 6 ·2004-00-00 ·Pages 308-311

Bhalla K, Phillips HA, Crawford J, McKenzie OLD, Mulley JC, Eyre H, Gardner AE, Kremmidiotis G, Callen DF

Abstract

The 16p13.3 breakpoints of two de novo translocations of chromosome 16, t(1;16) and t(14;16), were shown by initial mapping studies to have physically adjacent breakpoints. The translocations were ascertained in patients with abnormal phenotypes characterized by predominant epilepsy in one patient and mental retardation in the other. Distamycin/DAPI banding showed that the chromosome 1 breakpoint of the t(1;16) was in the pericentric heterochromatin therefore restricting potential gene disruption to the 16p13.3 breakpoint. The breakpoints of the two translocations were localized to a region of 3.5 and 115 kb respectively and were approximately 900 kb apart. The mapping was confirmed by fluorescence in situ hybridization (FISH) of clones that spanned the breakpoints to metaphase spreads derived from the patients. The mapping data showed both translocations disrupted the ataxin-2-binding protein 1 ( A2BP1) gene that encompasses a large genomic region of 1.7 Mb. A2BP1 encodes a protein that is known to interact with the spinocerebellar ataxia type 2 ( SCA2) protein. It is proposed that disruption of the A2BP1 gene is a cause of the abnormal phenotype of the two patients. Ninety-six patients with sporadic epilepsy and 96 female patients with mental retardation were screened by SSCP for potential mutations of A2BP1. No mutations were found, suggesting that disruption of the A2BP1 gene is not a common cause of sporadic epilepsy or mental retardation.

MeSH Terms
Adolescent Ataxins Child, Preschool Chromosome Mapping Chromosomes, Human, Pair 16 Epilepsy/genetics Exons Female Humans In Situ Hybridization, Fluorescence Intellectual Disability/genetics Introns Male Models, Genetic Mutation Nerve Tissue Proteins Phenotype Physical Chromosome Mapping Polymorphism, Single-Stranded Conformational Proteins/genetics RNA Splicing Factors RNA-Binding Proteins/genetics Translocation, Genetic
Chemicals
Ataxins Nerve Tissue Proteins Proteins RBFOX1 protein, human RNA Splicing Factors RNA-Binding Proteins
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Bhalla Kavita
Department of Genetic Medicine, Women's and Children's Hospital, North Adelaide, South Australia, Australia.
Phillips Hilary A
Department of Genetic Medicine, Women's and Children's Hospital, North Adelaide, South Australia, Australia.
Crawford Joanna
Department of Genetic Medicine, Women's and Children's Hospital, North Adelaide, South Australia, Australia.
McKenzie Olivia L D
Department of Genetic Medicine, Women's and Children's Hospital, North Adelaide, South Australia, Australia.
Mulley John C
Department of Genetic Medicine, Women's and Children's Hospital, North Adelaide, South Australia, Australia.
Eyre Helen
Department of Genetic Medicine, Women's and Children's Hospital, North Adelaide, South Australia, Australia.
Gardner Alison E
Department of Genetic Medicine, Women's and Children's Hospital, North Adelaide, South Australia, Australia.
Kremmidiotis Gabriel
Department of Genetic Medicine, Women's and Children's Hospital, North Adelaide, South Australia, Australia.
Callen David F
Department of Medicine, Breast Cancer Genetics Group, Hanson Institute (North Building), Institute of Medical and Veterinary Science, University of Adelaide, P.O. Box 14, Rundle Mall, Adelaide, South Australia, 5000, Australia. david.callen@imvs.sa.gov.au.
References (6)
6 references, click to expand
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Article Info
Journal
Journal of human genetics
Abbr.
J Hum Genet
ISSN
1434-5161
Published
2004-00-00
Epub
2004-00-18
Pages
308-311
Language
English
Region
England
NLM ID
9808008
Subset
IM
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