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The De Novo Chromosome 16 Translocations of Two Patients with Abnormal Phenotypes (mental Retardation and Epilepsy) Disrupt the A2BP1 Gene

Overview
Journal J Hum Genet
Specialty Genetics
Date 2004 May 19
PMID 15148587
Citations 87
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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.

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References
1.
Callen D, Lane S, Kozman H, Kremmidiotis G, Whitmore S, Lowenstein M . Integration of transcript and genetic maps of chromosome 16 at near-1-Mb resolution: demonstration of a "hot spot" for recombination at 16p12. Genomics. 1995; 29(2):503-11. DOI: 10.1006/geno.1995.9005. View

2.
Warburton D . De novo balanced chromosome rearrangements and extra marker chromosomes identified at prenatal diagnosis: clinical significance and distribution of breakpoints. Am J Hum Genet. 1991; 49(5):995-1013. PMC: 1683246. View

3.
Callen D, Baker E, Eyre H, Chernos J, Bell J, Sutherland G . Reassessment of two apparent deletions of chromosome 16p to an ins(11;16) and a t(1;16) by chromosome painting. Ann Genet. 1990; 33(4):219-21. View

4.
Callen D, Eyre H, McDonnell S, Schuffenhauer S, Bhalla K . A complex rearrangement involving simultaneous translocation and inversion is associated with a change in chromatin compaction. Chromosoma. 2002; 111(3):170-5. DOI: 10.1007/s00412-002-0203-7. View

5.
Kiehl T, Shibata H, Vo T, Huynh D, Pulst S . Identification and expression of a mouse ortholog of A2BP1. Mamm Genome. 2001; 12(8):595-601. DOI: 10.1007/s00335-001-2056-4. View