Literature DB >> 21204225

A complex 6p25 rearrangement in a child with multiple epiphyseal dysplasia.

Jirair K Bedoyan1, Marci M Lesperance, Todd Ackley, Ramaswamy K Iyer, Jeffrey W Innis, Vinod K Misra.   

Abstract

Genomic rearrangements are increasingly recognized as important contributors to human disease. Here we report on an 11½-year-old child with myopia, Duane retraction syndrome, bilateral mixed hearing loss, skeletal anomalies including multiple epiphyseal dysplasia, and global developmental delay, and a complex 6p25 genomic rearrangement. We have employed oligonucleotide-based comparative genomic hybridization arrays (aCGH) of different resolutions (44 and 244K) as well as a 1 M single nucleotide polymorphism (SNP) array to analyze this complex rearrangement. Our analyses reveal a complex rearrangement involving a ∼2.21 Mb interstitial deletion, a ∼240 kb terminal deletion, and a 70-80 kb region in between these two deletions that shows maintenance of genomic copy number. The interstitial deletion contains eight known genes, including three Forkhead box containing (FOX) transcription factors (FOXQ1, FOXF2, and FOXC1). The region maintaining genomic copy number partly overlaps the dual specificity protein phosphatase 22 (DUSP22) gene. Array analyses suggest a homozygous loss of genomic material at the 5' end of DUSP22, which was corroborated using TaqMan® copy number analysis. It is possible that this homozygous genomic loss may render both copies of DUSP22 or its products non-functional. Our analysis suggests a rearrangement mechanism distinct from a previously reported replication-based error-prone mechanism without template switching for a specific 6p25 rearrangement with a 1.22 Mb interstitial deletion. Our study demonstrates the utility and limitations of using oligonucleotide-based aCGH and SNP array technologies of increasing resolutions in order to identify complex DNA rearrangements and gene disruptions.
Copyright © 2010 Wiley-Liss, Inc.

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Year:  2010        PMID: 21204225      PMCID: PMC4533830          DOI: 10.1002/ajmg.a.33751

Source DB:  PubMed          Journal:  Am J Med Genet A        ISSN: 1552-4825            Impact factor:   2.802


  33 in total

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6.  Epiphyseal dysplasia and other skeletal anomalies in a patient with the 6p25 microdeletion syndrome.

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7.  Genetic analysis of p38 MAP kinases in myogenesis: fundamental role of p38alpha in abrogating myoblast proliferation.

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Review 8.  Genomic disorders: structural features of the genome can lead to DNA rearrangements and human disease traits.

Authors:  J R Lupski
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9.  The forkhead/winged helix gene Mf1 is disrupted in the pleiotropic mouse mutation congenital hydrocephalus.

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10.  Chromosomal duplication involving the forkhead transcription factor gene FOXC1 causes iris hypoplasia and glaucoma.

Authors:  O J Lehmann; N D Ebenezer; T Jordan; M Fox; L Ocaka; A Payne; B P Leroy; B J Clark; R A Hitchings; S Povey; P T Khaw; S S Bhattacharya
Journal:  Am J Hum Genet       Date:  2000-09-27       Impact factor: 11.043

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2.  SeSAMe: reducing artifactual detection of DNA methylation by Infinium BeadChips in genomic deletions.

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Review 3.  Childhood glaucoma genes and phenotypes: Focus on FOXC1 mutations causing anterior segment dysgenesis and hearing loss.

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4.  PITX2 and FOXC1 spectrum of mutations in ocular syndromes.

Authors:  Linda M Reis; Rebecca C Tyler; Bethany A Volkmann Kloss; Kala F Schilter; Alex V Levin; R Brian Lowry; Petra J G Zwijnenburg; Eliza Stroh; Ulrich Broeckel; Jeffrey C Murray; Elena V Semina
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5.  Gross chromosomal rearrangement mediated by DNA replication in stressed cells: evidence from Escherichia coli.

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6.  Use of Targeted Exome Sequencing for Molecular Diagnosis of Skeletal Disorders.

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  6 in total

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