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PMID: 21984752 Published · ppublish English Journal Article

Int22h-1/int22h-2-mediated Xq28 rearrangements: intellectual disability associated with duplications and in utero male lethality with deletions.

Journal of medical genetics ·Vol. 48 ·No. 12 ·2011-12-00 ·Pages 840-50

El-Hattab AW, Fang P, Jin W, Hughes JR, Gibson JB, Patel GS, Grange DK, Manwaring LP, Patel A, Stankiewicz P, Cheung SW

Abstract

X linked intellectual disability (XLID) is common, with an estimated prevalence of 1/1000. The expanded use of array comparative genomic hybridisation (CGH) has led to the identification of several XLID-associated copy-number variants. Array CGH analysis was performed using chromosomal microarray with ∼105 000 oligonucleotides covering the entire genome. Confirmatory fluorescence in situ hybridisation analyses were subsequently performed. Chromosome X-inactivation (XCI) was assessed using methylation-sensitive restriction enzyme digestion followed by PCR amplification. A novel ∼0.5 Mb duplication in Xq28 was identified in four cognitively impaired males who share behavioural abnormalities (hyperactivity and aggressiveness) and characteristic facial features (high forehead, upper eyelid fullness, broad nasal bridge and thick lower lip). These duplications were inherited from mothers with skewed XCI and are mediated by nonallelic homologous recombination between the low-copy repeat regions int22h-1 and int22h-2, which, in addition to int22h-3, are also responsible for inversions disrupting the factor VIII gene in haemophilia A. In addition, we have identified a reciprocal deletion in a girl and her mother, both of whom exhibit normal cognition and completely skewed XCI. The mother also had two spontaneous abortions. The phenotypic similarities among subjects with int22h-1/int22h-2-mediated Xq28 duplications suggest that such duplications are responsible for a novel XLID syndrome. The reciprocal deletion may not be associated with a clinical phenotype in carrier females due to skewed XCI, but may be lethal for males in utero. Advancements in array CGH technology have enabled the identification of such small, clinically relevant copy-number variants.

MeSH Terms
Adolescent Adult Child Child, Preschool Chromosome Deletion Chromosome Duplication Chromosome Mapping Chromosomes, Human, X/genetics Comparative Genomic Hybridization Computational Biology DNA Copy Number Variations Developmental Disabilities/genetics,pathology Female Genome, Human Hemophilia A/genetics,pathology Homologous Recombination Humans In Situ Hybridization, Fluorescence Intellectual Disability/genetics,pathology Male Pedigree Phenotype Segmental Duplications, Genomic Sex Chromosome Aberrations Sex Chromosome Disorders/genetics,pathology X Chromosome Inactivation
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
El-Hattab Ayman W
Division of Medical Genetics, Department of Child Health, University of Missouri Health Care, Columbia, Missouri, USA.
Fang Ping
Jin Weihong
Hughes Jeffrey R
Gibson James B
Patel Gayle S
Grange Dorothy K
Manwaring Linda P
Patel Ankita
Stankiewicz Pawel
Cheung Sau Wai
Article Info
Journal
Journal of medical genetics
Abbr.
J Med Genet
ISSN
1468-6244
Published
2011-12-00
Epub
2011-00-08
Pages
840-50
Language
English
Region
England
NLM ID
2985087R
Subset
IM
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