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PMID: 14628292 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Array-based comparative genomic hybridization for the genomewide detection of submicroscopic chromosomal abnormalities.

American journal of human genetics ·Vol. 73 ·No. 6 ·2003-12-00 ·Pages 1261-70

Vissers LE, de Vries BB, Osoegawa K, Janssen IM, Feuth T, Choy CO, Straatman H, van der Vliet W, Huys EH, van Rijk A, Smeets D, van Ravenswaaij-Arts CM, Knoers NV, van der Burgt I, de Jong PJ, Brunner HG, van Kessel AG, Schoenmakers EF, Veltman JA

Abstract

Microdeletions and microduplications, not visible by routine chromosome analysis, are a major cause of human malformation and mental retardation. Novel high-resolution, whole-genome technologies can improve the diagnostic detection rate of these small chromosomal abnormalities. Array-based comparative genomic hybridization allows such a high-resolution screening by hybridizing differentially labeled test and reference DNAs to arrays consisting of thousands of genomic clones. In this study, we tested the diagnostic capacity of this technology using approximately 3,500 flourescent in situ hybridization-verified clones selected to cover the genome with an average of 1 clone per megabase (Mb). The sensitivity and specificity of the technology were tested in normal-versus-normal control experiments and through the screening of patients with known microdeletion syndromes. Subsequently, a series of 20 cytogenetically normal patients with mental retardation and dysmorphisms suggestive of a chromosomal abnormality were analyzed. In this series, three microdeletions and two microduplications were identified and validated. Two of these genomic changes were identified also in one of the parents, indicating that these are large-scale genomic polymorphisms. Deletions and duplications as small as 1 Mb could be reliably detected by our approach. The percentage of false-positive results was reduced to a minimum by use of a dye-swap-replicate analysis, all but eliminating the need for laborious validation experiments and facilitating implementation in a routine diagnostic setting. This high-resolution assay will facilitate the identification of novel genes involved in human mental retardation and/or malformation syndromes and will provide insight into the flexibility and plasticity of the human genome.

MeSH Terms
Chromosome Aberrations Genome, Human Humans In Situ Hybridization, Fluorescence/methods Intellectual Disability/genetics Polymorphism, Genetic Sensitivity and Specificity
Authors & Affiliations
19 authors, click to expand affiliations / ORCID
Vissers Lisenka E L M
Department of Human Genetics, University Medical Center Nijmegen, Nijmegen, The Netherlands.
de Vries Bert B A
Osoegawa Kazutoyo
Janssen Irene M
Feuth Ton
Choy Chik On
Straatman Huub
van der Vliet Walter
Huys Erik H L P G
van Rijk Anke
Smeets Dominique
van Ravenswaaij-Arts Conny M A
Knoers Nine V
van der Burgt Ineke
de Jong Pieter J
Brunner Han G
van Kessel Ad Geurts
Schoenmakers Eric F P M
Veltman Joris A
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Article Info
Journal
American journal of human genetics
Abbr.
Am J Hum Genet
ISSN
0002-9297
Published
2003-12-00
Epub
2003-00-18
Pages
1261-70
Language
English
Region
United States
NLM ID
0370475
PMCID
PMC1180392
Subset
IM
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