4.5 Article

Single exon-resolution targeted chromosomal microarray analysis of known and candidate intellectual disability genes

期刊

EUROPEAN JOURNAL OF HUMAN GENETICS
卷 22, 期 6, 页码 792-800

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/ejhg.2013.248

关键词

targeted; clinical; CMA; intragenic; pathogenic

资金

  1. Killam Doctoral Scholarship
  2. Child and Family Research Institute Fellowship
  3. Canadian Institute of Health Research [MOP 82828]

向作者/读者索取更多资源

Intellectual disability affects about 3% of individuals globally, withB50% idiopathic. We designed an exonic-resolution array targeting all known submicroscopic chromosomal intellectual disability syndrome loci, causative genes for intellectual disability, and potential candidate genes, all genes encoding glutamate receptors and epigenetic regulators. Using this platform, we performed chromosomal microarray analysis on 165 intellectual disability trios (affected child and both normal parents). We identified and independently validated 36 de novo copy-number changes in 32 trios. In all, 67% of the validated events were intragenic, involving only exon 1 (which includes the promoter sequence according to our design), exon 1 and adjacent exons, or one or more exons excluding exon 1. Seventeen of the 36 copy-number variants involve genes known to cause intellectual disability. Eleven of these, including seven intragenic variants, are clearly pathogenic (involving STXBP1, SHANK3 (3 patients), IL1RAPL1, UBE2A, NRXN1, MEF2C, CHD7, 15q24 and 9p24 microdeletion), two are likely pathogenic (PI4KA, DCX), two are unlikely to be pathogenic (GRIK2, FREM2), and two are unclear (ARID1B, 15q22 microdeletion). Twelve individuals with genomic imbalances identified by our array were tested with a clinical microarray, and six had a normal result. We identified de novo copynumber variants within genes not previously implicated in intellectual disability and uncovered pathogenic variation of known intellectual disability genes below the detection limit of standard clinical diagnostic chromosomal microarray analysis.

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