Author:
Boone Philip M.,Campbell Ian M.,Baggett Brett C.,Soens Zachry T.,Rao Mitchell M.,Hixson Patricia M.,Patel Ankita,Bi Weimin,Cheung Sau Wai,Lalani Seema R.,Beaudet Arthur L.,Stankiewicz Pawel,Shaw Chad A.,Lupski James R.
Abstract
Over 1200 recessive disease genes have been described in humans. The prevalence, allelic architecture, and per-genome load of pathogenic alleles in these genes remain to be fully elucidated, as does the contribution of DNA copy-number variants (CNVs) to carrier status and recessive disease. We mined CNV data from 21,470 individuals obtained by array-comparative genomic hybridization in a clinical diagnostic setting to identify deletions encompassing or disrupting recessive disease genes. We identified 3212 heterozygous potential carrier deletions affecting 419 unique recessive disease genes. Deletion frequency of these genes ranged from one occurrence to 1.5%. When compared with recessive disease genes never deleted in our cohort, the 419 recessive disease genes affected by at least one carrier deletion were longer and located farther from known dominant disease genes, suggesting that the formation and/or prevalence of carrier CNVs may be affected by both local and adjacent genomic features and by selection. Some subjects had multiple carrier CNVs (307 subjects) and/or carrier deletions encompassing more than one recessive disease gene (206 deletions). Heterozygous deletions spanning multiple recessive disease genes may confer carrier status for multiple single-gene disorders, for complex syndromes resulting from the combination of two or more recessive conditions, or may potentially cause clinical phenotypes due to a multiply heterozygous state. In addition to carrier mutations, we identified homozygous and hemizygous deletions potentially causative for recessive disease. We provide further evidence that CNVs contribute to the allelic architecture of both carrier and recessive disease-causing mutations. Thus, a complete recessive carrier screening method or diagnostic test should detect CNV alleles.
Publisher
Cold Spring Harbor Laboratory
Subject
Genetics (clinical),Genetics
Reference49 articles.
1. An integrated map of genetic variation from 1,092 human genomes
2. Clinical assessment incorporating a personal genome
3. Introductory comments on special section–genomic microduplications: When adding may equal subtracting;Am J Med Genet A,2010
4. Whole-genome sequencing for optimized patient management;Sci Transl Med,2011
5. Carrier testing for severe childhood recessive diseases by next-generation sequencing;Sci Transl Med,2011
Cited by
60 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献