4.3 Article

Copy number variation in Han Chinese individuals with autism spectrum disorder

期刊

出版社

BIOMED CENTRAL LTD
DOI: 10.1186/1866-1955-6-34

关键词

Autism spectrum disorder (ASD); Copy number variations (CNVs); Microarray diagnostic testing; Han Chinese

资金

  1. Centre for Applied Genomics
  2. University of Toronto McLaughlin Centre
  3. NeuroDevNet
  4. Genome Canada
  5. Ontario Genomics Institute [4445]
  6. Canadian Institutes for Health Research (CIHR) [FRN 74527, FRNXGG818]
  7. Canadian Institute for Advanced Research
  8. Canada Foundation for Innovation
  9. Government of Ontario [GL2-01-013]
  10. Ontario Brain Institute
  11. Autism Speaks
  12. Ontario Graduate Scholarship
  13. Frederick Banting and Charles Best Canada Graduate Scholarship (CIHR-Masters)

向作者/读者索取更多资源

Background: Autism spectrum disorders (ASDs) are a group of neurodevelopmental conditions with a demonstrated genetic etiology. Rare (<1% frequency) copy number variations (CNVs) account for a proportion of the genetic events involved, but the contribution of these events in non-European ASD populations has not been well studied. Here, we report on rare CNVs detected in a cohort of individuals with ASD of Han Chinese background. Methods: DNA samples were obtained from 104 ASD probands and their parents who were recruited from Harbin, China. Samples were genotyped on the Affymetrix CytoScan HD platform. Rare CNVs were identified by comparing data with 873 technology-matched controls from Ontario and 1,235 additional population controls of Han Chinese ethnicity. Results: Of the probands, 8.6% had at least 1 de novo CNV (overlapping the GIGYF2, SPRY1, 16p13.3, 16p11.2, 17p13.3-17p13.2, DMD, and NAP1L6 genes/loci). Rare inherited CNVs affected other plausible neurodevelopmental candidate genes including GRID2, LINGO2, and SLC39A12. A 24-kb duplication was also identified at YWHAE, a gene previously implicated in ASD and other developmental disorders. This duplication is observed at a similar frequency in cases and in population controls and is likely a benign Asian-specific copy number polymorphism. Conclusions: Our findings help define genomic features relevant to ASD in the Han Chinese and emphasize the importance of using ancestry-matched controls in medical genetic interpretations.

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