4.0 Article

Copy Number Variation Analysis of 100 Twin Pairs Enriched for Neurodevelopmental Disorders

期刊

TWIN RESEARCH AND HUMAN GENETICS
卷 21, 期 1, 页码 1-11

出版社

CAMBRIDGE UNIV PRESS
DOI: 10.1017/thg.2017.69

关键词

monozygotic twins; neurodevelopmental disorders; autism spectrum disorder; copy number variant; postzygotic variants; discordant twin pairs; HNRNPU

资金

  1. Innovative Medicines Initiatives Joint Undertaking from the European Union's Seventh Framework Programme (FP7) [115300]
  2. Swedish Research Council [523-2009-7054, 521-2013-2531, 350-2012-286]
  3. Swedish Research Council
  4. Swedish Research Council for Health, Working Life and Welfare
  5. Formas
  6. VINNOVA [259-2012-24]
  7. Stockholm County Council [20100096, 20110602, 20120067, 20140134]
  8. Stiftelsen Frimurare Barnhuset
  9. Sunnerdahls-Handikappfond
  10. Hjarnfonden
  11. GlaxoSmithKline-Canadian Institutes of Health (CIHR) Endowed Chair in Genome Sciences at The Hospital for Sick Children
  12. Swedish Foundation for Strategic Research
  13. Harald Foundation
  14. AkeWiberg Foundation
  15. Swedish Foundation for International Cooperation in Research and Higher Education
  16. StratNeuro
  17. Board of Research at Karolinska Institutet
  18. Karolinska Institutet
  19. University of Toronto
  20. Greta Jeanssons Foundation

向作者/读者索取更多资源

Hundreds of penetrant risk loci have been identified across different neurodevelopmental disorders (NDDs), and these often involve rare (< 1% frequency) copy number variations (CNVs), which can involve one or more genes. Monozygotic (MZ) twin pairs are long thought to share 100% of their genomic information. However, genetic differences in the form of postzygotic somatic variants have been reported recently both in typically developing (TD) and in clinically discordant MZ pairs. We sought to investigate the contribution of rare CNVs in 100 twin pairs enriched for NDD phenotypes with a particular focus on postzygotic CNVs in MZ pairs discordant for autism spectrum disorder (ASD) using the Illumina Infinium PsychArray. In our sample, no postzygotic de novo CNVs were found in 55 MZ twin pairs, including the 13 pairs discordant for ASD. We did detect a higher rate of CNVs overlapping genes involved in disorders of the nervous system, such as a rare deletion affecting HNRNPU, in MZ pairs discordant and concordant for ASD in comparison with TD pairs (p = .02). Our results are in concordance with earlier findings that postzygotic de novo CNV events are typically rare in genomic DNA derived from saliva or blood, and suggests that the discordance of NDDs in our sample of twins is not explained by discordant CNVs. Still, studies investigating postzygotic variation in MZ discordant twins using DNA from different tissues and single cells and higher resolution genomics are needed in the future.

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