Back to Search Start Over

Characterization of Prevalence and Health Consequences of Uniparental Disomy in Four Million Individuals from the General Population

Authors :
Sarah L. Elson
Joyce Y. Tung
Yunxuan Jiang
Kimberly F. McManus
Joanna L. Mountain
Nadia K. Litterman
Chao Tian
Karen E. Huber
Michelle Agee
G. David Poznik
Sohini Ramachandran
Keng-Han Lin
Pierre Fontanillas
J. Fah Sathirapongsasuti
Adam Auton
Elizabeth S. Noblin
Jennifer C. McCreight
Robert K. Bell
Matthew H. McIntyre
Xin Wang
Barry W. Hicks
Aaron Kleinman
Vladimir Vacic
Samuel Pattillo Smith
Suyash Shringarpure
Nicholas A. Furlotte
Ethan M. Jewett
Katarzyna Bryc
Carrie A.M. Northover
David A. Hinds
Priyanka Nakka
Janie F. Shelton
Steven J. Pitts
Anne H. O’Donnell-Luria
Source :
American Journal of Human Genetics
Publication Year :
2019

Abstract

Meiotic nondisjunction and resulting aneuploidy can lead to severe health consequences in humans. Aneuploidy rescue can restore euploidy but may result in uniparental disomy (UPD), the inheritance of both homologs of a chromosome from one parent with no representative copy from the other. Current understanding of UPD is limited to ∼3,300 case subjects for which UPD was associated with clinical presentation due to imprinting disorders or recessive diseases. Thus, the prevalence of UPD and its phenotypic consequences in the general population are unknown. We searched for instances of UPD across 4,400,363 consented research participants from the personal genetics company 23andMe, Inc., and 431,094 UK Biobank participants. Using computationally detected DNA segments identical-by-descent (IBD) and runs of homozygosity (ROH), we identified 675 instances of UPD across both databases. We estimate that UPD is twice as common as previously thought, and we present a machine-learning framework to detect UPD using ROH. While we find a nominally significant association between UPD of chromosome 22 and autism risk, we do not find significant associations between UPD and deleterious traits in the 23andMe database.

Details

ISSN :
15376605
Volume :
105
Issue :
5
Database :
OpenAIRE
Journal :
American journal of human genetics
Accession number :
edsair.doi.dedup.....84b3745c1654fb180bf762c63aaf72d9