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Title: De novo copy number variants associated with intellectual disability have a paternal origin and age bias
Author(s): Hehir, J.Y. (298211254)
Rodriguez-Santiago, B.
Vissers, L.E.L.M. (304331627)
Leeuw, N. de (181941376)
Pfundt, R.
Buitelaar, J.K. (081545622)
Perez-Jurado, L.A.
Veltman, J.A. (18674692X)
Publication year: 2011
Document type: Article / Letter to editor
Journal: Journal of Medical Genetics
ISSN: 0022-2593
Volume: vol. 48
Issue: iss. 11
Start page: p. 776
End page: p. 778
Annotation: Hehir-Kwa, Jayne Y Rodriguez-Santiago, Benjamin Vissers, Lisenka E de Leeuw, Nicole Pfundt, Rolph Buitelaar, Jan K Perez-Jurado, Luis A Veltman, Joris A England J Med Genet. 2011 Nov;48(11):776-8. Epub 2011 Oct 3.
Abstract: Background De novo mutations and structural rearrangements are a common cause of intellectual disability (ID) and other disorders with reduced or null reproductive fitness. Insight into the genomic and environmental factors predisposing to the generation of these de novo events is therefore of significant clinical importance. Methods This study used information from single nucleotide polymorphism microarrays to determine the parent-of-origin of 118 rare de novo copy number variations (CNVs) detected in a cohort of 3443 patients with ID. Results The large majority of these CNVs (76%, p=1.14x10(-8)) originated on the paternal allele. This paternal bias was independent of CNV length and CNV type. Interestingly, the paternal bias was less pronounced for CNVs flanked by segmental duplications (64%), suggesting that molecular mechanisms involved in the formation of rare de novo CNVs may be dependent on the parent-of-origin. In addition, a significantly increased paternal age was only observed for those CNVs which were not flanked by segmental duplications (p=0.02). Conclusion This indicates that rare de novo CNVs are increasingly being generated with advanced paternal age by replication based mechanisms during spermatogenesis.
Subject: DCN 1: Perception and Actions NCEBP 9: Mental Health
NCMLS 3A: Genetics and epigenetic pathways of disease IGMD 3: Genomic disorders and inherited multi-system disorders
Organization: Human Genetics
UMCN Extern
Dermatology
F.C. Donders Centre for Cognitive Neuroimaging
Cognitive Neuroscience
Appears in Collections:Academic bibliography

Please use this identifier to cite or link to this item: http://hdl.handle.net/2066/97781

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