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First evidence of Smith-Magenis syndrome in mother and daughter due to a novel RAI mutation

Authors :
Maria Iascone
Diana Postorivo
Michele Pinelli
Maria Teresa Falco
Maria Elena Sana
Fabio Acquaviva
Anna Maria Nardone
Paolo Fontana
Matteo Della Monica
Fortunato Lonardo
Gioacchino Scarano
Source :
American Journal of Medical Genetics Part A. 173:231-238
Publication Year :
2016
Publisher :
Wiley, 2016.

Abstract

Smith-Magenis syndrome (SMS) is a complex genetic disorder caused by interstitial 17p11.2 deletions encompassing multiple genes, including the retinoic acid induced 1 gene-RAI1-or mutations in RAI1 itself. The clinical spectrum includes developmental delay, cognitive impairment, and behavioral abnormalities, with distinctive physical features that become more evident with age. No patients have been reported to have had offspring. We here describe a girl with developmental delay, mainly compromising the speech area, and her mother with mild intellectual disabilities and minor dysmorphic features. Both had sleep disturbance and attention deficit disorder, but no other atypical behaviors have been reported. In both, CGH-array analysis detected a 15q13.3 interstitial duplication, encompassing CHRNA7. However, the same duplication has been observed in several, apparently healthy, maternal relatives. We, thus, performed a whole exome sequencing analysis, which detected a frameshift mutation in RAI1, de novo in the mother, and transmitted to her daughter. No other family members carried this mutation. This is the first report of an SMS patient having offspring. Our experience confirms the importance of searching for alternative causative genetic mechanisms in case of confounding/inconclusive findings such as a CGH-array result of uncertain significance. © 2016 Wiley Periodicals, Inc.

Details

ISSN :
15524825
Volume :
173
Database :
OpenAIRE
Journal :
American Journal of Medical Genetics Part A
Accession number :
edsair.doi.dedup.....92e4f7284b6b21ac2cb25ed2cda4a3d1
Full Text :
https://doi.org/10.1002/ajmg.a.37989