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Heterozygous missense mutations in SMARCA2 cause Nicolaides-Baraitser syndrome

Authors :
Alex Magee
Alma Kuechler
Livia Garavelli
Nora Shannon
Simone Gana
Fanny Morice-Picard
Elizabeth C. Rosser
Koenraad Devriendt
Joris Vermeesch
Isabel Filges
Patrick Van Dijck
Danny Huylebroeck
Małgorzata Krajewska-Walasek
Alejandro Sifrim
Stella A. de Man
Valérie Cormier-Daire
Yves Moreau
Antoine H. C. van Kampen
Marie José H. Van Den Boogaard
Catheline Vilain
Shane McKee
Ewa Obersztyn
Alan Fryer
Louise C. Wilson
Sérgio B. Sousa
Jacek Pilch
Saskia M. Maas
Orsetta Zuffardi
Raoul C.M. Hennekam
Bryan D. Hall
Dagmar Wieczorek
Annick Vogels
Kay D. MacDermot
Marco Castori
Eve Seuntjens
Jakub Klapecki
Denise Horn
Jean Pierre Fryns
Beata Nowakowska
Gabriele Gillessen-Kaesbach
Barbera D. C. van Schaik
Nelson Avonce
Matthew A. Deardorff
Armand Bottani
Irene Stolte-Dijkstra
Matthew A. Lines
Omar A. Abdul-Rahman
Jeroen Van Houdt
Emma Wakeling
Clinical Genetics
ACS - Amsterdam Cardiovascular Sciences
AII - Amsterdam institute for Infection and Immunity
AGEM - Amsterdam Gastroenterology Endocrinology Metabolism
ANS - Amsterdam Neuroscience
CCA -Cancer Center Amsterdam
Epidemiology and Data Science
Human Genetics
Paediatric Genetics
APH - Amsterdam Public Health
Paediatrics
Source :
Nature Genetics, 44(4), 445-U261. Nature Publishing Group, Nature genetics, 44(4), 445-U261. Nature Publishing Group
Publication Year :
2012

Abstract

Nicolaides-Baraitser syndrome (NBS) is characterized by sparse hair, distinctive facial morphology, distal-limb anomalies and intellectual disability. We sequenced the exomes of ten individuals with NBS and identified heterozygous variants in SMARCA2 in eight of them. Extended molecular screening identified nonsynonymous SMARCA2 mutations in 36 of 44 individuals with NBS; these mutations were confirmed to be de novo when parental samples were available. SMARCA2 encodes the core catalytic unit of the SWI/SNF ATP-dependent chromatin remodeling complex that is involved in the regulation of gene transcription. The mutations cluster within sequences that encode ultra-conserved motifs in the catalytic ATPase region of the protein. These alterations likely do not impair SWI/SNF complex assembly but may be associated with disrupted ATPase activity. The identification of SMARCA2 mutations in humans provides insight into the function of the Snf2 helicase family.

Details

Language :
English
ISSN :
10614036
Volume :
44
Issue :
4
Database :
OpenAIRE
Journal :
Nature genetics
Accession number :
edsair.doi.dedup.....7889e0dba2e0632d98a8c912e3f0295e
Full Text :
https://doi.org/10.1038/ng.1105