De novo mutations in beta-catenin (CTNNB1) appear to be a frequent cause of intellectual disability: expanding the mutational and clinical spectrum

被引:0
作者
Alma Kuechler
Marjolein H. Willemsen
Beate Albrecht
Carlos A. Bacino
Dennis W. Bartholomew
Hans van Bokhoven
Marie Jose H. van den Boogaard
Nuria Bramswig
Christian Büttner
Kirsten Cremer
Johanna Christina Czeschik
Hartmut Engels
Koen van Gassen
Elisabeth Graf
Mieke van Haelst
Weimin He
Jacob S. Hogue
Marlies Kempers
David Koolen
Glen Monroe
Sonja de Munnik
Matthew Pastore
André Reis
Miriam S. Reuter
David H. Tegay
Joris Veltman
Gepke Visser
Peter van Hasselt
Eric E. J. Smeets
Lisenka Vissers
Thomas Wieland
Willemijn Wissink
Helger Yntema
Alexander Michael Zink
Tim M. Strom
Hermann-Josef Lüdecke
Tjitske Kleefstra
Dagmar Wieczorek
机构
[1] Universitätsklinikum Essen,Institut für Humangenetik
[2] Universität Duisburg-Essen,Department of Human Genetics
[3] Radboud University Medical Centre,Department of Molecular and Human Genetics
[4] Baylor College of Medicine,Division of Molecular and Human Genetics, Department of Pediatrics
[5] The Ohio State University/Nationwide Children’s Hospital,Department of Medical Genetics
[6] Utrecht Medical Centre,Institut für Humangenetik
[7] Friedrich-Alexander-Universität Erlangen-Nürnberg,Institute of Human Genetics
[8] University of Bonn,Institut für Humangenetik
[9] Helmholtz Zentrum München,Department of Pediatrics
[10] Madigan Army Medical Center,Department of Medicine
[11] New York Institute of Technology College of Osteopathic Medicine,Department of Metabolic Diseases
[12] Wilhelmina Children’s Hospital,Department of Clinical Genetics
[13] Utrecht Medical Centre,undefined
[14] Maastricht University Medical Center,undefined
来源
Human Genetics | 2015年 / 134卷
关键词
Autism Spectrum Disorder; Intellectual Disability; Strabismus; Microcephaly; Whole Exome Sequencing;
D O I
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学科分类号
摘要
Recently, de novo heterozygous loss-of-function mutations in beta-catenin (CTNNB1) were described for the first time in four individuals with intellectual disability (ID), microcephaly, limited speech and (progressive) spasticity, and functional consequences of CTNNB1 deficiency were characterized in a mouse model. Beta-catenin is a key downstream component of the canonical Wnt signaling pathway. Somatic gain-of-function mutations have already been found in various tumor types, whereas germline loss-of-function mutations in animal models have been shown to influence neuronal development and maturation. We report on 16 additional individuals from 15 families in whom we newly identified de novo loss-of-function CTNNB1 mutations (six nonsense, five frameshift, one missense, two splice mutation, and one whole gene deletion). All patients have ID, motor delay and speech impairment (both mostly severe) and abnormal muscle tone (truncal hypotonia and distal hypertonia/spasticity). The craniofacial phenotype comprised microcephaly (typically −2 to −4 SD) in 12 of 16 and some overlapping facial features in all individuals (broad nasal tip, small alae nasi, long and/or flat philtrum, thin upper lip vermillion). With this detailed phenotypic characterization of 16 additional individuals, we expand and further establish the clinical and mutational spectrum of inactivating CTNNB1 mutations and thereby clinically delineate this new CTNNB1 haploinsufficiency syndrome.
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页码:97 / 109
页数:12
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