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A Restricted Spectrum of Mutations in the SMAD4 Tumor-Suppressor Gene Underlies Myhre Syndrome

Authors :
Bruce D. Gelb
Bruno Dallapiccola
Gianfranco Bocchinfuso
Loredana Boccone
Livia Garavelli
Viviana Caputo
Margherita Silengo
Elga Fabia Belligni
Maria Lisa Dentici
Marcello Niceta
Generoso Andria
Elisa Biamino
Lorenzo Stella
Luciano Cianetti
Marco Tartaglia
Daniela Melis
Claudio Carta
Eugenio Carrani
Andrea Ciolfi
Caputo, V
Cianetti, L
Niceta, M
Carta, C
Ciolfi, A
Bocchinfuso, G
Carrani, E
Dentici, Ml
Biamino, E
Belligni, E
Garavelli, L
Boccone, L
Melis, Daniela
Andria, Generoso
Gelb, Bd
Stella, L
Silengo, M
Dallapiccola, B
Tartaglia, M.
Source :
The American Journal of Human Genetics. (1):161-169
Publisher :
The American Society of Human Genetics. Published by Elsevier Inc.

Abstract

Myhre syndrome is a developmental disorder characterized by reduced growth, generalized muscular hypertrophy, facial dysmorphism, deafness, cognitive deficits, joint stiffness, and skeletal anomalies. Here, by performing exome sequencing of a single affected individual and coupling the results to a hypothesis-driven filtering strategy, we establish that heterozygous mutations in SMAD4, which encodes for a transducer mediating transforming growth factor β and bone morphogenetic protein signaling branches, underlie this rare Mendelian trait. Two recurrent de novo SMAD4 mutations were identified in eight unrelated subjects. Both mutations were missense changes altering Ile500 within the evolutionary conserved MAD homology 2 domain, a well known mutational hot spot in malignancies. Structural analyses suggest that the substituted residues are likely to perturb the binding properties of the mutant protein to signaling partners. Although SMAD4 has been established as a tumor suppressor gene somatically mutated in pancreatic, gastrointestinal, and skin cancers, and germline loss-of-function lesions and deletions of this gene have been documented to cause disorders that predispose individuals to gastrointestinal cancer and vascular dysplasias, the present report identifies a previously unrecognized class of mutations in the gene with profound impact on development and growth.

Details

Language :
English
ISSN :
00029297
Issue :
1
Database :
OpenAIRE
Journal :
The American Journal of Human Genetics
Accession number :
edsair.doi.dedup.....b71ce75c770aaa6b9bd3ca98baa070a0
Full Text :
https://doi.org/10.1016/j.ajhg.2011.12.011