Mutations in the heparan-sulfate proteoglycan glypican 6 (GPC6) impair endochondral ossification and cause recessive omodysplasia.


Autoria(s): Campos-Xavier A.B.; Martinet D.; Bateman J.; Belluoccio D.; Rowley L.; Tan T.Y.; Baxová A.; Gustavson K.H.; Borochowitz Z.U.; Innes A.M.; Unger S.; Beckmann J.S.; Mittaz L.; Ballhausen D.; Superti-Furga A.; Savarirayan R.; Bonafé L.
Data(s)

2009

Resumo

Glypicans are a family of glycosylphosphatidylinositol (GPI)-anchored, membrane-bound heparan sulfate (HS) proteoglycans. Their biological roles are only partly understood, although it is assumed that they modulate the activity of HS-binding growth factors. The involvement of glypicans in developmental morphogenesis and growth regulation has been highlighted by Drosophila mutants and by a human overgrowth syndrome with multiple malformations caused by glypican 3 mutations (Simpson-Golabi-Behmel syndrome). We now report that autosomal-recessive omodysplasia, a genetic condition characterized by short-limbed short stature, craniofacial dysmorphism, and variable developmental delay, maps to chromosome 13 (13q31.1-q32.2) and is caused by point mutations or by larger genomic rearrangements in glypican 6 (GPC6). All mutations cause truncation of the GPC6 protein and abolish both the HS-binding site and the GPI-bearing membrane-associated domain, and thus loss of function is predicted. Expression studies in microdissected mouse growth plate revealed expression of Gpc6 in proliferative chondrocytes. Thus, GPC6 seems to have a previously unsuspected role in endochondral ossification and skeletal growth, and its functional abrogation results in a short-limb phenotype.

Identificador

http://serval.unil.ch/?id=serval:BIB_5E5E949BD2E0

isbn:1537-6605[electronic]

pmid:19481194

doi:10.1016/j.ajhg.2009.05.002

isiid:000267042800006

Idioma(s)

en

Fonte

American Journal of Human Genetics, vol. 84, no. 6, pp. 760-770

Palavras-Chave #Abnormalities, Multiple/genetics; Animals; Child, Preschool; Chondrocytes/metabolism; Chromosome Mapping; Chromosomes, Human, Pair 13/genetics; Comparative Genomic Hybridization; Dwarfism/genetics; Female; Fluorescent Antibody Technique; Genes, Recessive/genetics; Glypicans/genetics; Humans; Infant; Infant, Newborn; Male; Mice; Mutation/genetics; Osteogenesis/physiology
Tipo

info:eu-repo/semantics/article

article