The phenotypic spectrum in patients with arginine to cysteine mutations in the COL2A1 gene.

Details

Serval ID
serval:BIB_37230
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
The phenotypic spectrum in patients with arginine to cysteine mutations in the COL2A1 gene.
Journal
Journal of Medical Genetics
Author(s)
Hoornaert K.P., Dewinter C., Vereecke I., Beemer F.A., Courtens W., Fryer A., Fryssira H., Lees M., Müllner-Eidenböck A., Rimoin D.L., Siderius L., Superti-Furga A., Temple K., Willems P.J., Zankl A., Zweier C., De Paepe A., Coucke P., Mortier G.R.
ISSN
1468-6244[electronic]
Publication state
Published
Issued date
2006
Volume
43
Number
5
Pages
406-413
Language
english
Notes
Publication types: Case Reports ; Journal Article ; Research Support, Non-U.S. Gov't Publication Status: ppublish
Abstract
BACKGROUND: The majority of COL2A1 missense mutations are substitutions of obligatory glycine residues in the triple helical domain. Only a few non-glycine missense mutations have been reported and among these, the arginine to cysteine substitutions predominate. OBJECTIVE: To investigate in more detail the phenotype resulting from arginine to cysteine mutations in the COL2A1 gene. METHODS: The clinical and radiographic phenotype of all patients in whom an arginine to cysteine mutation in the COL2A1 gene was identified in our laboratory, was studied and correlated with the abnormal genotype. The COL2A1 genotyping involved DHPLC analysis with subsequent sequencing of the abnormal fragments. RESULTS: Six different mutations (R75C, R365C, R519C, R704C, R789C, R1076C) were found in 11 unrelated probands. Each mutation resulted in a rather constant and site-specific phenotype, but a perinatally lethal disorder was never observed. Spondyloarthropathy with normal stature and no ocular involvement were features of patients with the R75C, R519C, or R1076C mutation. Short third and/or fourth toes was a distinguishing feature of the R75C mutation and brachydactyly with enlarged finger joints a key feature of the R1076C substitution. Stickler dysplasia with brachydactyly was observed in patients with the R704C mutation. The R365C and R789C mutations resulted in classic Stickler dysplasia and spondyloepiphyseal dysplasia congenita (SEDC), respectively. CONCLUSIONS: Arginine to cysteine mutations are rather infrequent COL2A1 mutations which cause a spectrum of phenotypes including classic SEDC and Stickler dysplasia, but also some unusual entities that have not yet been recognised and described as type II collagenopathies.
Keywords
Adult, Arginine/genetics, Child, Child, Preschool, Collagen Diseases/diagnosis, Collagen Diseases/genetics, Collagen Type II/genetics, Cysteine/genetics, DNA Mutational Analysis, Female, Humans, Male, Mutation, Missense, Phenotype
Pubmed
Web of science
Create date
19/11/2007 12:35
Last modification date
20/08/2019 13:25
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