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The clinical and mutational spectrum of B3GAT3 linkeropathy: two case reports and literature review

BACKGROUND: Proteoglycans are large and structurally complex macromolecules which can be found in abundancy in the extracellular matrix and on the surface of all animal cells. Mutations in the genes encoding the enzymes responsible for the formation of the tetrasaccharide linker region between the p...

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Autores principales: Colman, Marlies, Van Damme, Tim, Steichen-Gersdorf, Elisabeth, Laccone, Franco, Nampoothiri, Sheela, Syx, Delfien, Guillemyn, Brecht, Symoens, Sofie, Malfait, Fransiska
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6567438/
https://www.ncbi.nlm.nih.gov/pubmed/31196143
http://dx.doi.org/10.1186/s13023-019-1110-9
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author Colman, Marlies
Van Damme, Tim
Steichen-Gersdorf, Elisabeth
Laccone, Franco
Nampoothiri, Sheela
Syx, Delfien
Guillemyn, Brecht
Symoens, Sofie
Malfait, Fransiska
author_facet Colman, Marlies
Van Damme, Tim
Steichen-Gersdorf, Elisabeth
Laccone, Franco
Nampoothiri, Sheela
Syx, Delfien
Guillemyn, Brecht
Symoens, Sofie
Malfait, Fransiska
author_sort Colman, Marlies
collection PubMed
description BACKGROUND: Proteoglycans are large and structurally complex macromolecules which can be found in abundancy in the extracellular matrix and on the surface of all animal cells. Mutations in the genes encoding the enzymes responsible for the formation of the tetrasaccharide linker region between the proteoglycan core protein and the glycosaminoglycan side chains lead to a spectrum of severe and overlapping autosomal recessive connective tissue disorders, collectively coined the ‘glycosaminoglycan linkeropathies’. RESULTS: We report the clinical findings of two novel patients with a complex linkeropathy due to biallelic mutations in B3GAT3, the gene that encodes glucuronosyltransferase I, which catalyzes the addition of the ultimate saccharide to the linker region. We identified a previously reported c.667G > A missense mutation and an unreported homozygous c.416C > T missense mutation. We also performed a genotype and phenotype-oriented literature overview of all hitherto reported patients harbouring B3GAT3 mutations. A total of 23 patients from 10 families harbouring bi-allelic mutations and one patient with a heterozygeous splice-site mutation in B3GAT3 have been reported. They all display a complex phenotype characterized by consistent presence of skeletal dysplasia (including short stature, kyphosis, scoliosis and deformity of the long bones), facial dysmorphology, and spatulate distal phalanges. More variably present are cardiac defects, joint hypermobility, joint dislocations/contractures and fractures. Seven different B3GAT3 mutations have been reported, and although the number of patients is still limited, some phenotype-genotype correlations start to emerge. The more severe phenotypes seem to have mutations located in the substrate acceptor subdomain of the catalytic domain of the glucuronosyltransferase I protein while more mildly affected phenotypes seem to have mutations in the NTP-sugar donor substrate binding subdomain. CONCLUSIONS: Loss-of-function mutations in B3GAT3 are associated with a complex connective tissue phenotype characterized by disproportionate short stature, skeletal dysplasia, facial dysmorphism, spatulate distal phalanges and -to a lesser extent- joint contractures, joint hypermobility with dislocations, cardiac defects and bone fragility. Based on the limited number of reported patients, some genotype-phenotype correlations start to emerge.
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spelling pubmed-65674382019-06-17 The clinical and mutational spectrum of B3GAT3 linkeropathy: two case reports and literature review Colman, Marlies Van Damme, Tim Steichen-Gersdorf, Elisabeth Laccone, Franco Nampoothiri, Sheela Syx, Delfien Guillemyn, Brecht Symoens, Sofie Malfait, Fransiska Orphanet J Rare Dis Research BACKGROUND: Proteoglycans are large and structurally complex macromolecules which can be found in abundancy in the extracellular matrix and on the surface of all animal cells. Mutations in the genes encoding the enzymes responsible for the formation of the tetrasaccharide linker region between the proteoglycan core protein and the glycosaminoglycan side chains lead to a spectrum of severe and overlapping autosomal recessive connective tissue disorders, collectively coined the ‘glycosaminoglycan linkeropathies’. RESULTS: We report the clinical findings of two novel patients with a complex linkeropathy due to biallelic mutations in B3GAT3, the gene that encodes glucuronosyltransferase I, which catalyzes the addition of the ultimate saccharide to the linker region. We identified a previously reported c.667G > A missense mutation and an unreported homozygous c.416C > T missense mutation. We also performed a genotype and phenotype-oriented literature overview of all hitherto reported patients harbouring B3GAT3 mutations. A total of 23 patients from 10 families harbouring bi-allelic mutations and one patient with a heterozygeous splice-site mutation in B3GAT3 have been reported. They all display a complex phenotype characterized by consistent presence of skeletal dysplasia (including short stature, kyphosis, scoliosis and deformity of the long bones), facial dysmorphology, and spatulate distal phalanges. More variably present are cardiac defects, joint hypermobility, joint dislocations/contractures and fractures. Seven different B3GAT3 mutations have been reported, and although the number of patients is still limited, some phenotype-genotype correlations start to emerge. The more severe phenotypes seem to have mutations located in the substrate acceptor subdomain of the catalytic domain of the glucuronosyltransferase I protein while more mildly affected phenotypes seem to have mutations in the NTP-sugar donor substrate binding subdomain. CONCLUSIONS: Loss-of-function mutations in B3GAT3 are associated with a complex connective tissue phenotype characterized by disproportionate short stature, skeletal dysplasia, facial dysmorphism, spatulate distal phalanges and -to a lesser extent- joint contractures, joint hypermobility with dislocations, cardiac defects and bone fragility. Based on the limited number of reported patients, some genotype-phenotype correlations start to emerge. BioMed Central 2019-06-13 /pmc/articles/PMC6567438/ /pubmed/31196143 http://dx.doi.org/10.1186/s13023-019-1110-9 Text en © The Author(s). 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Colman, Marlies
Van Damme, Tim
Steichen-Gersdorf, Elisabeth
Laccone, Franco
Nampoothiri, Sheela
Syx, Delfien
Guillemyn, Brecht
Symoens, Sofie
Malfait, Fransiska
The clinical and mutational spectrum of B3GAT3 linkeropathy: two case reports and literature review
title The clinical and mutational spectrum of B3GAT3 linkeropathy: two case reports and literature review
title_full The clinical and mutational spectrum of B3GAT3 linkeropathy: two case reports and literature review
title_fullStr The clinical and mutational spectrum of B3GAT3 linkeropathy: two case reports and literature review
title_full_unstemmed The clinical and mutational spectrum of B3GAT3 linkeropathy: two case reports and literature review
title_short The clinical and mutational spectrum of B3GAT3 linkeropathy: two case reports and literature review
title_sort clinical and mutational spectrum of b3gat3 linkeropathy: two case reports and literature review
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6567438/
https://www.ncbi.nlm.nih.gov/pubmed/31196143
http://dx.doi.org/10.1186/s13023-019-1110-9
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