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Whole-exome sequencing identifies de novo mutation in the COL1A1 gene to underlie the severe osteogenesis imperfecta

Title: Whole-exome sequencing identifies de novo mutation in the COL1A1 gene to underlie the severe osteogenesis imperfecta
Authors: Maasalu, K.; Nikopensius, T.; Kõks, S.; Nõukas, M.; Kals, M.; Prans, E.; Zhytnik, L.; Metspalu, A.; Märtson, A.
Publisher Information: BioMed Central
Publication Year: 2015
Description: Background Osteogenesis imperfecta (OI) comprises a clinically and genetically heterogeneous group of connective tissue disorders, characterized by low bone mass, increased bone fragility, and blue-gray eye sclera. OI often results from missense mutations in one of the conserved glycine residues present in the Gly-X-Y sequence repeats of the triple helical region of the collagen type I α chain, which is encoded by the COL1A1 gene. The aim of the present study is to describe the phenotype of OI II patient and a novel mutation, causing current phenotype. Results We report an undescribed de novo COL1A1 mutation in a patient affected by severe OI. After performing the whole-exome sequencing in a case parent–child trio, we identified a novel heterozygous c.2317G > T missense mutation in the COL1A1 gene, which leads to p.Gly773Cys transversion in the triple helical domain of the collagen type I α chain. The presence of the missense mutation was confirmed with the Sanger sequencing. Conclusions Hereby, we report a novel mutation in the COL1A1 gene causing severe, life threatening OI and indicate the role of de novo mutation in the pathogenesis of rare familial diseases. Our study underlines the importance of exome sequencing in disease gene discovery for families where conventional genetic testing does not give conclusive evidence.
Document Type: article in journal/newspaper
File Description: pdf
Language: English
Relation: ispartof: Human Genomics issue 1 vol 9; WOS:000354350600001; 991005542809407891; https://researchportal.murdoch.edu.au/view/delivery/61MUN_INST/12135903340007891/13136936770007891; alma:61MUN_INST/bibs/991005542809407891
DOI: 10.1186/s40246-015-0028-0
Availability: https://doi.org/10.1186/s40246-015-0028-0; https://researchportal.murdoch.edu.au/esploro/outputs/journalArticle/Whole-exome-sequencing-identifies-de-novo-mutation/991005542809407891; https://researchportal.murdoch.edu.au/view/delivery/61MUN_INST/12135903340007891/13136936770007891
Rights: © 2015 Maasalu et al. ; Open
Accession Number: edsbas.62EE2650
Database: BASE