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A Founder Intronic Variant in P3H1 Likely Results in Aberrant Splicing and Protein Truncation in Patients of Karen Descent with Osteogenesis Imperfecta Type VIII
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Metadata
Document Title
A Founder Intronic Variant in P3H1 Likely Results in Aberrant Splicing and Protein Truncation in Patients of Karen Descent with Osteogenesis Imperfecta Type VIII
Author
Kantaputra P.N. Angkurawaranon S. Intachai W. Ngamphiw C. Olsen B. Tongsima S. Cox T.C. Ketudat Cairns J.R.
Affiliations
Center of Excellence in Medical Genetics Research Faculty of Dentistry Chiang Mai University Chiang Mai 50200 Thailand; Division of Pediatric Dentistry Department of Orthodontics and Pediatric Dentistry Faculty of Dentistry Chiang Mai University Chiang Mai 50200 Thailand; Division of Diagnostic Radiology Department of Radiology Faculty of Medicine Chiang Mai University Chiang Mai 50200 Thailand; National Biobank of Thailand National Science and Technology Development Agency Khlong Luang Pathum Thani12120 Thailand; Department of Developmental Biology Harvard School of Dental Medicine Boston MA 02115 United States; Departments of Oral & Craniofacial Sciences School of Dentistry and Pediatrics School of Medicine University of Missouri-Kansas City Kansas City MO 64108 United States; Center for Biomolecular Structure Function and Application and School of Chemistry Institute of Science Suranaree University of Technology Nakhon Ratchasima 30000 Thailand; Laboratory of Biochemistry Chulabhorn Research Institute Bangkok 10210 Thailand
Type
Article
Source Title
Genes
ISSN
20734425
Year
2023
Volume
14
Issue
2
Open Access
All Open Access Gold Green
Publisher
MDPI
DOI
10.3390/genes14020322
Abstract
One of the most important steps in post-translational modifications of collagen type I chains is the hydroxylation of carbon-3 of proline residues by prolyl-3-hydroxylase-1 (P3H1). Genetic variants in P3H1 have been reported to cause autosomal recessive osteogenesis imperfecta (OI) type VIII. Clinical and radiographic examinations whole-exome sequencing (WES) and bioinformatic analysis were performed in 11 Thai children of Karen descent affected by multiple bone fractures. Clinical and radiographic findings in these patients fit OI type VIII. Phenotypic variability is evident. WES identified an intronic homozygous variant (chr1:43212857A > G; NM_022356.4:c.2055 + 86A > G) in P3H1 in all patients with parents in each patient being heterozygous for the variant. This variant is predicted to generate a new 揅AG� splice acceptor sequence resulting in the incorporation of an extra exon that leads to a frameshift in the final exon and subsequent non-functional P3H1 isoform a. Alternative splicing of P3H1 resulting in the absence of functional P3H1 caused OI type VIII in 11 Thai children of Karen descent. This variant appears to be specific to the Karen population. Our study emphasizes the significance of considering intronic variants. ? 2023 by the authors.
Industrial Classification
Knowledge Taxonomy Level 1
Knowledge Taxonomy Level 2
Knowledge Taxonomy Level 3
License
CC BY
Rights
Authors
Publication Source
WOS