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A novel duplication involving PRDM13 in a Turkish family supports its role in North Carolina macular dystrophy (NCMD/MCDR1)

PURPOSE: To clinically and molecularly investigate a new family with North Carolina macular dystrophy (NCMD) from Turkey, a previously unreported geographic origin for this phenotype. METHODS: Clinical ophthalmic examinations, including fundus imaging and spectral domain-optical coherence tomography...

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Autores principales: Small, Kent W., Van de Sompele, Stijn, Nuytemans, Karen, Vincent, Andrea, Yuregir, Ozge Ozalp, Ciloglu, Emine, Sariyildiz, Cahfer, Rosseel, Toon, Avetisjan, Jessica, Udar, Nitin, Vance, Jeffery M., Pericak-Vance, Margaret A., De Baere, Elfride, Shaya, Fadi S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Vision 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8410230/
https://www.ncbi.nlm.nih.gov/pubmed/34526759
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author Small, Kent W.
Van de Sompele, Stijn
Nuytemans, Karen
Vincent, Andrea
Yuregir, Ozge Ozalp
Ciloglu, Emine
Sariyildiz, Cahfer
Rosseel, Toon
Avetisjan, Jessica
Udar, Nitin
Vance, Jeffery M.
Pericak-Vance, Margaret A.
De Baere, Elfride
Shaya, Fadi S.
author_facet Small, Kent W.
Van de Sompele, Stijn
Nuytemans, Karen
Vincent, Andrea
Yuregir, Ozge Ozalp
Ciloglu, Emine
Sariyildiz, Cahfer
Rosseel, Toon
Avetisjan, Jessica
Udar, Nitin
Vance, Jeffery M.
Pericak-Vance, Margaret A.
De Baere, Elfride
Shaya, Fadi S.
author_sort Small, Kent W.
collection PubMed
description PURPOSE: To clinically and molecularly investigate a new family with North Carolina macular dystrophy (NCMD) from Turkey, a previously unreported geographic origin for this phenotype. METHODS: Clinical ophthalmic examinations, including fundus imaging and spectral domain-optical coherence tomography (SD-OCT), were performed on eight members of a two-generation non-consanguineous family from southern Turkey. Whole genome sequencing (WGS) was performed on two affected subjects, followed by variant filtering and copy number variant (CNV) analysis. Junction PCR and Sanger sequencing were used to confirm and characterize the duplication involving PRDM13 at the nucleotide level. The underlying mechanism was assessed with in silico analyses. RESULTS: The proband presented with lifelong bilateral vision impairment and displayed large grade 3 coloboma-like central macular lesions. Five of her six children showed similar macular malformations, consistent with autosomal dominant NCMD. The severity grades in the six affected individuals from two generations are not evenly distributed. CNV analysis of WGS data of the two affected family members, followed by junction PCR and Sanger sequencing, revealed a novel 56.2 kb tandem duplication involving PRDM13 (chr6:99560265–99616492dup, hg38) at the MCDR1 locus. This duplication cosegregates with the NCMD phenotype in the five affected children. No other (likely) pathogenic variants in known inherited retinal disease genes were found in the WGS data. Bioinformatics analyses of the breakpoints suggest a replicative-based repair mechanism underlying the duplication. CONCLUSIONS: We report a novel tandem duplication involving the PRDM13 gene in a family with NCMD from a previously unreported geographic region. The duplication size is the smallest that has been reported thus far and may correlate with the particular phenotype.
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spelling pubmed-84102302021-09-14 A novel duplication involving PRDM13 in a Turkish family supports its role in North Carolina macular dystrophy (NCMD/MCDR1) Small, Kent W. Van de Sompele, Stijn Nuytemans, Karen Vincent, Andrea Yuregir, Ozge Ozalp Ciloglu, Emine Sariyildiz, Cahfer Rosseel, Toon Avetisjan, Jessica Udar, Nitin Vance, Jeffery M. Pericak-Vance, Margaret A. De Baere, Elfride Shaya, Fadi S. Mol Vis Research Article PURPOSE: To clinically and molecularly investigate a new family with North Carolina macular dystrophy (NCMD) from Turkey, a previously unreported geographic origin for this phenotype. METHODS: Clinical ophthalmic examinations, including fundus imaging and spectral domain-optical coherence tomography (SD-OCT), were performed on eight members of a two-generation non-consanguineous family from southern Turkey. Whole genome sequencing (WGS) was performed on two affected subjects, followed by variant filtering and copy number variant (CNV) analysis. Junction PCR and Sanger sequencing were used to confirm and characterize the duplication involving PRDM13 at the nucleotide level. The underlying mechanism was assessed with in silico analyses. RESULTS: The proband presented with lifelong bilateral vision impairment and displayed large grade 3 coloboma-like central macular lesions. Five of her six children showed similar macular malformations, consistent with autosomal dominant NCMD. The severity grades in the six affected individuals from two generations are not evenly distributed. CNV analysis of WGS data of the two affected family members, followed by junction PCR and Sanger sequencing, revealed a novel 56.2 kb tandem duplication involving PRDM13 (chr6:99560265–99616492dup, hg38) at the MCDR1 locus. This duplication cosegregates with the NCMD phenotype in the five affected children. No other (likely) pathogenic variants in known inherited retinal disease genes were found in the WGS data. Bioinformatics analyses of the breakpoints suggest a replicative-based repair mechanism underlying the duplication. CONCLUSIONS: We report a novel tandem duplication involving the PRDM13 gene in a family with NCMD from a previously unreported geographic region. The duplication size is the smallest that has been reported thus far and may correlate with the particular phenotype. Molecular Vision 2021-09-01 /pmc/articles/PMC8410230/ /pubmed/34526759 Text en Copyright © 2021 Molecular Vision. https://creativecommons.org/licenses/by-nc-nd/3.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited, used for non-commercial purposes, and is not altered or transformed.
spellingShingle Research Article
Small, Kent W.
Van de Sompele, Stijn
Nuytemans, Karen
Vincent, Andrea
Yuregir, Ozge Ozalp
Ciloglu, Emine
Sariyildiz, Cahfer
Rosseel, Toon
Avetisjan, Jessica
Udar, Nitin
Vance, Jeffery M.
Pericak-Vance, Margaret A.
De Baere, Elfride
Shaya, Fadi S.
A novel duplication involving PRDM13 in a Turkish family supports its role in North Carolina macular dystrophy (NCMD/MCDR1)
title A novel duplication involving PRDM13 in a Turkish family supports its role in North Carolina macular dystrophy (NCMD/MCDR1)
title_full A novel duplication involving PRDM13 in a Turkish family supports its role in North Carolina macular dystrophy (NCMD/MCDR1)
title_fullStr A novel duplication involving PRDM13 in a Turkish family supports its role in North Carolina macular dystrophy (NCMD/MCDR1)
title_full_unstemmed A novel duplication involving PRDM13 in a Turkish family supports its role in North Carolina macular dystrophy (NCMD/MCDR1)
title_short A novel duplication involving PRDM13 in a Turkish family supports its role in North Carolina macular dystrophy (NCMD/MCDR1)
title_sort novel duplication involving prdm13 in a turkish family supports its role in north carolina macular dystrophy (ncmd/mcdr1)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8410230/
https://www.ncbi.nlm.nih.gov/pubmed/34526759
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