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Novel compound heterozygous mutations in ABCA4 in a Chinese pedigree with Stargardt disease

PURPOSE: Stargardt disease (STGD) is a common macular dystrophy in juveniles that is commonly inherited as an autosomal recessive trait. Mutations in five genes (ABCA4, PROM1, ELOVL4, BEST1, and PRPH2) have been reported to be associated with STGD. In the present study, we aimed to identify the path...

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Autores principales: Zhang, Jianping, Qi, Anhui, Wang, Xi, Pan, Hong, Mo, Haiming, Huang, Jiwei, Li, Honghui, Chen, Zhenwen, Wei, Meirong, Wang, Binbin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Vision 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5204459/
https://www.ncbi.nlm.nih.gov/pubmed/28050124
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author Zhang, Jianping
Qi, Anhui
Wang, Xi
Pan, Hong
Mo, Haiming
Huang, Jiwei
Li, Honghui
Chen, Zhenwen
Wei, Meirong
Wang, Binbin
author_facet Zhang, Jianping
Qi, Anhui
Wang, Xi
Pan, Hong
Mo, Haiming
Huang, Jiwei
Li, Honghui
Chen, Zhenwen
Wei, Meirong
Wang, Binbin
author_sort Zhang, Jianping
collection PubMed
description PURPOSE: Stargardt disease (STGD) is a common macular dystrophy in juveniles that is commonly inherited as an autosomal recessive trait. Mutations in five genes (ABCA4, PROM1, ELOVL4, BEST1, and PRPH2) have been reported to be associated with STGD. In the present study, we aimed to identify the pathogenic mutations in affected members in a Chinese STGD pedigree. METHODS: One patient was selected for whole-exome sequencing. Variants in five candidate genes were identified initially, followed by several filtering steps against public and private variation databases (1000Genomes, ESP6500si, ExAC, and in-house database), as well as bioinformatic analysis of the putative pathogenic roles. Sanger sequencing was used for cosegregation analysis among all members with available DNA. RESULTS: Two mutations in ABCA4 (NM_000350.2; c.5646G>A; p.Met1882Ile and NM_000350.2; c.3523–2A>G) were found using whole-exome sequencing. Cosegregation analysis confirmed all the affected members carried the compound heterozygous mutations while the other healthy members had at most one. The missense mutation was extremely rare in public databases and predicted to be deleterious. The splice-site mutation was absent from all public and private databases and was predicted to alter the splice pattern, resulting in an exon skip and a frameshift. CONCLUSIONS: Using whole-exome sequencing, we found novel compound heterozygous mutations in ABCA4 in a Chinese STGD pedigree. These mutations are reported for the first time, therefore widening the mutation spectrum of Stargardt disease. The present study also illustrates the potential of whole-exome sequencing in determining the genetic cause of STGD.
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spelling pubmed-52044592017-01-03 Novel compound heterozygous mutations in ABCA4 in a Chinese pedigree with Stargardt disease Zhang, Jianping Qi, Anhui Wang, Xi Pan, Hong Mo, Haiming Huang, Jiwei Li, Honghui Chen, Zhenwen Wei, Meirong Wang, Binbin Mol Vis Research Article PURPOSE: Stargardt disease (STGD) is a common macular dystrophy in juveniles that is commonly inherited as an autosomal recessive trait. Mutations in five genes (ABCA4, PROM1, ELOVL4, BEST1, and PRPH2) have been reported to be associated with STGD. In the present study, we aimed to identify the pathogenic mutations in affected members in a Chinese STGD pedigree. METHODS: One patient was selected for whole-exome sequencing. Variants in five candidate genes were identified initially, followed by several filtering steps against public and private variation databases (1000Genomes, ESP6500si, ExAC, and in-house database), as well as bioinformatic analysis of the putative pathogenic roles. Sanger sequencing was used for cosegregation analysis among all members with available DNA. RESULTS: Two mutations in ABCA4 (NM_000350.2; c.5646G>A; p.Met1882Ile and NM_000350.2; c.3523–2A>G) were found using whole-exome sequencing. Cosegregation analysis confirmed all the affected members carried the compound heterozygous mutations while the other healthy members had at most one. The missense mutation was extremely rare in public databases and predicted to be deleterious. The splice-site mutation was absent from all public and private databases and was predicted to alter the splice pattern, resulting in an exon skip and a frameshift. CONCLUSIONS: Using whole-exome sequencing, we found novel compound heterozygous mutations in ABCA4 in a Chinese STGD pedigree. These mutations are reported for the first time, therefore widening the mutation spectrum of Stargardt disease. The present study also illustrates the potential of whole-exome sequencing in determining the genetic cause of STGD. Molecular Vision 2016-12-30 /pmc/articles/PMC5204459/ /pubmed/28050124 Text en Copyright © 2016 Molecular Vision. http://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
Zhang, Jianping
Qi, Anhui
Wang, Xi
Pan, Hong
Mo, Haiming
Huang, Jiwei
Li, Honghui
Chen, Zhenwen
Wei, Meirong
Wang, Binbin
Novel compound heterozygous mutations in ABCA4 in a Chinese pedigree with Stargardt disease
title Novel compound heterozygous mutations in ABCA4 in a Chinese pedigree with Stargardt disease
title_full Novel compound heterozygous mutations in ABCA4 in a Chinese pedigree with Stargardt disease
title_fullStr Novel compound heterozygous mutations in ABCA4 in a Chinese pedigree with Stargardt disease
title_full_unstemmed Novel compound heterozygous mutations in ABCA4 in a Chinese pedigree with Stargardt disease
title_short Novel compound heterozygous mutations in ABCA4 in a Chinese pedigree with Stargardt disease
title_sort novel compound heterozygous mutations in abca4 in a chinese pedigree with stargardt disease
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5204459/
https://www.ncbi.nlm.nih.gov/pubmed/28050124
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