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Crystallin gene mutations in Indian families with inherited pediatric cataract

PURPOSE: Pediatric cataract is the most common form of treatable childhood blindness and is both clinically and genetically heterogeneous. Autosomal dominant and recessive forms of cataract have been reported to be caused by mutations in 22 different genes so far. Of the cataract mutations reported...

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Autores principales: Devi, Ramachandran Ramya, Yao, Wenliang, Vijayalakshmi, Perumalsamy, Sergeev, Yuri V., Sundaresan, Periasamy, Hejtmancik, J. Fielding
Formato: Texto
Lenguaje:English
Publicado: Molecular Vision 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2435160/
https://www.ncbi.nlm.nih.gov/pubmed/18587492
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author Devi, Ramachandran Ramya
Yao, Wenliang
Vijayalakshmi, Perumalsamy
Sergeev, Yuri V.
Sundaresan, Periasamy
Hejtmancik, J. Fielding
author_facet Devi, Ramachandran Ramya
Yao, Wenliang
Vijayalakshmi, Perumalsamy
Sergeev, Yuri V.
Sundaresan, Periasamy
Hejtmancik, J. Fielding
author_sort Devi, Ramachandran Ramya
collection PubMed
description PURPOSE: Pediatric cataract is the most common form of treatable childhood blindness and is both clinically and genetically heterogeneous. Autosomal dominant and recessive forms of cataract have been reported to be caused by mutations in 22 different genes so far. Of the cataract mutations reported to date, about half the mutations occur in crystallins, a quarter of the mutations in connexins, and the remainder is evenly divided between intrinsic membrane proteins, intermediate filament proteins, and transcription factors. This study is aimed at identification of the spectrum and frequency of crystallin gene mutations in cataractous patients in an Indian population. METHODS: Genetic analysis was extended to screen the entire coding region of the CRYAA, CRYAB, CRYBA1, CRYBA4, CRYBB1, CRYBB2, CRYBB3, CRYGC, CRYGD, and CRYGS genes using single stranded conformational polymorphism (SSCP) analysis as a screening technique followed by direct sequencing of all subjects that displayed an electrophoretic shift. RESULTS: This report describes the first simultaneous mutation analysis of 10 crystallin genes in the same population, represented by 60 south Indian families. The analysis allowed the identification of causative mutations in 10 of the families (three novel and six reported). This includes six missense mutations (CRYAA-R12C, R21W, R54C, CRYAB- A171T, CRYGC-R168W, CRYGS- S39C), two nonsense mutations (CRYBB2- Q155X, CRYGD- R140X), and one splice mutation, which was identified in two families (CRYBA1-IVS3+1G>A). CONCLUSIONS: Crystallin mutations are responsible for 16.6% of the inherited pediatric cataract in this population. As causative mutations have not been found in many of the families analyzed, this study suggests the presence of further novel genes or sequence elements involved in the pathogenesis of cataract in these families.
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spelling pubmed-24351602008-06-27 Crystallin gene mutations in Indian families with inherited pediatric cataract Devi, Ramachandran Ramya Yao, Wenliang Vijayalakshmi, Perumalsamy Sergeev, Yuri V. Sundaresan, Periasamy Hejtmancik, J. Fielding Mol Vis Research Article PURPOSE: Pediatric cataract is the most common form of treatable childhood blindness and is both clinically and genetically heterogeneous. Autosomal dominant and recessive forms of cataract have been reported to be caused by mutations in 22 different genes so far. Of the cataract mutations reported to date, about half the mutations occur in crystallins, a quarter of the mutations in connexins, and the remainder is evenly divided between intrinsic membrane proteins, intermediate filament proteins, and transcription factors. This study is aimed at identification of the spectrum and frequency of crystallin gene mutations in cataractous patients in an Indian population. METHODS: Genetic analysis was extended to screen the entire coding region of the CRYAA, CRYAB, CRYBA1, CRYBA4, CRYBB1, CRYBB2, CRYBB3, CRYGC, CRYGD, and CRYGS genes using single stranded conformational polymorphism (SSCP) analysis as a screening technique followed by direct sequencing of all subjects that displayed an electrophoretic shift. RESULTS: This report describes the first simultaneous mutation analysis of 10 crystallin genes in the same population, represented by 60 south Indian families. The analysis allowed the identification of causative mutations in 10 of the families (three novel and six reported). This includes six missense mutations (CRYAA-R12C, R21W, R54C, CRYAB- A171T, CRYGC-R168W, CRYGS- S39C), two nonsense mutations (CRYBB2- Q155X, CRYGD- R140X), and one splice mutation, which was identified in two families (CRYBA1-IVS3+1G>A). CONCLUSIONS: Crystallin mutations are responsible for 16.6% of the inherited pediatric cataract in this population. As causative mutations have not been found in many of the families analyzed, this study suggests the presence of further novel genes or sequence elements involved in the pathogenesis of cataract in these families. Molecular Vision 2008-06-16 /pmc/articles/PMC2435160/ /pubmed/18587492 Text en http://creativecommons.org/licenses/by/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.
spellingShingle Research Article
Devi, Ramachandran Ramya
Yao, Wenliang
Vijayalakshmi, Perumalsamy
Sergeev, Yuri V.
Sundaresan, Periasamy
Hejtmancik, J. Fielding
Crystallin gene mutations in Indian families with inherited pediatric cataract
title Crystallin gene mutations in Indian families with inherited pediatric cataract
title_full Crystallin gene mutations in Indian families with inherited pediatric cataract
title_fullStr Crystallin gene mutations in Indian families with inherited pediatric cataract
title_full_unstemmed Crystallin gene mutations in Indian families with inherited pediatric cataract
title_short Crystallin gene mutations in Indian families with inherited pediatric cataract
title_sort crystallin gene mutations in indian families with inherited pediatric cataract
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2435160/
https://www.ncbi.nlm.nih.gov/pubmed/18587492
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