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An evaluation of OPTC and EPYC as candidate genes for high myopia

PURPOSE: The small leucine-rich repeat proteins (SLRPs) are involved in organizing the collagen fibrils of the sclera and vitreous. The shape of the eyeball is determined by the sclera and vitreous, so defects in SLRP family members may contribute to myopia. The purpose of this study was to test whe...

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Autores principales: Wang, Panfeng, Li, Shiqiang, Xiao, Xueshan, Guo, Xiangming, Zhang, Qingjiong
Formato: Texto
Lenguaje:English
Publicado: Molecular Vision 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2763122/
https://www.ncbi.nlm.nih.gov/pubmed/19844586
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author Wang, Panfeng
Li, Shiqiang
Xiao, Xueshan
Guo, Xiangming
Zhang, Qingjiong
author_facet Wang, Panfeng
Li, Shiqiang
Xiao, Xueshan
Guo, Xiangming
Zhang, Qingjiong
author_sort Wang, Panfeng
collection PubMed
description PURPOSE: The small leucine-rich repeat proteins (SLRPs) are involved in organizing the collagen fibrils of the sclera and vitreous. The shape of the eyeball is determined by the sclera and vitreous, so defects in SLRP family members may contribute to myopia. The purpose of this study was to test whether mutations in the two members of the class III SLRPs, opticin (OPTC) and dermatan sulfate proteoglycan 3 (EPYC), are responsible for high myopia. METHODS: DNA was prepared from venous leukocytes of 93 patients with high myopia (refraction of spherical equivalent ≤-6.00D) and 96 controls (refraction of spherical equivalent between -0.50D and +1.00D). The coding regions and adjacent intronic sequences of OPTC and EPYC were amplified by the polymerase chain reaction (PCR), and the products were then analyzed by cycle sequencing. The detected variations were further evaluated in normal controls and available family members by a heteroduplex-single strand conformation polymorphism (heteroduplex-SSCP) analysis or sequencing. RESULTS: Two substitutions in OPTC, including c.491G>T and c.803T>C, were identified. The c.491G>T mutation (p.Arg164Leu), a novel heterozygous variation, was detected in one of the 93 patients but in none of the 96 controls. The c.803T>C mutation (p.Pro267Leu), a known polymorphism, was detected in 22 of the 93 patients and in 15 of 48 controls. No variation was observed in EPYC. CONCLUSIONS: Only one novel variation in OPTC was detected in a Chinese patient with high myopia. Our results imply that OPTC and EPYC are unlikely to play a major role in high myopia.
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spelling pubmed-27631222009-10-20 An evaluation of OPTC and EPYC as candidate genes for high myopia Wang, Panfeng Li, Shiqiang Xiao, Xueshan Guo, Xiangming Zhang, Qingjiong Mol Vis Research Article PURPOSE: The small leucine-rich repeat proteins (SLRPs) are involved in organizing the collagen fibrils of the sclera and vitreous. The shape of the eyeball is determined by the sclera and vitreous, so defects in SLRP family members may contribute to myopia. The purpose of this study was to test whether mutations in the two members of the class III SLRPs, opticin (OPTC) and dermatan sulfate proteoglycan 3 (EPYC), are responsible for high myopia. METHODS: DNA was prepared from venous leukocytes of 93 patients with high myopia (refraction of spherical equivalent ≤-6.00D) and 96 controls (refraction of spherical equivalent between -0.50D and +1.00D). The coding regions and adjacent intronic sequences of OPTC and EPYC were amplified by the polymerase chain reaction (PCR), and the products were then analyzed by cycle sequencing. The detected variations were further evaluated in normal controls and available family members by a heteroduplex-single strand conformation polymorphism (heteroduplex-SSCP) analysis or sequencing. RESULTS: Two substitutions in OPTC, including c.491G>T and c.803T>C, were identified. The c.491G>T mutation (p.Arg164Leu), a novel heterozygous variation, was detected in one of the 93 patients but in none of the 96 controls. The c.803T>C mutation (p.Pro267Leu), a known polymorphism, was detected in 22 of the 93 patients and in 15 of 48 controls. No variation was observed in EPYC. CONCLUSIONS: Only one novel variation in OPTC was detected in a Chinese patient with high myopia. Our results imply that OPTC and EPYC are unlikely to play a major role in high myopia. Molecular Vision 2009-10-15 /pmc/articles/PMC2763122/ /pubmed/19844586 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
Wang, Panfeng
Li, Shiqiang
Xiao, Xueshan
Guo, Xiangming
Zhang, Qingjiong
An evaluation of OPTC and EPYC as candidate genes for high myopia
title An evaluation of OPTC and EPYC as candidate genes for high myopia
title_full An evaluation of OPTC and EPYC as candidate genes for high myopia
title_fullStr An evaluation of OPTC and EPYC as candidate genes for high myopia
title_full_unstemmed An evaluation of OPTC and EPYC as candidate genes for high myopia
title_short An evaluation of OPTC and EPYC as candidate genes for high myopia
title_sort evaluation of optc and epyc as candidate genes for high myopia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2763122/
https://www.ncbi.nlm.nih.gov/pubmed/19844586
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