Identification of novel mutations in the carbohydrate sulfotransferase gene (CHST6) causing macular corneal dystrophy.

PURPOSE: Macular corneal dystrophy (MCD) is a rare corneal dystrophy that is characterized by abnormal deposits in the corneal stroma, keratocytes, Descemet's membrane, and endothelium, accompanied by progressive clouding. It has been classified into three immunophenotypes--MCD types I, IA, an...

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Main Authors: El-Ashry, M, El-Aziz, A, Wilkins, S, Cheetham, M, Wilkie, SE, Hardcastle, A, Halford, S, Bayoumi, A, Ficker, L, Tuft, S, Bhattacharya, S, Ebenezer, N
Format: Journal article
Language:English
Published: 2002
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author El-Ashry, M
El-Aziz, A
Wilkins, S
Cheetham, M
Wilkie, SE
Hardcastle, A
Halford, S
Bayoumi, A
Ficker, L
Tuft, S
Bhattacharya, S
Ebenezer, N
author_facet El-Ashry, M
El-Aziz, A
Wilkins, S
Cheetham, M
Wilkie, SE
Hardcastle, A
Halford, S
Bayoumi, A
Ficker, L
Tuft, S
Bhattacharya, S
Ebenezer, N
author_sort El-Ashry, M
collection OXFORD
description PURPOSE: Macular corneal dystrophy (MCD) is a rare corneal dystrophy that is characterized by abnormal deposits in the corneal stroma, keratocytes, Descemet's membrane, and endothelium, accompanied by progressive clouding. It has been classified into three immunophenotypes--MCD types I, IA, and II--according to the serum level of sulfated keratan sulfate (KS) and immunoreactivity of the corneal tissue. Recently, mutations in a new carbohydrate sulfotransferase gene (CHST6) encoding corneal glucosamine N-acetyl-6-sulfotransferase (C-GlcNac-6-ST) have been identified as the cause of MCD. Mutation screening of the CHST6 gene has been undertaken to identify the underlying mutations in five unrelated British families with MCD. METHODS: DNA was extracted from venous blood obtained from all participants, and the coding region of CHST6 was amplified by polymerase chain reaction (PCR). The PCR products were analyzed by direct sequencing and restriction enzyme digestion. Enzyme-linked immunosorbent assay (ELISA) was performed to assess the presence of KS in serum from the probands of MCD-affected families participating in the study. RESULTS: Six novel missense mutations--four homozygous and two compound heterozygous--were identified in the CHST6 gene. The ELISA showed that the disease in all patients participating in the study was of MCD type I, including the subtype IA. CONCLUSIONS: These novel mutations are thought to result in loss of corneal sulfotransferase function, which would account for the MCD phenotype.
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spelling oxford-uuid:8f90ea28-b24c-4d51-a819-0cee8a22bb7b2022-03-26T23:05:19ZIdentification of novel mutations in the carbohydrate sulfotransferase gene (CHST6) causing macular corneal dystrophy.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:8f90ea28-b24c-4d51-a819-0cee8a22bb7bEnglishSymplectic Elements at Oxford2002El-Ashry, MEl-Aziz, AWilkins, SCheetham, MWilkie, SEHardcastle, AHalford, SBayoumi, AFicker, LTuft, SBhattacharya, SEbenezer, N PURPOSE: Macular corneal dystrophy (MCD) is a rare corneal dystrophy that is characterized by abnormal deposits in the corneal stroma, keratocytes, Descemet's membrane, and endothelium, accompanied by progressive clouding. It has been classified into three immunophenotypes--MCD types I, IA, and II--according to the serum level of sulfated keratan sulfate (KS) and immunoreactivity of the corneal tissue. Recently, mutations in a new carbohydrate sulfotransferase gene (CHST6) encoding corneal glucosamine N-acetyl-6-sulfotransferase (C-GlcNac-6-ST) have been identified as the cause of MCD. Mutation screening of the CHST6 gene has been undertaken to identify the underlying mutations in five unrelated British families with MCD. METHODS: DNA was extracted from venous blood obtained from all participants, and the coding region of CHST6 was amplified by polymerase chain reaction (PCR). The PCR products were analyzed by direct sequencing and restriction enzyme digestion. Enzyme-linked immunosorbent assay (ELISA) was performed to assess the presence of KS in serum from the probands of MCD-affected families participating in the study. RESULTS: Six novel missense mutations--four homozygous and two compound heterozygous--were identified in the CHST6 gene. The ELISA showed that the disease in all patients participating in the study was of MCD type I, including the subtype IA. CONCLUSIONS: These novel mutations are thought to result in loss of corneal sulfotransferase function, which would account for the MCD phenotype.
spellingShingle El-Ashry, M
El-Aziz, A
Wilkins, S
Cheetham, M
Wilkie, SE
Hardcastle, A
Halford, S
Bayoumi, A
Ficker, L
Tuft, S
Bhattacharya, S
Ebenezer, N
Identification of novel mutations in the carbohydrate sulfotransferase gene (CHST6) causing macular corneal dystrophy.
title Identification of novel mutations in the carbohydrate sulfotransferase gene (CHST6) causing macular corneal dystrophy.
title_full Identification of novel mutations in the carbohydrate sulfotransferase gene (CHST6) causing macular corneal dystrophy.
title_fullStr Identification of novel mutations in the carbohydrate sulfotransferase gene (CHST6) causing macular corneal dystrophy.
title_full_unstemmed Identification of novel mutations in the carbohydrate sulfotransferase gene (CHST6) causing macular corneal dystrophy.
title_short Identification of novel mutations in the carbohydrate sulfotransferase gene (CHST6) causing macular corneal dystrophy.
title_sort identification of novel mutations in the carbohydrate sulfotransferase gene chst6 causing macular corneal dystrophy
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