Cargando…

Exclusion of known corneal dystrophy genes in an autosomal dominant pedigree of a unique anterior membrane corneal dystrophy

PURPOSE: With advances in phenotyping tools and availability of molecular characterization, an increasing number of phenotypically and genotypically diverse inherited corneal dystrophies are described. We aimed to determine the underlying causative genetic mechanism in a three-generation pedigree af...

Descripción completa

Detalles Bibliográficos
Autores principales: Vincent, Andrea L., Markie, David M., De Karolyi, Betina, Wheeldon, Catherine E., Patel, Dipika V., Grupcheva, Christina N., McGhee, Charles N.J.
Formato: Texto
Lenguaje:English
Publicado: Molecular Vision 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2731832/
https://www.ncbi.nlm.nih.gov/pubmed/19710953
_version_ 1782170975619514368
author Vincent, Andrea L.
Markie, David M.
De Karolyi, Betina
Wheeldon, Catherine E.
Patel, Dipika V.
Grupcheva, Christina N.
McGhee, Charles N.J.
author_facet Vincent, Andrea L.
Markie, David M.
De Karolyi, Betina
Wheeldon, Catherine E.
Patel, Dipika V.
Grupcheva, Christina N.
McGhee, Charles N.J.
author_sort Vincent, Andrea L.
collection PubMed
description PURPOSE: With advances in phenotyping tools and availability of molecular characterization, an increasing number of phenotypically and genotypically diverse inherited corneal dystrophies are described. We aimed to determine the underlying causative genetic mechanism in a three-generation pedigree affected with a unique anterior membrane corneal dystrophy characterized by early onset recurrent corneal erosions, small discrete focal opacities at the level of Bowman layer and anterior stroma, anterior stromal flecks, and prominent corneal nerves. METHODS: Twenty affected and unaffected members of a three-generation family were examined and extensively clinically characterized including corneal topography and in vivo confocal microscopy, and biological specimens were collected for DNA extraction. Mutational analysis of two corneal genes (TGFBI [Transforming Growth factor-beta induced] and ZEB1 [zinc finger E box-binding homeobox 1]) was undertaken, in addition to testing with the Asper Corneal Dystrophy gene chip (Asper Ophthalmics, Tartu, Estonia). Subsequent Genotyping To 11 Known Corneal Gene Loci (COL8A2 [Collagen, Type VIII, Alpha-2], TACSTD2 [Tumor-Associated Calcium Signal Transducer 2], PIP5K3 [Phosphatidylinositol-3-Phosphate 5-Kinase, Type III], GSN [Gelsolin], KERA [Keratocan], VSX1 [Visual System Homeobox Gene 1], COL6A1 [Collagen, Type VI, Alpha-1], MMP9 [Matrix Metalloproteinase 9], KRT3 [Keratin 3]), and two putative loci, 3p14-q13 and 15q22.33–24) was undertaken using polymorphic markers, and haplotypes constructed. Multipoint linkage analysis was performed to generate LOD scores and produce LOD plots across the candidate intervals. RESULTS: No pathogenic sequence variations were detected in TGFBI or ZEB1 of the proband nor on the Asper Corneal Dystrophy gene chip (302 mutations in 12 genes). Multipoint linkage analysis of 11 known corneal genes and loci generated negative LOD plots and was able to exclude all genes tested including PIP5K3. CONCLUSIONS: Exclusion of linkage to candidate corneal loci combined with an absence of pathogenic mutations in known corneal genes in this pedigree suggest a different genetic causative mechanism in this dystrophy than the previously documented corneal genes. This unique phenotype of an anterior membrane dystrophy may therefore provide an opportunity to identify a new gene responsible for corneal disease.
format Text
id pubmed-2731832
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher Molecular Vision
record_format MEDLINE/PubMed
spelling pubmed-27318322009-08-26 Exclusion of known corneal dystrophy genes in an autosomal dominant pedigree of a unique anterior membrane corneal dystrophy Vincent, Andrea L. Markie, David M. De Karolyi, Betina Wheeldon, Catherine E. Patel, Dipika V. Grupcheva, Christina N. McGhee, Charles N.J. Mol Vis Research Article PURPOSE: With advances in phenotyping tools and availability of molecular characterization, an increasing number of phenotypically and genotypically diverse inherited corneal dystrophies are described. We aimed to determine the underlying causative genetic mechanism in a three-generation pedigree affected with a unique anterior membrane corneal dystrophy characterized by early onset recurrent corneal erosions, small discrete focal opacities at the level of Bowman layer and anterior stroma, anterior stromal flecks, and prominent corneal nerves. METHODS: Twenty affected and unaffected members of a three-generation family were examined and extensively clinically characterized including corneal topography and in vivo confocal microscopy, and biological specimens were collected for DNA extraction. Mutational analysis of two corneal genes (TGFBI [Transforming Growth factor-beta induced] and ZEB1 [zinc finger E box-binding homeobox 1]) was undertaken, in addition to testing with the Asper Corneal Dystrophy gene chip (Asper Ophthalmics, Tartu, Estonia). Subsequent Genotyping To 11 Known Corneal Gene Loci (COL8A2 [Collagen, Type VIII, Alpha-2], TACSTD2 [Tumor-Associated Calcium Signal Transducer 2], PIP5K3 [Phosphatidylinositol-3-Phosphate 5-Kinase, Type III], GSN [Gelsolin], KERA [Keratocan], VSX1 [Visual System Homeobox Gene 1], COL6A1 [Collagen, Type VI, Alpha-1], MMP9 [Matrix Metalloproteinase 9], KRT3 [Keratin 3]), and two putative loci, 3p14-q13 and 15q22.33–24) was undertaken using polymorphic markers, and haplotypes constructed. Multipoint linkage analysis was performed to generate LOD scores and produce LOD plots across the candidate intervals. RESULTS: No pathogenic sequence variations were detected in TGFBI or ZEB1 of the proband nor on the Asper Corneal Dystrophy gene chip (302 mutations in 12 genes). Multipoint linkage analysis of 11 known corneal genes and loci generated negative LOD plots and was able to exclude all genes tested including PIP5K3. CONCLUSIONS: Exclusion of linkage to candidate corneal loci combined with an absence of pathogenic mutations in known corneal genes in this pedigree suggest a different genetic causative mechanism in this dystrophy than the previously documented corneal genes. This unique phenotype of an anterior membrane dystrophy may therefore provide an opportunity to identify a new gene responsible for corneal disease. Molecular Vision 2009-08-26 /pmc/articles/PMC2731832/ /pubmed/19710953 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
Vincent, Andrea L.
Markie, David M.
De Karolyi, Betina
Wheeldon, Catherine E.
Patel, Dipika V.
Grupcheva, Christina N.
McGhee, Charles N.J.
Exclusion of known corneal dystrophy genes in an autosomal dominant pedigree of a unique anterior membrane corneal dystrophy
title Exclusion of known corneal dystrophy genes in an autosomal dominant pedigree of a unique anterior membrane corneal dystrophy
title_full Exclusion of known corneal dystrophy genes in an autosomal dominant pedigree of a unique anterior membrane corneal dystrophy
title_fullStr Exclusion of known corneal dystrophy genes in an autosomal dominant pedigree of a unique anterior membrane corneal dystrophy
title_full_unstemmed Exclusion of known corneal dystrophy genes in an autosomal dominant pedigree of a unique anterior membrane corneal dystrophy
title_short Exclusion of known corneal dystrophy genes in an autosomal dominant pedigree of a unique anterior membrane corneal dystrophy
title_sort exclusion of known corneal dystrophy genes in an autosomal dominant pedigree of a unique anterior membrane corneal dystrophy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2731832/
https://www.ncbi.nlm.nih.gov/pubmed/19710953
work_keys_str_mv AT vincentandreal exclusionofknowncornealdystrophygenesinanautosomaldominantpedigreeofauniqueanteriormembranecornealdystrophy
AT markiedavidm exclusionofknowncornealdystrophygenesinanautosomaldominantpedigreeofauniqueanteriormembranecornealdystrophy
AT dekarolyibetina exclusionofknowncornealdystrophygenesinanautosomaldominantpedigreeofauniqueanteriormembranecornealdystrophy
AT wheeldoncatherinee exclusionofknowncornealdystrophygenesinanautosomaldominantpedigreeofauniqueanteriormembranecornealdystrophy
AT pateldipikav exclusionofknowncornealdystrophygenesinanautosomaldominantpedigreeofauniqueanteriormembranecornealdystrophy
AT grupchevachristinan exclusionofknowncornealdystrophygenesinanautosomaldominantpedigreeofauniqueanteriormembranecornealdystrophy
AT mcgheecharlesnj exclusionofknowncornealdystrophygenesinanautosomaldominantpedigreeofauniqueanteriormembranecornealdystrophy