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Cone-rod dystrophy and a frameshift mutation in the PROM1 gene

PURPOSE: To identify the genetic cause underlying autosomal recessive cone-rod dystrophy (CORD) and high myopia. METHODS: Nine members of a consanguineous Arab family were clinically examined and were given fluorescein angiography (FA), biometry, and full field electroretinogram (ERG) testing. Blood...

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Autores principales: Pras, Eran, Abu, Almogit, Rotenstreich, Ygal, Avni, Isaac, Reish, Orit, Morad, Yair, Reznik-Wolf, Haike, Pras, Elon
Formato: Texto
Lenguaje:English
Publicado: Molecular Vision 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2732717/
https://www.ncbi.nlm.nih.gov/pubmed/19718270
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author Pras, Eran
Abu, Almogit
Rotenstreich, Ygal
Avni, Isaac
Reish, Orit
Morad, Yair
Reznik-Wolf, Haike
Pras, Elon
author_facet Pras, Eran
Abu, Almogit
Rotenstreich, Ygal
Avni, Isaac
Reish, Orit
Morad, Yair
Reznik-Wolf, Haike
Pras, Elon
author_sort Pras, Eran
collection PubMed
description PURPOSE: To identify the genetic cause underlying autosomal recessive cone-rod dystrophy (CORD) and high myopia. METHODS: Nine members of a consanguineous Arab family were clinically examined and were given fluorescein angiography (FA), biometry, and full field electroretinogram (ERG) testing. Blood samples were collected for DNA extraction. A homozygousity genome-wide scan was performed using >382 polymorphic microsatellite markers on genomic DNA from three affected family members. Regions of homozygosity were further analyzed in all members of the family. Mutation analysis of the PROM1 gene was performed by direct sequencing of PCR-amplified exons. RESULTS: The phenotype is characterized by severe visual impairment evident in the first decade of life. Affected family members have bull`s-eye macular appearance, peripheral retinal pigment clumps, and cone-rod type ERG changes. Additionally, they have high myopia with axial lengths exceeding 25.3 mm. A genome-wide scan detected a region of 2.1 Mb on chromosome 4p that fully segregates with the disease within the family. This region encompasses the PROML1 gene, mutations of which have been implicated in retinal dystrophies. PROML1 mutation analysis identified a novel single nucleotide insertion at position 1629 of the cDNA resulting in truncation of approximately one-third of the protein. CONCLUSIONS: The mutation described in this report further expands the clinical spectrum of PROM1 mutations.
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spelling pubmed-27327172009-08-28 Cone-rod dystrophy and a frameshift mutation in the PROM1 gene Pras, Eran Abu, Almogit Rotenstreich, Ygal Avni, Isaac Reish, Orit Morad, Yair Reznik-Wolf, Haike Pras, Elon Mol Vis Research Article PURPOSE: To identify the genetic cause underlying autosomal recessive cone-rod dystrophy (CORD) and high myopia. METHODS: Nine members of a consanguineous Arab family were clinically examined and were given fluorescein angiography (FA), biometry, and full field electroretinogram (ERG) testing. Blood samples were collected for DNA extraction. A homozygousity genome-wide scan was performed using >382 polymorphic microsatellite markers on genomic DNA from three affected family members. Regions of homozygosity were further analyzed in all members of the family. Mutation analysis of the PROM1 gene was performed by direct sequencing of PCR-amplified exons. RESULTS: The phenotype is characterized by severe visual impairment evident in the first decade of life. Affected family members have bull`s-eye macular appearance, peripheral retinal pigment clumps, and cone-rod type ERG changes. Additionally, they have high myopia with axial lengths exceeding 25.3 mm. A genome-wide scan detected a region of 2.1 Mb on chromosome 4p that fully segregates with the disease within the family. This region encompasses the PROML1 gene, mutations of which have been implicated in retinal dystrophies. PROML1 mutation analysis identified a novel single nucleotide insertion at position 1629 of the cDNA resulting in truncation of approximately one-third of the protein. CONCLUSIONS: The mutation described in this report further expands the clinical spectrum of PROM1 mutations. Molecular Vision 2009-08-28 /pmc/articles/PMC2732717/ /pubmed/19718270 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
Pras, Eran
Abu, Almogit
Rotenstreich, Ygal
Avni, Isaac
Reish, Orit
Morad, Yair
Reznik-Wolf, Haike
Pras, Elon
Cone-rod dystrophy and a frameshift mutation in the PROM1 gene
title Cone-rod dystrophy and a frameshift mutation in the PROM1 gene
title_full Cone-rod dystrophy and a frameshift mutation in the PROM1 gene
title_fullStr Cone-rod dystrophy and a frameshift mutation in the PROM1 gene
title_full_unstemmed Cone-rod dystrophy and a frameshift mutation in the PROM1 gene
title_short Cone-rod dystrophy and a frameshift mutation in the PROM1 gene
title_sort cone-rod dystrophy and a frameshift mutation in the prom1 gene
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2732717/
https://www.ncbi.nlm.nih.gov/pubmed/19718270
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