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Novel insights into the molecular pathogenesis of CYP4V2-associated Bietti's retinal dystrophy

Bietti's crystalline dystrophy (BCD) is a rare, autosomal recessive retinal degenerative disease associated with mutations in CYP4V2. In this study, we describe the genetic and clinical findings in 19 unrelated BCD patients recruited from five international retinal dystrophy clinics. Patients u...

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Autores principales: Astuti, Galuh D N, Sun, Vincent, Bauwens, Miriam, Zobor, Ditta, Leroy, Bart P, Omar, Amer, Jurklies, Bernhard, Lopez, Irma, Ren, Huanan, Yazar, Volkan, Hamel, Christian, Kellner, Ulrich, Wissinger, Bernd, Kohl, Susanne, De Baere, Elfride, Collin, Rob W J, Koenekoop, Robert K
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4299712/
https://www.ncbi.nlm.nih.gov/pubmed/25629076
http://dx.doi.org/10.1002/mgg3.109
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author Astuti, Galuh D N
Sun, Vincent
Bauwens, Miriam
Zobor, Ditta
Leroy, Bart P
Omar, Amer
Jurklies, Bernhard
Lopez, Irma
Ren, Huanan
Yazar, Volkan
Hamel, Christian
Kellner, Ulrich
Wissinger, Bernd
Kohl, Susanne
De Baere, Elfride
Collin, Rob W J
Koenekoop, Robert K
author_facet Astuti, Galuh D N
Sun, Vincent
Bauwens, Miriam
Zobor, Ditta
Leroy, Bart P
Omar, Amer
Jurklies, Bernhard
Lopez, Irma
Ren, Huanan
Yazar, Volkan
Hamel, Christian
Kellner, Ulrich
Wissinger, Bernd
Kohl, Susanne
De Baere, Elfride
Collin, Rob W J
Koenekoop, Robert K
author_sort Astuti, Galuh D N
collection PubMed
description Bietti's crystalline dystrophy (BCD) is a rare, autosomal recessive retinal degenerative disease associated with mutations in CYP4V2. In this study, we describe the genetic and clinical findings in 19 unrelated BCD patients recruited from five international retinal dystrophy clinics. Patients underwent ophthalmic examinations and were screened for CYP4V2 mutations by Sanger sequencing and quantitative polymerase chain reaction (qPCR) copy number variation screening. Eight CYP4V2 mutations were found in 10/19 patients, including three patients in whom only monoallelic mutations were detected. Four novel mutations were identified: c.604G>A; p.(Glu202Lys), c.242C>G; p.(Thr81Arg), c.604+4A>G; p.(?), and c.1249dup; p.(Thr417Asnfs*2). In addition, we identified a heterozygous paternally inherited genomic deletion of at least 3.8 Mb, encompassing the complete CYP4V2 gene and several other genes, which is novel. Clinically, patients demonstrated phenotypic variability, predominantly showing choroidal sclerosis, attenuated vessels, and crystalline deposits of varying degrees of severity. To our knowledge, our study reports the first heterozygous CYP4V2 deletion and hence a novel mutational mechanism underlying BCD. Our results emphasize the importance of copy number screening in BCD. Finally, the identification of CYP4V2-negative patients with indistinguishable phenotypes from CYP4V2-positive patients might suggest the presence of mutations outside the coding regions of CYP4V2, or locus heterogeneity, which is unreported so far.
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spelling pubmed-42997122015-01-27 Novel insights into the molecular pathogenesis of CYP4V2-associated Bietti's retinal dystrophy Astuti, Galuh D N Sun, Vincent Bauwens, Miriam Zobor, Ditta Leroy, Bart P Omar, Amer Jurklies, Bernhard Lopez, Irma Ren, Huanan Yazar, Volkan Hamel, Christian Kellner, Ulrich Wissinger, Bernd Kohl, Susanne De Baere, Elfride Collin, Rob W J Koenekoop, Robert K Mol Genet Genomic Med Original Articles Bietti's crystalline dystrophy (BCD) is a rare, autosomal recessive retinal degenerative disease associated with mutations in CYP4V2. In this study, we describe the genetic and clinical findings in 19 unrelated BCD patients recruited from five international retinal dystrophy clinics. Patients underwent ophthalmic examinations and were screened for CYP4V2 mutations by Sanger sequencing and quantitative polymerase chain reaction (qPCR) copy number variation screening. Eight CYP4V2 mutations were found in 10/19 patients, including three patients in whom only monoallelic mutations were detected. Four novel mutations were identified: c.604G>A; p.(Glu202Lys), c.242C>G; p.(Thr81Arg), c.604+4A>G; p.(?), and c.1249dup; p.(Thr417Asnfs*2). In addition, we identified a heterozygous paternally inherited genomic deletion of at least 3.8 Mb, encompassing the complete CYP4V2 gene and several other genes, which is novel. Clinically, patients demonstrated phenotypic variability, predominantly showing choroidal sclerosis, attenuated vessels, and crystalline deposits of varying degrees of severity. To our knowledge, our study reports the first heterozygous CYP4V2 deletion and hence a novel mutational mechanism underlying BCD. Our results emphasize the importance of copy number screening in BCD. Finally, the identification of CYP4V2-negative patients with indistinguishable phenotypes from CYP4V2-positive patients might suggest the presence of mutations outside the coding regions of CYP4V2, or locus heterogeneity, which is unreported so far. BlackWell Publishing Ltd 2015-01 2014-09-15 /pmc/articles/PMC4299712/ /pubmed/25629076 http://dx.doi.org/10.1002/mgg3.109 Text en © 2014 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals, Inc. http://creativecommons.org/licenses/by/3.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Astuti, Galuh D N
Sun, Vincent
Bauwens, Miriam
Zobor, Ditta
Leroy, Bart P
Omar, Amer
Jurklies, Bernhard
Lopez, Irma
Ren, Huanan
Yazar, Volkan
Hamel, Christian
Kellner, Ulrich
Wissinger, Bernd
Kohl, Susanne
De Baere, Elfride
Collin, Rob W J
Koenekoop, Robert K
Novel insights into the molecular pathogenesis of CYP4V2-associated Bietti's retinal dystrophy
title Novel insights into the molecular pathogenesis of CYP4V2-associated Bietti's retinal dystrophy
title_full Novel insights into the molecular pathogenesis of CYP4V2-associated Bietti's retinal dystrophy
title_fullStr Novel insights into the molecular pathogenesis of CYP4V2-associated Bietti's retinal dystrophy
title_full_unstemmed Novel insights into the molecular pathogenesis of CYP4V2-associated Bietti's retinal dystrophy
title_short Novel insights into the molecular pathogenesis of CYP4V2-associated Bietti's retinal dystrophy
title_sort novel insights into the molecular pathogenesis of cyp4v2-associated bietti's retinal dystrophy
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4299712/
https://www.ncbi.nlm.nih.gov/pubmed/25629076
http://dx.doi.org/10.1002/mgg3.109
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