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Modeling ZNF408-Associated FEVR in Zebrafish Results in Abnormal Retinal Vasculature

PURPOSE: Familial exudative vitreoretinopathy (FEVR) is an inherited retinal disease in which the retinal vasculature is affected. Patients with FEVR typically lack or have abnormal vasculature in the peripheral retina, the outcome of which can range from mild visual impairment to complete blindness...

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Autores principales: Karjosukarso, Dyah W., Ali, Zaheer, Peters, Theo A., Zhang, Jia Qi Cheng, Hoogendoorn, Anita D M., Garanto, Alejandro, van Wijk, Erwin, Jensen, Lasse D., Collin, Rob W J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Association for Research in Vision and Ophthalmology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7329629/
https://www.ncbi.nlm.nih.gov/pubmed/32097476
http://dx.doi.org/10.1167/iovs.61.2.39
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author Karjosukarso, Dyah W.
Ali, Zaheer
Peters, Theo A.
Zhang, Jia Qi Cheng
Hoogendoorn, Anita D M.
Garanto, Alejandro
van Wijk, Erwin
Jensen, Lasse D.
Collin, Rob W J.
author_facet Karjosukarso, Dyah W.
Ali, Zaheer
Peters, Theo A.
Zhang, Jia Qi Cheng
Hoogendoorn, Anita D M.
Garanto, Alejandro
van Wijk, Erwin
Jensen, Lasse D.
Collin, Rob W J.
author_sort Karjosukarso, Dyah W.
collection PubMed
description PURPOSE: Familial exudative vitreoretinopathy (FEVR) is an inherited retinal disease in which the retinal vasculature is affected. Patients with FEVR typically lack or have abnormal vasculature in the peripheral retina, the outcome of which can range from mild visual impairment to complete blindness. A missense mutation (p.His455Tyr) in ZNF408 was identified in an autosomal dominant FEVR family. Little, however, is known about the molecular role of ZNF408 and how its defect leads to the clinical features of FEVR. METHODS: Using CRISPR/Cas9 technology, two homozygous mutant zebrafish models with truncated znf408 were generated, as well as one heterozygous and one homozygous missense znf408 model in which the human p.His455Tyr mutation is mimicked. RESULTS: Intriguingly, all three znf408-mutant zebrafish strains demonstrated progressive retinal vascular pathology, initially characterized by a deficient hyaloid vessel development at 5 days postfertilization (dpf) leading to vascular insufficiency in the retina. The generation of stable mutant lines allowed long-term follow up studies, which showed ectopic retinal vascular hyper-sprouting at 90 dpf and extensive vascular leakage at 180 dpf. CONCLUSIONS: Together, our data demonstrate an important role for znf408 in the development and maintenance of the vascular system within the retina.
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spelling pubmed-73296292020-07-07 Modeling ZNF408-Associated FEVR in Zebrafish Results in Abnormal Retinal Vasculature Karjosukarso, Dyah W. Ali, Zaheer Peters, Theo A. Zhang, Jia Qi Cheng Hoogendoorn, Anita D M. Garanto, Alejandro van Wijk, Erwin Jensen, Lasse D. Collin, Rob W J. Invest Ophthalmol Vis Sci Biochemistry and Molecular Biology PURPOSE: Familial exudative vitreoretinopathy (FEVR) is an inherited retinal disease in which the retinal vasculature is affected. Patients with FEVR typically lack or have abnormal vasculature in the peripheral retina, the outcome of which can range from mild visual impairment to complete blindness. A missense mutation (p.His455Tyr) in ZNF408 was identified in an autosomal dominant FEVR family. Little, however, is known about the molecular role of ZNF408 and how its defect leads to the clinical features of FEVR. METHODS: Using CRISPR/Cas9 technology, two homozygous mutant zebrafish models with truncated znf408 were generated, as well as one heterozygous and one homozygous missense znf408 model in which the human p.His455Tyr mutation is mimicked. RESULTS: Intriguingly, all three znf408-mutant zebrafish strains demonstrated progressive retinal vascular pathology, initially characterized by a deficient hyaloid vessel development at 5 days postfertilization (dpf) leading to vascular insufficiency in the retina. The generation of stable mutant lines allowed long-term follow up studies, which showed ectopic retinal vascular hyper-sprouting at 90 dpf and extensive vascular leakage at 180 dpf. CONCLUSIONS: Together, our data demonstrate an important role for znf408 in the development and maintenance of the vascular system within the retina. The Association for Research in Vision and Ophthalmology 2020-02-25 2020-02 /pmc/articles/PMC7329629/ /pubmed/32097476 http://dx.doi.org/10.1167/iovs.61.2.39 Text en Copyright 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
spellingShingle Biochemistry and Molecular Biology
Karjosukarso, Dyah W.
Ali, Zaheer
Peters, Theo A.
Zhang, Jia Qi Cheng
Hoogendoorn, Anita D M.
Garanto, Alejandro
van Wijk, Erwin
Jensen, Lasse D.
Collin, Rob W J.
Modeling ZNF408-Associated FEVR in Zebrafish Results in Abnormal Retinal Vasculature
title Modeling ZNF408-Associated FEVR in Zebrafish Results in Abnormal Retinal Vasculature
title_full Modeling ZNF408-Associated FEVR in Zebrafish Results in Abnormal Retinal Vasculature
title_fullStr Modeling ZNF408-Associated FEVR in Zebrafish Results in Abnormal Retinal Vasculature
title_full_unstemmed Modeling ZNF408-Associated FEVR in Zebrafish Results in Abnormal Retinal Vasculature
title_short Modeling ZNF408-Associated FEVR in Zebrafish Results in Abnormal Retinal Vasculature
title_sort modeling znf408-associated fevr in zebrafish results in abnormal retinal vasculature
topic Biochemistry and Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7329629/
https://www.ncbi.nlm.nih.gov/pubmed/32097476
http://dx.doi.org/10.1167/iovs.61.2.39
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