Cargando…
Varied manifestations of persistent hyperplastic primary vitreous with graded somatic mosaic deletion of a single gene
PURPOSE: Persistent hyperplastic primary vitreous (PHPV) represents a developmental eye disease known to have diverse manifestations ranging from a trivial remnant of hyaloid vessels to a dense fibrovascular mass causing lens opacity and retinal detachment. PHPV can be modeled in mice lacking indivi...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Molecular Vision
2014
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3945809/ https://www.ncbi.nlm.nih.gov/pubmed/24623965 |
_version_ | 1782306579052232704 |
---|---|
author | Mary-Sinclair, Michelle N. Wang, XiaoFei Swanson, Douglas J. Sung, Caroline Y. Mendonca, Eneida A. Wroblewski, Kristen Baumer, Shannon H. Goldowitz, Dan Jablonski, Monica M. Skapek, Stephen X. |
author_facet | Mary-Sinclair, Michelle N. Wang, XiaoFei Swanson, Douglas J. Sung, Caroline Y. Mendonca, Eneida A. Wroblewski, Kristen Baumer, Shannon H. Goldowitz, Dan Jablonski, Monica M. Skapek, Stephen X. |
author_sort | Mary-Sinclair, Michelle N. |
collection | PubMed |
description | PURPOSE: Persistent hyperplastic primary vitreous (PHPV) represents a developmental eye disease known to have diverse manifestations ranging from a trivial remnant of hyaloid vessels to a dense fibrovascular mass causing lens opacity and retinal detachment. PHPV can be modeled in mice lacking individual genes, but certain features of such models differ from the clinical realm. For example, mice lacking the Arf gene have uniformly severe disease with consistent autosomal recessive disease penetrance. We tested whether the graded somatic loss of Arf in a subset of cells in chimeric mice mimics the range of disease in a non-heritable manner. METHODS: Wild type ↔ Arf (−/−) mouse chimeras were generated by morulae fusion, and when the mice were 10 weeks old, fundoscopic, slit-lamp, and histological evaluations were performed. The relative fraction of cells of the Arf (−/−) lineage was assessed with visual, molecular genetic, and histological analysis. Objective quantification of various aspects of the phenotype was correlated with the genotype. RESULTS: Sixteen chimeras were generated and shown to have low, medium, and high contributions of Arf (−/−) cells to tail DNA, the cornea, and the retinal pigment epithelium (RPE), with excellent correlation between chimerism in the tail DNA and the RPE. Phenotypic differences (coat color and severity of eye disease) were evident, objectively quantified, and found to correlate with the contribution of Arf (−/−) cells to the RPE and tail-derived DNA, but not the cornea. CONCLUSIONS: Generating animals composed of different numbers of Arf (−/−) cells mimicked the range of disease severity observed in patients with PHPV. This establishes the potential for full manifestations of PHPV to be caused by somatic mutations of a single gene during development. |
format | Online Article Text |
id | pubmed-3945809 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | Molecular Vision |
record_format | MEDLINE/PubMed |
spelling | pubmed-39458092014-03-12 Varied manifestations of persistent hyperplastic primary vitreous with graded somatic mosaic deletion of a single gene Mary-Sinclair, Michelle N. Wang, XiaoFei Swanson, Douglas J. Sung, Caroline Y. Mendonca, Eneida A. Wroblewski, Kristen Baumer, Shannon H. Goldowitz, Dan Jablonski, Monica M. Skapek, Stephen X. Mol Vis Research Article PURPOSE: Persistent hyperplastic primary vitreous (PHPV) represents a developmental eye disease known to have diverse manifestations ranging from a trivial remnant of hyaloid vessels to a dense fibrovascular mass causing lens opacity and retinal detachment. PHPV can be modeled in mice lacking individual genes, but certain features of such models differ from the clinical realm. For example, mice lacking the Arf gene have uniformly severe disease with consistent autosomal recessive disease penetrance. We tested whether the graded somatic loss of Arf in a subset of cells in chimeric mice mimics the range of disease in a non-heritable manner. METHODS: Wild type ↔ Arf (−/−) mouse chimeras were generated by morulae fusion, and when the mice were 10 weeks old, fundoscopic, slit-lamp, and histological evaluations were performed. The relative fraction of cells of the Arf (−/−) lineage was assessed with visual, molecular genetic, and histological analysis. Objective quantification of various aspects of the phenotype was correlated with the genotype. RESULTS: Sixteen chimeras were generated and shown to have low, medium, and high contributions of Arf (−/−) cells to tail DNA, the cornea, and the retinal pigment epithelium (RPE), with excellent correlation between chimerism in the tail DNA and the RPE. Phenotypic differences (coat color and severity of eye disease) were evident, objectively quantified, and found to correlate with the contribution of Arf (−/−) cells to the RPE and tail-derived DNA, but not the cornea. CONCLUSIONS: Generating animals composed of different numbers of Arf (−/−) cells mimicked the range of disease severity observed in patients with PHPV. This establishes the potential for full manifestations of PHPV to be caused by somatic mutations of a single gene during development. Molecular Vision 2014-03-03 /pmc/articles/PMC3945809/ /pubmed/24623965 Text en Copyright © 2014 Molecular Vision. http://creativecommons.org/licenses/by-nc-nd/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, used for non-commercial purposes, and is not altered or transformed. |
spellingShingle | Research Article Mary-Sinclair, Michelle N. Wang, XiaoFei Swanson, Douglas J. Sung, Caroline Y. Mendonca, Eneida A. Wroblewski, Kristen Baumer, Shannon H. Goldowitz, Dan Jablonski, Monica M. Skapek, Stephen X. Varied manifestations of persistent hyperplastic primary vitreous with graded somatic mosaic deletion of a single gene |
title | Varied manifestations of persistent hyperplastic primary vitreous with graded somatic mosaic deletion of a single gene |
title_full | Varied manifestations of persistent hyperplastic primary vitreous with graded somatic mosaic deletion of a single gene |
title_fullStr | Varied manifestations of persistent hyperplastic primary vitreous with graded somatic mosaic deletion of a single gene |
title_full_unstemmed | Varied manifestations of persistent hyperplastic primary vitreous with graded somatic mosaic deletion of a single gene |
title_short | Varied manifestations of persistent hyperplastic primary vitreous with graded somatic mosaic deletion of a single gene |
title_sort | varied manifestations of persistent hyperplastic primary vitreous with graded somatic mosaic deletion of a single gene |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3945809/ https://www.ncbi.nlm.nih.gov/pubmed/24623965 |
work_keys_str_mv | AT marysinclairmichellen variedmanifestationsofpersistenthyperplasticprimaryvitreouswithgradedsomaticmosaicdeletionofasinglegene AT wangxiaofei variedmanifestationsofpersistenthyperplasticprimaryvitreouswithgradedsomaticmosaicdeletionofasinglegene AT swansondouglasj variedmanifestationsofpersistenthyperplasticprimaryvitreouswithgradedsomaticmosaicdeletionofasinglegene AT sungcaroliney variedmanifestationsofpersistenthyperplasticprimaryvitreouswithgradedsomaticmosaicdeletionofasinglegene AT mendoncaeneidaa variedmanifestationsofpersistenthyperplasticprimaryvitreouswithgradedsomaticmosaicdeletionofasinglegene AT wroblewskikristen variedmanifestationsofpersistenthyperplasticprimaryvitreouswithgradedsomaticmosaicdeletionofasinglegene AT baumershannonh variedmanifestationsofpersistenthyperplasticprimaryvitreouswithgradedsomaticmosaicdeletionofasinglegene AT goldowitzdan variedmanifestationsofpersistenthyperplasticprimaryvitreouswithgradedsomaticmosaicdeletionofasinglegene AT jablonskimonicam variedmanifestationsofpersistenthyperplasticprimaryvitreouswithgradedsomaticmosaicdeletionofasinglegene AT skapekstephenx variedmanifestationsofpersistenthyperplasticprimaryvitreouswithgradedsomaticmosaicdeletionofasinglegene |