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Müller glia-derived PRSS56 is required to sustain ocular axial growth and prevent refractive error

A mismatch between optical power and ocular axial length results in refractive errors. Uncorrected refractive errors constitute the most common cause of vision loss and second leading cause of blindness worldwide. Although the retina is known to play a critical role in regulating ocular growth and r...

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Autores principales: Paylakhi, Seyyedhassan, Labelle-Dumais, Cassandre, Tolman, Nicholas G, Sellarole, Michael A., Seymens, Yusef, Saunders, Joseph, Lakosha, Hesham, deVries, Wilhelmine N., Orr, Andrew C., Topilko, Piotr, John, Simon WM., Nair, K. Saidas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5864079/
https://www.ncbi.nlm.nih.gov/pubmed/29529029
http://dx.doi.org/10.1371/journal.pgen.1007244
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author Paylakhi, Seyyedhassan
Labelle-Dumais, Cassandre
Tolman, Nicholas G
Sellarole, Michael A.
Seymens, Yusef
Saunders, Joseph
Lakosha, Hesham
deVries, Wilhelmine N.
Orr, Andrew C.
Topilko, Piotr
John, Simon WM.
Nair, K. Saidas
author_facet Paylakhi, Seyyedhassan
Labelle-Dumais, Cassandre
Tolman, Nicholas G
Sellarole, Michael A.
Seymens, Yusef
Saunders, Joseph
Lakosha, Hesham
deVries, Wilhelmine N.
Orr, Andrew C.
Topilko, Piotr
John, Simon WM.
Nair, K. Saidas
author_sort Paylakhi, Seyyedhassan
collection PubMed
description A mismatch between optical power and ocular axial length results in refractive errors. Uncorrected refractive errors constitute the most common cause of vision loss and second leading cause of blindness worldwide. Although the retina is known to play a critical role in regulating ocular growth and refractive development, the precise factors and mechanisms involved are poorly defined. We have previously identified a role for the secreted serine protease PRSS56 in ocular size determination and PRSS56 variants have been implicated in the etiology of both hyperopia and myopia, highlighting its importance in refractive development. Here, we use a combination of genetic mouse models to demonstrate that Prss56 mutations leading to reduced ocular size and hyperopia act via a loss of function mechanism. Using a conditional gene targeting strategy, we show that PRSS56 derived from Müller glia contributes to ocular growth, implicating a new retinal cell type in ocular size determination. Importantly, we demonstrate that persistent activity of PRSS56 is required during distinct developmental stages spanning the pre- and post-eye opening periods to ensure optimal ocular growth. Thus, our mouse data provide evidence for the existence of a molecule contributing to both the prenatal and postnatal stages of human ocular growth. Finally, we demonstrate that genetic inactivation of Prss56 rescues axial elongation in a mouse model of myopia caused by a null mutation in Egr1. Overall, our findings identify PRSS56 as a potential therapeutic target for modulating ocular growth aimed at preventing or slowing down myopia, which is reaching epidemic proportions.
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spelling pubmed-58640792018-03-28 Müller glia-derived PRSS56 is required to sustain ocular axial growth and prevent refractive error Paylakhi, Seyyedhassan Labelle-Dumais, Cassandre Tolman, Nicholas G Sellarole, Michael A. Seymens, Yusef Saunders, Joseph Lakosha, Hesham deVries, Wilhelmine N. Orr, Andrew C. Topilko, Piotr John, Simon WM. Nair, K. Saidas PLoS Genet Research Article A mismatch between optical power and ocular axial length results in refractive errors. Uncorrected refractive errors constitute the most common cause of vision loss and second leading cause of blindness worldwide. Although the retina is known to play a critical role in regulating ocular growth and refractive development, the precise factors and mechanisms involved are poorly defined. We have previously identified a role for the secreted serine protease PRSS56 in ocular size determination and PRSS56 variants have been implicated in the etiology of both hyperopia and myopia, highlighting its importance in refractive development. Here, we use a combination of genetic mouse models to demonstrate that Prss56 mutations leading to reduced ocular size and hyperopia act via a loss of function mechanism. Using a conditional gene targeting strategy, we show that PRSS56 derived from Müller glia contributes to ocular growth, implicating a new retinal cell type in ocular size determination. Importantly, we demonstrate that persistent activity of PRSS56 is required during distinct developmental stages spanning the pre- and post-eye opening periods to ensure optimal ocular growth. Thus, our mouse data provide evidence for the existence of a molecule contributing to both the prenatal and postnatal stages of human ocular growth. Finally, we demonstrate that genetic inactivation of Prss56 rescues axial elongation in a mouse model of myopia caused by a null mutation in Egr1. Overall, our findings identify PRSS56 as a potential therapeutic target for modulating ocular growth aimed at preventing or slowing down myopia, which is reaching epidemic proportions. Public Library of Science 2018-03-12 /pmc/articles/PMC5864079/ /pubmed/29529029 http://dx.doi.org/10.1371/journal.pgen.1007244 Text en © 2018 Paylakhi et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Paylakhi, Seyyedhassan
Labelle-Dumais, Cassandre
Tolman, Nicholas G
Sellarole, Michael A.
Seymens, Yusef
Saunders, Joseph
Lakosha, Hesham
deVries, Wilhelmine N.
Orr, Andrew C.
Topilko, Piotr
John, Simon WM.
Nair, K. Saidas
Müller glia-derived PRSS56 is required to sustain ocular axial growth and prevent refractive error
title Müller glia-derived PRSS56 is required to sustain ocular axial growth and prevent refractive error
title_full Müller glia-derived PRSS56 is required to sustain ocular axial growth and prevent refractive error
title_fullStr Müller glia-derived PRSS56 is required to sustain ocular axial growth and prevent refractive error
title_full_unstemmed Müller glia-derived PRSS56 is required to sustain ocular axial growth and prevent refractive error
title_short Müller glia-derived PRSS56 is required to sustain ocular axial growth and prevent refractive error
title_sort müller glia-derived prss56 is required to sustain ocular axial growth and prevent refractive error
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5864079/
https://www.ncbi.nlm.nih.gov/pubmed/29529029
http://dx.doi.org/10.1371/journal.pgen.1007244
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