Photoreceptor-induced RPE phagolysosomal maturation defects in Stargardt-like Maculopathy (STGD3)

Abstract For many neurodegenerative disorders, expression of a pathological protein by one cell type impedes function of other cell types, which in turn contributes to the death of the first cell type. In transgenic mice modelling Stargardt-like (STGD3) maculopathy, human mutant ELOVL4 expression by...

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Main Authors: Camille Dejos, Sharee Kuny, Woo Hyun Han, Heather Capel, Hélène Lemieux, Yves Sauvé
Format: Article
Language:English
Published: Nature Publishing Group 2018-04-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-018-24357-4
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spelling doaj-a678339708ca45858f64f495a3c5912a2020-12-08T05:23:36ZengNature Publishing GroupScientific Reports2045-23222018-04-018111410.1038/s41598-018-24357-4Photoreceptor-induced RPE phagolysosomal maturation defects in Stargardt-like Maculopathy (STGD3)Camille Dejos0Sharee Kuny1Woo Hyun Han2Heather Capel3Hélène Lemieux4Yves Sauvé5Department of Ophthalmology and Visual Sciences, University of AlbertaDepartment of Ophthalmology and Visual Sciences, University of AlbertaDepartment of Ophthalmology and Visual Sciences, University of AlbertaDepartment of Physiology, University of AlbertaFaculty Saint-Jean, University of AlbertaDepartment of Ophthalmology and Visual Sciences, University of AlbertaAbstract For many neurodegenerative disorders, expression of a pathological protein by one cell type impedes function of other cell types, which in turn contributes to the death of the first cell type. In transgenic mice modelling Stargardt-like (STGD3) maculopathy, human mutant ELOVL4 expression by photoreceptors is associated with defects in the underlying retinal pigment epithelium (RPE). To examine how photoreceptors exert cytotoxic effects on RPE cells, transgenic ELOVL4 (TG1–2 line; TG) and wild-type (WT) littermates were studied one month prior (preclinical stage) to onset of photoreceptor loss (two months). TG photoreceptor outer segments presented to human RPE cells are recognized and internalized into phagosomes, but their digestion is delayed. Live RPE cell imaging pinpoints decreased numbers of acidified phagolysomes. In vivo, master regulator of lysosomal genes, transcription factor EB (TFEB), and key lysosomal enzyme Cathepsin D are both unaffected. Oxidative stress, as ruled out with high-resolution respirometry, does not play a role at such an early stage. Upregulation of CRYBA1/A3 and phagocytic cells (microglia/macrophages) interposed between RPE and photoreceptors support adaptive responses to processing delays. Impaired phagolysosomal maturation is observed in RPE of mice expressing human mutant ELOVL4 in their photoreceptors prior to photoreceptor death and associated vision loss.https://doi.org/10.1038/s41598-018-24357-4
collection DOAJ
language English
format Article
sources DOAJ
author Camille Dejos
Sharee Kuny
Woo Hyun Han
Heather Capel
Hélène Lemieux
Yves Sauvé
spellingShingle Camille Dejos
Sharee Kuny
Woo Hyun Han
Heather Capel
Hélène Lemieux
Yves Sauvé
Photoreceptor-induced RPE phagolysosomal maturation defects in Stargardt-like Maculopathy (STGD3)
Scientific Reports
author_facet Camille Dejos
Sharee Kuny
Woo Hyun Han
Heather Capel
Hélène Lemieux
Yves Sauvé
author_sort Camille Dejos
title Photoreceptor-induced RPE phagolysosomal maturation defects in Stargardt-like Maculopathy (STGD3)
title_short Photoreceptor-induced RPE phagolysosomal maturation defects in Stargardt-like Maculopathy (STGD3)
title_full Photoreceptor-induced RPE phagolysosomal maturation defects in Stargardt-like Maculopathy (STGD3)
title_fullStr Photoreceptor-induced RPE phagolysosomal maturation defects in Stargardt-like Maculopathy (STGD3)
title_full_unstemmed Photoreceptor-induced RPE phagolysosomal maturation defects in Stargardt-like Maculopathy (STGD3)
title_sort photoreceptor-induced rpe phagolysosomal maturation defects in stargardt-like maculopathy (stgd3)
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2018-04-01
description Abstract For many neurodegenerative disorders, expression of a pathological protein by one cell type impedes function of other cell types, which in turn contributes to the death of the first cell type. In transgenic mice modelling Stargardt-like (STGD3) maculopathy, human mutant ELOVL4 expression by photoreceptors is associated with defects in the underlying retinal pigment epithelium (RPE). To examine how photoreceptors exert cytotoxic effects on RPE cells, transgenic ELOVL4 (TG1–2 line; TG) and wild-type (WT) littermates were studied one month prior (preclinical stage) to onset of photoreceptor loss (two months). TG photoreceptor outer segments presented to human RPE cells are recognized and internalized into phagosomes, but their digestion is delayed. Live RPE cell imaging pinpoints decreased numbers of acidified phagolysomes. In vivo, master regulator of lysosomal genes, transcription factor EB (TFEB), and key lysosomal enzyme Cathepsin D are both unaffected. Oxidative stress, as ruled out with high-resolution respirometry, does not play a role at such an early stage. Upregulation of CRYBA1/A3 and phagocytic cells (microglia/macrophages) interposed between RPE and photoreceptors support adaptive responses to processing delays. Impaired phagolysosomal maturation is observed in RPE of mice expressing human mutant ELOVL4 in their photoreceptors prior to photoreceptor death and associated vision loss.
url https://doi.org/10.1038/s41598-018-24357-4
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