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Reserpine maintains photoreceptor survival in retinal ciliopathy by resolving proteostasis imbalance and ciliogenesis defects

Ciliopathies manifest from sensory abnormalities to syndromic disorders with multi-organ pathologies, with retinal degeneration a highly penetrant phenotype. Photoreceptor cell death is a major cause of incurable blindness in retinal ciliopathies. To identify drug candidates to maintain photorecepto...

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Autores principales: Chen, Holly Y, Swaroop, Manju, Papal, Samantha, Mondal, Anupam K, Song, Hyun Beom, Campello, Laura, Tawa, Gregory J, Regent, Florian, Shimada, Hiroko, Nagashima, Kunio, de Val, Natalia, Jacobson, Samuel G, Zheng, Wei, Swaroop, Anand
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10121224/
https://www.ncbi.nlm.nih.gov/pubmed/36975211
http://dx.doi.org/10.7554/eLife.83205
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author Chen, Holly Y
Swaroop, Manju
Papal, Samantha
Mondal, Anupam K
Song, Hyun Beom
Campello, Laura
Tawa, Gregory J
Regent, Florian
Shimada, Hiroko
Nagashima, Kunio
de Val, Natalia
Jacobson, Samuel G
Zheng, Wei
Swaroop, Anand
author_facet Chen, Holly Y
Swaroop, Manju
Papal, Samantha
Mondal, Anupam K
Song, Hyun Beom
Campello, Laura
Tawa, Gregory J
Regent, Florian
Shimada, Hiroko
Nagashima, Kunio
de Val, Natalia
Jacobson, Samuel G
Zheng, Wei
Swaroop, Anand
author_sort Chen, Holly Y
collection PubMed
description Ciliopathies manifest from sensory abnormalities to syndromic disorders with multi-organ pathologies, with retinal degeneration a highly penetrant phenotype. Photoreceptor cell death is a major cause of incurable blindness in retinal ciliopathies. To identify drug candidates to maintain photoreceptor survival, we performed an unbiased, high-throughput screening of over 6000 bioactive small molecules using retinal organoids differentiated from induced pluripotent stem cells (iPSC) of rd16 mouse, which is a model of Leber congenital amaurosis (LCA) type 10 caused by mutations in the cilia-centrosomal gene CEP290. We identified five non-toxic positive hits, including the lead molecule reserpine, which maintained photoreceptor development and survival in rd16 organoids. Reserpine also improved photoreceptors in retinal organoids derived from induced pluripotent stem cells of LCA10 patients and in rd16 mouse retina in vivo. Reserpine-treated patient organoids revealed modulation of signaling pathways related to cell survival/death, metabolism, and proteostasis. Further investigation uncovered dysregulation of autophagy associated with compromised primary cilium biogenesis in patient organoids and rd16 mouse retina. Reserpine partially restored the balance between autophagy and the ubiquitin-proteasome system at least in part by increasing the cargo adaptor p62, resulting in improved primary cilium assembly. Our study identifies effective drug candidates in preclinical studies of CEP290 retinal ciliopathies through cross-species drug discovery using iPSC-derived organoids, highlights the impact of proteostasis in the pathogenesis of ciliopathies, and provides new insights for treatments of retinal neurodegeneration.
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spelling pubmed-101212242023-04-22 Reserpine maintains photoreceptor survival in retinal ciliopathy by resolving proteostasis imbalance and ciliogenesis defects Chen, Holly Y Swaroop, Manju Papal, Samantha Mondal, Anupam K Song, Hyun Beom Campello, Laura Tawa, Gregory J Regent, Florian Shimada, Hiroko Nagashima, Kunio de Val, Natalia Jacobson, Samuel G Zheng, Wei Swaroop, Anand eLife Biochemistry and Chemical Biology Ciliopathies manifest from sensory abnormalities to syndromic disorders with multi-organ pathologies, with retinal degeneration a highly penetrant phenotype. Photoreceptor cell death is a major cause of incurable blindness in retinal ciliopathies. To identify drug candidates to maintain photoreceptor survival, we performed an unbiased, high-throughput screening of over 6000 bioactive small molecules using retinal organoids differentiated from induced pluripotent stem cells (iPSC) of rd16 mouse, which is a model of Leber congenital amaurosis (LCA) type 10 caused by mutations in the cilia-centrosomal gene CEP290. We identified five non-toxic positive hits, including the lead molecule reserpine, which maintained photoreceptor development and survival in rd16 organoids. Reserpine also improved photoreceptors in retinal organoids derived from induced pluripotent stem cells of LCA10 patients and in rd16 mouse retina in vivo. Reserpine-treated patient organoids revealed modulation of signaling pathways related to cell survival/death, metabolism, and proteostasis. Further investigation uncovered dysregulation of autophagy associated with compromised primary cilium biogenesis in patient organoids and rd16 mouse retina. Reserpine partially restored the balance between autophagy and the ubiquitin-proteasome system at least in part by increasing the cargo adaptor p62, resulting in improved primary cilium assembly. Our study identifies effective drug candidates in preclinical studies of CEP290 retinal ciliopathies through cross-species drug discovery using iPSC-derived organoids, highlights the impact of proteostasis in the pathogenesis of ciliopathies, and provides new insights for treatments of retinal neurodegeneration. eLife Sciences Publications, Ltd 2023-03-28 /pmc/articles/PMC10121224/ /pubmed/36975211 http://dx.doi.org/10.7554/eLife.83205 Text en https://creativecommons.org/publicdomain/zero/1.0/This is an open-access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 public domain dedication (https://creativecommons.org/publicdomain/zero/1.0/) .
spellingShingle Biochemistry and Chemical Biology
Chen, Holly Y
Swaroop, Manju
Papal, Samantha
Mondal, Anupam K
Song, Hyun Beom
Campello, Laura
Tawa, Gregory J
Regent, Florian
Shimada, Hiroko
Nagashima, Kunio
de Val, Natalia
Jacobson, Samuel G
Zheng, Wei
Swaroop, Anand
Reserpine maintains photoreceptor survival in retinal ciliopathy by resolving proteostasis imbalance and ciliogenesis defects
title Reserpine maintains photoreceptor survival in retinal ciliopathy by resolving proteostasis imbalance and ciliogenesis defects
title_full Reserpine maintains photoreceptor survival in retinal ciliopathy by resolving proteostasis imbalance and ciliogenesis defects
title_fullStr Reserpine maintains photoreceptor survival in retinal ciliopathy by resolving proteostasis imbalance and ciliogenesis defects
title_full_unstemmed Reserpine maintains photoreceptor survival in retinal ciliopathy by resolving proteostasis imbalance and ciliogenesis defects
title_short Reserpine maintains photoreceptor survival in retinal ciliopathy by resolving proteostasis imbalance and ciliogenesis defects
title_sort reserpine maintains photoreceptor survival in retinal ciliopathy by resolving proteostasis imbalance and ciliogenesis defects
topic Biochemistry and Chemical Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10121224/
https://www.ncbi.nlm.nih.gov/pubmed/36975211
http://dx.doi.org/10.7554/eLife.83205
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