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Cone degeneration is triggered by the absence of USH1 proteins but prevented by antioxidant treatments

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dc.contributor.author Trouillet, Alix
dc.contributor.author Dubus, Elisabeth
dc.contributor.author Degardin, Julie
dc.contributor.author Estivalet, Amrit
dc.contributor.author Ivkovic, Ivana
dc.contributor.author Godefroy, David
dc.contributor.author García-Ayuso, Diego
dc.contributor.author Simonutti, Manuel
dc.contributor.author Sahly, Iman
dc.contributor.author Sahel, Jose-A
dc.contributor.author El-Amraoui, Aziz
dc.contributor.author Petit, Christine
dc.contributor.author Picaud, Serge
dc.date.accessioned 2026-02-12T12:19:30Z
dc.date.available 2026-02-12T12:19:30Z
dc.date.issued 2018-01-31
dc.identifier.citation Trouillet A, Dubus E, Dégardin J, Estivalet A, Ivkovic I, Godefroy D, et al. Cone degeneration is triggered by the absence of USH1 proteins but prevented by antioxidant treatments. Sci Rep. 31 de enero de 2018;8(1):1968.
dc.identifier.issn 2045-2322
dc.identifier.uri https://sms.carm.es/ricsmur/handle/123456789/24439
dc.description.abstract Usher syndrome type 1 (USH1) is a major cause of inherited deafness and blindness in humans. The eye disorder is often referred to as retinitis pigmentosa, which is characterized by a secondary cone degeneration following the rod loss. The development of treatments to prevent retinal degeneration has been hampered by the lack of clear evidence for retinal degeneration in mutant mice deficient for the Ush1 genes, which instead faithfully mimic the hearing deficit. We show that, under normal housing conditions, Ush1g(-/-) and Ush1c(-/-) albino mice have dysfunctional cone photoreceptors whereas pigmented knockout animals have normal photoreceptors. The key involvement of oxidative stress in photoreceptor apoptosis and the ensued retinal gliosis were further confirmed by their prevention when the mutant mice are reared under darkness and/or supplemented with antioxidants. The primary degeneration of cone photoreceptors contrasts with the typical forms of retinitis pigmentosa. Altogether, we propose that oxidative stress probably accounts for the high clinical heterogeneity among USH1 siblings, which also unveils potential targets for blindness prevention.
dc.language.iso eng
dc.publisher NATURE PORTFOLIO
dc.rights Attribution 4.0 International
dc.rights.uri http://creativecommons.org/licenses/by/4.0 *
dc.subject.mesh Animals
dc.subject.mesh Antioxidants/pharmacology/therapeutic use
dc.subject.mesh Apoptosis
dc.subject.mesh Carrier Proteins/metabolism
dc.subject.mesh Cell Cycle Proteins
dc.subject.mesh Cytoskeletal Proteins
dc.subject.mesh Darkness
dc.subject.mesh Diet
dc.subject.mesh Glial Fibrillary Acidic Protein/metabolism
dc.subject.mesh Gliosis/pathology
dc.subject.mesh Housing, Animal
dc.subject.mesh Mice, Inbred BALB C
dc.subject.mesh Mice, Inbred C57BL
dc.subject.mesh Nerve Tissue Proteins/metabolism
dc.subject.mesh Opsins/metabolism
dc.subject.mesh Phenotype
dc.subject.mesh Retinal Cone Photoreceptor Cells/drug effects/pathology
dc.subject.mesh Retinal Degeneration/drug therapy/pathology/prevention & control
dc.subject.mesh Taurine/administration & dosage
dc.title Cone degeneration is triggered by the absence of USH1 proteins but prevented by antioxidant treatments
dc.type info:eu-repo/semantics/article
dc.identifier.pmid 29386551
dc.relation.publisherversion https://www.nature.com/articles/s41598-018-20171-0
dc.type.version info:eu-repo/semantics/publishedVersion
dc.identifier.doi 10.1038/s41598-018-20171-0
dc.journal.title Scientific Reports


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