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In vivo phenotypic and molecular characterization of retinal degeneration in mouse models of three ciliopathies. | LitMetric

In vivo phenotypic and molecular characterization of retinal degeneration in mouse models of three ciliopathies.

Exp Eye Res

INSERM, Laboratoire de Génétique Médicale, UMR_U1112, Ciliopathies Modeling and Associated Therapies Team (CMAT), Fédération de Médecine Translationnelle de Strasbourg (FMTS), Institut de Génétique Médicale D'Alsace (IGMA), Université de Strasbourg, 11 Rues Humann, Bâtiment 3, 67085, Strasbourg, France. Electronic address:

Published: September 2019

AI Article Synopsis

  • Cilia are essential organelles linked to various genetic disorders called ciliopathies, which often result in retinal degeneration (RD).
  • This study compares retinal degeneration mechanisms in three rodent models representative of different ciliopathies: Bardet-Biedl Syndrome, Alström Syndrome, and CEP290-mediated Leber Congenital Amaurosis, using techniques like electroretinography and electron microscopy.
  • Findings show that BBS and CEP290 models share a similar rapid degeneration process with specific cellular dysfunctions, while the ALMS model exhibits a slower degeneration without certain defects, indicating that each ciliopathy has unique disease progression pathways despite all leading to vision loss.

Article Abstract

Cilia are highly conserved and ubiquitously expressed organelles. Ciliary defects of genetic origins lead to ciliopathies, in which retinal degeneration (RD) is one cardinal clinical feature. In order to efficiently find and design new therapeutic strategies the underlying mechanism of retinal degeneration of three murine model was compared. The rodent models correspond to three emblematic ciliopathies, namely: Bardet-Biedl Syndrome (BBS), Alström Syndrome (ALMS) and CEP290-mediated Leber Congenital Amaurosis (LCA). Scotopic rodent electroretinography (ERG) was used to test the retinal function of mice, Transmitted Electron microscopy (T.E.M) was performed to assess retinal structural defects and real-time PCR for targeted genes was used to monitor the expression levels of the major apoptotic Caspase-related pathways in retinal extracts to identify pathological pathways driving the RD in order to identify potential therapeutic targets. We found that BBS and CEP290-mediated LCA mouse models exhibit perinatal retinal degeneration associated with rhodopsin mislocalization in the photoreceptor and the induction of an Endoplasmic Reticulum (ER) stress. On the other hand, the tested ALMS mouse model, displayed a slower degeneration phenotype, with no Rhodopsin mislocalization nor ER-stress activity. Our data points out that behind the general phenotype of vision loss associated with these ciliopathies, the mechanisms and kinetics of disease progression are different.

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Source
http://dx.doi.org/10.1016/j.exer.2019.107721DOI Listing

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