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Published on: March 20, 2021
Analysis of Early Cone Dysfunction in an In Vivo Model of Rod-Cone Dystrophy
Mark M Hassall1, Michelle E McClements1, Alun R Barnard1,2
1Nuffield Laboratory of Ophthalmology, Department of Clinical Neurosciences, University of Oxford, Oxford OX3 9DU, UK.
Abstract:
Retinitis pigmentosa (RP) is a generic term for a group of genetic diseases characterized by loss of rod and cone photoreceptor cells. Although the genetic causes of RP frequently only affect the rod photoreceptor cells, cone photoreceptors become stressed in the absence of rods and undergo a secondary degeneration. Changes in the gene expression profile of cone photoreceptor cells are likely to occur prior to observable physiological changes. To this end, we sought to achieve greater understanding of the changes in cone photoreceptor cells early in the degeneration process of the Rho mouse model. To account for gene expression changes attributed to loss of cone photoreceptor cells, we normalized PCR in the remaining number of cones to a cone cell reporter (OPN1-GFP). Gene expression profiles of key components involved in the cone phototransduction cascade were correlated with tests of retinal cone function prior to cell loss. A significant downregulation of the photoreceptor transcription factor Crx was observed, which preceded a significant downregulation in cone opsin transcripts that coincided with declining cone function. Our data add to the growing understanding of molecular changes that occur prior to cone dysfunction in a model of rod-cone dystrophy. It is of interest that gene supplementation of CRX by adeno-associated viral vector delivery prior to cone cell loss did not prevent cone photoreceptor degeneration in this mouse model.
Insights
Early gene expression changes in cone photoreceptors precede vision loss in retinitis pigmentosa (RP). Downregulation of the CRX transcription factor was observed before cone dysfunction in a mouse model.
Area of Science:
- Ophthalmology
- Genetics
- Molecular Biology
Background:
- Retinitis pigmentosa (RP) involves progressive loss of rod and cone photoreceptors.
- Cone photoreceptors undergo secondary degeneration in RP due to rod loss.
- Understanding early molecular changes in cones is crucial for RP research.
Purpose of the Study:
- Investigate early gene expression changes in cone photoreceptors during RP progression.
- Correlate gene expression profiles with cone function in a mouse model.
- Identify molecular events preceding cone dysfunction.
Main Methods:
- Utilized the Rho mouse model of rod-cone dystrophy.
- Normalized gene expression data using an OPN1-GFP cone cell reporter.
- Analyzed gene expression of phototransduction cascade components.
- Correlated gene expression with retinal cone function tests.
Main Results:
- Observed significant downregulation of the CRX transcription factor.
- Downregulation of CRX preceded decreased cone opsin transcript levels.
- Declining cone function correlated with reduced cone opsin expression.
- CRX gene supplementation did not prevent cone degeneration in this model.
Conclusions:
- CRX downregulation is an early molecular event in cone degeneration in this RP model.
- Gene expression changes precede functional deficits in cone photoreceptors.
- CRX supplementation may not be a sufficient therapeutic strategy for this form of RP.

