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Multidestructive pathways triggered in photoreceptor cell death of the rd mouse as determined through gene expression
Baerbel Rohrer1, Francisco R Pinto, Kathryn E Hulse
1Departments of Ophthalmology, Medical University of South Carolina, Charleston, South Carolina 29425, USA. rohrer@musc.edu
Abstract:
In the rd/rd mouse, photoreceptor degeneration is due to a mutation of the rod-specific enzyme cGMP phosphodiesterase, resulting in permanently opened cGMP-gated cation channels in the rod outer segment membrane that allow Na(+) and Ca(2+) ions to enter the cell, resulting in possibly toxic levels of Ca(2+). To identify pathways involved in cell death of the rd/rd rods, we evaluated gene expression in the rd/rd and wild type (wt) mouse retina (U74A oligonucleotide arrays (Affymetrix)) over the known time course of photoreceptor degeneration. 181 genes passed the selection criteria (low standard deviation and high correlation between replicates), falling into six clusters. For any given pair of genes, an expression profile correlation distance and a semantic distance (one for each class of gene ontology terms) were established using newly designed software. Gene expression in rd/rd started to deviate from wt by postnatal day 10. The reduction in photoreceptor-specific genes followed the known time course of photoreceptor degeneration. Likewise the increase in transcription factors and apoptosis- and neuroinflammation-specific genes followed the kinetics of the rise in intracellular cGMP in the rod photoreceptors. In addition, genes coding for calcium-binding proteins and those implicated in tissue and vessel remodeling were increased. These results suggest that photoreceptor degeneration in the rd/rd mouse is a process starting with Ca(2+) toxicity followed by secondary insults involving multidestructive pathways such as apoptosis and neuroinflammation, presumably boosting morphological changes. All of these components need to be addressed if rods are to be successfully protected.
Insights
Photoreceptor degeneration in rd/rd mice involves calcium toxicity and secondary insults like apoptosis and neuroinflammation. Understanding these pathways is crucial for developing protective strategies for rod cells.
Area of Science:
- Genetics
- Molecular Biology
- Neuroscience
Background:
- The rd/rd mouse model exhibits photoreceptor degeneration due to a mutation in cGMP phosphodiesterase.
- This mutation leads to continuously open cation channels, causing calcium influx and potential toxicity in rod outer segments.
Purpose of the Study:
- To identify the molecular pathways involved in rod cell death in the rd/rd mouse.
- To analyze gene expression changes over the course of photoreceptor degeneration.
Main Methods:
- Gene expression profiling using Affymetrix U74A oligonucleotide arrays in rd/rd and wild-type mouse retinas.
- Analysis of 181 selected genes across six clusters based on expression profiles.
- Utilized custom software to calculate expression profile correlation and semantic distances between gene ontology terms.
Main Results:
- Gene expression differences between rd/rd and wild-type mice became apparent by postnatal day 10.
- Decreased expression of photoreceptor-specific genes correlated with degeneration progression.
- Increased expression of transcription factors, apoptosis-related genes, and neuroinflammation markers followed intracellular cGMP kinetics.
Conclusions:
- Photoreceptor degeneration in rd/rd mice initiates with calcium toxicity.
- Secondary insults, including apoptosis and neuroinflammation, contribute to cell death and morphological changes.
- Targeting these multiple destructive pathways is essential for effective rod cell protection.
