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Characterization of the Frmd7 Knock-Out Mice Generated by the EUCOMM/COMP Repository as a Model for Idiopathic
Ahmed Salman1, Samuel B Hutton2, Tutte Newall1
1Clinical and Experimental Neurosciences, University of Southampton, Southampton SO16 6YD, UK.
Abstract:
In this study, we seek to exclude other pathophysiological mechanisms by which Frmd7 knock-down may cause Idiopathic Infantile Nystagmus (IIN) using the Frmd7 and Frmd7 murine models. We used a combination of genetic, histological and visual function techniques to characterize the role of Frmd7 gene in IIN using a novel murine model for the disease. We demonstrate that the Frmd7 allele represents a more robust model of Frmd7 knock-out at the mRNA level. The expression of Frmd7 was investigated using both antibody staining and X-gal staining confirming previous reports that Frmd7 expression in the retina is restricted to starburst amacrine cells and demonstrating that X-gal staining recapitulates the expression pattern in this model. Thus, it offers a useful tool for further expression studies. We also show that gross retinal morphology and electrophysiology are unchanged in these Frmd7 mutant models when compared with wild-type mice. High-speed eye-tracking recordings of Frmd7 mutant mice confirm a specific horizontal optokinetic reflex defect. In summary, our study confirms the likely role for Frmd7 in the optokinetic reflex in mice mediated by starburst amacrine cells. We show that the Frmd7 model provides a more robust knock-out than the Frmd7 model at the mRNA level, although the functional consequence is unchanged. Finally, we establish a robust eye-tracking technique in mice that can be used in a variety of future studies using this model and others. Although our data highlight a deficit in the optiokinetic reflex as a result of the starburst amacrine cells in the retina, this does not rule out the involvement of other cells, in the brain or the retina where Frmd7 is expressed, in the pathophysiology of IIN.
Insights
Frmd7 gene deficiency causes Idiopathic Infantile Nystagmus (IIN) by impairing the optokinetic reflex in mice. This study utilized genetic and visual function techniques to confirm Frmd7
Area of Science:
- Neuroscience
- Genetics
- Ophthalmology
Background:
- Idiopathic Infantile Nystagmus (IIN) is a rare vision disorder.
- The role of the Frmd7 gene in IIN pathophysiology is under investigation.
Purpose of the Study:
- To investigate the role of the Frmd7 gene in IIN using murine models.
- To characterize the pathophysiological mechanisms underlying Frmd7-associated IIN.
Main Methods:
- Genetic analysis of Frmd7 knock-down and knock-out murine models.
- Histological examination of retinal morphology.
- Electrophysiological assessment of retinal function.
- High-speed eye-tracking to analyze visual reflexes.
Main Results:
- Frmd7 expression in the retina is localized to starburst amacrine cells.
- Retinal morphology and electrophysiology were normal in Frmd7 mutant mice.
- A specific horizontal optokinetic reflex defect was observed in Frmd7 mutant mice.
Conclusions:
- Frmd7 plays a crucial role in the optokinetic reflex, mediated by retinal starburst amacrine cells.
- The Frmd7 gene is implicated in the pathophysiology of Idiopathic Infantile Nystagmus.
- Further research is needed to explore Frmd7's role in other neural pathways involved in IIN.

