Characterization of the Frmd7 Knock-Out Mice Generated by the EUCOMM/COMP Repository as a Model for Idiopathic Infantile Nystagmus (IIN)

<div>In this study, we seek to exclude other pathophysiological mechanisms by which&nbsp;Frmd7&nbsp;knock-down may cause Idiopathic Infantile Nystagmus (IIN) using the&nbsp;Frmd7<sup>.tm1a</sup>&nbsp;and&nbsp;Frmd7<sup>.tm1b</sup>&nbsp;murine mod...

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Bibliographic Details
Main Authors: Salman, A, Hutton, SB, Newall, T, Scott, JA, Griffiths, HL, Lee, H, Gomez-Nicola, D, Lotery, AJ, Self, JE
Format: Journal article
Language:English
Published: MDPI 2020
Description
Summary:<div>In this study, we seek to exclude other pathophysiological mechanisms by which&nbsp;Frmd7&nbsp;knock-down may cause Idiopathic Infantile Nystagmus (IIN) using the&nbsp;Frmd7<sup>.tm1a</sup>&nbsp;and&nbsp;Frmd7<sup>.tm1b</sup>&nbsp;murine models. We used a combination of genetic, histological and visual function techniques to characterize the role of&nbsp;Frmd7&nbsp;gene in IIN using a novel murine model for the disease. We demonstrate that the&nbsp;Frmd7<sup>.tm1b</sup>&nbsp;allele represents a more robust model of&nbsp;Frmd7&nbsp;knock-out at the mRNA level. The expression of&nbsp;Frmd7&nbsp;was investigated using both antibody staining and X-gal staining confirming previous reports that&nbsp;Frmd7&nbsp;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&nbsp;Frmd7&nbsp;mutant models when compared with wild-type mice. High-speed eye-tracking recordings of&nbsp;Frmd7&nbsp;mutant mice confirm a specific horizontal optokinetic reflex defect. In summary, our study confirms the likely role for&nbsp;Frmd7&nbsp;in the optokinetic reflex in mice mediated by starburst amacrine cells. We show that the&nbsp;Frmd7<sup>.tm1b</sup>&nbsp;model provides a more robust knock-out than the&nbsp;Frmd7<sup>.tm1a</sup>&nbsp;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&nbsp;Frmd7&nbsp;is expressed, in the pathophysiology of IIN.</div>