Characterization of Vestibular Dysfunction in the Mouse Model for Usher Syndrome 1F
- 10 June 2005
- journal article
- Published by Springer Nature in Journal of the Association for Research in Otolaryngology
- Vol. 6 (2), 106-118
- https://doi.org/10.1007/s10162-004-5032-3
Abstract
The deaf-circling Ames waltzer (av) mouse harbors a mutation in the protocadherin 15 (Pcdh15) gene and is a model for inner ear defects associated with Usher syndrome type 1F. Earlier studies showed altered cochlear hair cell morphology in young av mice. In contrast, no structural abnormality consistent with significant vestibular dysfunction in young av mice was observed. Light and scanning electron microscopic studies showed that vestibular hair cells from presumptive null alleles Pcdh15 av-Tg and Pcdh15 av-3J are morphologically similar to vestibular sensory cells from control littermates, suggesting that the observed phenotype in these alleles might be a result of a central, rather than peripheral, defect. In the present study, a combination of physiologic and anatomic methods was used to more thoroughly investigate the source of vestibular dysfunction in Ames waltzer mice. Analysis of vestibular evoked potentials and angular vestibulo-ocular reflexes revealed a lack of physiologic response to linear and angular acceleratory stimuli in Pcdh15 mutant mice. Optokinetic reflex function was diminished but still present in the mutant animals, suggesting that the defect is primarily peripheral in nature. These findings indicate that the mutation in Pcdh15 results in either a functional abnormality in the vestibular receptor organs or that the defects are limited to the vestibular nerve. AM1-43 dye uptake has been shown to correlate with normal transduction function in hair cells. Dye uptake was found to be dramatically reduced in Pcdh15 mutants compared to control littermates, suggesting that the mutation affects hair cell function, although structural abnormalities consistent with significant vestibular dysfunction are not apparent by light and scanning electron microscopy in the vestibular neuroepithelia of young animals.Keywords
This publication has 32 references indexed in Scilit:
- Characterization of a new allele of Ames waltzer generated by ENU mutagenesisHearing Research, 2005
- Eye Movements of the Murine P/Q Calcium Channel MutantRocker, and the Impact of AgingJournal of Neurophysiology, 2004
- PCDH15 is expressed in the neurosensory epithelium of the eye and ear and mutant alleles are responsible for both USH1F and DFNB23Human Molecular Genetics, 2003
- A Mutation ofPCDH15among Ashkenazi Jews with the Type 1 Usher SyndromeNew England Journal of Medicine, 2003
- Mutations in the novel protocadherin PCDH15 cause Usher syndrome type 1FHuman Molecular Genetics, 2001
- Mutations of the Protocadherin Gene PCDH15 Cause Usher Syndrome Type 1FAmerican Journal of Human Genetics, 2001
- Origin of Vestibular Dysfunction in Usher Syndrome Type 1BNeurobiology of Disease, 2001
- Dynamic Characteristics of Vestibular Nuclear Neurons Responses to Vestibular and Optokinetic Stimulation during Vestibular Compensation in the RatActa Oto-Laryngologica, 1988
- Functional deficits in the optokinetic system of albino ratsExperimental Brain Research, 1979
- Electron Microscopic Studies of Capillary Permeability in Normal and Ames Waltzer Deaf MiceActa Oto-Laryngologica, 1971