4.7 Article

Progressive Hearing Loss in Mice Carrying a Mutation in Usp53

期刊

JOURNAL OF NEUROSCIENCE
卷 35, 期 47, 页码 15582-15598

出版社

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.1965-15.2015

关键词

hearing loss; inner ear; mambo mice; tight junction; ubiquitin; Usp53

资金

  1. National Institute on Deafness and Other Communication Disorders (NICDC) [DC013331]
  2. NIDCD [DC014713, DC007704]

向作者/读者索取更多资源

Disordered protein ubiquitination has been linked to neurodegenerative disease, yet its role in inner ear homeostasis and hearing loss is essentially unknown. Here we show that progressive hearing loss in the ethylnitrosourea-generated mambo mouse line is caused by a mutation in Usp53, a member of the deubiquitinating enzyme family. USP53 contains a catalytically inactive ubiquitin-specific protease domain and is expressed in cochlear hair cells and a subset of supporting cells. Although hair cell differentiation is unaffected in mambo mice, outer hair cells degenerate rapidly after the first postnatal week. USP53 colocalizes and interacts with the tight junction scaffolding proteins TJP1 and TJP2 in polarized epithelial cells, suggesting that USP53 is part of the tight junction complex. The barrier properties of tight junctions of the stria vascularis appeared intact in a biotin tracer assay, but the endocochlear potential is reduced in adult mambo mice. Hair cell degeneration in mambo mice precedes endocochlear potential decline and is rescued in cochlear organotypic cultures in low potassium milieu, indicating that hair cell loss is triggered by extracellular factors. Remarkably, heterozygous mambo mice show increased susceptibility to noise injury at high frequencies. We conclude that USP53 is a novel tight junction-associated protein that is essential for the survival of auditory hair cells and normal hearing in mice, possibly by modulating the barrier properties and mechanical stability of tight junctions.

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