Literature DB >> 23606368

Cytoplasmic mislocalization of POU3F4 due to novel mutations leads to deafness in humans and mice.

Thomas Parzefall1, Shaked Shivatzki, Danielle R Lenz, Birgit Rathkolb, Kathy Ushakov, Daphne Karfunkel, Yisgav Shapira, Michael Wolf, Manuela Mohr, Eckhard Wolf, Sibylle Sabrautzki, Martin Hrabé de Angelis, Moshe Frydman, Zippora Brownstein, Karen B Avraham.   

Abstract

POU3F4 is a POU domain transcription factor that is required for hearing. In the ear, POU3F4 is essential for mesenchymal remodeling of the bony labyrinth and is the causative gene for DFNX2 human nonsyndromic deafness. Ear abnormalities underlie this form of deafness, characterized previously in multiple spontaneous, radiation-induced and transgenic mouse mutants. Here, we report three novel mutations in the POU3F4 gene that result in profound hearing loss in both humans and mice. A p.Gln79* mutation was identified in a child from an Israeli family, revealed by massively parallel sequencing (MPS). This strategy demonstrates the strength of MPS for diagnosis with only one affected individual. A second mutation, p.Ile285Argfs*43, was identified by Sanger sequencing. A p.Cys300* mutation was found in an ENU-induced mutant mouse, schwindel (sdl), by positional cloning. The mutation leads to a predicted truncated protein, similar to the human mutations, providing a relevant mouse model. The p.Ile285Argfs*43 and p.Cys300* mutations lead to a shift of Pou3f4 nuclear localization to the cytoplasm, demonstrated in cellular localization studies and in the inner ears of the mutant mice. The discovery of these mutations facilitates a deeper comprehension of the molecular basis of inner ear defects due to mutations in the POU3F4 transcription factor.
© 2013 WILEY PERIODICALS, INC.

Entities:  

Keywords:  DFNX2; ENU; cochlea; hearing loss

Mesh:

Substances:

Year:  2013        PMID: 23606368      PMCID: PMC3714346          DOI: 10.1002/humu.22339

Source DB:  PubMed          Journal:  Hum Mutat        ISSN: 1059-7794            Impact factor:   4.878


  48 in total

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Authors:  Y J de Kok; S M van der Maarel; M Bitner-Glindzicz; I Huber; A P Monaco; S Malcolm; M E Pembrey; H H Ropers; F P Cremers
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  10 in total

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