| Literature DB >> 24958875 |
Oscar Diaz-Horta1, Asli Subasioglu-Uzak2, M'hamed Grati3, Alexandra DeSmidt4, Joseph Foster1, Lei Cao1, Guney Bademci1, Suna Tokgoz-Yilmaz5, Duygu Duman5, F Basak Cengiz5, Clemer Abad1, Rahul Mittal3, Susan Blanton1, Xue Z Liu3, Amjad Farooq6, Katherina Walz1, Zhongmin Lu4, Mustafa Tekin7.
Abstract
In a large consanguineous Turkish kindred with recessive nonsyndromic, prelingual, profound hearing loss, we identified in the gene FAM65B (MIM611410) a splice site mutation (c.102-1G>A) that perfectly cosegregates with the phenotype in the family. The mutation leads to exon skipping and deletion of 52-amino acid residues of a PX membrane localization domain. FAM65B is known to be involved in myotube formation and in regulation of cell adhesion, polarization, and migration. We show that wild-type Fam65b is expressed during embryonic and postnatal development stages in murine cochlea, and that the protein localizes to the plasma membranes of the stereocilia of inner and outer hair cells of the inner ear. The wild-type protein targets the plasma membrane, whereas the mutant protein accumulates in cytoplasmic inclusion bodies and does not reach the membrane. In zebrafish, knockdown of fam65b leads to significant reduction of numbers of saccular hair cells and neuromasts and to hearing loss. We conclude that FAM65B is a plasma membrane-associated protein of hair cell stereocilia that is essential for hearing.Entities:
Keywords: Mendelian disorder; congenital; deafness; sensorineural; whole-exome sequencing
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Year: 2014 PMID: 24958875 PMCID: PMC4103326 DOI: 10.1073/pnas.1401950111
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205