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Defects in whirlin,a PDZ domain molecule involved in stereocilia elongation,cause deafness in the whirler mouse and families with DFNB31
Authors:Mburu Philomena  Mustapha Mirna  Varela Anabel  Weil Dominique  El-Amraoui Aziz  Holme Ralph H  Rump Andreas  Hardisty Rachel E  Blanchard Stéphane  Coimbra Roney S  Perfettini Isabelle  Parkinson Nick  Mallon Ann-Marie  Glenister Pete  Rogers Mike J  Paige Adam J  Moir Lee  Clay Jo  Rosenthal Andre  Liu Xue Zhong  Blanco Gonzalo  Steel Karen P  Petit Christine  Brown Steve D M
Institution:MRC Mammalian Genetics Unit and UK Mouse Genome Centre, Harwell, Oxon OX11 ORD, UK.
Abstract:The whirler mouse mutant (wi) does not respond to sound stimuli, and detailed ultrastructural analysis of sensory hair cells in the organ of Corti of the inner ear indicates that the whirler gene encodes a protein involved in the elongation and maintenance of stereocilia in both inner hair cells (IHCs) and outer hair cells (OHCs). BAC-mediated transgene correction of the mouse phenotype and mutation analysis identified the causative gene as encoding a novel PDZ protein called whirlin. The gene encoding whirlin also underlies the human autosomal recessive deafness locus DFNB31. In the mouse cochlea, whirlin is expressed in the sensory IHC and OHC stereocilia. Our findings suggest that this novel PDZ domain-containing molecule acts as an organizer of submembranous molecular complexes that control the coordinated actin polymerization and membrane growth of stereocilia.
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