UNLABELLED Usher syndrome type III (USH3) is characterized by progressive loss of hearing and vision, and varying degrees of vestibular dysfunction. It is caused by mutations that affect the human clarin-1 protein (hCLRN1), a member of the tetraspanin protein family. The missense mutation CLRN1(N48K), which affects a conserved N-glycosylation site in hCLRN1, is a common causative USH3 mutation among Ashkenazi Jews. The affected individuals hear at birth but lose that function over time. Here, we developed an animal model system using zebrafish transgenesis and gene targeting to provide an explanation for this phenotype. Immunolabeling demonstrated that Clrn1 localized to the hair cell bundles (hair bundles). The clrn1 mutants generated by ...
International audienceHearing relies on mechanically gated ion channels present in the actin-rich st...
Deafness, the most frequent sensory deficit in humans, is extremely heterogeneous with hundreds of g...
Zebrafish has become an excellent model for studying the development and function of inner ear. We r...
AbstractClarin-1 (CLRN1) is the causative gene in Usher syndrome type 3A, an autosomal recessive dis...
Usher syndrome type III (USH3) characterized by progressive loss of vision and hearing is caused by ...
International audienceClarin-1, a tetraspan-like membrane protein defective in Usher syndrome type I...
Deafness, the most frequent sensory deficit in humans, is extremely heterogeneous with hundreds of g...
Morphogenesis and mechanoelectrical transduction of the hair cell mechanoreceptor depend on the corr...
Cochlear inner and outer hair cells are the functional units of mammalian hearing. At their apex, sp...
The molecular mechanisms underlying hair cell synaptic maturation are not well understood. Cadherin-...
Usher Syndrome (USH) is the first cause of deafness blindness in humans. 3 USH clinical types (USH1-...
<div><p>The molecular mechanisms underlying hair cell synaptic maturation are not well understood. C...
46 pages. A thesis presented to the Department of Biology and the Clark Honors College of the Univer...
Usher syndrome type 3 (USH3) is an autosomal recessive disorder characterised by the association of ...
International audienceHearing relies on mechanically gated ion channels present in the actin-rich st...
Deafness, the most frequent sensory deficit in humans, is extremely heterogeneous with hundreds of g...
Zebrafish has become an excellent model for studying the development and function of inner ear. We r...
AbstractClarin-1 (CLRN1) is the causative gene in Usher syndrome type 3A, an autosomal recessive dis...
Usher syndrome type III (USH3) characterized by progressive loss of vision and hearing is caused by ...
International audienceClarin-1, a tetraspan-like membrane protein defective in Usher syndrome type I...
Deafness, the most frequent sensory deficit in humans, is extremely heterogeneous with hundreds of g...
Morphogenesis and mechanoelectrical transduction of the hair cell mechanoreceptor depend on the corr...
Cochlear inner and outer hair cells are the functional units of mammalian hearing. At their apex, sp...
The molecular mechanisms underlying hair cell synaptic maturation are not well understood. Cadherin-...
Usher Syndrome (USH) is the first cause of deafness blindness in humans. 3 USH clinical types (USH1-...
<div><p>The molecular mechanisms underlying hair cell synaptic maturation are not well understood. C...
46 pages. A thesis presented to the Department of Biology and the Clark Honors College of the Univer...
Usher syndrome type 3 (USH3) is an autosomal recessive disorder characterised by the association of ...
International audienceHearing relies on mechanically gated ion channels present in the actin-rich st...
Deafness, the most frequent sensory deficit in humans, is extremely heterogeneous with hundreds of g...
Zebrafish has become an excellent model for studying the development and function of inner ear. We r...