The neuroepithelia of the inner ear contain hair cells that function as mechanoreceptors to transduce sound and motion signals. Mutations affecting these neuroepithelia cause deafness and vestibular dysfuction in humans. Ames waltzer (av) is a recessive mutation found in mice that causes deafness and a balance disorder associated with the degeneration of inner ear neuroepithelia. Here we report that the gene that harbours the av mutation encodes a novel protocadherin. Cochlear hair cells in the av mutants show abnormal stereocilia by 10 days after birth (P10). This is the first evidence for the requirement of a protocadherin for normal function of the mammalian inner ear
Immunocytochemical studies have shown that protocadherin-15 (PCDH15) and cadherin-23 (CDH23) are ass...
Deafness is the most common sensory disorder in humans and the aetiology of genetic deafness is comp...
Recessive mutations at the mouse pirouette (pi) locus result in hearing loss and vestibular dysfunct...
This report presents new findings regarding a recessive insertional mutation in the transgenic line ...
We have characterized a new allele of the protocadherin 15 gene (designatedPcdh15(av-6J)) that arose...
The deaf-circling Ames waltzer (av) mouse harbors a mutation in the protocadherin 15 (Pcdh15) gene a...
Mouse deafness mutations provide valuable models of human hearing disorders and entry points into mo...
Stereocilia are specialized actin-filled, finger-like processes arrayed in rows of graded heights to...
Abstract: The waltzer (v) mouse mutant harbors a mutation in Cadherin 23 (Cdh23) and is a model for ...
Hearing-impaired mouse mutants not only are good models for human hereditary deafness, but also are ...
A phenotype-driven approach was adopted in the mouse to identify molecules involved in ear developme...
Mutations in genes coding for cadherin 23 and protocadherin 15 cause deafness in both mice and human...
Immunocytochemical studies have shown that protocadherin-15 (PCDH15) and cadherin-23 (CDH23) are ass...
Recessive mutations at the mouse pirouette (pi) locus result in hearing loss and vestibular dysfunct...
Recessive mutations at the mouse pirouette (pi) locus result in hearing loss and vestibular dysfunct...
Immunocytochemical studies have shown that protocadherin-15 (PCDH15) and cadherin-23 (CDH23) are ass...
Deafness is the most common sensory disorder in humans and the aetiology of genetic deafness is comp...
Recessive mutations at the mouse pirouette (pi) locus result in hearing loss and vestibular dysfunct...
This report presents new findings regarding a recessive insertional mutation in the transgenic line ...
We have characterized a new allele of the protocadherin 15 gene (designatedPcdh15(av-6J)) that arose...
The deaf-circling Ames waltzer (av) mouse harbors a mutation in the protocadherin 15 (Pcdh15) gene a...
Mouse deafness mutations provide valuable models of human hearing disorders and entry points into mo...
Stereocilia are specialized actin-filled, finger-like processes arrayed in rows of graded heights to...
Abstract: The waltzer (v) mouse mutant harbors a mutation in Cadherin 23 (Cdh23) and is a model for ...
Hearing-impaired mouse mutants not only are good models for human hereditary deafness, but also are ...
A phenotype-driven approach was adopted in the mouse to identify molecules involved in ear developme...
Mutations in genes coding for cadherin 23 and protocadherin 15 cause deafness in both mice and human...
Immunocytochemical studies have shown that protocadherin-15 (PCDH15) and cadherin-23 (CDH23) are ass...
Recessive mutations at the mouse pirouette (pi) locus result in hearing loss and vestibular dysfunct...
Recessive mutations at the mouse pirouette (pi) locus result in hearing loss and vestibular dysfunct...
Immunocytochemical studies have shown that protocadherin-15 (PCDH15) and cadherin-23 (CDH23) are ass...
Deafness is the most common sensory disorder in humans and the aetiology of genetic deafness is comp...
Recessive mutations at the mouse pirouette (pi) locus result in hearing loss and vestibular dysfunct...