Autosomal-dominant sensorineural hearing loss is genetically heterogeneous, with a phenotype closely resembling presbycusis, the most common sensory defect associated with aging in humans. We have identified SLC17A8, which encodes the vesicular glutamate transporter-3 (VGLUT3), as the gene responsible for DFNA25, an autosomal-dominant form of progressive, high-frequency nonsyndromic deafness. In two unrelated families, a heterozygous missense mutation, c.632C→T (p.A211V), was found to segregate with DFNA25 deafness and was not present in 267 controls. Linkage-disequilibrium analysis suggested that the families have a distant common ancestor. The A211 residue is conserved in VGLUT3 across species and in all human VGLUT subtypes (VGLUT1-3), s...
Genetic loss of VGLUT3 in cochlear inner hair cells results in profound deafness. In this issue of N...
Hearing loss is the most common form of sensory impairment in humans and is frequently progressive i...
We previously mapped a novel autosomal dominant deafness locus, DFNA44, by studying a family with po...
Autosomal-dominant sensorineural hearing loss is genetically heterogeneous, with a phenotype closely...
International audienceAutosomal-dominant sensorineural hearing loss is genetically heterogeneous, wi...
International audienceDFNA25 is an autosomal-dominant and progressive form of human deafness caused ...
DFNA25 is an autosomal-dominant and progressive form of human deafness caused by mutations in the SL...
Avant sa libération, le glutamate est accumulé dans des vésicules synaptiques par trois transporteur...
SummaryThe expression of unconventional vesicular glutamate transporter VGLUT3 by neurons known to r...
SummaryMice lacking the vesicular glutamate transporter-3 (VGLUT3) are congenitally deaf due to loss...
The vesicular glutamate transporters VGLUT1 and VGLUT2 fill synaptic vesicles with glutamate, an ess...
Before its release into synaptic cleft, glutamate is accumulated in presynaptic vesicles by vesicula...
International audienceThe atypical vesicular glutamate transporter type 3 (VGLUT3) is expressed by s...
Age-related hearing loss (presbycusis) is a significant problem in the population. The genetic contr...
Inner hair cells (IHCs) are the primary sensory receptors of the mammalian cochlea, transducing acou...
Genetic loss of VGLUT3 in cochlear inner hair cells results in profound deafness. In this issue of N...
Hearing loss is the most common form of sensory impairment in humans and is frequently progressive i...
We previously mapped a novel autosomal dominant deafness locus, DFNA44, by studying a family with po...
Autosomal-dominant sensorineural hearing loss is genetically heterogeneous, with a phenotype closely...
International audienceAutosomal-dominant sensorineural hearing loss is genetically heterogeneous, wi...
International audienceDFNA25 is an autosomal-dominant and progressive form of human deafness caused ...
DFNA25 is an autosomal-dominant and progressive form of human deafness caused by mutations in the SL...
Avant sa libération, le glutamate est accumulé dans des vésicules synaptiques par trois transporteur...
SummaryThe expression of unconventional vesicular glutamate transporter VGLUT3 by neurons known to r...
SummaryMice lacking the vesicular glutamate transporter-3 (VGLUT3) are congenitally deaf due to loss...
The vesicular glutamate transporters VGLUT1 and VGLUT2 fill synaptic vesicles with glutamate, an ess...
Before its release into synaptic cleft, glutamate is accumulated in presynaptic vesicles by vesicula...
International audienceThe atypical vesicular glutamate transporter type 3 (VGLUT3) is expressed by s...
Age-related hearing loss (presbycusis) is a significant problem in the population. The genetic contr...
Inner hair cells (IHCs) are the primary sensory receptors of the mammalian cochlea, transducing acou...
Genetic loss of VGLUT3 in cochlear inner hair cells results in profound deafness. In this issue of N...
Hearing loss is the most common form of sensory impairment in humans and is frequently progressive i...
We previously mapped a novel autosomal dominant deafness locus, DFNA44, by studying a family with po...