Transmembrane O-methyltransferase (TOMT / LRTOMT) is responsible for non-syndromic deafness DFNB63. However, the specific defects that lead to hearing loss have not been described. Using a zebrafish model of DFNB63, we show that the auditory and vestibular phenotypes are due to a lack of mechanotransduction (MET) in Tomt-deficient hair cells. GFP-tagged Tomt is enriched in the Golgi of hair cells, suggesting that Tomt might regulate the trafficking of other MET components to the hair bundle. We found that Tmc1/2 proteins are specifically excluded from the hair bundle in tomt mutants, whereas other MET complex proteins can still localize to the bundle. Furthermore, mouse TOMT and TMC1 can directly interact in HEK 293 cells, and this interact...
SummaryHair cells are the mechanosensory cells of the inner ear. Mechanotransduction channels in hai...
SummaryHair cells are mechanosensors for the perception of sound, acceleration, and fluid motion. Me...
Hair cells are mechanosensors for the perception of sound, acceleration, and fluid motion. Mechanotr...
Mechanosensory hair cells are used by the auditory and vestibular systems to convert mechanical vibr...
Mutations in transmembrane inner ear (TMIE) cause deafness in humans; previous studies suggest invol...
AbstractTransmembrane channel-like protein isoform-1 (TMC1) has emerged over the past five years as ...
Hair cells sense and transmit auditory, vestibular, and hydrodynamic information by converting mech...
Mutations in transmembrane inner ear (TMIE) cause deafness in humans; previous studies suggest invol...
Transmembrane channel-like protein 1 (TMC1) is thought to form the ion-conducting pore of the mechan...
SummaryMechanosensitive ion channels at stereocilia tips mediate mechanoelectrical transduction (MET...
Transmembrane channel like protein 1 (TMC1) is likely to be a pore-forming subunit of the transducti...
The ability of cochlear hair cells to convert sound into receptor potentials relies on the mechanoel...
The ability of cochlear hair cells to convert sound into receptor potentials relies on the mechanoel...
Mechanoelectrical transducer (MET) currents were recorded from cochlear hair cells in mice with muta...
SummarySensory transduction in auditory and vestibular hair cells requires expression of transmembra...
SummaryHair cells are the mechanosensory cells of the inner ear. Mechanotransduction channels in hai...
SummaryHair cells are mechanosensors for the perception of sound, acceleration, and fluid motion. Me...
Hair cells are mechanosensors for the perception of sound, acceleration, and fluid motion. Mechanotr...
Mechanosensory hair cells are used by the auditory and vestibular systems to convert mechanical vibr...
Mutations in transmembrane inner ear (TMIE) cause deafness in humans; previous studies suggest invol...
AbstractTransmembrane channel-like protein isoform-1 (TMC1) has emerged over the past five years as ...
Hair cells sense and transmit auditory, vestibular, and hydrodynamic information by converting mech...
Mutations in transmembrane inner ear (TMIE) cause deafness in humans; previous studies suggest invol...
Transmembrane channel-like protein 1 (TMC1) is thought to form the ion-conducting pore of the mechan...
SummaryMechanosensitive ion channels at stereocilia tips mediate mechanoelectrical transduction (MET...
Transmembrane channel like protein 1 (TMC1) is likely to be a pore-forming subunit of the transducti...
The ability of cochlear hair cells to convert sound into receptor potentials relies on the mechanoel...
The ability of cochlear hair cells to convert sound into receptor potentials relies on the mechanoel...
Mechanoelectrical transducer (MET) currents were recorded from cochlear hair cells in mice with muta...
SummarySensory transduction in auditory and vestibular hair cells requires expression of transmembra...
SummaryHair cells are the mechanosensory cells of the inner ear. Mechanotransduction channels in hai...
SummaryHair cells are mechanosensors for the perception of sound, acceleration, and fluid motion. Me...
Hair cells are mechanosensors for the perception of sound, acceleration, and fluid motion. Mechanotr...