SummaryMechanosensitive ion channels at stereocilia tips mediate mechanoelectrical transduction (MET) in inner ear sensory hair cells. Transmembrane channel-like 1 and 2 (TMC1 and TMC2) are essential for MET and are hypothesized to be components of the MET complex, but evidence for their predicted spatiotemporal localization in stereocilia is lacking. Here, we determine the stereocilia localization of the TMC proteins in mice expressing TMC1-mCherry and TMC2-AcGFP. Functionality of the tagged proteins was verified by transgenic rescue of MET currents and hearing in Tmc1Δ/Δ;Tmc2Δ/Δ mice. TMC1-mCherry and TMC2-AcGFP localize along the length of immature stereocilia. However, as hair cells develop, the two proteins localize predominantly to st...
Mutations in transmembrane inner ear (TMIE) cause deafness in humans; previous studies suggest invol...
Inner ear hair cells transduce sound waves and acceleration. In the quest to identify the molecular ...
Hair cells in the inner ear convert mechanical stimuli provided by sound waves and head movements in...
SummaryMechanosensitive ion channels at stereocilia tips mediate mechanoelectrical transduction (MET...
Mechanosensitive ion channels at stereocilia tips mediate mechanoelectrical transduction (MET) in in...
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...
AbstractTransmembrane channel-like protein isoform-1 (TMC1) has emerged over the past five years as ...
SummarySensory transduction in auditory and vestibular hair cells requires expression of transmembra...
Transmembrane channel-like protein 1 (TMC1) is thought to form the ion-conducting pore of the mechan...
Transmembrane O-methyltransferase (TOMT / LRTOMT) is responsible for non-syndromic deafness DFNB63. ...
SummaryHair cells are the mechanosensory cells of the inner ear. Mechanotransduction channels in hai...
Mechanoelectrical transducer (MET) currents were recorded from cochlear hair cells in mice with muta...
The transduction of sound into electrical signals depends on mechanically sensitive ion channels in ...
Mutations in transmembrane inner ear (TMIE) cause deafness in humans; previous studies suggest invol...
Inner ear hair cells transduce sound waves and acceleration. In the quest to identify the molecular ...
Hair cells in the inner ear convert mechanical stimuli provided by sound waves and head movements in...
SummaryMechanosensitive ion channels at stereocilia tips mediate mechanoelectrical transduction (MET...
Mechanosensitive ion channels at stereocilia tips mediate mechanoelectrical transduction (MET) in in...
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...
AbstractTransmembrane channel-like protein isoform-1 (TMC1) has emerged over the past five years as ...
SummarySensory transduction in auditory and vestibular hair cells requires expression of transmembra...
Transmembrane channel-like protein 1 (TMC1) is thought to form the ion-conducting pore of the mechan...
Transmembrane O-methyltransferase (TOMT / LRTOMT) is responsible for non-syndromic deafness DFNB63. ...
SummaryHair cells are the mechanosensory cells of the inner ear. Mechanotransduction channels in hai...
Mechanoelectrical transducer (MET) currents were recorded from cochlear hair cells in mice with muta...
The transduction of sound into electrical signals depends on mechanically sensitive ion channels in ...
Mutations in transmembrane inner ear (TMIE) cause deafness in humans; previous studies suggest invol...
Inner ear hair cells transduce sound waves and acceleration. In the quest to identify the molecular ...
Hair cells in the inner ear convert mechanical stimuli provided by sound waves and head movements in...