SummaryHair cells are the mechanosensory cells of the inner ear. Mechanotransduction channels in hair cells are gated by tip links. The molecules that connect tip links to transduction channels are not known. Here we show that the transmembrane protein TMIE forms a ternary complex with the tip-link component PCDH15 and its binding partner TMHS/LHFPL5. Alternative splicing of the PCDH15 cytoplasmic domain regulates formation of this ternary complex. Transducer currents are abolished by a homozygous Tmie-null mutation, and subtle Tmie mutations that disrupt interactions between TMIE and tip links affect transduction, suggesting that TMIE is an essential component of the hair cell’s mechanotransduction machinery that functionally couples the t...
Tip links between adjacent stereocilia are believed to gate mechano-electrical transducer (MET) chan...
<p>Hair cells of the inner ear transduce mechanical stimuli like sound or head movements into electr...
<p>Hair cells of the inner ear transduce mechanical stimuli like sound or head movements into electr...
SummaryHair cells are the mechanosensory cells of the inner ear. Mechanotransduction channels in hai...
Inner ear hair cells transduce sound waves and acceleration. In the quest to identify the molecular ...
Transmembrane channel like protein 1 (TMC1) is likely to be a pore-forming subunit of the transducti...
SummarySensory transduction in auditory and vestibular hair cells requires expression of transmembra...
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...
Tip links between adjacent stereocilia are believed to gate mechano-electrical transducer (MET) chan...
Transmembrane channel-like protein 1 (TMC1) is thought to form the ion-conducting pore of the mechan...
AbstractTransmembrane channel-like protein isoform-1 (TMC1) has emerged over the past five years as ...
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...
SummaryMechanosensitive ion channels at stereocilia tips mediate mechanoelectrical transduction (MET...
Tip links between adjacent stereocilia are believed to gate mechano-electrical transducer (MET) chan...
<p>Hair cells of the inner ear transduce mechanical stimuli like sound or head movements into electr...
<p>Hair cells of the inner ear transduce mechanical stimuli like sound or head movements into electr...
SummaryHair cells are the mechanosensory cells of the inner ear. Mechanotransduction channels in hai...
Inner ear hair cells transduce sound waves and acceleration. In the quest to identify the molecular ...
Transmembrane channel like protein 1 (TMC1) is likely to be a pore-forming subunit of the transducti...
SummarySensory transduction in auditory and vestibular hair cells requires expression of transmembra...
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...
Tip links between adjacent stereocilia are believed to gate mechano-electrical transducer (MET) chan...
Transmembrane channel-like protein 1 (TMC1) is thought to form the ion-conducting pore of the mechan...
AbstractTransmembrane channel-like protein isoform-1 (TMC1) has emerged over the past five years as ...
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...
SummaryMechanosensitive ion channels at stereocilia tips mediate mechanoelectrical transduction (MET...
Tip links between adjacent stereocilia are believed to gate mechano-electrical transducer (MET) chan...
<p>Hair cells of the inner ear transduce mechanical stimuli like sound or head movements into electr...
<p>Hair cells of the inner ear transduce mechanical stimuli like sound or head movements into electr...