Sound and head movements are perceived through sensory hair cells in the inner ear. Mounting evidence indicates that this process is initiated by the opening of mechanically sensitive calcium-permeable channels, also referred to as the mechanoelectrical transducer (MET) channels, reported to be around the tips of all but the tallest stereocilia. However, the identity of MET channel remains elusive. Literature suggests that the MET channel is a non-selective cation channel with a high Ca2+ permeability and,100 picosiemens conductance. These characteristics make members of the transient receptor potential (TRP) superfamily likely candidates for this role. One of these candidates is the transient receptor potential melastatin 1 protein (TRPM1)...
TRPML3, a member of the transient receptor potential (TRP) family, is an inwardly rectifying, non-se...
Mechanoelectrical transducer (MET) currents were recorded from cochlear hair cells in mice with muta...
AbstractIn this review, we summarize the potential functional roles of transient receptor potential ...
Sound and head movements are perceived through sensory hair cells in the inner ear. Mounting evidenc...
TRPML3 (mucolipin-3) belongs to one of the transient-receptor-potential (TRP) ion channel families. ...
Hair cells of the inner ear transduce mechanical stimuli like sound or head movements into electrica...
<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...
<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...
<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...
AbstractTransient receptor potential channels have diverse roles in mechanosensation. Evidence is ac...
Members of the TRP superfamily of ion channels mediate mechanosensation in some organisms, and have ...
Transient receptor potential channels have diverse roles in mechanosensation. Evidence is accumulati...
TRPML3, a member of the transient receptor potential (TRP) family, is an inwardly rectifying, non-se...
Mechanoelectrical transducer (MET) currents were recorded from cochlear hair cells in mice with muta...
AbstractIn this review, we summarize the potential functional roles of transient receptor potential ...
Sound and head movements are perceived through sensory hair cells in the inner ear. Mounting evidenc...
TRPML3 (mucolipin-3) belongs to one of the transient-receptor-potential (TRP) ion channel families. ...
Hair cells of the inner ear transduce mechanical stimuli like sound or head movements into electrica...
<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...
<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...
<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...
AbstractTransient receptor potential channels have diverse roles in mechanosensation. Evidence is ac...
Members of the TRP superfamily of ion channels mediate mechanosensation in some organisms, and have ...
Transient receptor potential channels have diverse roles in mechanosensation. Evidence is accumulati...
TRPML3, a member of the transient receptor potential (TRP) family, is an inwardly rectifying, non-se...
Mechanoelectrical transducer (MET) currents were recorded from cochlear hair cells in mice with muta...
AbstractIn this review, we summarize the potential functional roles of transient receptor potential ...