Transient receptor potential channels have diverse roles in mechanosensation. Evidence is accumulating that members of the canonical subfamily of TRP channels (TRPC) are involved in touch and hearing. Characteristic features of TRP channels include their high structural homology and their propensity to form heteromeric complexes which suggests potential functional redundancy. We previously showed that TRPC3 and TRPC6 double knockout animals have deficits in light touch and hearing whilst single knockouts were apparently normal. We have extended these studies to analyse deficits in global quadruple TRPC1, 3, 5 and 6 null mutant mice. We examined both touch and hearing in behavioural and electro-physiological assays, and provide evidence that...
AbstractIn this review, we summarize the potential functional roles of transient receptor potential ...
AbstractDespite extensive biophysical characterization and the superb example of the bacterial MscL ...
TRPML3 (mucolipin-3) belongs to one of the transient-receptor-potential (TRP) ion channel families. ...
Transient receptor potential channels have diverse roles in mechanosensation. Evidence is accumulati...
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 ...
Sound and head movements are perceived through sensory hair cells in the inner ear. Mounting evidenc...
Sound and head movements are perceived through sensory hair cells in the inner ear. Mounting evidenc...
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...
AbstractIn this review, we summarize the potential functional roles of transient receptor potential ...
AbstractDespite extensive biophysical characterization and the superb example of the bacterial MscL ...
TRPML3 (mucolipin-3) belongs to one of the transient-receptor-potential (TRP) ion channel families. ...
Transient receptor potential channels have diverse roles in mechanosensation. Evidence is accumulati...
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 ...
Sound and head movements are perceived through sensory hair cells in the inner ear. Mounting evidenc...
Sound and head movements are perceived through sensory hair cells in the inner ear. Mounting evidenc...
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...
AbstractIn this review, we summarize the potential functional roles of transient receptor potential ...
AbstractDespite extensive biophysical characterization and the superb example of the bacterial MscL ...
TRPML3 (mucolipin-3) belongs to one of the transient-receptor-potential (TRP) ion channel families. ...