With their essential role in inner ear function, stereocilia of sensory hair cells demonstrate the importance of cellular actin protrusions. Actin packing in stereocilia is mediated by cross-linkers of the plastin, fascin, and espin families. Although mice lacking espin (ESPN) have no vestibular or auditory function, we found that mice that either lacked plastin 1 (PLS1) or had nonfunctional fascin 2 (FSCN2) had reduced inner ear function, with double-mutant mice most strongly affected. Targeted mass spectrometry indicated that PLS1 was the most abundant cross-linker in vestibular stereocilia and the second most abundant protein overall; ESPN only accounted for ∼15% of the total cross-linkers in bundles. Mouse utricle stereocilia lacking PL...
International audienceThe mechanotransducer channels of auditory hair cells are gated by tip-links, ...
Mammalian cochlear hair cells are specialized for the dynamic coding of sound. The transduction of s...
Inner ear hair cells detect sound through deflection of mechanosensory stereocilia. Each stereociliu...
With their essential role in inner-ear function, stereocilia of sensory hair cells demonstrate the i...
Hearing relies on the mechanosensory inner and outer hair cells (OHCs) of the organ of Corti, which ...
Stereocilia are actin-based protrusions on auditory sensory hair cells that are deflected by sound w...
Stereocilia are mechanosensitive protrusions on the surfaces of sensory hair cells in the inner ear ...
Stereocilia, finger-like projections forming the hair bundle on the apical surface of sensory hair c...
The quantitative trait locus ahl8 is a key contributor to the early-onset, age-related hearing loss ...
Myosin XVa (MyoXVa) and its cargo whirlin are implicated in deafness and vestibular dysfunction and ...
Stereocilia on auditory sensory cells are actin-based protrusions that mechanotransduce sound into a...
Auditory sensory hair cells depend on stereocilia with precisely regulated lengths to detect sound. ...
Hair cells tightly control the dimensions of their stereocilia, which are actin-rich protrusions wit...
Control of the dimensions of actin-rich processes like filopodia, lamellipodia, microvilli, and ster...
SummaryInner ear hair cells detect sound through deflection of mechanosensory stereocilia. Each ster...
International audienceThe mechanotransducer channels of auditory hair cells are gated by tip-links, ...
Mammalian cochlear hair cells are specialized for the dynamic coding of sound. The transduction of s...
Inner ear hair cells detect sound through deflection of mechanosensory stereocilia. Each stereociliu...
With their essential role in inner-ear function, stereocilia of sensory hair cells demonstrate the i...
Hearing relies on the mechanosensory inner and outer hair cells (OHCs) of the organ of Corti, which ...
Stereocilia are actin-based protrusions on auditory sensory hair cells that are deflected by sound w...
Stereocilia are mechanosensitive protrusions on the surfaces of sensory hair cells in the inner ear ...
Stereocilia, finger-like projections forming the hair bundle on the apical surface of sensory hair c...
The quantitative trait locus ahl8 is a key contributor to the early-onset, age-related hearing loss ...
Myosin XVa (MyoXVa) and its cargo whirlin are implicated in deafness and vestibular dysfunction and ...
Stereocilia on auditory sensory cells are actin-based protrusions that mechanotransduce sound into a...
Auditory sensory hair cells depend on stereocilia with precisely regulated lengths to detect sound. ...
Hair cells tightly control the dimensions of their stereocilia, which are actin-rich protrusions wit...
Control of the dimensions of actin-rich processes like filopodia, lamellipodia, microvilli, and ster...
SummaryInner ear hair cells detect sound through deflection of mechanosensory stereocilia. Each ster...
International audienceThe mechanotransducer channels of auditory hair cells are gated by tip-links, ...
Mammalian cochlear hair cells are specialized for the dynamic coding of sound. The transduction of s...
Inner ear hair cells detect sound through deflection of mechanosensory stereocilia. Each stereociliu...