Mechanotransduction in the mammalian auditory system depends on mechanosensitive channels in the hair bundles that project from the apical surface of the sensory hair cells. Individual stereocilia within each bundle contain a core of tightly packed actin filaments, whose length is dynamically regulated during development and in the adult. We show that the actin-binding protein epidermal growth factor receptor pathway substrate 8 (Eps8)L2, a member of the Eps8-like protein family, is a newly identified hair bundle protein that is localized at the tips of stereocilia of both cochlear and vestibular hair cells. It has a spatiotemporal expression pattern that complements that of Eps8. In the cochlea, whereas Eps8 is essential for the initial el...
The transduction of sound waves into electrical signals depends upon mechanosensitive stereociliary ...
© The Author 2014. Published by Oxford University Press. All rights reserved. Hearing relies on the ...
© The Author 2014. Published by Oxford University Press. All rights reserved. Hearing relies on the ...
Mechanotransduction in the mammalian auditory system depends on mechanosensitive channels in the hai...
Hair cells of the mammalian cochlea are specialized for the dynamic coding of sound stimuli. The tra...
Hair cells of the mammalian cochlea are specialized for the dynamic coding of sound stimuli. The tra...
Hair cells of the mammalian cochlea are specialized for the dynamic coding of sound stimuli. The tra...
Hair cells of the mammalian cochlea are specialized for the dynamic coding of sound stimuli. The tra...
Hair cells of the mammalian cochlea are specialized for the dynamic coding of sound stimuli. The tra...
Hair cells of the mammalian cochlea are specialized for the dynamic coding of sound stimuli. The tra...
Mammalian cochlear hair cells are specialized for the dynamic coding of sound. The transduction of s...
Deletion of Epidermal growth factor receptor pathway substrate 8 (Eps8), a gene involved in actin re...
Several genetic mutations affecting the development and function of mammalian hair cells have been s...
Several genetic mutations affecting the development and function of mammalian hair cells have been s...
Hearing relies on the mechanosensory inner and outer hair cells (OHCs) of the organ of Corti, which ...
The transduction of sound waves into electrical signals depends upon mechanosensitive stereociliary ...
© The Author 2014. Published by Oxford University Press. All rights reserved. Hearing relies on the ...
© The Author 2014. Published by Oxford University Press. All rights reserved. Hearing relies on the ...
Mechanotransduction in the mammalian auditory system depends on mechanosensitive channels in the hai...
Hair cells of the mammalian cochlea are specialized for the dynamic coding of sound stimuli. The tra...
Hair cells of the mammalian cochlea are specialized for the dynamic coding of sound stimuli. The tra...
Hair cells of the mammalian cochlea are specialized for the dynamic coding of sound stimuli. The tra...
Hair cells of the mammalian cochlea are specialized for the dynamic coding of sound stimuli. The tra...
Hair cells of the mammalian cochlea are specialized for the dynamic coding of sound stimuli. The tra...
Hair cells of the mammalian cochlea are specialized for the dynamic coding of sound stimuli. The tra...
Mammalian cochlear hair cells are specialized for the dynamic coding of sound. The transduction of s...
Deletion of Epidermal growth factor receptor pathway substrate 8 (Eps8), a gene involved in actin re...
Several genetic mutations affecting the development and function of mammalian hair cells have been s...
Several genetic mutations affecting the development and function of mammalian hair cells have been s...
Hearing relies on the mechanosensory inner and outer hair cells (OHCs) of the organ of Corti, which ...
The transduction of sound waves into electrical signals depends upon mechanosensitive stereociliary ...
© The Author 2014. Published by Oxford University Press. All rights reserved. Hearing relies on the ...
© The Author 2014. Published by Oxford University Press. All rights reserved. Hearing relies on the ...