The acquisition of mechano-electrical transducer current adaptation in auditory hair cells requires myosin VI
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Title
The acquisition of mechano-electrical transducer current adaptation in auditory hair cells requires myosin VI
Authors
Keywords
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Journal
JOURNAL OF PHYSIOLOGY-LONDON
Volume 594, Issue 13, Pages 3667-3681
Publisher
Wiley
Online
2016-04-23
DOI
10.1113/jp272220
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Note: Only part of the references are listed.- Tmc1 Point Mutation Affects Ca2+ Sensitivity and Block by Dihydrostreptomycin of the Mechanoelectrical Transducer Current of Mouse Outer Hair Cells
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- A reduction in Ptprq associated with specific features of the deafness phenotype of the miR-96 mutant mouse diminuendo
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- Transduction without Tip Links in Cochlear Hair Cells Is Mediated by Ion Channels with Permeation Properties Distinct from Those of the Mechano-Electrical Transducer Channel
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- CLIC5 stabilizes membrane-actin filament linkages at the base of hair cell stereocilia in a molecular complex with radixin, taperin, and myosin VI
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- The role of transmembrane channel–like proteins in the operation of hair cell mechanotransducer channels
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- (2013) Bifeng Pan et al. NEURON
- Presynaptic maturation in auditory hair cells requires a critical period of sensory-independent spiking activity
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- The Resting Transducer Current Drives Spontaneous Activity in Prehearing Mammalian Cochlear Inner Hair Cells
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- Myosin VI Rewrites the Rules for Myosin Motors
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- Otoferlin interacts with myosin VI: implications for maintenance of the basolateral synaptic structure of the inner hair cell
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- Tonotopic Gradient in the Developmental Acquisition of Sensory Transduction in Outer Hair Cells of the Mouse Cochlea
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- Fast Adaptation and Ca2+ Sensitivity of the Mechanotransducer Require Myosin-XVa in Inner But Not Outer Cochlear Hair Cells
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