A quantitative comparison of mechanoelectrical transduction in vestibular and auditory hair cells of neonatal mice
- 22 April 1997
- journal article
- research article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 264 (1381) , 611-621
- https://doi.org/10.1098/rspb.1997.0087
Abstract
Vestibular hair cells (VHCs) and cochlear outer hair cells (OHCs) of neonatal mice were stimulated by a fluid jet directed at their stereociliary bundles. Relations between the force exerted by the jet, bundle displacement, and the resulting transducer current were studied. The mean maximum transducer conductance in VHCs (2.6 nS) was about half that of the OHCs (5.5 nS), with the largest recorded values being 4.1 nS and 9.2 nS, respectively. In some OHCs activity of a single, 112 pS transducer channel was observed, allowing an estimate of the maximum number of channels: up to 36 in VHCs and 82 in OHCs, corresponding to about one transducer channel per tip link. The VHC bundles required about 330 nm of tip displacement to activate 90 per cent of the maximum transducer conductance, compared to 150 nm for the OHC bundles. This corresponded to 2 deg of rotation about their pivots for both, due to the greater length of the VHC bundles. The VHC bundles' translational stiffness was one–seventh of that of the OHCs. Conversion to rotational stiffness almost abolished this difference. Rotation of the hair bundle rather than translation determines the gating of the transducer channels, independent of bundle height or origin of the cells.Keywords
This publication has 27 references indexed in Scilit:
- Kinematic analysis of shear displacement as a means for operating mechanotransduction channels in the contact region between adjacent stereocilia of mammalian cochlear hair cellsProceedings Of The Royal Society B-Biological Sciences, 1997
- Displacement Sensitivity of Mammalian Vestibular TransducersAnnals of the New York Academy of Sciences, 1996
- Gating-Spring Models of Mechanoelectrical Transduction by Hair Cells of the Internal EarAnnual Review of Biophysics, 1995
- Freeze fracture analysis of apical membranes in cochlear cultures: differences between basal and apicalcoil outer hair cells and effects of neomycinJournal of Neurocytology, 1993
- Nonlinear mechanical responses of mouse cochlear hair bundlesProceedings Of The Royal Society B-Biological Sciences, 1992
- Mechano-electrical transducer currents in hair cells of the cultured neonatal mouse cochleaProceedings Of The Royal Society B-Biological Sciences, 1992
- Mechanoelectrical transduction by hair cellsTrends in Neurosciences, 1992
- How the ear's works workNature, 1989
- Mechanoelectrical Transduction by Hair CellsAnnual Review of Biophysics, 1988
- Compliance of the hair bundle associated with gating of mechanoelectrical transduction channels in the Bullfrog's saccular hair cellNeuron, 1988