Literature DB >> 9614235

Myosin Ibeta is located at tip link anchors in vestibular hair bundles.

P S Steyger1, P G Gillespie, R A Baird.   

Abstract

Recent studies have suggested that myosin Ibeta mediates the adaptation of mechanoelectrical transduction in vestibular hair cells. An important prediction of this hypothesis is that myosin Ibeta should be found in the side insertional plaque, an osmiophilic hair bundle structure that anchors tip links and is thought to house the adaptation motor. To determine whether myosin Ibeta was situated properly to perform adaptation, we used immunofluorescence and immunoelectron microscopy with the monoclonal antibody mT2 to examine the distribution of myosin Ibeta in hair bundles of the bullfrog utricle. Although utricular hair cells differ in their rates and extent of adaptation [Baird RA (1994) Comparative transduction mechanisms of hair cells in the bullfrog utriculus. II. Sensitivity and response dynamics to hair bundle displacement. J Neurophysiol 71:685-705.], myosin Ibeta was present in all hair bundles, regardless of adaptation kinetics. Confirming that, nevertheless, it was positioned properly to mediate adaptation, myosin Ibeta was found at significantly higher levels in the side insertional plaque. Myosin Ibeta was also present at elevated levels at the second tip link anchor of a hair bundle, the tip insertional plaque, found at the tip of a stereocilium. These data support myosin Ibeta as the adaptation motor and are consistent with the suggestion that the motor serves to restore tension applied to transduction channels to an optimal level, albeit with different kinetics in different cell types.

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Keywords:  Non-programmatic

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Year:  1998        PMID: 9614235      PMCID: PMC6792677     

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  35 in total

1.  Morphological and electrophysiological properties of hair cells in the bullfrog utriculus.

Authors:  R A Baird
Journal:  Ann N Y Acad Sci       Date:  1992-05-22       Impact factor: 5.691

2.  Calcium imaging of single stereocilia in hair cells: localization of transduction channels at both ends of tip links.

Authors:  W Denk; J R Holt; G M Shepherd; D P Corey
Journal:  Neuron       Date:  1995-12       Impact factor: 17.173

3.  Immunolocalization of myosin Ibeta in the hair cell's hair bundle.

Authors:  A B Metcalf
Journal:  Cell Motil Cytoskeleton       Date:  1998

4.  Peripheral innervation patterns of vestibular nerve afferents in the bullfrog utriculus.

Authors:  R A Baird; N R Schuff
Journal:  J Comp Neurol       Date:  1994-04-08       Impact factor: 3.215

5.  Kinetics of the receptor current in bullfrog saccular hair cells.

Authors:  D P Corey; A J Hudspeth
Journal:  J Neurosci       Date:  1983-05       Impact factor: 6.167

6.  ATPase activity of myosin in hair bundles of the bullfrog's sacculus.

Authors:  S Burlacu; W D Tap; E A Lumpkin; A J Hudspeth
Journal:  Biophys J       Date:  1997-01       Impact factor: 4.033

7.  Unconventional myosins in inner-ear sensory epithelia.

Authors:  T Hasson; P G Gillespie; J A Garcia; R B MacDonald; Y Zhao; A G Yee; M S Mooseker; D P Corey
Journal:  J Cell Biol       Date:  1997-06-16       Impact factor: 10.539

8.  Purification and characterization of a mammalian myosin I.

Authors:  B Barylko; M C Wagner; O Reizes; J P Albanesi
Journal:  Proc Natl Acad Sci U S A       Date:  1992-01-15       Impact factor: 11.205

9.  Mechano-electrical transducer currents in hair cells of the cultured neonatal mouse cochlea.

Authors:  C J Kros; A Rüsch; G P Richardson
Journal:  Proc Biol Sci       Date:  1992-08-22       Impact factor: 5.349

10.  Displacement-clamp measurement of the forces exerted by gating springs in the hair bundle.

Authors:  F Jaramillo; A J Hudspeth
Journal:  Proc Natl Acad Sci U S A       Date:  1993-02-15       Impact factor: 11.205

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  22 in total

1.  Putting ion channels to work: mechanoelectrical transduction, adaptation, and amplification by hair cells.

Authors:  A J Hudspeth; Y Choe; A D Mehta; P Martin
Journal:  Proc Natl Acad Sci U S A       Date:  2000-10-24       Impact factor: 11.205

2.  Two mechanisms for transducer adaptation in vertebrate hair cells.

Authors:  J R Holt; D P Corey
Journal:  Proc Natl Acad Sci U S A       Date:  2000-10-24       Impact factor: 11.205

3.  Characterization of adaptation motors in saccular hair cells by fluctuation analysis.

Authors:  Jonathan E Frank; Vladislav Markin; Fernán Jaramillo
Journal:  Biophys J       Date:  2002-12       Impact factor: 4.033

4.  Myo1c mutations associated with hearing loss cause defects in the interaction with nucleotide and actin.

Authors:  Nancy Adamek; Michael A Geeves; Lynne M Coluccio
Journal:  Cell Mol Life Sci       Date:  2010-07-17       Impact factor: 9.261

Review 5.  Mechano-electrical transduction: new insights into old ideas.

Authors:  A J Ricci; B Kachar; J Gale; S M Van Netten
Journal:  J Membr Biol       Date:  2006-05-25       Impact factor: 1.843

6.  Closure of supporting cell scar formations requires dynamic actin mechanisms.

Authors:  Andrew J Hordichok; Peter S Steyger
Journal:  Hear Res       Date:  2007-06-27       Impact factor: 3.208

Review 7.  The myosin superfamily at a glance.

Authors:  M Amanda Hartman; James A Spudich
Journal:  J Cell Sci       Date:  2012-04-01       Impact factor: 5.285

8.  Myosin VIIa and sans localization at stereocilia upper tip-link density implicates these Usher syndrome proteins in mechanotransduction.

Authors:  M'hamed Grati; Bechara Kachar
Journal:  Proc Natl Acad Sci U S A       Date:  2011-06-27       Impact factor: 11.205

9.  A new compartment at stereocilia tips defined by spatial and temporal patterns of myosin IIIa expression.

Authors:  Mark E Schneider; Andréa C Dosé; Felipe T Salles; Weise Chang; Floyd L Erickson; Beth Burnside; Bechara Kachar
Journal:  J Neurosci       Date:  2006-10-04       Impact factor: 6.167

Review 10.  Review series: The cell biology of hearing.

Authors:  Martin Schwander; Bechara Kachar; Ulrich Müller
Journal:  J Cell Biol       Date:  2010-07-12       Impact factor: 10.539

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