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Molecular Architecture of the Chick Vestibular Hair Bundle

Hair bundles of the inner ear have a unique structure and protein composition that underlies their sensitivity to mechanical stimulation. Using mass spectrometry, we identified and quantified >1100 proteins, present from a few to 400,000 copies per stereocilium, from purified chick bundles; 336 o...

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Autores principales: Shin, Jung-Bum, Krey, Jocelyn F., Hassan, Ahmed, Metlagel, Zoltan, Tauscher, Andrew N., Pagana, James M., Sherman, Nicholas E., Jeffery, Erin D., Spinelli, Kateri J., Zhao, Hongyu, Wilmarth, Phillip A., Choi, Dongseok, David, Larry L., Auer, Manfred, Barr-Gillespie, Peter G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3581746/
https://www.ncbi.nlm.nih.gov/pubmed/23334578
http://dx.doi.org/10.1038/nn.3312
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author Shin, Jung-Bum
Krey, Jocelyn F.
Hassan, Ahmed
Metlagel, Zoltan
Tauscher, Andrew N.
Pagana, James M.
Sherman, Nicholas E.
Jeffery, Erin D.
Spinelli, Kateri J.
Zhao, Hongyu
Wilmarth, Phillip A.
Choi, Dongseok
David, Larry L.
Auer, Manfred
Barr-Gillespie, Peter G.
author_facet Shin, Jung-Bum
Krey, Jocelyn F.
Hassan, Ahmed
Metlagel, Zoltan
Tauscher, Andrew N.
Pagana, James M.
Sherman, Nicholas E.
Jeffery, Erin D.
Spinelli, Kateri J.
Zhao, Hongyu
Wilmarth, Phillip A.
Choi, Dongseok
David, Larry L.
Auer, Manfred
Barr-Gillespie, Peter G.
author_sort Shin, Jung-Bum
collection PubMed
description Hair bundles of the inner ear have a unique structure and protein composition that underlies their sensitivity to mechanical stimulation. Using mass spectrometry, we identified and quantified >1100 proteins, present from a few to 400,000 copies per stereocilium, from purified chick bundles; 336 of these were significantly enriched in bundles. Bundle proteins that we detected have been shown to regulate cytoskeleton structure and dynamics, energy metabolism, phospholipid synthesis, and cell signaling. Three-dimensional imaging using electron tomography allowed us to count the number of actin-actin crosslinkers and actin-membrane connectors; these values compared well to those obtained from mass spectrometry. Network analysis revealed several hub proteins, including RDX (radixin) and SLC9A3R2 (NHERF2), which interact with many bundle proteins and may perform functions essential for bundle structure and function. The quantitative mass spectrometry of bundle proteins reported here establishes a framework for future characterization of dynamic processes that shape bundle structure and function.
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spelling pubmed-35817462013-09-01 Molecular Architecture of the Chick Vestibular Hair Bundle Shin, Jung-Bum Krey, Jocelyn F. Hassan, Ahmed Metlagel, Zoltan Tauscher, Andrew N. Pagana, James M. Sherman, Nicholas E. Jeffery, Erin D. Spinelli, Kateri J. Zhao, Hongyu Wilmarth, Phillip A. Choi, Dongseok David, Larry L. Auer, Manfred Barr-Gillespie, Peter G. Nat Neurosci Article Hair bundles of the inner ear have a unique structure and protein composition that underlies their sensitivity to mechanical stimulation. Using mass spectrometry, we identified and quantified >1100 proteins, present from a few to 400,000 copies per stereocilium, from purified chick bundles; 336 of these were significantly enriched in bundles. Bundle proteins that we detected have been shown to regulate cytoskeleton structure and dynamics, energy metabolism, phospholipid synthesis, and cell signaling. Three-dimensional imaging using electron tomography allowed us to count the number of actin-actin crosslinkers and actin-membrane connectors; these values compared well to those obtained from mass spectrometry. Network analysis revealed several hub proteins, including RDX (radixin) and SLC9A3R2 (NHERF2), which interact with many bundle proteins and may perform functions essential for bundle structure and function. The quantitative mass spectrometry of bundle proteins reported here establishes a framework for future characterization of dynamic processes that shape bundle structure and function. 2013-01-20 2013-03 /pmc/articles/PMC3581746/ /pubmed/23334578 http://dx.doi.org/10.1038/nn.3312 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Shin, Jung-Bum
Krey, Jocelyn F.
Hassan, Ahmed
Metlagel, Zoltan
Tauscher, Andrew N.
Pagana, James M.
Sherman, Nicholas E.
Jeffery, Erin D.
Spinelli, Kateri J.
Zhao, Hongyu
Wilmarth, Phillip A.
Choi, Dongseok
David, Larry L.
Auer, Manfred
Barr-Gillespie, Peter G.
Molecular Architecture of the Chick Vestibular Hair Bundle
title Molecular Architecture of the Chick Vestibular Hair Bundle
title_full Molecular Architecture of the Chick Vestibular Hair Bundle
title_fullStr Molecular Architecture of the Chick Vestibular Hair Bundle
title_full_unstemmed Molecular Architecture of the Chick Vestibular Hair Bundle
title_short Molecular Architecture of the Chick Vestibular Hair Bundle
title_sort molecular architecture of the chick vestibular hair bundle
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3581746/
https://www.ncbi.nlm.nih.gov/pubmed/23334578
http://dx.doi.org/10.1038/nn.3312
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