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Gelsolin Plays a Role in the Actin Polymerization Complex of Hair Cell Stereocilia

A complex of proteins scaffolded by the PDZ protein, whirlin, reside at the stereocilia tip and are critical for stereocilia development and elongation. We have shown that in outer hair cells (OHCs) whirlin is part of a larger complex involving the MAGUK protein, p55, and protein 4.1R. Whirlin inter...

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Autores principales: Mburu, Philomena, Romero, María Rosario, Hilton, Helen, Parker, Andrew, Townsend, Stuart, Kikkawa, Yoshiaki, Brown, Steve D. M.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2905391/
https://www.ncbi.nlm.nih.gov/pubmed/20661277
http://dx.doi.org/10.1371/journal.pone.0011627
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author Mburu, Philomena
Romero, María Rosario
Hilton, Helen
Parker, Andrew
Townsend, Stuart
Kikkawa, Yoshiaki
Brown, Steve D. M.
author_facet Mburu, Philomena
Romero, María Rosario
Hilton, Helen
Parker, Andrew
Townsend, Stuart
Kikkawa, Yoshiaki
Brown, Steve D. M.
author_sort Mburu, Philomena
collection PubMed
description A complex of proteins scaffolded by the PDZ protein, whirlin, reside at the stereocilia tip and are critical for stereocilia development and elongation. We have shown that in outer hair cells (OHCs) whirlin is part of a larger complex involving the MAGUK protein, p55, and protein 4.1R. Whirlin interacts with p55 which is expressed exclusively in outer hair cells (OHC) in both the long stereocilia that make up the stereocilia bundle proper as well as surrounding shorter microvilli that will eventually regress. In erythrocytes, p55 forms a tripartite complex with protein 4.1R and glycophorin C promoting the assembly of actin filaments and the interaction of whirlin with p55 indicates that it plays a similar role in OHC stereocilia. However, the components directly involved in actin filament regulation in stereocilia are unknown. We have investigated additional components of the whirlin interactome by identifying interacting partners to p55. We show that the actin capping and severing protein, gelsolin, is a part of the whirlin complex. Gelsolin is detected in OHC where it localizes to the tips of the shorter rows but not to the longest row of stereocilia and the pattern of localisation at the apical hair cell surface is strikingly similar to p55. Like p55, gelsolin is ablated in the whirler and shaker2 mutants. Moreover, in a gelsolin mutant, stereocilia in the apex of the cochlea become long and straggly indicating defects in the regulation of stereocilia elongation. The identification of gelsolin provides for the first time a link between the whirlin scaffolding protein complex involved in stereocilia elongation and a known actin regulatory molecule.
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spelling pubmed-29053912010-07-26 Gelsolin Plays a Role in the Actin Polymerization Complex of Hair Cell Stereocilia Mburu, Philomena Romero, María Rosario Hilton, Helen Parker, Andrew Townsend, Stuart Kikkawa, Yoshiaki Brown, Steve D. M. PLoS One Research Article A complex of proteins scaffolded by the PDZ protein, whirlin, reside at the stereocilia tip and are critical for stereocilia development and elongation. We have shown that in outer hair cells (OHCs) whirlin is part of a larger complex involving the MAGUK protein, p55, and protein 4.1R. Whirlin interacts with p55 which is expressed exclusively in outer hair cells (OHC) in both the long stereocilia that make up the stereocilia bundle proper as well as surrounding shorter microvilli that will eventually regress. In erythrocytes, p55 forms a tripartite complex with protein 4.1R and glycophorin C promoting the assembly of actin filaments and the interaction of whirlin with p55 indicates that it plays a similar role in OHC stereocilia. However, the components directly involved in actin filament regulation in stereocilia are unknown. We have investigated additional components of the whirlin interactome by identifying interacting partners to p55. We show that the actin capping and severing protein, gelsolin, is a part of the whirlin complex. Gelsolin is detected in OHC where it localizes to the tips of the shorter rows but not to the longest row of stereocilia and the pattern of localisation at the apical hair cell surface is strikingly similar to p55. Like p55, gelsolin is ablated in the whirler and shaker2 mutants. Moreover, in a gelsolin mutant, stereocilia in the apex of the cochlea become long and straggly indicating defects in the regulation of stereocilia elongation. The identification of gelsolin provides for the first time a link between the whirlin scaffolding protein complex involved in stereocilia elongation and a known actin regulatory molecule. Public Library of Science 2010-07-16 /pmc/articles/PMC2905391/ /pubmed/20661277 http://dx.doi.org/10.1371/journal.pone.0011627 Text en Mburu et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Mburu, Philomena
Romero, María Rosario
Hilton, Helen
Parker, Andrew
Townsend, Stuart
Kikkawa, Yoshiaki
Brown, Steve D. M.
Gelsolin Plays a Role in the Actin Polymerization Complex of Hair Cell Stereocilia
title Gelsolin Plays a Role in the Actin Polymerization Complex of Hair Cell Stereocilia
title_full Gelsolin Plays a Role in the Actin Polymerization Complex of Hair Cell Stereocilia
title_fullStr Gelsolin Plays a Role in the Actin Polymerization Complex of Hair Cell Stereocilia
title_full_unstemmed Gelsolin Plays a Role in the Actin Polymerization Complex of Hair Cell Stereocilia
title_short Gelsolin Plays a Role in the Actin Polymerization Complex of Hair Cell Stereocilia
title_sort gelsolin plays a role in the actin polymerization complex of hair cell stereocilia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2905391/
https://www.ncbi.nlm.nih.gov/pubmed/20661277
http://dx.doi.org/10.1371/journal.pone.0011627
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