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HOMER2, a Stereociliary Scaffolding Protein, Is Essential for Normal Hearing in Humans and Mice

Hereditary hearing loss is a clinically and genetically heterogeneous disorder. More than 80 genes have been implicated to date, and with the advent of targeted genomic enrichment and massively parallel sequencing (TGE+MPS) the rate of novel deafness-gene identification has accelerated. Here we repo...

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Autores principales: Azaiez, Hela, Decker, Amanda R., Booth, Kevin T., Simpson, Allen C., Shearer, A. Eliot, Huygen, Patrick L. M., Bu, Fengxiao, Hildebrand, Michael S., Ranum, Paul T., Shibata, Seiji B., Turner, Ann, Zhang, Yuzhou, Kimberling, William J., Cornell, Robert A., Smith, Richard J. H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4376867/
https://www.ncbi.nlm.nih.gov/pubmed/25816005
http://dx.doi.org/10.1371/journal.pgen.1005137
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author Azaiez, Hela
Decker, Amanda R.
Booth, Kevin T.
Simpson, Allen C.
Shearer, A. Eliot
Huygen, Patrick L. M.
Bu, Fengxiao
Hildebrand, Michael S.
Ranum, Paul T.
Shibata, Seiji B.
Turner, Ann
Zhang, Yuzhou
Kimberling, William J.
Cornell, Robert A.
Smith, Richard J. H.
author_facet Azaiez, Hela
Decker, Amanda R.
Booth, Kevin T.
Simpson, Allen C.
Shearer, A. Eliot
Huygen, Patrick L. M.
Bu, Fengxiao
Hildebrand, Michael S.
Ranum, Paul T.
Shibata, Seiji B.
Turner, Ann
Zhang, Yuzhou
Kimberling, William J.
Cornell, Robert A.
Smith, Richard J. H.
author_sort Azaiez, Hela
collection PubMed
description Hereditary hearing loss is a clinically and genetically heterogeneous disorder. More than 80 genes have been implicated to date, and with the advent of targeted genomic enrichment and massively parallel sequencing (TGE+MPS) the rate of novel deafness-gene identification has accelerated. Here we report a family segregating post-lingual progressive autosomal dominant non-syndromic hearing loss (ADNSHL). After first excluding plausible variants in known deafness-causing genes using TGE+MPS, we completed whole exome sequencing in three hearing-impaired family members. Only a single variant, p.Arg185Pro in HOMER2, segregated with the hearing-loss phenotype in the extended family. This amino acid change alters a highly conserved residue in the coiled-coil domain of HOMER2 that is essential for protein multimerization and the HOMER2-CDC42 interaction. As a scaffolding protein, HOMER2 is involved in intracellular calcium homeostasis and cytoskeletal organization. Consistent with this function, we found robust expression in stereocilia of hair cells in the murine inner ear and observed that over-expression of mutant p.Pro185 HOMER2 mRNA causes anatomical changes of the inner ear and neuromasts in zebrafish embryos. Furthermore, mouse mutants homozygous for the targeted deletion of Homer2 present with early-onset rapidly progressive hearing loss. These data provide compelling evidence that HOMER2 is required for normal hearing and that its sequence alteration in humans leads to ADNSHL through a dominant-negative mode of action.
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spelling pubmed-43768672015-04-04 HOMER2, a Stereociliary Scaffolding Protein, Is Essential for Normal Hearing in Humans and Mice Azaiez, Hela Decker, Amanda R. Booth, Kevin T. Simpson, Allen C. Shearer, A. Eliot Huygen, Patrick L. M. Bu, Fengxiao Hildebrand, Michael S. Ranum, Paul T. Shibata, Seiji B. Turner, Ann Zhang, Yuzhou Kimberling, William J. Cornell, Robert A. Smith, Richard J. H. PLoS Genet Research Article Hereditary hearing loss is a clinically and genetically heterogeneous disorder. More than 80 genes have been implicated to date, and with the advent of targeted genomic enrichment and massively parallel sequencing (TGE+MPS) the rate of novel deafness-gene identification has accelerated. Here we report a family segregating post-lingual progressive autosomal dominant non-syndromic hearing loss (ADNSHL). After first excluding plausible variants in known deafness-causing genes using TGE+MPS, we completed whole exome sequencing in three hearing-impaired family members. Only a single variant, p.Arg185Pro in HOMER2, segregated with the hearing-loss phenotype in the extended family. This amino acid change alters a highly conserved residue in the coiled-coil domain of HOMER2 that is essential for protein multimerization and the HOMER2-CDC42 interaction. As a scaffolding protein, HOMER2 is involved in intracellular calcium homeostasis and cytoskeletal organization. Consistent with this function, we found robust expression in stereocilia of hair cells in the murine inner ear and observed that over-expression of mutant p.Pro185 HOMER2 mRNA causes anatomical changes of the inner ear and neuromasts in zebrafish embryos. Furthermore, mouse mutants homozygous for the targeted deletion of Homer2 present with early-onset rapidly progressive hearing loss. These data provide compelling evidence that HOMER2 is required for normal hearing and that its sequence alteration in humans leads to ADNSHL through a dominant-negative mode of action. Public Library of Science 2015-03-27 /pmc/articles/PMC4376867/ /pubmed/25816005 http://dx.doi.org/10.1371/journal.pgen.1005137 Text en © 2015 Azaiez 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
Azaiez, Hela
Decker, Amanda R.
Booth, Kevin T.
Simpson, Allen C.
Shearer, A. Eliot
Huygen, Patrick L. M.
Bu, Fengxiao
Hildebrand, Michael S.
Ranum, Paul T.
Shibata, Seiji B.
Turner, Ann
Zhang, Yuzhou
Kimberling, William J.
Cornell, Robert A.
Smith, Richard J. H.
HOMER2, a Stereociliary Scaffolding Protein, Is Essential for Normal Hearing in Humans and Mice
title HOMER2, a Stereociliary Scaffolding Protein, Is Essential for Normal Hearing in Humans and Mice
title_full HOMER2, a Stereociliary Scaffolding Protein, Is Essential for Normal Hearing in Humans and Mice
title_fullStr HOMER2, a Stereociliary Scaffolding Protein, Is Essential for Normal Hearing in Humans and Mice
title_full_unstemmed HOMER2, a Stereociliary Scaffolding Protein, Is Essential for Normal Hearing in Humans and Mice
title_short HOMER2, a Stereociliary Scaffolding Protein, Is Essential for Normal Hearing in Humans and Mice
title_sort homer2, a stereociliary scaffolding protein, is essential for normal hearing in humans and mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4376867/
https://www.ncbi.nlm.nih.gov/pubmed/25816005
http://dx.doi.org/10.1371/journal.pgen.1005137
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