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Novel roles for the radial spoke head protein 9 in neural and neurosensory cilia

Cilia are cell surface organelles with key roles in a range of cellular processes, including generation of fluid flow by motile cilia. The axonemes of motile cilia and immotile kinocilia contain 9 peripheral microtubule doublets, a central microtubule pair, and 9 connecting radial spokes. Aberrant r...

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Autores principales: Sedykh, Irina, TeSlaa, Jessica J., Tatarsky, Rose L., Keller, Abigail N., Toops, Kimberly A., Lakkaraju, Aparna, Nyholm, Molly K., Wolman, Marc A., Grinblat, Yevgenya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5043386/
https://www.ncbi.nlm.nih.gov/pubmed/27687975
http://dx.doi.org/10.1038/srep34437
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author Sedykh, Irina
TeSlaa, Jessica J.
Tatarsky, Rose L.
Keller, Abigail N.
Toops, Kimberly A.
Lakkaraju, Aparna
Nyholm, Molly K.
Wolman, Marc A.
Grinblat, Yevgenya
author_facet Sedykh, Irina
TeSlaa, Jessica J.
Tatarsky, Rose L.
Keller, Abigail N.
Toops, Kimberly A.
Lakkaraju, Aparna
Nyholm, Molly K.
Wolman, Marc A.
Grinblat, Yevgenya
author_sort Sedykh, Irina
collection PubMed
description Cilia are cell surface organelles with key roles in a range of cellular processes, including generation of fluid flow by motile cilia. The axonemes of motile cilia and immotile kinocilia contain 9 peripheral microtubule doublets, a central microtubule pair, and 9 connecting radial spokes. Aberrant radial spoke components RSPH1, 3, 4a and 9 have been linked with primary ciliary dyskinesia (PCD), a disorder characterized by ciliary dysmotility; yet, radial spoke functions remain unclear. Here we show that zebrafish Rsph9 is expressed in cells bearing motile cilia and kinocilia, and localizes to both 9 + 2 and 9 + 0 ciliary axonemes. Using CRISPR mutagenesis, we show that rsph9 is required for motility of presumptive 9 + 2 olfactory cilia and, unexpectedly, 9 + 0 neural cilia. rsph9 is also required for the structural integrity of 9 + 2 and 9 + 0 ciliary axonemes. rsph9 mutant larvae exhibit reduced initiation of the acoustic startle response consistent with hearing impairment, suggesting a novel role for Rsph9 in the kinocilia of the inner ear and/or lateral line neuromasts. These data identify novel roles for Rsph9 in 9 + 0 motile cilia and in sensory kinocilia, and establish a useful zebrafish PCD model.
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spelling pubmed-50433862016-10-05 Novel roles for the radial spoke head protein 9 in neural and neurosensory cilia Sedykh, Irina TeSlaa, Jessica J. Tatarsky, Rose L. Keller, Abigail N. Toops, Kimberly A. Lakkaraju, Aparna Nyholm, Molly K. Wolman, Marc A. Grinblat, Yevgenya Sci Rep Article Cilia are cell surface organelles with key roles in a range of cellular processes, including generation of fluid flow by motile cilia. The axonemes of motile cilia and immotile kinocilia contain 9 peripheral microtubule doublets, a central microtubule pair, and 9 connecting radial spokes. Aberrant radial spoke components RSPH1, 3, 4a and 9 have been linked with primary ciliary dyskinesia (PCD), a disorder characterized by ciliary dysmotility; yet, radial spoke functions remain unclear. Here we show that zebrafish Rsph9 is expressed in cells bearing motile cilia and kinocilia, and localizes to both 9 + 2 and 9 + 0 ciliary axonemes. Using CRISPR mutagenesis, we show that rsph9 is required for motility of presumptive 9 + 2 olfactory cilia and, unexpectedly, 9 + 0 neural cilia. rsph9 is also required for the structural integrity of 9 + 2 and 9 + 0 ciliary axonemes. rsph9 mutant larvae exhibit reduced initiation of the acoustic startle response consistent with hearing impairment, suggesting a novel role for Rsph9 in the kinocilia of the inner ear and/or lateral line neuromasts. These data identify novel roles for Rsph9 in 9 + 0 motile cilia and in sensory kinocilia, and establish a useful zebrafish PCD model. Nature Publishing Group 2016-09-30 /pmc/articles/PMC5043386/ /pubmed/27687975 http://dx.doi.org/10.1038/srep34437 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Sedykh, Irina
TeSlaa, Jessica J.
Tatarsky, Rose L.
Keller, Abigail N.
Toops, Kimberly A.
Lakkaraju, Aparna
Nyholm, Molly K.
Wolman, Marc A.
Grinblat, Yevgenya
Novel roles for the radial spoke head protein 9 in neural and neurosensory cilia
title Novel roles for the radial spoke head protein 9 in neural and neurosensory cilia
title_full Novel roles for the radial spoke head protein 9 in neural and neurosensory cilia
title_fullStr Novel roles for the radial spoke head protein 9 in neural and neurosensory cilia
title_full_unstemmed Novel roles for the radial spoke head protein 9 in neural and neurosensory cilia
title_short Novel roles for the radial spoke head protein 9 in neural and neurosensory cilia
title_sort novel roles for the radial spoke head protein 9 in neural and neurosensory cilia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5043386/
https://www.ncbi.nlm.nih.gov/pubmed/27687975
http://dx.doi.org/10.1038/srep34437
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