Cargando…

The lhfpl5 Ohnologs lhfpl5a and lhfpl5b Are Required for Mechanotransduction in Distinct Populations of Sensory Hair Cells in Zebrafish

Hair cells sense and transmit auditory, vestibular, and hydrodynamic information by converting mechanical stimuli into electrical signals. This process of mechano-electrical transduction (MET) requires a mechanically gated channel localized in the apical stereocilia of hair cells. In mice, lipoma HM...

Descripción completa

Detalles Bibliográficos
Autores principales: Erickson, Timothy, Pacentine, Itallia V., Venuto, Alexandra, Clemens, Rachel, Nicolson, Teresa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6974483/
https://www.ncbi.nlm.nih.gov/pubmed/32009898
http://dx.doi.org/10.3389/fnmol.2019.00320
_version_ 1783490105174917120
author Erickson, Timothy
Pacentine, Itallia V.
Venuto, Alexandra
Clemens, Rachel
Nicolson, Teresa
author_facet Erickson, Timothy
Pacentine, Itallia V.
Venuto, Alexandra
Clemens, Rachel
Nicolson, Teresa
author_sort Erickson, Timothy
collection PubMed
description Hair cells sense and transmit auditory, vestibular, and hydrodynamic information by converting mechanical stimuli into electrical signals. This process of mechano-electrical transduction (MET) requires a mechanically gated channel localized in the apical stereocilia of hair cells. In mice, lipoma HMGIC fusion partner-like 5 (LHFPL5) acts as an auxiliary subunit of the MET channel whose primary role is to correctly localize PCDH15 and TMC1 to the mechanotransduction complex. Zebrafish have two lhfpl5 genes (lhfpl5a and lhfpl5b), but their individual contributions to MET channel assembly and function have not been analyzed. Here we show that the zebrafish lhfpl5 genes are expressed in discrete populations of hair cells: lhfpl5a expression is restricted to auditory and vestibular hair cells in the inner ear, while lhfpl5b expression is specific to hair cells of the lateral line organ. Consequently, lhfpl5a mutants exhibit defects in auditory and vestibular function, while disruption of lhfpl5b affects hair cells only in the lateral line neuromasts. In contrast to previous reports in mice, localization of Tmc1 does not depend upon Lhfpl5 function in either the inner ear or lateral line organ. In both lhfpl5a and lhfpl5b mutants, GFP-tagged Tmc1 and Tmc2b proteins still localize to the stereocilia of hair cells. Using a stably integrated GFP-Lhfpl5a transgene, we show that the tip link cadherins Pcdh15a and Cdh23, along with the Myo7aa motor protein, are required for correct Lhfpl5a localization at the tips of stereocilia. Our work corroborates the evolutionarily conserved co-dependence between Lhfpl5 and Pcdh15, but also reveals novel requirements for Cdh23 and Myo7aa to correctly localize Lhfpl5a. In addition, our data suggest that targeting of Tmc1 and Tmc2b proteins to stereocilia in zebrafish hair cells occurs independently of Lhfpl5 proteins.
format Online
Article
Text
id pubmed-6974483
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-69744832020-01-31 The lhfpl5 Ohnologs lhfpl5a and lhfpl5b Are Required for Mechanotransduction in Distinct Populations of Sensory Hair Cells in Zebrafish Erickson, Timothy Pacentine, Itallia V. Venuto, Alexandra Clemens, Rachel Nicolson, Teresa Front Mol Neurosci Neuroscience Hair cells sense and transmit auditory, vestibular, and hydrodynamic information by converting mechanical stimuli into electrical signals. This process of mechano-electrical transduction (MET) requires a mechanically gated channel localized in the apical stereocilia of hair cells. In mice, lipoma HMGIC fusion partner-like 5 (LHFPL5) acts as an auxiliary subunit of the MET channel whose primary role is to correctly localize PCDH15 and TMC1 to the mechanotransduction complex. Zebrafish have two lhfpl5 genes (lhfpl5a and lhfpl5b), but their individual contributions to MET channel assembly and function have not been analyzed. Here we show that the zebrafish lhfpl5 genes are expressed in discrete populations of hair cells: lhfpl5a expression is restricted to auditory and vestibular hair cells in the inner ear, while lhfpl5b expression is specific to hair cells of the lateral line organ. Consequently, lhfpl5a mutants exhibit defects in auditory and vestibular function, while disruption of lhfpl5b affects hair cells only in the lateral line neuromasts. In contrast to previous reports in mice, localization of Tmc1 does not depend upon Lhfpl5 function in either the inner ear or lateral line organ. In both lhfpl5a and lhfpl5b mutants, GFP-tagged Tmc1 and Tmc2b proteins still localize to the stereocilia of hair cells. Using a stably integrated GFP-Lhfpl5a transgene, we show that the tip link cadherins Pcdh15a and Cdh23, along with the Myo7aa motor protein, are required for correct Lhfpl5a localization at the tips of stereocilia. Our work corroborates the evolutionarily conserved co-dependence between Lhfpl5 and Pcdh15, but also reveals novel requirements for Cdh23 and Myo7aa to correctly localize Lhfpl5a. In addition, our data suggest that targeting of Tmc1 and Tmc2b proteins to stereocilia in zebrafish hair cells occurs independently of Lhfpl5 proteins. Frontiers Media S.A. 2020-01-15 /pmc/articles/PMC6974483/ /pubmed/32009898 http://dx.doi.org/10.3389/fnmol.2019.00320 Text en Copyright © 2020 Erickson, Pacentine, Venuto, Clemens and Nicolson. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distributionor reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Erickson, Timothy
Pacentine, Itallia V.
Venuto, Alexandra
Clemens, Rachel
Nicolson, Teresa
The lhfpl5 Ohnologs lhfpl5a and lhfpl5b Are Required for Mechanotransduction in Distinct Populations of Sensory Hair Cells in Zebrafish
title The lhfpl5 Ohnologs lhfpl5a and lhfpl5b Are Required for Mechanotransduction in Distinct Populations of Sensory Hair Cells in Zebrafish
title_full The lhfpl5 Ohnologs lhfpl5a and lhfpl5b Are Required for Mechanotransduction in Distinct Populations of Sensory Hair Cells in Zebrafish
title_fullStr The lhfpl5 Ohnologs lhfpl5a and lhfpl5b Are Required for Mechanotransduction in Distinct Populations of Sensory Hair Cells in Zebrafish
title_full_unstemmed The lhfpl5 Ohnologs lhfpl5a and lhfpl5b Are Required for Mechanotransduction in Distinct Populations of Sensory Hair Cells in Zebrafish
title_short The lhfpl5 Ohnologs lhfpl5a and lhfpl5b Are Required for Mechanotransduction in Distinct Populations of Sensory Hair Cells in Zebrafish
title_sort lhfpl5 ohnologs lhfpl5a and lhfpl5b are required for mechanotransduction in distinct populations of sensory hair cells in zebrafish
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6974483/
https://www.ncbi.nlm.nih.gov/pubmed/32009898
http://dx.doi.org/10.3389/fnmol.2019.00320
work_keys_str_mv AT ericksontimothy thelhfpl5ohnologslhfpl5aandlhfpl5barerequiredformechanotransductionindistinctpopulationsofsensoryhaircellsinzebrafish
AT pacentineitalliav thelhfpl5ohnologslhfpl5aandlhfpl5barerequiredformechanotransductionindistinctpopulationsofsensoryhaircellsinzebrafish
AT venutoalexandra thelhfpl5ohnologslhfpl5aandlhfpl5barerequiredformechanotransductionindistinctpopulationsofsensoryhaircellsinzebrafish
AT clemensrachel thelhfpl5ohnologslhfpl5aandlhfpl5barerequiredformechanotransductionindistinctpopulationsofsensoryhaircellsinzebrafish
AT nicolsonteresa thelhfpl5ohnologslhfpl5aandlhfpl5barerequiredformechanotransductionindistinctpopulationsofsensoryhaircellsinzebrafish
AT ericksontimothy lhfpl5ohnologslhfpl5aandlhfpl5barerequiredformechanotransductionindistinctpopulationsofsensoryhaircellsinzebrafish
AT pacentineitalliav lhfpl5ohnologslhfpl5aandlhfpl5barerequiredformechanotransductionindistinctpopulationsofsensoryhaircellsinzebrafish
AT venutoalexandra lhfpl5ohnologslhfpl5aandlhfpl5barerequiredformechanotransductionindistinctpopulationsofsensoryhaircellsinzebrafish
AT clemensrachel lhfpl5ohnologslhfpl5aandlhfpl5barerequiredformechanotransductionindistinctpopulationsofsensoryhaircellsinzebrafish
AT nicolsonteresa lhfpl5ohnologslhfpl5aandlhfpl5barerequiredformechanotransductionindistinctpopulationsofsensoryhaircellsinzebrafish