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L-type voltage-gated calcium channel agonists mitigate hearing loss and modify ribbon synapse morphology in the zebrafish model of Usher syndrome type 1

The mariner (myo7aa(−/−)) mutant is a zebrafish model for Usher syndrome type 1 (USH1). To further characterize hair cell synaptic elements in myo7aa(−/−) mutants, we focused on the ribbon synapse and evaluated ultrastructure, number and distribution of immunolabeled ribbons, and postsynaptic densit...

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Autores principales: Koleilat, Alaa, Dugdale, Joseph A., Christenson, Trace A., Bellah, Jeffrey L., Lambert, Aaron M., Masino, Mark A., Ekker, Stephen C., Schimmenti, Lisa A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7710014/
https://www.ncbi.nlm.nih.gov/pubmed/33361086
http://dx.doi.org/10.1242/dmm.043885
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author Koleilat, Alaa
Dugdale, Joseph A.
Christenson, Trace A.
Bellah, Jeffrey L.
Lambert, Aaron M.
Masino, Mark A.
Ekker, Stephen C.
Schimmenti, Lisa A.
author_facet Koleilat, Alaa
Dugdale, Joseph A.
Christenson, Trace A.
Bellah, Jeffrey L.
Lambert, Aaron M.
Masino, Mark A.
Ekker, Stephen C.
Schimmenti, Lisa A.
author_sort Koleilat, Alaa
collection PubMed
description The mariner (myo7aa(−/−)) mutant is a zebrafish model for Usher syndrome type 1 (USH1). To further characterize hair cell synaptic elements in myo7aa(−/−) mutants, we focused on the ribbon synapse and evaluated ultrastructure, number and distribution of immunolabeled ribbons, and postsynaptic densities. By transmission electron microscopy, we determined that myo7aa(−/−) zebrafish have fewer glutamatergic vesicles tethered to ribbon synapses, yet maintain a comparable ribbon area. In myo7aa(−/−) hair cells, immunolocalization of Ctbp2 showed fewer ribbon-containing cells in total and an altered distribution of Ctbp2 puncta compared to wild-type hair cells. myo7aa(−/−) mutants have fewer postsynaptic densities – as assessed by MAGUK immunolabeling – compared to wild-type zebrafish. We quantified the circular swimming behavior of myo7aa(−/−) mutant fish and measured a greater turning angle (absolute smooth orientation). It has previously been shown that L-type voltage-gated calcium channels are necessary for ribbon localization and occurrence of postsynaptic density; thus, we hypothesized and observed that L-type voltage-gated calcium channel agonists change behavioral and synaptic phenotypes in myo7aa(−/−) mutants in a drug-specific manner. Our results indicate that treatment with L-type voltage-gated calcium channel agonists alter hair cell synaptic elements and improve behavioral phenotypes of myo7aa(−/−) mutants. Our data support that L-type voltage-gated calcium channel agonists induce morphological changes at the ribbon synapse – in both the number of tethered vesicles and regarding the distribution of Ctbp2 puncta – shift swimming behavior and improve acoustic startle response.
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spelling pubmed-77100142020-12-03 L-type voltage-gated calcium channel agonists mitigate hearing loss and modify ribbon synapse morphology in the zebrafish model of Usher syndrome type 1 Koleilat, Alaa Dugdale, Joseph A. Christenson, Trace A. Bellah, Jeffrey L. Lambert, Aaron M. Masino, Mark A. Ekker, Stephen C. Schimmenti, Lisa A. Dis Model Mech Research Article The mariner (myo7aa(−/−)) mutant is a zebrafish model for Usher syndrome type 1 (USH1). To further characterize hair cell synaptic elements in myo7aa(−/−) mutants, we focused on the ribbon synapse and evaluated ultrastructure, number and distribution of immunolabeled ribbons, and postsynaptic densities. By transmission electron microscopy, we determined that myo7aa(−/−) zebrafish have fewer glutamatergic vesicles tethered to ribbon synapses, yet maintain a comparable ribbon area. In myo7aa(−/−) hair cells, immunolocalization of Ctbp2 showed fewer ribbon-containing cells in total and an altered distribution of Ctbp2 puncta compared to wild-type hair cells. myo7aa(−/−) mutants have fewer postsynaptic densities – as assessed by MAGUK immunolabeling – compared to wild-type zebrafish. We quantified the circular swimming behavior of myo7aa(−/−) mutant fish and measured a greater turning angle (absolute smooth orientation). It has previously been shown that L-type voltage-gated calcium channels are necessary for ribbon localization and occurrence of postsynaptic density; thus, we hypothesized and observed that L-type voltage-gated calcium channel agonists change behavioral and synaptic phenotypes in myo7aa(−/−) mutants in a drug-specific manner. Our results indicate that treatment with L-type voltage-gated calcium channel agonists alter hair cell synaptic elements and improve behavioral phenotypes of myo7aa(−/−) mutants. Our data support that L-type voltage-gated calcium channel agonists induce morphological changes at the ribbon synapse – in both the number of tethered vesicles and regarding the distribution of Ctbp2 puncta – shift swimming behavior and improve acoustic startle response. The Company of Biologists Ltd 2020-11-27 /pmc/articles/PMC7710014/ /pubmed/33361086 http://dx.doi.org/10.1242/dmm.043885 Text en © 2020. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/4.0This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Koleilat, Alaa
Dugdale, Joseph A.
Christenson, Trace A.
Bellah, Jeffrey L.
Lambert, Aaron M.
Masino, Mark A.
Ekker, Stephen C.
Schimmenti, Lisa A.
L-type voltage-gated calcium channel agonists mitigate hearing loss and modify ribbon synapse morphology in the zebrafish model of Usher syndrome type 1
title L-type voltage-gated calcium channel agonists mitigate hearing loss and modify ribbon synapse morphology in the zebrafish model of Usher syndrome type 1
title_full L-type voltage-gated calcium channel agonists mitigate hearing loss and modify ribbon synapse morphology in the zebrafish model of Usher syndrome type 1
title_fullStr L-type voltage-gated calcium channel agonists mitigate hearing loss and modify ribbon synapse morphology in the zebrafish model of Usher syndrome type 1
title_full_unstemmed L-type voltage-gated calcium channel agonists mitigate hearing loss and modify ribbon synapse morphology in the zebrafish model of Usher syndrome type 1
title_short L-type voltage-gated calcium channel agonists mitigate hearing loss and modify ribbon synapse morphology in the zebrafish model of Usher syndrome type 1
title_sort l-type voltage-gated calcium channel agonists mitigate hearing loss and modify ribbon synapse morphology in the zebrafish model of usher syndrome type 1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7710014/
https://www.ncbi.nlm.nih.gov/pubmed/33361086
http://dx.doi.org/10.1242/dmm.043885
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