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Ciliary Proteins Repurposed by the Synaptic Ribbon: Trafficking Myristoylated Proteins at Rod Photoreceptor Synapses

The Unc119 protein mediates transport of myristoylated proteins to the photoreceptor outer segment, a specialized primary cilium. This transport activity is regulated by the GTPase Arl3 as well as by Arl13b and Rp2 that control Arl3 activation/inactivation. Interestingly, Unc119 is also enriched in...

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Autores principales: Suiwal, Shweta, Dembla, Mayur, Schwarz, Karin, Katiyar, Rashmi, Jung, Martin, Carius, Yvonne, Maxeiner, Stephan, Lauterbach, Marcel A., Lancaster, C. Roy D., Schmitz, Frank
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9266639/
https://www.ncbi.nlm.nih.gov/pubmed/35806143
http://dx.doi.org/10.3390/ijms23137135
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author Suiwal, Shweta
Dembla, Mayur
Schwarz, Karin
Katiyar, Rashmi
Jung, Martin
Carius, Yvonne
Maxeiner, Stephan
Lauterbach, Marcel A.
Lancaster, C. Roy D.
Schmitz, Frank
author_facet Suiwal, Shweta
Dembla, Mayur
Schwarz, Karin
Katiyar, Rashmi
Jung, Martin
Carius, Yvonne
Maxeiner, Stephan
Lauterbach, Marcel A.
Lancaster, C. Roy D.
Schmitz, Frank
author_sort Suiwal, Shweta
collection PubMed
description The Unc119 protein mediates transport of myristoylated proteins to the photoreceptor outer segment, a specialized primary cilium. This transport activity is regulated by the GTPase Arl3 as well as by Arl13b and Rp2 that control Arl3 activation/inactivation. Interestingly, Unc119 is also enriched in photoreceptor synapses and can bind to RIBEYE, the main component of synaptic ribbons. In the present study, we analyzed whether the known regulatory proteins, that control the Unc119-dependent myristoylated protein transport at the primary cilium, are also present at the photoreceptor synaptic ribbon complex by using high-resolution immunofluorescence and immunogold electron microscopy. We found Arl3 and Arl13b to be enriched at the synaptic ribbon whereas Rp2 was predominantly found on vesicles distributed within the entire terminal. These findings indicate that the synaptic ribbon could be involved in the discharge of Unc119-bound lipid-modified proteins. In agreement with this hypothesis, we found Nphp3 (Nephrocystin-3), a myristoylated, Unc119-dependent cargo protein enriched at the basal portion of the ribbon in close vicinity to the active zone. Mutations in Nphp3 are known to be associated with Senior–Løken Syndrome 3 (SLS3). Visual impairment and blindness in SLS3 might thus not only result from ciliary dysfunctions but also from malfunctions of the photoreceptor synapse.
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spelling pubmed-92666392022-07-09 Ciliary Proteins Repurposed by the Synaptic Ribbon: Trafficking Myristoylated Proteins at Rod Photoreceptor Synapses Suiwal, Shweta Dembla, Mayur Schwarz, Karin Katiyar, Rashmi Jung, Martin Carius, Yvonne Maxeiner, Stephan Lauterbach, Marcel A. Lancaster, C. Roy D. Schmitz, Frank Int J Mol Sci Article The Unc119 protein mediates transport of myristoylated proteins to the photoreceptor outer segment, a specialized primary cilium. This transport activity is regulated by the GTPase Arl3 as well as by Arl13b and Rp2 that control Arl3 activation/inactivation. Interestingly, Unc119 is also enriched in photoreceptor synapses and can bind to RIBEYE, the main component of synaptic ribbons. In the present study, we analyzed whether the known regulatory proteins, that control the Unc119-dependent myristoylated protein transport at the primary cilium, are also present at the photoreceptor synaptic ribbon complex by using high-resolution immunofluorescence and immunogold electron microscopy. We found Arl3 and Arl13b to be enriched at the synaptic ribbon whereas Rp2 was predominantly found on vesicles distributed within the entire terminal. These findings indicate that the synaptic ribbon could be involved in the discharge of Unc119-bound lipid-modified proteins. In agreement with this hypothesis, we found Nphp3 (Nephrocystin-3), a myristoylated, Unc119-dependent cargo protein enriched at the basal portion of the ribbon in close vicinity to the active zone. Mutations in Nphp3 are known to be associated with Senior–Løken Syndrome 3 (SLS3). Visual impairment and blindness in SLS3 might thus not only result from ciliary dysfunctions but also from malfunctions of the photoreceptor synapse. MDPI 2022-06-27 /pmc/articles/PMC9266639/ /pubmed/35806143 http://dx.doi.org/10.3390/ijms23137135 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Suiwal, Shweta
Dembla, Mayur
Schwarz, Karin
Katiyar, Rashmi
Jung, Martin
Carius, Yvonne
Maxeiner, Stephan
Lauterbach, Marcel A.
Lancaster, C. Roy D.
Schmitz, Frank
Ciliary Proteins Repurposed by the Synaptic Ribbon: Trafficking Myristoylated Proteins at Rod Photoreceptor Synapses
title Ciliary Proteins Repurposed by the Synaptic Ribbon: Trafficking Myristoylated Proteins at Rod Photoreceptor Synapses
title_full Ciliary Proteins Repurposed by the Synaptic Ribbon: Trafficking Myristoylated Proteins at Rod Photoreceptor Synapses
title_fullStr Ciliary Proteins Repurposed by the Synaptic Ribbon: Trafficking Myristoylated Proteins at Rod Photoreceptor Synapses
title_full_unstemmed Ciliary Proteins Repurposed by the Synaptic Ribbon: Trafficking Myristoylated Proteins at Rod Photoreceptor Synapses
title_short Ciliary Proteins Repurposed by the Synaptic Ribbon: Trafficking Myristoylated Proteins at Rod Photoreceptor Synapses
title_sort ciliary proteins repurposed by the synaptic ribbon: trafficking myristoylated proteins at rod photoreceptor synapses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9266639/
https://www.ncbi.nlm.nih.gov/pubmed/35806143
http://dx.doi.org/10.3390/ijms23137135
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