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Identification and Immunocytochemical Characterization of Piccolino, a Novel Piccolo Splice Variant Selectively Expressed at Sensory Ribbon Synapses of the Eye and Ear

Piccolo is one of the largest cytomatrix proteins present at active zones of chemical synapses, where it is suggested to play a role in recruiting and integrating molecules relevant for both synaptic vesicle exo- and endocytosis. Here we examined the retina of a Piccolo-mutant mouse with a targeted...

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Autores principales: Regus-Leidig, Hanna, Ott, Corinna, Löhner, Martina, Atorf, Jenny, Fuchs, Michaela, Sedmak, Tina, Kremers, Jan, Fejtová, Anna, Gundelfinger, Eckart D., Brandstätter, Johann H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3735604/
https://www.ncbi.nlm.nih.gov/pubmed/23936420
http://dx.doi.org/10.1371/journal.pone.0070373
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author Regus-Leidig, Hanna
Ott, Corinna
Löhner, Martina
Atorf, Jenny
Fuchs, Michaela
Sedmak, Tina
Kremers, Jan
Fejtová, Anna
Gundelfinger, Eckart D.
Brandstätter, Johann H.
author_facet Regus-Leidig, Hanna
Ott, Corinna
Löhner, Martina
Atorf, Jenny
Fuchs, Michaela
Sedmak, Tina
Kremers, Jan
Fejtová, Anna
Gundelfinger, Eckart D.
Brandstätter, Johann H.
author_sort Regus-Leidig, Hanna
collection PubMed
description Piccolo is one of the largest cytomatrix proteins present at active zones of chemical synapses, where it is suggested to play a role in recruiting and integrating molecules relevant for both synaptic vesicle exo- and endocytosis. Here we examined the retina of a Piccolo-mutant mouse with a targeted deletion of exon 14 in the Pclo gene. Piccolo deficiency resulted in its profound loss at conventional chemical amacrine cell synapses but retinal ribbon synapses were structurally and functionally unaffected. This led to the identification of a shorter, ribbon-specific Piccolo variant, Piccolino, present in retinal photoreceptor cells, bipolar cells, as well as in inner hair cells of the inner ear. By RT-PCR analysis and the generation of a Piccolino-specific antibody we show that non-splicing of intron 5/6 leads to premature translation termination and generation of the C-terminally truncated protein specifically expressed at active zones of ribbon synapse containing cell types. With in situ proximity ligation assays we provide evidence that this truncation leads to the absence of interaction sites for Bassoon, Munc13, and presumably also ELKS/CAST, RIM2, and the L-type Ca(2) (+) channel which exist in the full-length Piccolo at active zones of conventional chemical synapses. The putative lack of interactions with proteins of the active zone suggests a function of Piccolino at ribbon synapses of sensory neurons different from Piccolo’s function at conventional chemical synapses.
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spelling pubmed-37356042013-08-09 Identification and Immunocytochemical Characterization of Piccolino, a Novel Piccolo Splice Variant Selectively Expressed at Sensory Ribbon Synapses of the Eye and Ear Regus-Leidig, Hanna Ott, Corinna Löhner, Martina Atorf, Jenny Fuchs, Michaela Sedmak, Tina Kremers, Jan Fejtová, Anna Gundelfinger, Eckart D. Brandstätter, Johann H. PLoS One Research Article Piccolo is one of the largest cytomatrix proteins present at active zones of chemical synapses, where it is suggested to play a role in recruiting and integrating molecules relevant for both synaptic vesicle exo- and endocytosis. Here we examined the retina of a Piccolo-mutant mouse with a targeted deletion of exon 14 in the Pclo gene. Piccolo deficiency resulted in its profound loss at conventional chemical amacrine cell synapses but retinal ribbon synapses were structurally and functionally unaffected. This led to the identification of a shorter, ribbon-specific Piccolo variant, Piccolino, present in retinal photoreceptor cells, bipolar cells, as well as in inner hair cells of the inner ear. By RT-PCR analysis and the generation of a Piccolino-specific antibody we show that non-splicing of intron 5/6 leads to premature translation termination and generation of the C-terminally truncated protein specifically expressed at active zones of ribbon synapse containing cell types. With in situ proximity ligation assays we provide evidence that this truncation leads to the absence of interaction sites for Bassoon, Munc13, and presumably also ELKS/CAST, RIM2, and the L-type Ca(2) (+) channel which exist in the full-length Piccolo at active zones of conventional chemical synapses. The putative lack of interactions with proteins of the active zone suggests a function of Piccolino at ribbon synapses of sensory neurons different from Piccolo’s function at conventional chemical synapses. Public Library of Science 2013-08-06 /pmc/articles/PMC3735604/ /pubmed/23936420 http://dx.doi.org/10.1371/journal.pone.0070373 Text en © 2013 Regus-Leidig 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
Regus-Leidig, Hanna
Ott, Corinna
Löhner, Martina
Atorf, Jenny
Fuchs, Michaela
Sedmak, Tina
Kremers, Jan
Fejtová, Anna
Gundelfinger, Eckart D.
Brandstätter, Johann H.
Identification and Immunocytochemical Characterization of Piccolino, a Novel Piccolo Splice Variant Selectively Expressed at Sensory Ribbon Synapses of the Eye and Ear
title Identification and Immunocytochemical Characterization of Piccolino, a Novel Piccolo Splice Variant Selectively Expressed at Sensory Ribbon Synapses of the Eye and Ear
title_full Identification and Immunocytochemical Characterization of Piccolino, a Novel Piccolo Splice Variant Selectively Expressed at Sensory Ribbon Synapses of the Eye and Ear
title_fullStr Identification and Immunocytochemical Characterization of Piccolino, a Novel Piccolo Splice Variant Selectively Expressed at Sensory Ribbon Synapses of the Eye and Ear
title_full_unstemmed Identification and Immunocytochemical Characterization of Piccolino, a Novel Piccolo Splice Variant Selectively Expressed at Sensory Ribbon Synapses of the Eye and Ear
title_short Identification and Immunocytochemical Characterization of Piccolino, a Novel Piccolo Splice Variant Selectively Expressed at Sensory Ribbon Synapses of the Eye and Ear
title_sort identification and immunocytochemical characterization of piccolino, a novel piccolo splice variant selectively expressed at sensory ribbon synapses of the eye and ear
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3735604/
https://www.ncbi.nlm.nih.gov/pubmed/23936420
http://dx.doi.org/10.1371/journal.pone.0070373
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