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Synaptotagmin-13 Is a Neuroendocrine Marker in Brain, Intestine and Pancreas

Synaptotagmin-13 (Syt13) is an atypical member of the vesicle trafficking synaptotagmin protein family. The expression pattern and the biological function of this Ca(2+)-independent protein are not well resolved. Here, we have generated a novel Syt13-Venus fusion (Syt13-VF) fluorescence reporter all...

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Autores principales: Tarquis-Medina, Marta, Scheibner, Katharina, González-García, Ismael, Bastidas-Ponce, Aimée, Sterr, Michael, Jaki, Jessica, Schirge, Silvia, García-Cáceres, Cristina, Lickert, Heiko, Bakhti, Mostafa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620464/
https://www.ncbi.nlm.nih.gov/pubmed/34830411
http://dx.doi.org/10.3390/ijms222212526
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author Tarquis-Medina, Marta
Scheibner, Katharina
González-García, Ismael
Bastidas-Ponce, Aimée
Sterr, Michael
Jaki, Jessica
Schirge, Silvia
García-Cáceres, Cristina
Lickert, Heiko
Bakhti, Mostafa
author_facet Tarquis-Medina, Marta
Scheibner, Katharina
González-García, Ismael
Bastidas-Ponce, Aimée
Sterr, Michael
Jaki, Jessica
Schirge, Silvia
García-Cáceres, Cristina
Lickert, Heiko
Bakhti, Mostafa
author_sort Tarquis-Medina, Marta
collection PubMed
description Synaptotagmin-13 (Syt13) is an atypical member of the vesicle trafficking synaptotagmin protein family. The expression pattern and the biological function of this Ca(2+)-independent protein are not well resolved. Here, we have generated a novel Syt13-Venus fusion (Syt13-VF) fluorescence reporter allele to track and isolate tissues and cells expressing Syt13 protein. The reporter allele is regulated by endogenous cis-regulatory elements of Syt13 and the fusion protein follows an identical expression pattern of the endogenous Syt13 protein. The homozygous reporter mice are viable and fertile. We identify the expression of the Syt13-VF reporter in different regions of the brain with high expression in tyrosine hydroxylase (TH)-expressing and oxytocin-producing neuroendocrine cells. Moreover, Syt13-VF is highly restricted to all enteroendocrine cells in the adult intestine that can be traced in live imaging. Finally, Syt13-VF protein is expressed in the pancreatic endocrine lineage, allowing their specific isolation by flow sorting. These findings demonstrate high expression levels of Syt13 in the endocrine lineages in three major organs harboring these secretory cells. Collectively, the Syt13-VF reporter mouse line provides a unique and reliable tool to dissect the spatio-temporal expression pattern of Syt13 and enables isolation of Syt13-expressing cells that will aid in deciphering the molecular functions of this protein in the neuroendocrine system.
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spelling pubmed-86204642021-11-27 Synaptotagmin-13 Is a Neuroendocrine Marker in Brain, Intestine and Pancreas Tarquis-Medina, Marta Scheibner, Katharina González-García, Ismael Bastidas-Ponce, Aimée Sterr, Michael Jaki, Jessica Schirge, Silvia García-Cáceres, Cristina Lickert, Heiko Bakhti, Mostafa Int J Mol Sci Article Synaptotagmin-13 (Syt13) is an atypical member of the vesicle trafficking synaptotagmin protein family. The expression pattern and the biological function of this Ca(2+)-independent protein are not well resolved. Here, we have generated a novel Syt13-Venus fusion (Syt13-VF) fluorescence reporter allele to track and isolate tissues and cells expressing Syt13 protein. The reporter allele is regulated by endogenous cis-regulatory elements of Syt13 and the fusion protein follows an identical expression pattern of the endogenous Syt13 protein. The homozygous reporter mice are viable and fertile. We identify the expression of the Syt13-VF reporter in different regions of the brain with high expression in tyrosine hydroxylase (TH)-expressing and oxytocin-producing neuroendocrine cells. Moreover, Syt13-VF is highly restricted to all enteroendocrine cells in the adult intestine that can be traced in live imaging. Finally, Syt13-VF protein is expressed in the pancreatic endocrine lineage, allowing their specific isolation by flow sorting. These findings demonstrate high expression levels of Syt13 in the endocrine lineages in three major organs harboring these secretory cells. Collectively, the Syt13-VF reporter mouse line provides a unique and reliable tool to dissect the spatio-temporal expression pattern of Syt13 and enables isolation of Syt13-expressing cells that will aid in deciphering the molecular functions of this protein in the neuroendocrine system. MDPI 2021-11-20 /pmc/articles/PMC8620464/ /pubmed/34830411 http://dx.doi.org/10.3390/ijms222212526 Text en © 2021 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
Tarquis-Medina, Marta
Scheibner, Katharina
González-García, Ismael
Bastidas-Ponce, Aimée
Sterr, Michael
Jaki, Jessica
Schirge, Silvia
García-Cáceres, Cristina
Lickert, Heiko
Bakhti, Mostafa
Synaptotagmin-13 Is a Neuroendocrine Marker in Brain, Intestine and Pancreas
title Synaptotagmin-13 Is a Neuroendocrine Marker in Brain, Intestine and Pancreas
title_full Synaptotagmin-13 Is a Neuroendocrine Marker in Brain, Intestine and Pancreas
title_fullStr Synaptotagmin-13 Is a Neuroendocrine Marker in Brain, Intestine and Pancreas
title_full_unstemmed Synaptotagmin-13 Is a Neuroendocrine Marker in Brain, Intestine and Pancreas
title_short Synaptotagmin-13 Is a Neuroendocrine Marker in Brain, Intestine and Pancreas
title_sort synaptotagmin-13 is a neuroendocrine marker in brain, intestine and pancreas
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620464/
https://www.ncbi.nlm.nih.gov/pubmed/34830411
http://dx.doi.org/10.3390/ijms222212526
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