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Internally tagged Vps10p-domain receptors reveal uptake of the neurotrophin BDNF

The Vps10p-domain (Vps10p-D) receptor family consists of Sortilin, SorLA, SorCS1, SorCS2, and SorCS3. They mediate internalization and intracellular sorting of specific cargo in various cell types, but underlying molecular determinants are incompletely understood. Deciphering the dynamic intracellul...

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Autores principales: Klein, Marcel, Failla, Antonio Virgilio, Hermey, Guido
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10540051/
https://www.ncbi.nlm.nih.gov/pubmed/37660918
http://dx.doi.org/10.1016/j.jbc.2023.105216
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author Klein, Marcel
Failla, Antonio Virgilio
Hermey, Guido
author_facet Klein, Marcel
Failla, Antonio Virgilio
Hermey, Guido
author_sort Klein, Marcel
collection PubMed
description The Vps10p-domain (Vps10p-D) receptor family consists of Sortilin, SorLA, SorCS1, SorCS2, and SorCS3. They mediate internalization and intracellular sorting of specific cargo in various cell types, but underlying molecular determinants are incompletely understood. Deciphering the dynamic intracellular itineraries of Vps10p-D receptors is crucial for understanding their role in physiological and cytopathological processes. However, studying their spatial and temporal dynamics by live imaging has been challenging so far, as terminal tagging with fluorophores presumably impedes several of their protein interactions and thus functions. Here, we addressed the lack of appropriate tools and developed functional versions of all family members internally tagged in their ectodomains. We predict folding of the newly designed receptors by bioinformatics and show their exit from the endoplasmic reticulum. We examined their subcellular localization in immortalized cells and primary cultured neurons by immunocytochemistry and live imaging. This was, as far as known, identical to that of wt counterparts. We observed homodimerization of fluorophore-tagged SorCS2 by coimmunoprecipitation and fluorescence lifetime imaging, suggesting functional leucine-rich domains. Through ligand uptake experiments, live imaging and fluorescence lifetime imaging, we show for the first time that all Vps10p-D receptors interact with the neurotrophin brain-derived neurotrophic factor and mediate its uptake, indicating functionality of the Vps10p-Ds. In summary, we developed versions of all Vps10p-D receptors, with internal fluorophore tags that preserve several functions of the cytoplasmic and extracellular domains. These newly developed fluorophore-tagged receptors are likely to serve as powerful functional tools for accurate live studies of the individual cellular functions of Vps10p-D receptors.
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spelling pubmed-105400512023-09-30 Internally tagged Vps10p-domain receptors reveal uptake of the neurotrophin BDNF Klein, Marcel Failla, Antonio Virgilio Hermey, Guido J Biol Chem Methods and Resources The Vps10p-domain (Vps10p-D) receptor family consists of Sortilin, SorLA, SorCS1, SorCS2, and SorCS3. They mediate internalization and intracellular sorting of specific cargo in various cell types, but underlying molecular determinants are incompletely understood. Deciphering the dynamic intracellular itineraries of Vps10p-D receptors is crucial for understanding their role in physiological and cytopathological processes. However, studying their spatial and temporal dynamics by live imaging has been challenging so far, as terminal tagging with fluorophores presumably impedes several of their protein interactions and thus functions. Here, we addressed the lack of appropriate tools and developed functional versions of all family members internally tagged in their ectodomains. We predict folding of the newly designed receptors by bioinformatics and show their exit from the endoplasmic reticulum. We examined their subcellular localization in immortalized cells and primary cultured neurons by immunocytochemistry and live imaging. This was, as far as known, identical to that of wt counterparts. We observed homodimerization of fluorophore-tagged SorCS2 by coimmunoprecipitation and fluorescence lifetime imaging, suggesting functional leucine-rich domains. Through ligand uptake experiments, live imaging and fluorescence lifetime imaging, we show for the first time that all Vps10p-D receptors interact with the neurotrophin brain-derived neurotrophic factor and mediate its uptake, indicating functionality of the Vps10p-Ds. In summary, we developed versions of all Vps10p-D receptors, with internal fluorophore tags that preserve several functions of the cytoplasmic and extracellular domains. These newly developed fluorophore-tagged receptors are likely to serve as powerful functional tools for accurate live studies of the individual cellular functions of Vps10p-D receptors. American Society for Biochemistry and Molecular Biology 2023-09-01 /pmc/articles/PMC10540051/ /pubmed/37660918 http://dx.doi.org/10.1016/j.jbc.2023.105216 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Methods and Resources
Klein, Marcel
Failla, Antonio Virgilio
Hermey, Guido
Internally tagged Vps10p-domain receptors reveal uptake of the neurotrophin BDNF
title Internally tagged Vps10p-domain receptors reveal uptake of the neurotrophin BDNF
title_full Internally tagged Vps10p-domain receptors reveal uptake of the neurotrophin BDNF
title_fullStr Internally tagged Vps10p-domain receptors reveal uptake of the neurotrophin BDNF
title_full_unstemmed Internally tagged Vps10p-domain receptors reveal uptake of the neurotrophin BDNF
title_short Internally tagged Vps10p-domain receptors reveal uptake of the neurotrophin BDNF
title_sort internally tagged vps10p-domain receptors reveal uptake of the neurotrophin bdnf
topic Methods and Resources
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10540051/
https://www.ncbi.nlm.nih.gov/pubmed/37660918
http://dx.doi.org/10.1016/j.jbc.2023.105216
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