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Assay for dual cargo sorting into endoplasmic reticulum exit sites imaged by 3D Super-resolution Confocal Live Imaging Microscopy (SCLIM)

Understanding how in eukaryotic cells thousands of proteins are sorted from each other through the secretory pathway and delivered to their correct destinations is a central issue of cell biology. We have further investigated in yeast how two distinct types of cargo proteins are sorted into differen...

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Autores principales: Rodriguez-Gallardo, Sofia, Kurokawa, Kazuo, Sabido-Bozo, Susana, Cortes-Gomez, Alejandro, Perez-Linero, Ana Maria, Aguilera-Romero, Auxiliadora, Lopez, Sergio, Waga, Miho, Nakano, Akihiko, Muñiz, Manuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8486111/
https://www.ncbi.nlm.nih.gov/pubmed/34597321
http://dx.doi.org/10.1371/journal.pone.0258111
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author Rodriguez-Gallardo, Sofia
Kurokawa, Kazuo
Sabido-Bozo, Susana
Cortes-Gomez, Alejandro
Perez-Linero, Ana Maria
Aguilera-Romero, Auxiliadora
Lopez, Sergio
Waga, Miho
Nakano, Akihiko
Muñiz, Manuel
author_facet Rodriguez-Gallardo, Sofia
Kurokawa, Kazuo
Sabido-Bozo, Susana
Cortes-Gomez, Alejandro
Perez-Linero, Ana Maria
Aguilera-Romero, Auxiliadora
Lopez, Sergio
Waga, Miho
Nakano, Akihiko
Muñiz, Manuel
author_sort Rodriguez-Gallardo, Sofia
collection PubMed
description Understanding how in eukaryotic cells thousands of proteins are sorted from each other through the secretory pathway and delivered to their correct destinations is a central issue of cell biology. We have further investigated in yeast how two distinct types of cargo proteins are sorted into different endoplasmic reticulum (ER) exit sites (ERES) for their differential ER export to the Golgi apparatus. We used an optimized protocol that combines a live cell dual-cargo ER export system with a 3D simultaneous multi-color high-resolution live cell microscopy called Super-resolution Confocal Live Imaging Microscopy (SCLIM). Here, we describe this protocol, which is based on the reversible ER retention of two de novo co-expressed cargos by blocking COPII function upon incubation of the thermo-sensitive COPII allele sec31-1 at restrictive temperature (37°C). ER export is restored by shifting down to permissive temperature (24°C) and progressive incorporation of the two different types of cargos into the fluorescently labelled ERES can be then simultaneously captured at 3D high spatial resolution by SCLIM microscopy. By using this protocol, we have shown that newly synthesized glycosylphosphatidylinositol (GPI)-anchored proteins having a very long chain ceramide lipid moiety are clustered and sorted into specialized ERES that are distinct from those used by transmembrane secretory proteins. Furthermore, we showed that the chain length of the ceramide present in the ER membrane is critical for this sorting selectivity. Therefore, thanks to the presented method we could obtain the first direct in vivo evidence for lipid chain length-based protein cargo sorting into selective ERES.
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spelling pubmed-84861112021-10-02 Assay for dual cargo sorting into endoplasmic reticulum exit sites imaged by 3D Super-resolution Confocal Live Imaging Microscopy (SCLIM) Rodriguez-Gallardo, Sofia Kurokawa, Kazuo Sabido-Bozo, Susana Cortes-Gomez, Alejandro Perez-Linero, Ana Maria Aguilera-Romero, Auxiliadora Lopez, Sergio Waga, Miho Nakano, Akihiko Muñiz, Manuel PLoS One Lab Protocol Understanding how in eukaryotic cells thousands of proteins are sorted from each other through the secretory pathway and delivered to their correct destinations is a central issue of cell biology. We have further investigated in yeast how two distinct types of cargo proteins are sorted into different endoplasmic reticulum (ER) exit sites (ERES) for their differential ER export to the Golgi apparatus. We used an optimized protocol that combines a live cell dual-cargo ER export system with a 3D simultaneous multi-color high-resolution live cell microscopy called Super-resolution Confocal Live Imaging Microscopy (SCLIM). Here, we describe this protocol, which is based on the reversible ER retention of two de novo co-expressed cargos by blocking COPII function upon incubation of the thermo-sensitive COPII allele sec31-1 at restrictive temperature (37°C). ER export is restored by shifting down to permissive temperature (24°C) and progressive incorporation of the two different types of cargos into the fluorescently labelled ERES can be then simultaneously captured at 3D high spatial resolution by SCLIM microscopy. By using this protocol, we have shown that newly synthesized glycosylphosphatidylinositol (GPI)-anchored proteins having a very long chain ceramide lipid moiety are clustered and sorted into specialized ERES that are distinct from those used by transmembrane secretory proteins. Furthermore, we showed that the chain length of the ceramide present in the ER membrane is critical for this sorting selectivity. Therefore, thanks to the presented method we could obtain the first direct in vivo evidence for lipid chain length-based protein cargo sorting into selective ERES. Public Library of Science 2021-10-01 /pmc/articles/PMC8486111/ /pubmed/34597321 http://dx.doi.org/10.1371/journal.pone.0258111 Text en © 2021 Rodriguez-Gallardo et al https://creativecommons.org/licenses/by/4.0/This 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 the original author and source are credited.
spellingShingle Lab Protocol
Rodriguez-Gallardo, Sofia
Kurokawa, Kazuo
Sabido-Bozo, Susana
Cortes-Gomez, Alejandro
Perez-Linero, Ana Maria
Aguilera-Romero, Auxiliadora
Lopez, Sergio
Waga, Miho
Nakano, Akihiko
Muñiz, Manuel
Assay for dual cargo sorting into endoplasmic reticulum exit sites imaged by 3D Super-resolution Confocal Live Imaging Microscopy (SCLIM)
title Assay for dual cargo sorting into endoplasmic reticulum exit sites imaged by 3D Super-resolution Confocal Live Imaging Microscopy (SCLIM)
title_full Assay for dual cargo sorting into endoplasmic reticulum exit sites imaged by 3D Super-resolution Confocal Live Imaging Microscopy (SCLIM)
title_fullStr Assay for dual cargo sorting into endoplasmic reticulum exit sites imaged by 3D Super-resolution Confocal Live Imaging Microscopy (SCLIM)
title_full_unstemmed Assay for dual cargo sorting into endoplasmic reticulum exit sites imaged by 3D Super-resolution Confocal Live Imaging Microscopy (SCLIM)
title_short Assay for dual cargo sorting into endoplasmic reticulum exit sites imaged by 3D Super-resolution Confocal Live Imaging Microscopy (SCLIM)
title_sort assay for dual cargo sorting into endoplasmic reticulum exit sites imaged by 3d super-resolution confocal live imaging microscopy (sclim)
topic Lab Protocol
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8486111/
https://www.ncbi.nlm.nih.gov/pubmed/34597321
http://dx.doi.org/10.1371/journal.pone.0258111
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