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Birbeck Granule-Like “Organized Smooth Endoplasmic Reticulum” Resulting from the Expression of a Cytoplasmic YFP-Tagged Langerin

Langerin is required for the biogenesis of Birbeck granules (BGs), the characteristic organelles of Langerhans cells. We previously used a Langerin-YFP fusion protein having a C-terminal luminal YFP tag to dynamically decipher the molecular and cellular processes which accompany the traffic of Lange...

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Autores principales: Lenormand, Cédric, Spiegelhalter, Coralie, Cinquin, Bertrand, Bardin, Sabine, Bausinger, Huguette, Angénieux, Catherine, Eckly, Anita, Proamer, Fabienne, Wall, David, Lich, Ben, Tourne, Sylvie, Hanau, Daniel, Schwab, Yannick, Salamero, Jean, de la Salle, Henri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3618057/
https://www.ncbi.nlm.nih.gov/pubmed/23577166
http://dx.doi.org/10.1371/journal.pone.0060813
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author Lenormand, Cédric
Spiegelhalter, Coralie
Cinquin, Bertrand
Bardin, Sabine
Bausinger, Huguette
Angénieux, Catherine
Eckly, Anita
Proamer, Fabienne
Wall, David
Lich, Ben
Tourne, Sylvie
Hanau, Daniel
Schwab, Yannick
Salamero, Jean
de la Salle, Henri
author_facet Lenormand, Cédric
Spiegelhalter, Coralie
Cinquin, Bertrand
Bardin, Sabine
Bausinger, Huguette
Angénieux, Catherine
Eckly, Anita
Proamer, Fabienne
Wall, David
Lich, Ben
Tourne, Sylvie
Hanau, Daniel
Schwab, Yannick
Salamero, Jean
de la Salle, Henri
author_sort Lenormand, Cédric
collection PubMed
description Langerin is required for the biogenesis of Birbeck granules (BGs), the characteristic organelles of Langerhans cells. We previously used a Langerin-YFP fusion protein having a C-terminal luminal YFP tag to dynamically decipher the molecular and cellular processes which accompany the traffic of Langerin. In order to elucidate the interactions of Langerin with its trafficking effectors and their structural impact on the biogenesis of BGs, we generated a YFP-Langerin chimera with an N-terminal, cytosolic YFP tag. This latter fusion protein induced the formation of YFP-positive large puncta. Live cell imaging coupled to a fluorescence recovery after photobleaching approach showed that this coalescence of proteins in newly formed compartments was static. In contrast, the YFP-positive structures present in the pericentriolar region of cells expressing Langerin-YFP chimera, displayed fluorescent recovery characteristics compatible with active membrane exchanges. Using correlative light-electron microscopy we showed that the coalescent structures represented highly organized stacks of membranes with a pentalaminar architecture typical of BGs. Continuities between these organelles and the rough endoplasmic reticulum allowed us to identify the stacks of membranes as a form of “Organized Smooth Endoplasmic Reticulum” (OSER), with distinct molecular and physiological properties. The involvement of homotypic interactions between cytoplasmic YFP molecules was demonstrated using an A206K variant of YFP, which restored most of the Langerin traffic and BG characteristics observed in Langerhans cells. Mutation of the carbohydrate recognition domain also blocked the formation of OSER. Hence, a “double-lock” mechanism governs the behavior of YFP-Langerin, where asymmetric homodimerization of the YFP tag and homotypic interactions between the lectin domains of Langerin molecules participate in its retention and the subsequent formation of BG-like OSER. These observations confirm that BG-like structures appear wherever Langerin accumulates and confirm that membrane trafficking effectors dictate their physiology and, illustrate the importance of molecular interactions in the architecture of intracellular membranes.
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spelling pubmed-36180572013-04-10 Birbeck Granule-Like “Organized Smooth Endoplasmic Reticulum” Resulting from the Expression of a Cytoplasmic YFP-Tagged Langerin Lenormand, Cédric Spiegelhalter, Coralie Cinquin, Bertrand Bardin, Sabine Bausinger, Huguette Angénieux, Catherine Eckly, Anita Proamer, Fabienne Wall, David Lich, Ben Tourne, Sylvie Hanau, Daniel Schwab, Yannick Salamero, Jean de la Salle, Henri PLoS One Research Article Langerin is required for the biogenesis of Birbeck granules (BGs), the characteristic organelles of Langerhans cells. We previously used a Langerin-YFP fusion protein having a C-terminal luminal YFP tag to dynamically decipher the molecular and cellular processes which accompany the traffic of Langerin. In order to elucidate the interactions of Langerin with its trafficking effectors and their structural impact on the biogenesis of BGs, we generated a YFP-Langerin chimera with an N-terminal, cytosolic YFP tag. This latter fusion protein induced the formation of YFP-positive large puncta. Live cell imaging coupled to a fluorescence recovery after photobleaching approach showed that this coalescence of proteins in newly formed compartments was static. In contrast, the YFP-positive structures present in the pericentriolar region of cells expressing Langerin-YFP chimera, displayed fluorescent recovery characteristics compatible with active membrane exchanges. Using correlative light-electron microscopy we showed that the coalescent structures represented highly organized stacks of membranes with a pentalaminar architecture typical of BGs. Continuities between these organelles and the rough endoplasmic reticulum allowed us to identify the stacks of membranes as a form of “Organized Smooth Endoplasmic Reticulum” (OSER), with distinct molecular and physiological properties. The involvement of homotypic interactions between cytoplasmic YFP molecules was demonstrated using an A206K variant of YFP, which restored most of the Langerin traffic and BG characteristics observed in Langerhans cells. Mutation of the carbohydrate recognition domain also blocked the formation of OSER. Hence, a “double-lock” mechanism governs the behavior of YFP-Langerin, where asymmetric homodimerization of the YFP tag and homotypic interactions between the lectin domains of Langerin molecules participate in its retention and the subsequent formation of BG-like OSER. These observations confirm that BG-like structures appear wherever Langerin accumulates and confirm that membrane trafficking effectors dictate their physiology and, illustrate the importance of molecular interactions in the architecture of intracellular membranes. Public Library of Science 2013-04-05 /pmc/articles/PMC3618057/ /pubmed/23577166 http://dx.doi.org/10.1371/journal.pone.0060813 Text en © 2013 Lenormand 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
Lenormand, Cédric
Spiegelhalter, Coralie
Cinquin, Bertrand
Bardin, Sabine
Bausinger, Huguette
Angénieux, Catherine
Eckly, Anita
Proamer, Fabienne
Wall, David
Lich, Ben
Tourne, Sylvie
Hanau, Daniel
Schwab, Yannick
Salamero, Jean
de la Salle, Henri
Birbeck Granule-Like “Organized Smooth Endoplasmic Reticulum” Resulting from the Expression of a Cytoplasmic YFP-Tagged Langerin
title Birbeck Granule-Like “Organized Smooth Endoplasmic Reticulum” Resulting from the Expression of a Cytoplasmic YFP-Tagged Langerin
title_full Birbeck Granule-Like “Organized Smooth Endoplasmic Reticulum” Resulting from the Expression of a Cytoplasmic YFP-Tagged Langerin
title_fullStr Birbeck Granule-Like “Organized Smooth Endoplasmic Reticulum” Resulting from the Expression of a Cytoplasmic YFP-Tagged Langerin
title_full_unstemmed Birbeck Granule-Like “Organized Smooth Endoplasmic Reticulum” Resulting from the Expression of a Cytoplasmic YFP-Tagged Langerin
title_short Birbeck Granule-Like “Organized Smooth Endoplasmic Reticulum” Resulting from the Expression of a Cytoplasmic YFP-Tagged Langerin
title_sort birbeck granule-like “organized smooth endoplasmic reticulum” resulting from the expression of a cytoplasmic yfp-tagged langerin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3618057/
https://www.ncbi.nlm.nih.gov/pubmed/23577166
http://dx.doi.org/10.1371/journal.pone.0060813
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