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The ZIP Code of Vesicle Trafficking in Apicomplexa: SEC1/Munc18 and SNARE Proteins

Apicomplexans are obligate intracellular parasites harboring three sets of unique secretory organelles termed micronemes, rhoptries, and dense granules that are dedicated to the establishment of infection in the host cell. Apicomplexans rely on the endolysosomal system to generate the secretory orga...

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Autores principales: Bisio, Hugo, Chaabene, Rouaa Ben, Sabitzki, Ricarda, Maco, Bohumil, Marq, Jean Baptiste, Gilberger, Tim-Wolf, Spielmann, Tobias, Soldati-Favre, Dominique
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7587439/
https://www.ncbi.nlm.nih.gov/pubmed/33082261
http://dx.doi.org/10.1128/mBio.02092-20
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author Bisio, Hugo
Chaabene, Rouaa Ben
Sabitzki, Ricarda
Maco, Bohumil
Marq, Jean Baptiste
Gilberger, Tim-Wolf
Spielmann, Tobias
Soldati-Favre, Dominique
author_facet Bisio, Hugo
Chaabene, Rouaa Ben
Sabitzki, Ricarda
Maco, Bohumil
Marq, Jean Baptiste
Gilberger, Tim-Wolf
Spielmann, Tobias
Soldati-Favre, Dominique
author_sort Bisio, Hugo
collection PubMed
description Apicomplexans are obligate intracellular parasites harboring three sets of unique secretory organelles termed micronemes, rhoptries, and dense granules that are dedicated to the establishment of infection in the host cell. Apicomplexans rely on the endolysosomal system to generate the secretory organelles and to ingest and digest host cell proteins. These parasites also possess a metabolically relevant secondary endosymbiotic organelle, the apicoplast, which relies on vesicular trafficking for correct incorporation of nuclear-encoded proteins into the organelle. Here, we demonstrate that the trafficking and destination of vesicles to the unique and specialized parasite compartments depend on SNARE proteins that interact with tethering factors. Specifically, all secreted proteins depend on the function of SLY1 at the Golgi. In addition to a critical role in trafficking of endocytosed host proteins, TgVps45 is implicated in the biogenesis of the inner membrane complex (alveoli) in both Toxoplasma gondii and Plasmodium falciparum, likely acting in a coordinated manner with Stx16 and Stx6. Finally, Stx12 localizes to the endosomal-like compartment and is involved in the trafficking of proteins to the apical secretory organelles rhoptries and micronemes as well as to the apicoplast.
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spelling pubmed-75874392020-10-30 The ZIP Code of Vesicle Trafficking in Apicomplexa: SEC1/Munc18 and SNARE Proteins Bisio, Hugo Chaabene, Rouaa Ben Sabitzki, Ricarda Maco, Bohumil Marq, Jean Baptiste Gilberger, Tim-Wolf Spielmann, Tobias Soldati-Favre, Dominique mBio Research Article Apicomplexans are obligate intracellular parasites harboring three sets of unique secretory organelles termed micronemes, rhoptries, and dense granules that are dedicated to the establishment of infection in the host cell. Apicomplexans rely on the endolysosomal system to generate the secretory organelles and to ingest and digest host cell proteins. These parasites also possess a metabolically relevant secondary endosymbiotic organelle, the apicoplast, which relies on vesicular trafficking for correct incorporation of nuclear-encoded proteins into the organelle. Here, we demonstrate that the trafficking and destination of vesicles to the unique and specialized parasite compartments depend on SNARE proteins that interact with tethering factors. Specifically, all secreted proteins depend on the function of SLY1 at the Golgi. In addition to a critical role in trafficking of endocytosed host proteins, TgVps45 is implicated in the biogenesis of the inner membrane complex (alveoli) in both Toxoplasma gondii and Plasmodium falciparum, likely acting in a coordinated manner with Stx16 and Stx6. Finally, Stx12 localizes to the endosomal-like compartment and is involved in the trafficking of proteins to the apical secretory organelles rhoptries and micronemes as well as to the apicoplast. American Society for Microbiology 2020-10-20 /pmc/articles/PMC7587439/ /pubmed/33082261 http://dx.doi.org/10.1128/mBio.02092-20 Text en Copyright © 2020 Bisio et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Bisio, Hugo
Chaabene, Rouaa Ben
Sabitzki, Ricarda
Maco, Bohumil
Marq, Jean Baptiste
Gilberger, Tim-Wolf
Spielmann, Tobias
Soldati-Favre, Dominique
The ZIP Code of Vesicle Trafficking in Apicomplexa: SEC1/Munc18 and SNARE Proteins
title The ZIP Code of Vesicle Trafficking in Apicomplexa: SEC1/Munc18 and SNARE Proteins
title_full The ZIP Code of Vesicle Trafficking in Apicomplexa: SEC1/Munc18 and SNARE Proteins
title_fullStr The ZIP Code of Vesicle Trafficking in Apicomplexa: SEC1/Munc18 and SNARE Proteins
title_full_unstemmed The ZIP Code of Vesicle Trafficking in Apicomplexa: SEC1/Munc18 and SNARE Proteins
title_short The ZIP Code of Vesicle Trafficking in Apicomplexa: SEC1/Munc18 and SNARE Proteins
title_sort zip code of vesicle trafficking in apicomplexa: sec1/munc18 and snare proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7587439/
https://www.ncbi.nlm.nih.gov/pubmed/33082261
http://dx.doi.org/10.1128/mBio.02092-20
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