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Septins and K63 ubiquitin chains are present in separate bacterial microdomains during autophagy of entrapped Shigella

During host cell invasion, Shigella escapes to the cytosol and polymerizes actin for cell-to-cell spread. To restrict cell-to-cell spread, host cells employ cell-autonomous immune responses including antibacterial autophagy and septin cage entrapment. How septins interact with the autophagy process...

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Autores principales: Lobato-Márquez, Damián, Conesa, José Javier, López-Jiménez, Ana Teresa, Divine, Michael E., Pruneda, Jonathan N., Mostowy, Serge
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10264824/
https://www.ncbi.nlm.nih.gov/pubmed/36939083
http://dx.doi.org/10.1242/jcs.261139
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author Lobato-Márquez, Damián
Conesa, José Javier
López-Jiménez, Ana Teresa
Divine, Michael E.
Pruneda, Jonathan N.
Mostowy, Serge
author_facet Lobato-Márquez, Damián
Conesa, José Javier
López-Jiménez, Ana Teresa
Divine, Michael E.
Pruneda, Jonathan N.
Mostowy, Serge
author_sort Lobato-Márquez, Damián
collection PubMed
description During host cell invasion, Shigella escapes to the cytosol and polymerizes actin for cell-to-cell spread. To restrict cell-to-cell spread, host cells employ cell-autonomous immune responses including antibacterial autophagy and septin cage entrapment. How septins interact with the autophagy process to target Shigella for destruction is poorly understood. Here, we employed a correlative light and cryo-soft X-ray tomography (cryo-SXT) pipeline to study Shigella septin cage entrapment in its near-native state. Quantitative cryo-SXT showed that Shigella fragments mitochondria and enabled visualization of X-ray-dense structures (∼30 nm resolution) surrounding Shigella entrapped in septin cages. Using Airyscan confocal microscopy, we observed lysine 63 (K63)-linked ubiquitin chains decorating septin-cage-entrapped Shigella. Remarkably, septins and K63 chains are present in separate bacterial microdomains, indicating they are recruited separately during antibacterial autophagy. Cryo-SXT and live-cell imaging revealed an interaction between septins and LC3B-positive membranes during autophagy of Shigella. Together, these findings demonstrate how septin-caged Shigella are targeted for autophagy and provide fundamental insights into autophagy–cytoskeleton interactions.
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spelling pubmed-102648242023-06-15 Septins and K63 ubiquitin chains are present in separate bacterial microdomains during autophagy of entrapped Shigella Lobato-Márquez, Damián Conesa, José Javier López-Jiménez, Ana Teresa Divine, Michael E. Pruneda, Jonathan N. Mostowy, Serge J Cell Sci Research Article During host cell invasion, Shigella escapes to the cytosol and polymerizes actin for cell-to-cell spread. To restrict cell-to-cell spread, host cells employ cell-autonomous immune responses including antibacterial autophagy and septin cage entrapment. How septins interact with the autophagy process to target Shigella for destruction is poorly understood. Here, we employed a correlative light and cryo-soft X-ray tomography (cryo-SXT) pipeline to study Shigella septin cage entrapment in its near-native state. Quantitative cryo-SXT showed that Shigella fragments mitochondria and enabled visualization of X-ray-dense structures (∼30 nm resolution) surrounding Shigella entrapped in septin cages. Using Airyscan confocal microscopy, we observed lysine 63 (K63)-linked ubiquitin chains decorating septin-cage-entrapped Shigella. Remarkably, septins and K63 chains are present in separate bacterial microdomains, indicating they are recruited separately during antibacterial autophagy. Cryo-SXT and live-cell imaging revealed an interaction between septins and LC3B-positive membranes during autophagy of Shigella. Together, these findings demonstrate how septin-caged Shigella are targeted for autophagy and provide fundamental insights into autophagy–cytoskeleton interactions. The Company of Biologists Ltd 2023-04-13 /pmc/articles/PMC10264824/ /pubmed/36939083 http://dx.doi.org/10.1242/jcs.261139 Text en © 2023. Published by The Company of Biologists Ltd 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 that the original work is properly attributed.
spellingShingle Research Article
Lobato-Márquez, Damián
Conesa, José Javier
López-Jiménez, Ana Teresa
Divine, Michael E.
Pruneda, Jonathan N.
Mostowy, Serge
Septins and K63 ubiquitin chains are present in separate bacterial microdomains during autophagy of entrapped Shigella
title Septins and K63 ubiquitin chains are present in separate bacterial microdomains during autophagy of entrapped Shigella
title_full Septins and K63 ubiquitin chains are present in separate bacterial microdomains during autophagy of entrapped Shigella
title_fullStr Septins and K63 ubiquitin chains are present in separate bacterial microdomains during autophagy of entrapped Shigella
title_full_unstemmed Septins and K63 ubiquitin chains are present in separate bacterial microdomains during autophagy of entrapped Shigella
title_short Septins and K63 ubiquitin chains are present in separate bacterial microdomains during autophagy of entrapped Shigella
title_sort septins and k63 ubiquitin chains are present in separate bacterial microdomains during autophagy of entrapped shigella
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10264824/
https://www.ncbi.nlm.nih.gov/pubmed/36939083
http://dx.doi.org/10.1242/jcs.261139
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