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Evasion of autophagy mediated by Rickettsia surface protein OmpB is critical for virulence

Rickettsia are obligate intracellular bacteria that evade antimicrobial autophagy in the host cell cytosol by unknown mechanisms. Other cytosolic pathogens block different steps of autophagy targeting, including the initial step of polyubiquitin coat formation. One mechanism of evasion is to mobiliz...

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Autores principales: Engström, Patrik, Burke, Thomas P., Mitchell, Gabriel, Ingabire, Nadia, Mark, Kevin G., Golovkine, Guillaume, Iavarone, Anthony T., Rape, Michael, Cox, Jeffery S., Welch, Matthew D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6988571/
https://www.ncbi.nlm.nih.gov/pubmed/31611642
http://dx.doi.org/10.1038/s41564-019-0583-6
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author Engström, Patrik
Burke, Thomas P.
Mitchell, Gabriel
Ingabire, Nadia
Mark, Kevin G.
Golovkine, Guillaume
Iavarone, Anthony T.
Rape, Michael
Cox, Jeffery S.
Welch, Matthew D.
author_facet Engström, Patrik
Burke, Thomas P.
Mitchell, Gabriel
Ingabire, Nadia
Mark, Kevin G.
Golovkine, Guillaume
Iavarone, Anthony T.
Rape, Michael
Cox, Jeffery S.
Welch, Matthew D.
author_sort Engström, Patrik
collection PubMed
description Rickettsia are obligate intracellular bacteria that evade antimicrobial autophagy in the host cell cytosol by unknown mechanisms. Other cytosolic pathogens block different steps of autophagy targeting, including the initial step of polyubiquitin coat formation. One mechanism of evasion is to mobilize actin to the bacterial surface. Here, we show that actin mobilization is insufficient to block autophagy recognition of the pathogen Rickettsia parkeri. Instead, R. parkeri employs outer membrane protein B (OmpB) to block ubiquitylation of bacterial surface proteins, including OmpA, and subsequent recognition by autophagy receptors. OmpB is also required for the formation of a capsule-like layer. Although OmpB is dispensable for bacterial growth in endothelial cells, it is essential for R. parkeri to block autophagy in macrophages and to colonize mice because of its ability to promote autophagy evasion in immune cells. Our results indicate that OmpB acts as a protective shield to obstruct autophagy recognition, revealing a distinctive bacterial mechanism to evade antimicrobial autophagy.
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spelling pubmed-69885712020-04-14 Evasion of autophagy mediated by Rickettsia surface protein OmpB is critical for virulence Engström, Patrik Burke, Thomas P. Mitchell, Gabriel Ingabire, Nadia Mark, Kevin G. Golovkine, Guillaume Iavarone, Anthony T. Rape, Michael Cox, Jeffery S. Welch, Matthew D. Nat Microbiol Article Rickettsia are obligate intracellular bacteria that evade antimicrobial autophagy in the host cell cytosol by unknown mechanisms. Other cytosolic pathogens block different steps of autophagy targeting, including the initial step of polyubiquitin coat formation. One mechanism of evasion is to mobilize actin to the bacterial surface. Here, we show that actin mobilization is insufficient to block autophagy recognition of the pathogen Rickettsia parkeri. Instead, R. parkeri employs outer membrane protein B (OmpB) to block ubiquitylation of bacterial surface proteins, including OmpA, and subsequent recognition by autophagy receptors. OmpB is also required for the formation of a capsule-like layer. Although OmpB is dispensable for bacterial growth in endothelial cells, it is essential for R. parkeri to block autophagy in macrophages and to colonize mice because of its ability to promote autophagy evasion in immune cells. Our results indicate that OmpB acts as a protective shield to obstruct autophagy recognition, revealing a distinctive bacterial mechanism to evade antimicrobial autophagy. 2019-10-14 2019-12 /pmc/articles/PMC6988571/ /pubmed/31611642 http://dx.doi.org/10.1038/s41564-019-0583-6 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Engström, Patrik
Burke, Thomas P.
Mitchell, Gabriel
Ingabire, Nadia
Mark, Kevin G.
Golovkine, Guillaume
Iavarone, Anthony T.
Rape, Michael
Cox, Jeffery S.
Welch, Matthew D.
Evasion of autophagy mediated by Rickettsia surface protein OmpB is critical for virulence
title Evasion of autophagy mediated by Rickettsia surface protein OmpB is critical for virulence
title_full Evasion of autophagy mediated by Rickettsia surface protein OmpB is critical for virulence
title_fullStr Evasion of autophagy mediated by Rickettsia surface protein OmpB is critical for virulence
title_full_unstemmed Evasion of autophagy mediated by Rickettsia surface protein OmpB is critical for virulence
title_short Evasion of autophagy mediated by Rickettsia surface protein OmpB is critical for virulence
title_sort evasion of autophagy mediated by rickettsia surface protein ompb is critical for virulence
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6988571/
https://www.ncbi.nlm.nih.gov/pubmed/31611642
http://dx.doi.org/10.1038/s41564-019-0583-6
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