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A Legionella Effector Disrupts Host Cytoskeletal Structure by Cleaving Actin

Legionella pneumophila, the etiological agent of Legionnaires’ disease, replicates intracellularly in protozoan and human hosts. Successful colonization and replication of this pathogen in host cells requires the Dot/Icm type IVB secretion system, which translocates approximately 300 effector protei...

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Autores principales: Liu, Yao, Zhu, Wenhan, Tan, Yunhao, Nakayasu, Ernesto S., Staiger, Christopher J., Luo, Zhao-Qing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5298343/
https://www.ncbi.nlm.nih.gov/pubmed/28129393
http://dx.doi.org/10.1371/journal.ppat.1006186
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author Liu, Yao
Zhu, Wenhan
Tan, Yunhao
Nakayasu, Ernesto S.
Staiger, Christopher J.
Luo, Zhao-Qing
author_facet Liu, Yao
Zhu, Wenhan
Tan, Yunhao
Nakayasu, Ernesto S.
Staiger, Christopher J.
Luo, Zhao-Qing
author_sort Liu, Yao
collection PubMed
description Legionella pneumophila, the etiological agent of Legionnaires’ disease, replicates intracellularly in protozoan and human hosts. Successful colonization and replication of this pathogen in host cells requires the Dot/Icm type IVB secretion system, which translocates approximately 300 effector proteins into the host cell to modulate various cellular processes. In this study, we identified RavK as a Dot/Icm substrate that targets the host cytoskeleton and reduces actin filament abundance in mammalian cells upon ectopic expression. RavK harbors an H(95)E(XX)H(99) motif associated with diverse metalloproteases, which is essential for the inhibition of yeast growth and for the induction of cell rounding in HEK293T cells. We demonstrate that the actin protein itself is the cellular target of RavK and that this effector cleaves actin at a site between residues Thr351 and Phe352. Importantly, RavK-mediated actin cleavage also occurs during L. pneumophila infection. Cleavage by RavK abolishes the ability of actin to form polymers. Furthermore, an F352A mutation renders actin resistant to RavK-mediated cleavage; expression of the mutant in mammalian cells suppresses the cell rounding phenotype caused by RavK, further establishing that actin is the physiological substrate of RavK. Thus, L. pneumophila exploits components of the host cytoskeleton by multiple effectors with distinct mechanisms, highlighting the importance of modulating cellular processes governed by the actin cytoskeleton in the intracellular life cycle of this pathogen.
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spelling pubmed-52983432017-02-17 A Legionella Effector Disrupts Host Cytoskeletal Structure by Cleaving Actin Liu, Yao Zhu, Wenhan Tan, Yunhao Nakayasu, Ernesto S. Staiger, Christopher J. Luo, Zhao-Qing PLoS Pathog Research Article Legionella pneumophila, the etiological agent of Legionnaires’ disease, replicates intracellularly in protozoan and human hosts. Successful colonization and replication of this pathogen in host cells requires the Dot/Icm type IVB secretion system, which translocates approximately 300 effector proteins into the host cell to modulate various cellular processes. In this study, we identified RavK as a Dot/Icm substrate that targets the host cytoskeleton and reduces actin filament abundance in mammalian cells upon ectopic expression. RavK harbors an H(95)E(XX)H(99) motif associated with diverse metalloproteases, which is essential for the inhibition of yeast growth and for the induction of cell rounding in HEK293T cells. We demonstrate that the actin protein itself is the cellular target of RavK and that this effector cleaves actin at a site between residues Thr351 and Phe352. Importantly, RavK-mediated actin cleavage also occurs during L. pneumophila infection. Cleavage by RavK abolishes the ability of actin to form polymers. Furthermore, an F352A mutation renders actin resistant to RavK-mediated cleavage; expression of the mutant in mammalian cells suppresses the cell rounding phenotype caused by RavK, further establishing that actin is the physiological substrate of RavK. Thus, L. pneumophila exploits components of the host cytoskeleton by multiple effectors with distinct mechanisms, highlighting the importance of modulating cellular processes governed by the actin cytoskeleton in the intracellular life cycle of this pathogen. Public Library of Science 2017-01-27 /pmc/articles/PMC5298343/ /pubmed/28129393 http://dx.doi.org/10.1371/journal.ppat.1006186 Text en © 2017 Liu 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 (http://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 Research Article
Liu, Yao
Zhu, Wenhan
Tan, Yunhao
Nakayasu, Ernesto S.
Staiger, Christopher J.
Luo, Zhao-Qing
A Legionella Effector Disrupts Host Cytoskeletal Structure by Cleaving Actin
title A Legionella Effector Disrupts Host Cytoskeletal Structure by Cleaving Actin
title_full A Legionella Effector Disrupts Host Cytoskeletal Structure by Cleaving Actin
title_fullStr A Legionella Effector Disrupts Host Cytoskeletal Structure by Cleaving Actin
title_full_unstemmed A Legionella Effector Disrupts Host Cytoskeletal Structure by Cleaving Actin
title_short A Legionella Effector Disrupts Host Cytoskeletal Structure by Cleaving Actin
title_sort legionella effector disrupts host cytoskeletal structure by cleaving actin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5298343/
https://www.ncbi.nlm.nih.gov/pubmed/28129393
http://dx.doi.org/10.1371/journal.ppat.1006186
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