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Legionella pneumophila PPIase Mip Interacts with the Bacterial Proteins SspB, Lpc2061, and FlaA and Promotes Flagellation

The peptidyl-prolyl-cis/trans-isomerase (PPIase) macrophage infectivity potentiator (Mip) contributes to the pathogenicity and fitness of L. pneumophila, the causative agent of Legionnaires’ disease. Here, we identified the stringent starvation protein SspB, hypothetical protein Lpc2061, and flagell...

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Autores principales: Karagöz, Mustafa Safa, Ünal, Can Murat, Mayer, Benjamin E., Müsken, Mathias, Borrero-de Acuña, José Manuel, Steinert, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9670971/
https://www.ncbi.nlm.nih.gov/pubmed/36314784
http://dx.doi.org/10.1128/iai.00276-22
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author Karagöz, Mustafa Safa
Ünal, Can Murat
Mayer, Benjamin E.
Müsken, Mathias
Borrero-de Acuña, José Manuel
Steinert, Michael
author_facet Karagöz, Mustafa Safa
Ünal, Can Murat
Mayer, Benjamin E.
Müsken, Mathias
Borrero-de Acuña, José Manuel
Steinert, Michael
author_sort Karagöz, Mustafa Safa
collection PubMed
description The peptidyl-prolyl-cis/trans-isomerase (PPIase) macrophage infectivity potentiator (Mip) contributes to the pathogenicity and fitness of L. pneumophila, the causative agent of Legionnaires’ disease. Here, we identified the stringent starvation protein SspB, hypothetical protein Lpc2061, and flagellin FlaA as bacterial interaction partners of Mip. The macrolide FK506, which inhibits the PPIase activity of Mip, interfered with the binding of Lpc2061. Moreover, we demonstrated that the N-terminal dimerization region and amino acid Y185 in the C-terminal PPIase domain of Mip are required for the binding of Lpc2061 and FlaA. The modeling of the interaction partners and global docking with Mip suggested nonoverlapping binding interfaces, and a molecular dynamic simulation predicted an increased stability for the tripartite interaction of Lpc2061, Mip, and FlaA. On the functional level, we demonstrated that Mip promotes L. pneumophila flagellation, which is positively influenced by the binding of Lpc2061 and reduced by FK506. Also, L. pneumophila mutants expressing the Y185A or the monomeric Mip variant, which bind less Lpc2061, were nonmotile, were less flagellated, and yielded less FlaA when quantified. To our knowledge, this is the first report in which a PPIase and its bacterial interaction partners were demonstrated to influence flagellation.
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spelling pubmed-96709712023-04-30 Legionella pneumophila PPIase Mip Interacts with the Bacterial Proteins SspB, Lpc2061, and FlaA and Promotes Flagellation Karagöz, Mustafa Safa Ünal, Can Murat Mayer, Benjamin E. Müsken, Mathias Borrero-de Acuña, José Manuel Steinert, Michael Infect Immun Bacterial Infections The peptidyl-prolyl-cis/trans-isomerase (PPIase) macrophage infectivity potentiator (Mip) contributes to the pathogenicity and fitness of L. pneumophila, the causative agent of Legionnaires’ disease. Here, we identified the stringent starvation protein SspB, hypothetical protein Lpc2061, and flagellin FlaA as bacterial interaction partners of Mip. The macrolide FK506, which inhibits the PPIase activity of Mip, interfered with the binding of Lpc2061. Moreover, we demonstrated that the N-terminal dimerization region and amino acid Y185 in the C-terminal PPIase domain of Mip are required for the binding of Lpc2061 and FlaA. The modeling of the interaction partners and global docking with Mip suggested nonoverlapping binding interfaces, and a molecular dynamic simulation predicted an increased stability for the tripartite interaction of Lpc2061, Mip, and FlaA. On the functional level, we demonstrated that Mip promotes L. pneumophila flagellation, which is positively influenced by the binding of Lpc2061 and reduced by FK506. Also, L. pneumophila mutants expressing the Y185A or the monomeric Mip variant, which bind less Lpc2061, were nonmotile, were less flagellated, and yielded less FlaA when quantified. To our knowledge, this is the first report in which a PPIase and its bacterial interaction partners were demonstrated to influence flagellation. American Society for Microbiology 2022-10-31 /pmc/articles/PMC9670971/ /pubmed/36314784 http://dx.doi.org/10.1128/iai.00276-22 Text en Copyright © 2022 Karagöz 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 Bacterial Infections
Karagöz, Mustafa Safa
Ünal, Can Murat
Mayer, Benjamin E.
Müsken, Mathias
Borrero-de Acuña, José Manuel
Steinert, Michael
Legionella pneumophila PPIase Mip Interacts with the Bacterial Proteins SspB, Lpc2061, and FlaA and Promotes Flagellation
title Legionella pneumophila PPIase Mip Interacts with the Bacterial Proteins SspB, Lpc2061, and FlaA and Promotes Flagellation
title_full Legionella pneumophila PPIase Mip Interacts with the Bacterial Proteins SspB, Lpc2061, and FlaA and Promotes Flagellation
title_fullStr Legionella pneumophila PPIase Mip Interacts with the Bacterial Proteins SspB, Lpc2061, and FlaA and Promotes Flagellation
title_full_unstemmed Legionella pneumophila PPIase Mip Interacts with the Bacterial Proteins SspB, Lpc2061, and FlaA and Promotes Flagellation
title_short Legionella pneumophila PPIase Mip Interacts with the Bacterial Proteins SspB, Lpc2061, and FlaA and Promotes Flagellation
title_sort legionella pneumophila ppiase mip interacts with the bacterial proteins sspb, lpc2061, and flaa and promotes flagellation
topic Bacterial Infections
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9670971/
https://www.ncbi.nlm.nih.gov/pubmed/36314784
http://dx.doi.org/10.1128/iai.00276-22
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