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The pH-Responsive PacC Transcription Factor of Aspergillus fumigatus Governs Epithelial Entry and Tissue Invasion during Pulmonary Aspergillosis

Destruction of the pulmonary epithelium is a major feature of lung diseases caused by the mould pathogen Aspergillus fumigatus. Although it is widely postulated that tissue invasion is governed by fungal proteases, A. fumigatus mutants lacking individual or multiple enzymes remain fully invasive, su...

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Autores principales: Bertuzzi, Margherita, Schrettl, Markus, Alcazar-Fuoli, Laura, Cairns, Timothy C., Muñoz, Alberto, Walker, Louise A., Herbst, Susanne, Safari, Maryam, Cheverton, Angela M., Chen, Dan, Liu, Hong, Saijo, Shinobu, Fedorova, Natalie D., Armstrong-James, Darius, Munro, Carol A., Read, Nick D., Filler, Scott G., Espeso, Eduardo A., Nierman, William C., Haas, Hubertus, Bignell, Elaine M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4199764/
https://www.ncbi.nlm.nih.gov/pubmed/25329394
http://dx.doi.org/10.1371/journal.ppat.1004413
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author Bertuzzi, Margherita
Schrettl, Markus
Alcazar-Fuoli, Laura
Cairns, Timothy C.
Muñoz, Alberto
Walker, Louise A.
Herbst, Susanne
Safari, Maryam
Cheverton, Angela M.
Chen, Dan
Liu, Hong
Saijo, Shinobu
Fedorova, Natalie D.
Armstrong-James, Darius
Munro, Carol A.
Read, Nick D.
Filler, Scott G.
Espeso, Eduardo A.
Nierman, William C.
Haas, Hubertus
Bignell, Elaine M.
author_facet Bertuzzi, Margherita
Schrettl, Markus
Alcazar-Fuoli, Laura
Cairns, Timothy C.
Muñoz, Alberto
Walker, Louise A.
Herbst, Susanne
Safari, Maryam
Cheverton, Angela M.
Chen, Dan
Liu, Hong
Saijo, Shinobu
Fedorova, Natalie D.
Armstrong-James, Darius
Munro, Carol A.
Read, Nick D.
Filler, Scott G.
Espeso, Eduardo A.
Nierman, William C.
Haas, Hubertus
Bignell, Elaine M.
author_sort Bertuzzi, Margherita
collection PubMed
description Destruction of the pulmonary epithelium is a major feature of lung diseases caused by the mould pathogen Aspergillus fumigatus. Although it is widely postulated that tissue invasion is governed by fungal proteases, A. fumigatus mutants lacking individual or multiple enzymes remain fully invasive, suggesting a concomitant requirement for other pathogenic activities during host invasion. In this study we discovered, and exploited, a novel, tissue non-invasive, phenotype in A. fumigatus mutants lacking the pH-responsive transcription factor PacC. Our study revealed a novel mode of epithelial entry, occurring in a cell wall-dependent manner prior to protease production, and via the Dectin-1 β-glucan receptor. ΔpacC mutants are defective in both contact-mediated epithelial entry and protease expression, and significantly attenuated for pathogenicity in leukopenic mice. We combined murine infection modelling, in vivo transcriptomics, and in vitro infections of human alveolar epithelia, to delineate two major, and sequentially acting, PacC-dependent processes impacting epithelial integrity in vitro and tissue invasion in the whole animal. We demonstrate that A. fumigatus spores and germlings are internalised by epithelial cells in a contact-, actin-, cell wall- and Dectin-1 dependent manner and ΔpacC mutants, which aberrantly remodel the cell wall during germinative growth, are unable to gain entry into epithelial cells, both in vitro and in vivo. We further show that PacC acts as a global transcriptional regulator of secreted molecules during growth in the leukopenic mammalian lung, and profile the full cohort of secreted gene products expressed during invasive infection. Our study reveals a combinatorial mode of tissue entry dependent upon sequential, and mechanistically distinct, perturbations of the pulmonary epithelium and demonstrates, for the first time a protective role for Dectin-1 blockade in epithelial defences. Infecting ΔpacC mutants are hypersensitive to cell wall-active antifungal agents highlighting the value of PacC signalling as a target for antifungal therapy.
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spelling pubmed-41997642014-10-21 The pH-Responsive PacC Transcription Factor of Aspergillus fumigatus Governs Epithelial Entry and Tissue Invasion during Pulmonary Aspergillosis Bertuzzi, Margherita Schrettl, Markus Alcazar-Fuoli, Laura Cairns, Timothy C. Muñoz, Alberto Walker, Louise A. Herbst, Susanne Safari, Maryam Cheverton, Angela M. Chen, Dan Liu, Hong Saijo, Shinobu Fedorova, Natalie D. Armstrong-James, Darius Munro, Carol A. Read, Nick D. Filler, Scott G. Espeso, Eduardo A. Nierman, William C. Haas, Hubertus Bignell, Elaine M. PLoS Pathog Research Article Destruction of the pulmonary epithelium is a major feature of lung diseases caused by the mould pathogen Aspergillus fumigatus. Although it is widely postulated that tissue invasion is governed by fungal proteases, A. fumigatus mutants lacking individual or multiple enzymes remain fully invasive, suggesting a concomitant requirement for other pathogenic activities during host invasion. In this study we discovered, and exploited, a novel, tissue non-invasive, phenotype in A. fumigatus mutants lacking the pH-responsive transcription factor PacC. Our study revealed a novel mode of epithelial entry, occurring in a cell wall-dependent manner prior to protease production, and via the Dectin-1 β-glucan receptor. ΔpacC mutants are defective in both contact-mediated epithelial entry and protease expression, and significantly attenuated for pathogenicity in leukopenic mice. We combined murine infection modelling, in vivo transcriptomics, and in vitro infections of human alveolar epithelia, to delineate two major, and sequentially acting, PacC-dependent processes impacting epithelial integrity in vitro and tissue invasion in the whole animal. We demonstrate that A. fumigatus spores and germlings are internalised by epithelial cells in a contact-, actin-, cell wall- and Dectin-1 dependent manner and ΔpacC mutants, which aberrantly remodel the cell wall during germinative growth, are unable to gain entry into epithelial cells, both in vitro and in vivo. We further show that PacC acts as a global transcriptional regulator of secreted molecules during growth in the leukopenic mammalian lung, and profile the full cohort of secreted gene products expressed during invasive infection. Our study reveals a combinatorial mode of tissue entry dependent upon sequential, and mechanistically distinct, perturbations of the pulmonary epithelium and demonstrates, for the first time a protective role for Dectin-1 blockade in epithelial defences. Infecting ΔpacC mutants are hypersensitive to cell wall-active antifungal agents highlighting the value of PacC signalling as a target for antifungal therapy. Public Library of Science 2014-10-16 /pmc/articles/PMC4199764/ /pubmed/25329394 http://dx.doi.org/10.1371/journal.ppat.1004413 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Bertuzzi, Margherita
Schrettl, Markus
Alcazar-Fuoli, Laura
Cairns, Timothy C.
Muñoz, Alberto
Walker, Louise A.
Herbst, Susanne
Safari, Maryam
Cheverton, Angela M.
Chen, Dan
Liu, Hong
Saijo, Shinobu
Fedorova, Natalie D.
Armstrong-James, Darius
Munro, Carol A.
Read, Nick D.
Filler, Scott G.
Espeso, Eduardo A.
Nierman, William C.
Haas, Hubertus
Bignell, Elaine M.
The pH-Responsive PacC Transcription Factor of Aspergillus fumigatus Governs Epithelial Entry and Tissue Invasion during Pulmonary Aspergillosis
title The pH-Responsive PacC Transcription Factor of Aspergillus fumigatus Governs Epithelial Entry and Tissue Invasion during Pulmonary Aspergillosis
title_full The pH-Responsive PacC Transcription Factor of Aspergillus fumigatus Governs Epithelial Entry and Tissue Invasion during Pulmonary Aspergillosis
title_fullStr The pH-Responsive PacC Transcription Factor of Aspergillus fumigatus Governs Epithelial Entry and Tissue Invasion during Pulmonary Aspergillosis
title_full_unstemmed The pH-Responsive PacC Transcription Factor of Aspergillus fumigatus Governs Epithelial Entry and Tissue Invasion during Pulmonary Aspergillosis
title_short The pH-Responsive PacC Transcription Factor of Aspergillus fumigatus Governs Epithelial Entry and Tissue Invasion during Pulmonary Aspergillosis
title_sort ph-responsive pacc transcription factor of aspergillus fumigatus governs epithelial entry and tissue invasion during pulmonary aspergillosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4199764/
https://www.ncbi.nlm.nih.gov/pubmed/25329394
http://dx.doi.org/10.1371/journal.ppat.1004413
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