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FleA Expression in Aspergillus fumigatus Is Recognized by Fucosylated Structures on Mucins and Macrophages to Prevent Lung Infection

The immune mechanisms that recognize inhaled Aspergillus fumigatus conidia to promote their elimination from the lungs are incompletely understood. FleA is a lectin expressed by Aspergillus fumigatus that has twelve binding sites for fucosylated structures that are abundant in the glycan coats of mu...

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Autores principales: Kerr, Sheena C., Fischer, Gregory J., Sinha, Meenal, McCabe, Orla, Palmer, Jonathan M., Choera, Tsokyi, Yun Lim, Fang, Wimmerova, Michaela, Carrington, Stephen D., Yuan, Shaopeng, Lowell, Clifford A., Oscarson, Stefan, Keller, Nancy P., Fahy, John V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4825926/
https://www.ncbi.nlm.nih.gov/pubmed/27058347
http://dx.doi.org/10.1371/journal.ppat.1005555
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author Kerr, Sheena C.
Fischer, Gregory J.
Sinha, Meenal
McCabe, Orla
Palmer, Jonathan M.
Choera, Tsokyi
Yun Lim, Fang
Wimmerova, Michaela
Carrington, Stephen D.
Yuan, Shaopeng
Lowell, Clifford A.
Oscarson, Stefan
Keller, Nancy P.
Fahy, John V.
author_facet Kerr, Sheena C.
Fischer, Gregory J.
Sinha, Meenal
McCabe, Orla
Palmer, Jonathan M.
Choera, Tsokyi
Yun Lim, Fang
Wimmerova, Michaela
Carrington, Stephen D.
Yuan, Shaopeng
Lowell, Clifford A.
Oscarson, Stefan
Keller, Nancy P.
Fahy, John V.
author_sort Kerr, Sheena C.
collection PubMed
description The immune mechanisms that recognize inhaled Aspergillus fumigatus conidia to promote their elimination from the lungs are incompletely understood. FleA is a lectin expressed by Aspergillus fumigatus that has twelve binding sites for fucosylated structures that are abundant in the glycan coats of multiple plant and animal proteins. The role of FleA is unknown: it could bind fucose in decomposed plant matter to allow Aspergillus fumigatus to thrive in soil, or it may be a virulence factor that binds fucose in lung glycoproteins to cause Aspergillus fumigatus pneumonia. Our studies show that FleA protein and Aspergillus fumigatus conidia bind avidly to purified lung mucin glycoproteins in a fucose-dependent manner. In addition, FleA binds strongly to macrophage cell surface proteins, and macrophages bind and phagocytose fleA-deficient (∆fleA) conidia much less efficiently than wild type (WT) conidia. Furthermore, a potent fucopyranoside glycomimetic inhibitor of FleA inhibits binding and phagocytosis of WT conidia by macrophages, confirming the specific role of fucose binding in macrophage recognition of WT conidia. Finally, mice infected with ΔfleA conidia had more severe pneumonia and invasive aspergillosis than mice infected with WT conidia. These findings demonstrate that FleA is not a virulence factor for Aspergillus fumigatus. Instead, host recognition of FleA is a critical step in mechanisms of mucin binding, mucociliary clearance, and macrophage killing that prevent Aspergillus fumigatus pneumonia.
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spelling pubmed-48259262016-04-22 FleA Expression in Aspergillus fumigatus Is Recognized by Fucosylated Structures on Mucins and Macrophages to Prevent Lung Infection Kerr, Sheena C. Fischer, Gregory J. Sinha, Meenal McCabe, Orla Palmer, Jonathan M. Choera, Tsokyi Yun Lim, Fang Wimmerova, Michaela Carrington, Stephen D. Yuan, Shaopeng Lowell, Clifford A. Oscarson, Stefan Keller, Nancy P. Fahy, John V. PLoS Pathog Research Article The immune mechanisms that recognize inhaled Aspergillus fumigatus conidia to promote their elimination from the lungs are incompletely understood. FleA is a lectin expressed by Aspergillus fumigatus that has twelve binding sites for fucosylated structures that are abundant in the glycan coats of multiple plant and animal proteins. The role of FleA is unknown: it could bind fucose in decomposed plant matter to allow Aspergillus fumigatus to thrive in soil, or it may be a virulence factor that binds fucose in lung glycoproteins to cause Aspergillus fumigatus pneumonia. Our studies show that FleA protein and Aspergillus fumigatus conidia bind avidly to purified lung mucin glycoproteins in a fucose-dependent manner. In addition, FleA binds strongly to macrophage cell surface proteins, and macrophages bind and phagocytose fleA-deficient (∆fleA) conidia much less efficiently than wild type (WT) conidia. Furthermore, a potent fucopyranoside glycomimetic inhibitor of FleA inhibits binding and phagocytosis of WT conidia by macrophages, confirming the specific role of fucose binding in macrophage recognition of WT conidia. Finally, mice infected with ΔfleA conidia had more severe pneumonia and invasive aspergillosis than mice infected with WT conidia. These findings demonstrate that FleA is not a virulence factor for Aspergillus fumigatus. Instead, host recognition of FleA is a critical step in mechanisms of mucin binding, mucociliary clearance, and macrophage killing that prevent Aspergillus fumigatus pneumonia. Public Library of Science 2016-04-08 /pmc/articles/PMC4825926/ /pubmed/27058347 http://dx.doi.org/10.1371/journal.ppat.1005555 Text en © 2016 Kerr 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kerr, Sheena C.
Fischer, Gregory J.
Sinha, Meenal
McCabe, Orla
Palmer, Jonathan M.
Choera, Tsokyi
Yun Lim, Fang
Wimmerova, Michaela
Carrington, Stephen D.
Yuan, Shaopeng
Lowell, Clifford A.
Oscarson, Stefan
Keller, Nancy P.
Fahy, John V.
FleA Expression in Aspergillus fumigatus Is Recognized by Fucosylated Structures on Mucins and Macrophages to Prevent Lung Infection
title FleA Expression in Aspergillus fumigatus Is Recognized by Fucosylated Structures on Mucins and Macrophages to Prevent Lung Infection
title_full FleA Expression in Aspergillus fumigatus Is Recognized by Fucosylated Structures on Mucins and Macrophages to Prevent Lung Infection
title_fullStr FleA Expression in Aspergillus fumigatus Is Recognized by Fucosylated Structures on Mucins and Macrophages to Prevent Lung Infection
title_full_unstemmed FleA Expression in Aspergillus fumigatus Is Recognized by Fucosylated Structures on Mucins and Macrophages to Prevent Lung Infection
title_short FleA Expression in Aspergillus fumigatus Is Recognized by Fucosylated Structures on Mucins and Macrophages to Prevent Lung Infection
title_sort flea expression in aspergillus fumigatus is recognized by fucosylated structures on mucins and macrophages to prevent lung infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4825926/
https://www.ncbi.nlm.nih.gov/pubmed/27058347
http://dx.doi.org/10.1371/journal.ppat.1005555
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