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Disruption of Protein Mannosylation Affects Candida guilliermondii Cell Wall, Immune Sensing, and Virulence

The fungal cell wall contains glycoproteins that interact with the host immune system. In the prominent pathogenic yeast Candida albicans, Pmr1 acts as a Golgi-resident ion pump that provides cofactors to mannosyltransferases, regulating the synthesis of mannans attached to glycoproteins. To gain in...

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Autores principales: Navarro-Arias, María J., Defosse, Tatiana A., Dementhon, Karine, Csonka, Katalin, Mellado-Mojica, Erika, Dias Valério, Aline, González-Hernández, Roberto J., Courdavault, Vincent, Clastre, Marc, Hernández, Nahúm V., Pérez-García, Luis A., Singh, Dhirendra K., Vizler, Csaba, Gácser, Attila, Almeida, Ricardo S., Noël, Thierry, López, Mercedes G., Papon, Nicolas, Mora-Montes, Héctor M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5133257/
https://www.ncbi.nlm.nih.gov/pubmed/27994582
http://dx.doi.org/10.3389/fmicb.2016.01951
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author Navarro-Arias, María J.
Defosse, Tatiana A.
Dementhon, Karine
Csonka, Katalin
Mellado-Mojica, Erika
Dias Valério, Aline
González-Hernández, Roberto J.
Courdavault, Vincent
Clastre, Marc
Hernández, Nahúm V.
Pérez-García, Luis A.
Singh, Dhirendra K.
Vizler, Csaba
Gácser, Attila
Almeida, Ricardo S.
Noël, Thierry
López, Mercedes G.
Papon, Nicolas
Mora-Montes, Héctor M.
author_facet Navarro-Arias, María J.
Defosse, Tatiana A.
Dementhon, Karine
Csonka, Katalin
Mellado-Mojica, Erika
Dias Valério, Aline
González-Hernández, Roberto J.
Courdavault, Vincent
Clastre, Marc
Hernández, Nahúm V.
Pérez-García, Luis A.
Singh, Dhirendra K.
Vizler, Csaba
Gácser, Attila
Almeida, Ricardo S.
Noël, Thierry
López, Mercedes G.
Papon, Nicolas
Mora-Montes, Héctor M.
author_sort Navarro-Arias, María J.
collection PubMed
description The fungal cell wall contains glycoproteins that interact with the host immune system. In the prominent pathogenic yeast Candida albicans, Pmr1 acts as a Golgi-resident ion pump that provides cofactors to mannosyltransferases, regulating the synthesis of mannans attached to glycoproteins. To gain insight into a putative conservation of such a crucial process within opportunistic yeasts, we were particularly interested in studying the role of the PMR1 homolog in a low-virulent species that rarely causes candidiasis, Candida guilliermondii. We disrupted C. guilliermondii PMR1 and found that loss of Pmr1 affected cell growth and morphology, biofilm formation, susceptibility to cell wall perturbing agents, mannan levels, and the wall composition and organization. Despite the significant increment in the amount of β1,3-glucan exposed at the wall surface, this positively influenced only the ability of the mutant to stimulate IL-10 production by human monocytes, suggesting that recognition of both mannan and β1,3-glucan, is required to stimulate strong levels of pro-inflammatory cytokines. Accordingly, our results indicate C. guilliermondii sensing by monocytes was critically dependent on the recognition of N-linked mannans and β1,3-glucan, as reported in other Candida species. In addition, chemical remotion of cell wall O-linked mannans was found to positively influence the recognition of C. guilliermondii by human monocytes, suggesting that O-linked mannans mask other cell wall components from immune cells. This observation contrasts with that reported in C. albicans. Finally, mice infected with C. guilliermondii pmr1Δ null mutant cells had significantly lower fungal burdens compared to animals challenged with the parental strain. Accordingly, the null mutant showed inability to kill larvae in the Galleria mellonella infection model. This study thus demonstrates that mannans are relevant for the C. guilliermondii-host interaction, with an atypical role for O-linked mannans.
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spelling pubmed-51332572016-12-19 Disruption of Protein Mannosylation Affects Candida guilliermondii Cell Wall, Immune Sensing, and Virulence Navarro-Arias, María J. Defosse, Tatiana A. Dementhon, Karine Csonka, Katalin Mellado-Mojica, Erika Dias Valério, Aline González-Hernández, Roberto J. Courdavault, Vincent Clastre, Marc Hernández, Nahúm V. Pérez-García, Luis A. Singh, Dhirendra K. Vizler, Csaba Gácser, Attila Almeida, Ricardo S. Noël, Thierry López, Mercedes G. Papon, Nicolas Mora-Montes, Héctor M. Front Microbiol Microbiology The fungal cell wall contains glycoproteins that interact with the host immune system. In the prominent pathogenic yeast Candida albicans, Pmr1 acts as a Golgi-resident ion pump that provides cofactors to mannosyltransferases, regulating the synthesis of mannans attached to glycoproteins. To gain insight into a putative conservation of such a crucial process within opportunistic yeasts, we were particularly interested in studying the role of the PMR1 homolog in a low-virulent species that rarely causes candidiasis, Candida guilliermondii. We disrupted C. guilliermondii PMR1 and found that loss of Pmr1 affected cell growth and morphology, biofilm formation, susceptibility to cell wall perturbing agents, mannan levels, and the wall composition and organization. Despite the significant increment in the amount of β1,3-glucan exposed at the wall surface, this positively influenced only the ability of the mutant to stimulate IL-10 production by human monocytes, suggesting that recognition of both mannan and β1,3-glucan, is required to stimulate strong levels of pro-inflammatory cytokines. Accordingly, our results indicate C. guilliermondii sensing by monocytes was critically dependent on the recognition of N-linked mannans and β1,3-glucan, as reported in other Candida species. In addition, chemical remotion of cell wall O-linked mannans was found to positively influence the recognition of C. guilliermondii by human monocytes, suggesting that O-linked mannans mask other cell wall components from immune cells. This observation contrasts with that reported in C. albicans. Finally, mice infected with C. guilliermondii pmr1Δ null mutant cells had significantly lower fungal burdens compared to animals challenged with the parental strain. Accordingly, the null mutant showed inability to kill larvae in the Galleria mellonella infection model. This study thus demonstrates that mannans are relevant for the C. guilliermondii-host interaction, with an atypical role for O-linked mannans. Frontiers Media S.A. 2016-12-02 /pmc/articles/PMC5133257/ /pubmed/27994582 http://dx.doi.org/10.3389/fmicb.2016.01951 Text en Copyright © 2016 Navarro-Arias, Defosse, Dementhon, Csonka, Mellado-Mojica, Dias Valério, González-Hernández, Courdavault, Clastre, Hernández, Pérez-García, Singh, Vizler, Gácser, Almeida, Noël, López, Papon and Mora-Montes. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Navarro-Arias, María J.
Defosse, Tatiana A.
Dementhon, Karine
Csonka, Katalin
Mellado-Mojica, Erika
Dias Valério, Aline
González-Hernández, Roberto J.
Courdavault, Vincent
Clastre, Marc
Hernández, Nahúm V.
Pérez-García, Luis A.
Singh, Dhirendra K.
Vizler, Csaba
Gácser, Attila
Almeida, Ricardo S.
Noël, Thierry
López, Mercedes G.
Papon, Nicolas
Mora-Montes, Héctor M.
Disruption of Protein Mannosylation Affects Candida guilliermondii Cell Wall, Immune Sensing, and Virulence
title Disruption of Protein Mannosylation Affects Candida guilliermondii Cell Wall, Immune Sensing, and Virulence
title_full Disruption of Protein Mannosylation Affects Candida guilliermondii Cell Wall, Immune Sensing, and Virulence
title_fullStr Disruption of Protein Mannosylation Affects Candida guilliermondii Cell Wall, Immune Sensing, and Virulence
title_full_unstemmed Disruption of Protein Mannosylation Affects Candida guilliermondii Cell Wall, Immune Sensing, and Virulence
title_short Disruption of Protein Mannosylation Affects Candida guilliermondii Cell Wall, Immune Sensing, and Virulence
title_sort disruption of protein mannosylation affects candida guilliermondii cell wall, immune sensing, and virulence
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5133257/
https://www.ncbi.nlm.nih.gov/pubmed/27994582
http://dx.doi.org/10.3389/fmicb.2016.01951
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