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Role of CgTpo4 in Polyamine and Antimicrobial Peptide Resistance: Determining Virulence in Candida glabrata

Candida glabrata is an emerging fungal pathogen whose success depends on its ability to resist antifungal drugs but also to thrive against host defenses. In this study, the predicted multidrug transporter CgTpo4 (encoded by ORF CAGL0L10912g) is described as a new determinant of virulence in C. glabr...

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Autores principales: Cavalheiro, Mafalda, Romão, Daniela, Santos, Rui, Mil-Homens, Dalila, Pais, Pedro, Costa, Catarina, Galocha, Mónica, Pereira, Diana, Takahashi-Nakaguchi, Azusa, Chibana, Hiroji, Fialho, Arsénio M., Teixeira, Miguel C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7866538/
https://www.ncbi.nlm.nih.gov/pubmed/33573089
http://dx.doi.org/10.3390/ijms22031376
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author Cavalheiro, Mafalda
Romão, Daniela
Santos, Rui
Mil-Homens, Dalila
Pais, Pedro
Costa, Catarina
Galocha, Mónica
Pereira, Diana
Takahashi-Nakaguchi, Azusa
Chibana, Hiroji
Fialho, Arsénio M.
Teixeira, Miguel C.
author_facet Cavalheiro, Mafalda
Romão, Daniela
Santos, Rui
Mil-Homens, Dalila
Pais, Pedro
Costa, Catarina
Galocha, Mónica
Pereira, Diana
Takahashi-Nakaguchi, Azusa
Chibana, Hiroji
Fialho, Arsénio M.
Teixeira, Miguel C.
author_sort Cavalheiro, Mafalda
collection PubMed
description Candida glabrata is an emerging fungal pathogen whose success depends on its ability to resist antifungal drugs but also to thrive against host defenses. In this study, the predicted multidrug transporter CgTpo4 (encoded by ORF CAGL0L10912g) is described as a new determinant of virulence in C. glabrata, using the infection model Galleria mellonella. The CgTPO4 gene was found to be required for the C. glabrata ability to kill G. mellonella. The transporter encoded by this gene is also necessary for antimicrobial peptide (AMP) resistance, specifically against histatin-5. Interestingly, G. mellonella’s AMP expression was found to be strongly activated in response to C. glabrata infection, suggesting AMPs are a key antifungal defense. CgTpo4 was also found to be a plasma membrane exporter of polyamines, especially spermidine, suggesting that CgTpo4 is able to export polyamines and AMPs, thus conferring resistance to both stress agents. Altogether, this study presents the polyamine exporter CgTpo4 as a determinant of C. glabrata virulence, which acts by protecting the yeast cells from the overexpression of AMPs, deployed as a host defense mechanism.
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spelling pubmed-78665382021-02-07 Role of CgTpo4 in Polyamine and Antimicrobial Peptide Resistance: Determining Virulence in Candida glabrata Cavalheiro, Mafalda Romão, Daniela Santos, Rui Mil-Homens, Dalila Pais, Pedro Costa, Catarina Galocha, Mónica Pereira, Diana Takahashi-Nakaguchi, Azusa Chibana, Hiroji Fialho, Arsénio M. Teixeira, Miguel C. Int J Mol Sci Article Candida glabrata is an emerging fungal pathogen whose success depends on its ability to resist antifungal drugs but also to thrive against host defenses. In this study, the predicted multidrug transporter CgTpo4 (encoded by ORF CAGL0L10912g) is described as a new determinant of virulence in C. glabrata, using the infection model Galleria mellonella. The CgTPO4 gene was found to be required for the C. glabrata ability to kill G. mellonella. The transporter encoded by this gene is also necessary for antimicrobial peptide (AMP) resistance, specifically against histatin-5. Interestingly, G. mellonella’s AMP expression was found to be strongly activated in response to C. glabrata infection, suggesting AMPs are a key antifungal defense. CgTpo4 was also found to be a plasma membrane exporter of polyamines, especially spermidine, suggesting that CgTpo4 is able to export polyamines and AMPs, thus conferring resistance to both stress agents. Altogether, this study presents the polyamine exporter CgTpo4 as a determinant of C. glabrata virulence, which acts by protecting the yeast cells from the overexpression of AMPs, deployed as a host defense mechanism. MDPI 2021-01-29 /pmc/articles/PMC7866538/ /pubmed/33573089 http://dx.doi.org/10.3390/ijms22031376 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cavalheiro, Mafalda
Romão, Daniela
Santos, Rui
Mil-Homens, Dalila
Pais, Pedro
Costa, Catarina
Galocha, Mónica
Pereira, Diana
Takahashi-Nakaguchi, Azusa
Chibana, Hiroji
Fialho, Arsénio M.
Teixeira, Miguel C.
Role of CgTpo4 in Polyamine and Antimicrobial Peptide Resistance: Determining Virulence in Candida glabrata
title Role of CgTpo4 in Polyamine and Antimicrobial Peptide Resistance: Determining Virulence in Candida glabrata
title_full Role of CgTpo4 in Polyamine and Antimicrobial Peptide Resistance: Determining Virulence in Candida glabrata
title_fullStr Role of CgTpo4 in Polyamine and Antimicrobial Peptide Resistance: Determining Virulence in Candida glabrata
title_full_unstemmed Role of CgTpo4 in Polyamine and Antimicrobial Peptide Resistance: Determining Virulence in Candida glabrata
title_short Role of CgTpo4 in Polyamine and Antimicrobial Peptide Resistance: Determining Virulence in Candida glabrata
title_sort role of cgtpo4 in polyamine and antimicrobial peptide resistance: determining virulence in candida glabrata
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7866538/
https://www.ncbi.nlm.nih.gov/pubmed/33573089
http://dx.doi.org/10.3390/ijms22031376
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