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GNP2 Encodes a High-Specificity Proline Permease in Candida albicans

The tight association of Candida albicans with the human host has driven the evolution of mechanisms that permit metabolic flexibility. Amino acids, present in a free or peptide-bound form, are abundant carbon and nitrogen sources in many host niches. In C. albicans, the capacity to utilize certain...

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Autores principales: Garbe, Enrico, Miramón, Pedro, Gerwien, Franziska, Ueberschaar, Nico, Hansske-Braun, Louisa, Brandt, Philipp, Böttcher, Bettina, Lorenz, Michael, Vylkova, Slavena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8787483/
https://www.ncbi.nlm.nih.gov/pubmed/35073760
http://dx.doi.org/10.1128/mbio.03142-21
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author Garbe, Enrico
Miramón, Pedro
Gerwien, Franziska
Ueberschaar, Nico
Hansske-Braun, Louisa
Brandt, Philipp
Böttcher, Bettina
Lorenz, Michael
Vylkova, Slavena
author_facet Garbe, Enrico
Miramón, Pedro
Gerwien, Franziska
Ueberschaar, Nico
Hansske-Braun, Louisa
Brandt, Philipp
Böttcher, Bettina
Lorenz, Michael
Vylkova, Slavena
author_sort Garbe, Enrico
collection PubMed
description The tight association of Candida albicans with the human host has driven the evolution of mechanisms that permit metabolic flexibility. Amino acids, present in a free or peptide-bound form, are abundant carbon and nitrogen sources in many host niches. In C. albicans, the capacity to utilize certain amino acids, like proline, is directly connected to fungal morphogenesis and virulence. Yet the precise nature of proline sensing and uptake in this pathogenic fungus has not been investigated. Since C. albicans encodes 10 putative orthologs of the four Saccharomyces cerevisiae proline transporters, we tested deletion strains of the respective genes and identified Gnp2 (CR_09920W) as the main C. albicans proline permease. In addition, we found that this specialization of Gnp2 was reflected in its transcriptional regulation and further assigned distinct substrate specificities for the other orthologs, indicating functional differences of the C. albicans amino acid permeases compared to the model yeast. The physiological relevance of proline uptake is exemplified by the findings that strains lacking GNP2 were unable to filament in response to extracellular proline and had a reduced capacity to damage macrophages and impaired survival following phagocytosis. Furthermore, GNP2 deletion rendered the cells more sensitive to oxidative stress, illustrating new connections between amino acid uptake and stress adaptation in C. albicans.
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spelling pubmed-87874832022-02-07 GNP2 Encodes a High-Specificity Proline Permease in Candida albicans Garbe, Enrico Miramón, Pedro Gerwien, Franziska Ueberschaar, Nico Hansske-Braun, Louisa Brandt, Philipp Böttcher, Bettina Lorenz, Michael Vylkova, Slavena mBio Research Article The tight association of Candida albicans with the human host has driven the evolution of mechanisms that permit metabolic flexibility. Amino acids, present in a free or peptide-bound form, are abundant carbon and nitrogen sources in many host niches. In C. albicans, the capacity to utilize certain amino acids, like proline, is directly connected to fungal morphogenesis and virulence. Yet the precise nature of proline sensing and uptake in this pathogenic fungus has not been investigated. Since C. albicans encodes 10 putative orthologs of the four Saccharomyces cerevisiae proline transporters, we tested deletion strains of the respective genes and identified Gnp2 (CR_09920W) as the main C. albicans proline permease. In addition, we found that this specialization of Gnp2 was reflected in its transcriptional regulation and further assigned distinct substrate specificities for the other orthologs, indicating functional differences of the C. albicans amino acid permeases compared to the model yeast. The physiological relevance of proline uptake is exemplified by the findings that strains lacking GNP2 were unable to filament in response to extracellular proline and had a reduced capacity to damage macrophages and impaired survival following phagocytosis. Furthermore, GNP2 deletion rendered the cells more sensitive to oxidative stress, illustrating new connections between amino acid uptake and stress adaptation in C. albicans. American Society for Microbiology 2022-01-25 /pmc/articles/PMC8787483/ /pubmed/35073760 http://dx.doi.org/10.1128/mbio.03142-21 Text en Copyright © 2022 Garbe 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 Research Article
Garbe, Enrico
Miramón, Pedro
Gerwien, Franziska
Ueberschaar, Nico
Hansske-Braun, Louisa
Brandt, Philipp
Böttcher, Bettina
Lorenz, Michael
Vylkova, Slavena
GNP2 Encodes a High-Specificity Proline Permease in Candida albicans
title GNP2 Encodes a High-Specificity Proline Permease in Candida albicans
title_full GNP2 Encodes a High-Specificity Proline Permease in Candida albicans
title_fullStr GNP2 Encodes a High-Specificity Proline Permease in Candida albicans
title_full_unstemmed GNP2 Encodes a High-Specificity Proline Permease in Candida albicans
title_short GNP2 Encodes a High-Specificity Proline Permease in Candida albicans
title_sort gnp2 encodes a high-specificity proline permease in candida albicans
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8787483/
https://www.ncbi.nlm.nih.gov/pubmed/35073760
http://dx.doi.org/10.1128/mbio.03142-21
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