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Candida albicans Adhesins Als1 and Hwp1 Modulate Interactions with Streptococcus mutans

Candida albicans and Streptococcus mutans are known to synergistically interact with each other in the oral cavity. For example, glucosyltransferase B (GtfB), secreted by S. mutans, can bind to the C. albicans cell surface, promoting dual-species biofilm formation. However, the fungal factors mediat...

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Autores principales: Martorano-Fernandes, Loyse, Goodwine, James S., Ricomini-Filho, Antônio Pedro, Nobile, Clarissa J., Del Bel Cury, Altair Antoninha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10301338/
https://www.ncbi.nlm.nih.gov/pubmed/37374893
http://dx.doi.org/10.3390/microorganisms11061391
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author Martorano-Fernandes, Loyse
Goodwine, James S.
Ricomini-Filho, Antônio Pedro
Nobile, Clarissa J.
Del Bel Cury, Altair Antoninha
author_facet Martorano-Fernandes, Loyse
Goodwine, James S.
Ricomini-Filho, Antônio Pedro
Nobile, Clarissa J.
Del Bel Cury, Altair Antoninha
author_sort Martorano-Fernandes, Loyse
collection PubMed
description Candida albicans and Streptococcus mutans are known to synergistically interact with each other in the oral cavity. For example, glucosyltransferase B (GtfB), secreted by S. mutans, can bind to the C. albicans cell surface, promoting dual-species biofilm formation. However, the fungal factors mediating interactions with S. mutans are unknown. The C. albicans adhesins Als1, Als3, and Hwp1 are key players in C. albicans single-species biofilm formation, but their roles, if any, in interacting with S. mutans have not been assessed. Here, we investigated the roles of the C. albicans cell wall adhesins Als1, Als3, and Hwp1 on forming dual-species biofilms with S. mutans. We assessed the abilities of the C. albicans wild-type als1Δ/Δ, als3Δ/Δ, als1Δ/Δ/als3Δ/Δ, and hwp1Δ/Δ strains to form dual-species biofilms with S. mutans by measuring optical density, metabolic activity, cell enumeration, biomass, thickness, and architecture of the biofilms. We observed that the C. albicans wild-type strain formed enhanced dual-species biofilms in the presence of S. mutans in these different biofilm assays, confirming that C. albicans and S. mutans synergistically interact in the context of biofilms. Our results reveal that C. albicans Als1 and Hwp1 are major players in interacting with S. mutans, since dual-species biofilm formation was not enhanced when the als1Δ/Δ or hwp1Δ/Δ strains were cultured with S. mutans in dual-species biofilms. Als3, however, does not seem to play a clear role in interacting with S. mutans in dual-species biofilm formation. Overall, our data suggest that the C. albicans adhesins Als1 and Hwp1 function to modulate interactions with S. mutans and could be potential targets for future therapeutics.
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spelling pubmed-103013382023-06-29 Candida albicans Adhesins Als1 and Hwp1 Modulate Interactions with Streptococcus mutans Martorano-Fernandes, Loyse Goodwine, James S. Ricomini-Filho, Antônio Pedro Nobile, Clarissa J. Del Bel Cury, Altair Antoninha Microorganisms Article Candida albicans and Streptococcus mutans are known to synergistically interact with each other in the oral cavity. For example, glucosyltransferase B (GtfB), secreted by S. mutans, can bind to the C. albicans cell surface, promoting dual-species biofilm formation. However, the fungal factors mediating interactions with S. mutans are unknown. The C. albicans adhesins Als1, Als3, and Hwp1 are key players in C. albicans single-species biofilm formation, but their roles, if any, in interacting with S. mutans have not been assessed. Here, we investigated the roles of the C. albicans cell wall adhesins Als1, Als3, and Hwp1 on forming dual-species biofilms with S. mutans. We assessed the abilities of the C. albicans wild-type als1Δ/Δ, als3Δ/Δ, als1Δ/Δ/als3Δ/Δ, and hwp1Δ/Δ strains to form dual-species biofilms with S. mutans by measuring optical density, metabolic activity, cell enumeration, biomass, thickness, and architecture of the biofilms. We observed that the C. albicans wild-type strain formed enhanced dual-species biofilms in the presence of S. mutans in these different biofilm assays, confirming that C. albicans and S. mutans synergistically interact in the context of biofilms. Our results reveal that C. albicans Als1 and Hwp1 are major players in interacting with S. mutans, since dual-species biofilm formation was not enhanced when the als1Δ/Δ or hwp1Δ/Δ strains were cultured with S. mutans in dual-species biofilms. Als3, however, does not seem to play a clear role in interacting with S. mutans in dual-species biofilm formation. Overall, our data suggest that the C. albicans adhesins Als1 and Hwp1 function to modulate interactions with S. mutans and could be potential targets for future therapeutics. MDPI 2023-05-25 /pmc/articles/PMC10301338/ /pubmed/37374893 http://dx.doi.org/10.3390/microorganisms11061391 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Martorano-Fernandes, Loyse
Goodwine, James S.
Ricomini-Filho, Antônio Pedro
Nobile, Clarissa J.
Del Bel Cury, Altair Antoninha
Candida albicans Adhesins Als1 and Hwp1 Modulate Interactions with Streptococcus mutans
title Candida albicans Adhesins Als1 and Hwp1 Modulate Interactions with Streptococcus mutans
title_full Candida albicans Adhesins Als1 and Hwp1 Modulate Interactions with Streptococcus mutans
title_fullStr Candida albicans Adhesins Als1 and Hwp1 Modulate Interactions with Streptococcus mutans
title_full_unstemmed Candida albicans Adhesins Als1 and Hwp1 Modulate Interactions with Streptococcus mutans
title_short Candida albicans Adhesins Als1 and Hwp1 Modulate Interactions with Streptococcus mutans
title_sort candida albicans adhesins als1 and hwp1 modulate interactions with streptococcus mutans
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10301338/
https://www.ncbi.nlm.nih.gov/pubmed/37374893
http://dx.doi.org/10.3390/microorganisms11061391
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