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The Arginine Biosynthesis Pathway of Candida albicans Regulates Its Cross-Kingdom Interaction with Actinomyces viscosus to Promote Root Caries

The cross-kingdom interactions between Candida albicans and Actinomyces viscosus play critical roles in root caries. However, the key pathway by which C. albicans regulates its interactions with A. viscosus is unclear. Here, we first employed 39 volunteers with root caries and 37 caries-free volunte...

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Autores principales: Xiong, Kaixin, Zhu, Hualing, Li, Yanyao, Ji, Mengzhen, Yan, Yujia, Chen, Xuan, Chi, Yaqi, Yang, Xueqin, Deng, Ling, Zhou, Xuedong, Zou, Ling, Ren, Biao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9430244/
https://www.ncbi.nlm.nih.gov/pubmed/35862976
http://dx.doi.org/10.1128/spectrum.00782-22
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author Xiong, Kaixin
Zhu, Hualing
Li, Yanyao
Ji, Mengzhen
Yan, Yujia
Chen, Xuan
Chi, Yaqi
Yang, Xueqin
Deng, Ling
Zhou, Xuedong
Zou, Ling
Ren, Biao
author_facet Xiong, Kaixin
Zhu, Hualing
Li, Yanyao
Ji, Mengzhen
Yan, Yujia
Chen, Xuan
Chi, Yaqi
Yang, Xueqin
Deng, Ling
Zhou, Xuedong
Zou, Ling
Ren, Biao
author_sort Xiong, Kaixin
collection PubMed
description The cross-kingdom interactions between Candida albicans and Actinomyces viscosus play critical roles in root caries. However, the key pathway by which C. albicans regulates its interactions with A. viscosus is unclear. Here, we first employed 39 volunteers with root caries and 37 caries-free volunteers, and found that the abundances of C. albicans and A. viscosus were significantly increased in the individuals with root caries and showed a strong positive correlation. Their dual-species combination synergistically promoted biofilm formation and root caries in rats. The arginine biosynthesis pathway of C. albicans was significantly upregulated in dual-species biofilms and dental plaques from another 10 root caries volunteers compared with the 10 caries-free volunteers. The exogenous addition of arginine increased the cariogenicity of the dual-species biofilm. The C. albicans ARG4, a key gene from the arginine biosynthesis pathway, null mutant failed to promote dual-species biofilm formation and root caries in rats; however, the addition of arginine restored its synergistic actions with A. viscosus. Our results identified the critical roles of the C. albicans arginine biosynthesis pathway in its cross-kingdom interactions with A. viscosus for the first time and indicated that targeting this pathway was a practical way to treat root caries caused by multiple species. IMPORTANCE Root caries is a critical problem that threatens the oral health of the elderly population. Our results identified the essential roles of the C. albicans arginine biosynthesis pathway in its cross-kingdom interactions with A. viscosus in root caries for the first time and indicated that targeting this pathway was a practical way to treat root caries caused by multiple species.
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spelling pubmed-94302442022-09-01 The Arginine Biosynthesis Pathway of Candida albicans Regulates Its Cross-Kingdom Interaction with Actinomyces viscosus to Promote Root Caries Xiong, Kaixin Zhu, Hualing Li, Yanyao Ji, Mengzhen Yan, Yujia Chen, Xuan Chi, Yaqi Yang, Xueqin Deng, Ling Zhou, Xuedong Zou, Ling Ren, Biao Microbiol Spectr Research Article The cross-kingdom interactions between Candida albicans and Actinomyces viscosus play critical roles in root caries. However, the key pathway by which C. albicans regulates its interactions with A. viscosus is unclear. Here, we first employed 39 volunteers with root caries and 37 caries-free volunteers, and found that the abundances of C. albicans and A. viscosus were significantly increased in the individuals with root caries and showed a strong positive correlation. Their dual-species combination synergistically promoted biofilm formation and root caries in rats. The arginine biosynthesis pathway of C. albicans was significantly upregulated in dual-species biofilms and dental plaques from another 10 root caries volunteers compared with the 10 caries-free volunteers. The exogenous addition of arginine increased the cariogenicity of the dual-species biofilm. The C. albicans ARG4, a key gene from the arginine biosynthesis pathway, null mutant failed to promote dual-species biofilm formation and root caries in rats; however, the addition of arginine restored its synergistic actions with A. viscosus. Our results identified the critical roles of the C. albicans arginine biosynthesis pathway in its cross-kingdom interactions with A. viscosus for the first time and indicated that targeting this pathway was a practical way to treat root caries caused by multiple species. IMPORTANCE Root caries is a critical problem that threatens the oral health of the elderly population. Our results identified the essential roles of the C. albicans arginine biosynthesis pathway in its cross-kingdom interactions with A. viscosus in root caries for the first time and indicated that targeting this pathway was a practical way to treat root caries caused by multiple species. American Society for Microbiology 2022-07-13 /pmc/articles/PMC9430244/ /pubmed/35862976 http://dx.doi.org/10.1128/spectrum.00782-22 Text en Copyright © 2022 Xiong 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
Xiong, Kaixin
Zhu, Hualing
Li, Yanyao
Ji, Mengzhen
Yan, Yujia
Chen, Xuan
Chi, Yaqi
Yang, Xueqin
Deng, Ling
Zhou, Xuedong
Zou, Ling
Ren, Biao
The Arginine Biosynthesis Pathway of Candida albicans Regulates Its Cross-Kingdom Interaction with Actinomyces viscosus to Promote Root Caries
title The Arginine Biosynthesis Pathway of Candida albicans Regulates Its Cross-Kingdom Interaction with Actinomyces viscosus to Promote Root Caries
title_full The Arginine Biosynthesis Pathway of Candida albicans Regulates Its Cross-Kingdom Interaction with Actinomyces viscosus to Promote Root Caries
title_fullStr The Arginine Biosynthesis Pathway of Candida albicans Regulates Its Cross-Kingdom Interaction with Actinomyces viscosus to Promote Root Caries
title_full_unstemmed The Arginine Biosynthesis Pathway of Candida albicans Regulates Its Cross-Kingdom Interaction with Actinomyces viscosus to Promote Root Caries
title_short The Arginine Biosynthesis Pathway of Candida albicans Regulates Its Cross-Kingdom Interaction with Actinomyces viscosus to Promote Root Caries
title_sort arginine biosynthesis pathway of candida albicans regulates its cross-kingdom interaction with actinomyces viscosus to promote root caries
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9430244/
https://www.ncbi.nlm.nih.gov/pubmed/35862976
http://dx.doi.org/10.1128/spectrum.00782-22
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