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Direct Stochastic Optical Reconstruction Microscopy of Extracellular Vesicles in Three Dimensions
Published on: August 26, 2021
Fungal Extracellular Vesicles Are Involved in Intraspecies Intracellular Communication
Tamires A Bitencourt1, Otavio Hatanaka1, Andre M Pessoni1
1Department of Biochemistry and Immunology, Ribeirao Preto Medical School, University of São Paulo, Ribeirao Preto, São Paulo, Brazil.
Abstract:
Fungal infections are associated with high mortality rates in humans. The risk of fungal diseases creates the urgent need to broaden the knowledge base regarding their pathophysiology. In this sense, the role of extracellular vesicles (EVs) has been described to convey biological information and participate in the fungus-host interaction process. We hypothesized that fungal EVs work as an additional element in the communication routes regulating fungal responses in intraspecies interaction systems. In this respect, the aim of this study was to address the gene regulation profiles prompted by fungal EVs in intraspecies recipient cells. Our data demonstrated the intraspecies uptake of EVs in pathogenic fungi, such as Candida albicans, Aspergillus fumigatus, and Paracoccidioides brasiliensis, and the effects triggered by EVs in fungal cells. In C. albicans, we evaluated the involvement of EVs in the yeast-to-hypha transition, while in P. brasiliensis and A. fumigatus the function of EVs as stress transducers was investigated. P. brasiliensis and A. fumigatus were exposed to an inhibitor of glycosylation or UV light, respectively. The results demonstrated the role of EVs in regulating the expression of target genes and triggering phenotypic changes. The EVs treatment induced cellular proliferation and boosted the yeast to hyphal transition in C. albicans, while they enhanced stress responsiveness in A. fumigatus and P. brasiliensis, establishing a role for EVs in fungal intraspecies communication. Thus, EVs regulate fungal behavior, acting as potent message effectors, and understanding their effects and mechanism(s) of action could be exploited in antifungal therapies. IMPORTANCE Here, we report a study about extracellular vesicles (EVs) as communication mediators in fungi. Our results demonstrated the role of EVs from Candida albicans, Aspergillus fumigatus, and Paracoccidioides brasiliensis regulating the expression of target genes and phenotypic features. We asked whether fungal EVs play a role as message effectors. We show that fungal EVs are involved in fungal interaction systems as potent message effectors, and understanding their effects and mechanisms of action could be exploited in antifungal therapies.
Insights
Fungal extracellular vesicles (EVs) mediate communication between fungal cells, influencing gene expression and phenotypic changes. This discovery offers potential new avenues for developing antifungal therapies.
Area of Science:
- Mycology
- Cell Biology
- Molecular Biology
Background:
- Fungal infections pose significant mortality risks, necessitating deeper understanding of their pathophysiology.
- Extracellular vesicles (EVs) are known mediators of intercellular communication and play roles in host-pathogen interactions.
- The role of fungal EVs in intraspecies communication remains largely unexplored.
Purpose of the Study:
- To investigate the role of fungal EVs in intraspecies communication.
- To determine how fungal EVs regulate gene expression and phenotypic characteristics in recipient fungal cells.
- To explore the potential of fungal EVs as therapeutic targets for antifungal strategies.
Main Methods:
- Investigated the uptake of EVs in pathogenic fungi including Candida albicans, Aspergillus fumigatus, and Paracoccidioides brasiliensis.
- Assessed the impact of EVs on yeast-to-hypha transition in C. albicans.
- Examined the function of EVs as stress transducers in P. brasiliensis (exposed to glycosylation inhibitor) and A. fumigatus (exposed to UV light).
Main Results:
- Demonstrated intraspecies uptake of EVs in C. albicans, A. fumigatus, and P. brasiliensis.
- EVs treatment induced cellular proliferation and enhanced yeast-to-hyphal transition in C. albicans.
- EVs treatment boosted stress responsiveness in A. fumigatus and P. brasiliensis, indicating their role as stress transducers.
Conclusions:
- Fungal EVs act as crucial mediators in intraspecies communication, regulating gene expression and triggering phenotypic alterations.
- EVs function as potent message effectors, influencing fungal behavior and stress responses.
- Understanding fungal EV mechanisms offers promising opportunities for the development of novel antifungal therapies.
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