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Screening of Chemical Libraries for New Antifungal Drugs against Aspergillus fumigatus Reveals Sphingolipids Are Involved in the Mechanism of Action of Miltefosine

Aspergillus fumigatus is an important fungal pathogen and the main etiological agent of aspergillosis, a disease characterized by a noninvasive process that can evolve to a more severe clinical manifestation, called invasive pulmonary aspergillosis (IPA), in immunocompromised patients. The antifunga...

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Autores principales: dos Reis, Thaila Fernanda, Horta, Maria Augusta Crivelente, Colabardini, Ana Cristina, Fernandes, Caroline Mota, Silva, Lilian Pereira, Bastos, Rafael Wesley, Fonseca, Maria Vitória de Lazari, Wang, Fang, Martins, Celso, Rodrigues, Márcio L., Silva Pereira, Cristina, Del Poeta, Maurizio, Wong, Koon Ho, Goldman, Gustavo H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8406317/
https://www.ncbi.nlm.nih.gov/pubmed/34372704
http://dx.doi.org/10.1128/mBio.01458-21
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author dos Reis, Thaila Fernanda
Horta, Maria Augusta Crivelente
Colabardini, Ana Cristina
Fernandes, Caroline Mota
Silva, Lilian Pereira
Bastos, Rafael Wesley
Fonseca, Maria Vitória de Lazari
Wang, Fang
Martins, Celso
Rodrigues, Márcio L.
Silva Pereira, Cristina
Del Poeta, Maurizio
Wong, Koon Ho
Goldman, Gustavo H.
author_facet dos Reis, Thaila Fernanda
Horta, Maria Augusta Crivelente
Colabardini, Ana Cristina
Fernandes, Caroline Mota
Silva, Lilian Pereira
Bastos, Rafael Wesley
Fonseca, Maria Vitória de Lazari
Wang, Fang
Martins, Celso
Rodrigues, Márcio L.
Silva Pereira, Cristina
Del Poeta, Maurizio
Wong, Koon Ho
Goldman, Gustavo H.
author_sort dos Reis, Thaila Fernanda
collection PubMed
description Aspergillus fumigatus is an important fungal pathogen and the main etiological agent of aspergillosis, a disease characterized by a noninvasive process that can evolve to a more severe clinical manifestation, called invasive pulmonary aspergillosis (IPA), in immunocompromised patients. The antifungal arsenal to threat aspergillosis is very restricted. Azoles are the main therapeutic approach to control IPA, but the emergence of azole-resistant A. fumigatus isolates has significantly increased over recent decades. Therefore, new strategies are necessary to combat aspergillosis, and drug repurposing has emerged as an efficient and alternative approach for identifying new antifungal drugs. Here, we used a screening approach to analyze A. fumigatus in vitro susceptibility to 1,127 compounds. A. fumigatus was susceptible to 10 compounds, including miltefosine, a drug that displayed fungicidal activity against A. fumigatus. By screening an A. fumigatus transcription factor null library, we identified a single mutant, which has the smiA (sensitive to miltefosine) gene deleted, conferring a phenotype of susceptibility to miltefosine. The transcriptional profiling (RNA-seq) of the wild-type and ΔsmiA strains and chromatin immunoprecipitation coupled to next-generation sequencing (ChIP-Seq) of an SmiA-tagged strain exposed to miltefosine revealed genes of the sphingolipid pathway that are directly or indirectly regulated by SmiA. Sphingolipid analysis demonstrated that the mutant has overall decreased levels of sphingolipids when growing in the presence of miltefosine. The identification of SmiA represents the first genetic element described and characterized that plays a direct role in miltefosine response in fungi.
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spelling pubmed-84063172021-09-09 Screening of Chemical Libraries for New Antifungal Drugs against Aspergillus fumigatus Reveals Sphingolipids Are Involved in the Mechanism of Action of Miltefosine dos Reis, Thaila Fernanda Horta, Maria Augusta Crivelente Colabardini, Ana Cristina Fernandes, Caroline Mota Silva, Lilian Pereira Bastos, Rafael Wesley Fonseca, Maria Vitória de Lazari Wang, Fang Martins, Celso Rodrigues, Márcio L. Silva Pereira, Cristina Del Poeta, Maurizio Wong, Koon Ho Goldman, Gustavo H. mBio Research Article Aspergillus fumigatus is an important fungal pathogen and the main etiological agent of aspergillosis, a disease characterized by a noninvasive process that can evolve to a more severe clinical manifestation, called invasive pulmonary aspergillosis (IPA), in immunocompromised patients. The antifungal arsenal to threat aspergillosis is very restricted. Azoles are the main therapeutic approach to control IPA, but the emergence of azole-resistant A. fumigatus isolates has significantly increased over recent decades. Therefore, new strategies are necessary to combat aspergillosis, and drug repurposing has emerged as an efficient and alternative approach for identifying new antifungal drugs. Here, we used a screening approach to analyze A. fumigatus in vitro susceptibility to 1,127 compounds. A. fumigatus was susceptible to 10 compounds, including miltefosine, a drug that displayed fungicidal activity against A. fumigatus. By screening an A. fumigatus transcription factor null library, we identified a single mutant, which has the smiA (sensitive to miltefosine) gene deleted, conferring a phenotype of susceptibility to miltefosine. The transcriptional profiling (RNA-seq) of the wild-type and ΔsmiA strains and chromatin immunoprecipitation coupled to next-generation sequencing (ChIP-Seq) of an SmiA-tagged strain exposed to miltefosine revealed genes of the sphingolipid pathway that are directly or indirectly regulated by SmiA. Sphingolipid analysis demonstrated that the mutant has overall decreased levels of sphingolipids when growing in the presence of miltefosine. The identification of SmiA represents the first genetic element described and characterized that plays a direct role in miltefosine response in fungi. American Society for Microbiology 2021-08-10 /pmc/articles/PMC8406317/ /pubmed/34372704 http://dx.doi.org/10.1128/mBio.01458-21 Text en Copyright © 2021 dos Reis 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
dos Reis, Thaila Fernanda
Horta, Maria Augusta Crivelente
Colabardini, Ana Cristina
Fernandes, Caroline Mota
Silva, Lilian Pereira
Bastos, Rafael Wesley
Fonseca, Maria Vitória de Lazari
Wang, Fang
Martins, Celso
Rodrigues, Márcio L.
Silva Pereira, Cristina
Del Poeta, Maurizio
Wong, Koon Ho
Goldman, Gustavo H.
Screening of Chemical Libraries for New Antifungal Drugs against Aspergillus fumigatus Reveals Sphingolipids Are Involved in the Mechanism of Action of Miltefosine
title Screening of Chemical Libraries for New Antifungal Drugs against Aspergillus fumigatus Reveals Sphingolipids Are Involved in the Mechanism of Action of Miltefosine
title_full Screening of Chemical Libraries for New Antifungal Drugs against Aspergillus fumigatus Reveals Sphingolipids Are Involved in the Mechanism of Action of Miltefosine
title_fullStr Screening of Chemical Libraries for New Antifungal Drugs against Aspergillus fumigatus Reveals Sphingolipids Are Involved in the Mechanism of Action of Miltefosine
title_full_unstemmed Screening of Chemical Libraries for New Antifungal Drugs against Aspergillus fumigatus Reveals Sphingolipids Are Involved in the Mechanism of Action of Miltefosine
title_short Screening of Chemical Libraries for New Antifungal Drugs against Aspergillus fumigatus Reveals Sphingolipids Are Involved in the Mechanism of Action of Miltefosine
title_sort screening of chemical libraries for new antifungal drugs against aspergillus fumigatus reveals sphingolipids are involved in the mechanism of action of miltefosine
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8406317/
https://www.ncbi.nlm.nih.gov/pubmed/34372704
http://dx.doi.org/10.1128/mBio.01458-21
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