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Broad-spectrum antifungal activities and mechanism of drimane sesquiterpenoids

Eight drimane sesquiterpenoids including (-)-drimenol and (+)-albicanol were synthesized from (+)-sclareolide and evaluated for their antifungal activities. Three compounds, (-)-drimenol, (+)-albicanol, and (1R,2R,4aS,8aS)-2-hydroxy-2,5,5,8a-tetramethyl-decahydronaphthalene-1-carbaldehyde (4) showed...

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Autores principales: Edouarzin, Edruce, Horn, Connor, Paudyal, Anuja, Zhang, Cunli, Lu, Jianyu, Tong, Zongbo, Giaever, Guri, Nislow, Corey, Veerapandian, Raja, Hua, Duy H., Vediyappan, Govindsamy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shared Science Publishers OG 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7278516/
https://www.ncbi.nlm.nih.gov/pubmed/32548177
http://dx.doi.org/10.15698/mic2020.06.719
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author Edouarzin, Edruce
Horn, Connor
Paudyal, Anuja
Zhang, Cunli
Lu, Jianyu
Tong, Zongbo
Giaever, Guri
Nislow, Corey
Veerapandian, Raja
Hua, Duy H.
Vediyappan, Govindsamy
author_facet Edouarzin, Edruce
Horn, Connor
Paudyal, Anuja
Zhang, Cunli
Lu, Jianyu
Tong, Zongbo
Giaever, Guri
Nislow, Corey
Veerapandian, Raja
Hua, Duy H.
Vediyappan, Govindsamy
author_sort Edouarzin, Edruce
collection PubMed
description Eight drimane sesquiterpenoids including (-)-drimenol and (+)-albicanol were synthesized from (+)-sclareolide and evaluated for their antifungal activities. Three compounds, (-)-drimenol, (+)-albicanol, and (1R,2R,4aS,8aS)-2-hydroxy-2,5,5,8a-tetramethyl-decahydronaphthalene-1-carbaldehyde (4) showed strong activity against C. albicans. (-)-Drimenol, the strongest inhibitor of the three, (at concentrations of 8 – 64 µg/ml, causing 100% death of various fungi), acts not only against C. albicans in a fungicidal manner, but also inhibits other fungi such as Aspergillus, Cryptococcus, Pneumocystis, Blastomyces, Saksenaea and fluconazole resistant strains of C. albicans, C. glabrata, C. krusei, C. parapsilosis and C. auris. These observations suggest that drimenol is a broad-spectrum antifungal agent. At a high concentration (100 μg/ml) drimenol caused rupture of the fungal cell wall/membrane. In a nematode model of C. albicans infection, drimenol rescued the worms from C. albicans-mediated death, indicating drimenol is tolerable and bioactive in metazoans. Genome-wide fitness profiling assays of both S. cerevisiae (nonessential homozygous and essential heterozygous) and C. albicans (Tn-insertion mutants) collections revealed putative genes and pathways affected by drimenol. Using a C. albicans mutant spot assay, the Crk1 kinase associated gene products, Ret2, Cdc37, and orf19.759, orf19.1672, and orf19.4382 were revealed to be involved in drimenol's mechanism of action. The three orfs identified in this study are novel and appear to be linked with Crk1 function. Further, computational modeling results suggest possible modifications of the structure of drimenol, including the A ring, for improving the antifungal activity.
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spelling pubmed-72785162020-06-15 Broad-spectrum antifungal activities and mechanism of drimane sesquiterpenoids Edouarzin, Edruce Horn, Connor Paudyal, Anuja Zhang, Cunli Lu, Jianyu Tong, Zongbo Giaever, Guri Nislow, Corey Veerapandian, Raja Hua, Duy H. Vediyappan, Govindsamy Microb Cell Research Article Eight drimane sesquiterpenoids including (-)-drimenol and (+)-albicanol were synthesized from (+)-sclareolide and evaluated for their antifungal activities. Three compounds, (-)-drimenol, (+)-albicanol, and (1R,2R,4aS,8aS)-2-hydroxy-2,5,5,8a-tetramethyl-decahydronaphthalene-1-carbaldehyde (4) showed strong activity against C. albicans. (-)-Drimenol, the strongest inhibitor of the three, (at concentrations of 8 – 64 µg/ml, causing 100% death of various fungi), acts not only against C. albicans in a fungicidal manner, but also inhibits other fungi such as Aspergillus, Cryptococcus, Pneumocystis, Blastomyces, Saksenaea and fluconazole resistant strains of C. albicans, C. glabrata, C. krusei, C. parapsilosis and C. auris. These observations suggest that drimenol is a broad-spectrum antifungal agent. At a high concentration (100 μg/ml) drimenol caused rupture of the fungal cell wall/membrane. In a nematode model of C. albicans infection, drimenol rescued the worms from C. albicans-mediated death, indicating drimenol is tolerable and bioactive in metazoans. Genome-wide fitness profiling assays of both S. cerevisiae (nonessential homozygous and essential heterozygous) and C. albicans (Tn-insertion mutants) collections revealed putative genes and pathways affected by drimenol. Using a C. albicans mutant spot assay, the Crk1 kinase associated gene products, Ret2, Cdc37, and orf19.759, orf19.1672, and orf19.4382 were revealed to be involved in drimenol's mechanism of action. The three orfs identified in this study are novel and appear to be linked with Crk1 function. Further, computational modeling results suggest possible modifications of the structure of drimenol, including the A ring, for improving the antifungal activity. Shared Science Publishers OG 2020-03-12 /pmc/articles/PMC7278516/ /pubmed/32548177 http://dx.doi.org/10.15698/mic2020.06.719 Text en Copyright: © 2020 Edouarzin et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article released under the terms of the Creative Commons Attribution (CC BY) license, which allows the unrestricted use, distribution, and reproduction in any medium, provided the original author and source are acknowledged.
spellingShingle Research Article
Edouarzin, Edruce
Horn, Connor
Paudyal, Anuja
Zhang, Cunli
Lu, Jianyu
Tong, Zongbo
Giaever, Guri
Nislow, Corey
Veerapandian, Raja
Hua, Duy H.
Vediyappan, Govindsamy
Broad-spectrum antifungal activities and mechanism of drimane sesquiterpenoids
title Broad-spectrum antifungal activities and mechanism of drimane sesquiterpenoids
title_full Broad-spectrum antifungal activities and mechanism of drimane sesquiterpenoids
title_fullStr Broad-spectrum antifungal activities and mechanism of drimane sesquiterpenoids
title_full_unstemmed Broad-spectrum antifungal activities and mechanism of drimane sesquiterpenoids
title_short Broad-spectrum antifungal activities and mechanism of drimane sesquiterpenoids
title_sort broad-spectrum antifungal activities and mechanism of drimane sesquiterpenoids
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7278516/
https://www.ncbi.nlm.nih.gov/pubmed/32548177
http://dx.doi.org/10.15698/mic2020.06.719
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