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Drimane Sesquiterpene Alcohols with Activity against Candida Yeast Obtained by Biotransformation with Cladosporium antarcticum

Fungal biotransformation is an attractive synthetic strategy to produce highly specific compounds with chemical functionality in regions of the carbon skeleton that are not easily activated by conventional organic chemistry methods. In this work, Cladosporium antarcticum isolated from sediments of G...

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Autores principales: Cortez, Nicole, Marín, Víctor, Jiménez, Verónica A., Silva, Víctor, Leyton, Oscar, Cabrera-Pardo, Jaime R., Schmidt, Bernd, Heydenreich, Matthias, Burgos, Viviana, Duran, Paola, Paz, Cristian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9653998/
https://www.ncbi.nlm.nih.gov/pubmed/36361785
http://dx.doi.org/10.3390/ijms232112995
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author Cortez, Nicole
Marín, Víctor
Jiménez, Verónica A.
Silva, Víctor
Leyton, Oscar
Cabrera-Pardo, Jaime R.
Schmidt, Bernd
Heydenreich, Matthias
Burgos, Viviana
Duran, Paola
Paz, Cristian
author_facet Cortez, Nicole
Marín, Víctor
Jiménez, Verónica A.
Silva, Víctor
Leyton, Oscar
Cabrera-Pardo, Jaime R.
Schmidt, Bernd
Heydenreich, Matthias
Burgos, Viviana
Duran, Paola
Paz, Cristian
author_sort Cortez, Nicole
collection PubMed
description Fungal biotransformation is an attractive synthetic strategy to produce highly specific compounds with chemical functionality in regions of the carbon skeleton that are not easily activated by conventional organic chemistry methods. In this work, Cladosporium antarcticum isolated from sediments of Glacier Collins in Antarctica was used to obtain novel drimane sesquiterpenoids alcohols with activity against Candida yeast from drimendiol and epidrimendiol. These compounds were produced by the high-yield reduction of polygodial and isotadeonal with NaBH(4) in methanol. Cladosporium antarcticum produced two major products from drimendiol, identified as 9α-hydroxydrimendiol (1, 41.4 mg, 19.4% yield) and 3β-hydroxydrimendiol (2, 74.8 mg, 35% yield), whereas the biotransformation of epidrimendiol yielded only one product, 9β-hydroxyepidrimendiol (3, 86.6 mg, 41.6% yield). The products were purified by column chromatography and their structure elucidated by NMR and MS. The antifungal activity of compounds 1–3 was analyzed against Candida albicans, C. krusei and C. parapsilosis, showing that compound 2 has a MIC lower than 15 µg/mL against the three-pathogenic yeast. In silico studies suggest that a possible mechanism of action for the novel compounds is the inhibition of the enzyme lanosterol 14α-demethylase, affecting the ergosterol synthesis.
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spelling pubmed-96539982022-11-15 Drimane Sesquiterpene Alcohols with Activity against Candida Yeast Obtained by Biotransformation with Cladosporium antarcticum Cortez, Nicole Marín, Víctor Jiménez, Verónica A. Silva, Víctor Leyton, Oscar Cabrera-Pardo, Jaime R. Schmidt, Bernd Heydenreich, Matthias Burgos, Viviana Duran, Paola Paz, Cristian Int J Mol Sci Article Fungal biotransformation is an attractive synthetic strategy to produce highly specific compounds with chemical functionality in regions of the carbon skeleton that are not easily activated by conventional organic chemistry methods. In this work, Cladosporium antarcticum isolated from sediments of Glacier Collins in Antarctica was used to obtain novel drimane sesquiterpenoids alcohols with activity against Candida yeast from drimendiol and epidrimendiol. These compounds were produced by the high-yield reduction of polygodial and isotadeonal with NaBH(4) in methanol. Cladosporium antarcticum produced two major products from drimendiol, identified as 9α-hydroxydrimendiol (1, 41.4 mg, 19.4% yield) and 3β-hydroxydrimendiol (2, 74.8 mg, 35% yield), whereas the biotransformation of epidrimendiol yielded only one product, 9β-hydroxyepidrimendiol (3, 86.6 mg, 41.6% yield). The products were purified by column chromatography and their structure elucidated by NMR and MS. The antifungal activity of compounds 1–3 was analyzed against Candida albicans, C. krusei and C. parapsilosis, showing that compound 2 has a MIC lower than 15 µg/mL against the three-pathogenic yeast. In silico studies suggest that a possible mechanism of action for the novel compounds is the inhibition of the enzyme lanosterol 14α-demethylase, affecting the ergosterol synthesis. MDPI 2022-10-27 /pmc/articles/PMC9653998/ /pubmed/36361785 http://dx.doi.org/10.3390/ijms232112995 Text en © 2022 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
Cortez, Nicole
Marín, Víctor
Jiménez, Verónica A.
Silva, Víctor
Leyton, Oscar
Cabrera-Pardo, Jaime R.
Schmidt, Bernd
Heydenreich, Matthias
Burgos, Viviana
Duran, Paola
Paz, Cristian
Drimane Sesquiterpene Alcohols with Activity against Candida Yeast Obtained by Biotransformation with Cladosporium antarcticum
title Drimane Sesquiterpene Alcohols with Activity against Candida Yeast Obtained by Biotransformation with Cladosporium antarcticum
title_full Drimane Sesquiterpene Alcohols with Activity against Candida Yeast Obtained by Biotransformation with Cladosporium antarcticum
title_fullStr Drimane Sesquiterpene Alcohols with Activity against Candida Yeast Obtained by Biotransformation with Cladosporium antarcticum
title_full_unstemmed Drimane Sesquiterpene Alcohols with Activity against Candida Yeast Obtained by Biotransformation with Cladosporium antarcticum
title_short Drimane Sesquiterpene Alcohols with Activity against Candida Yeast Obtained by Biotransformation with Cladosporium antarcticum
title_sort drimane sesquiterpene alcohols with activity against candida yeast obtained by biotransformation with cladosporium antarcticum
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9653998/
https://www.ncbi.nlm.nih.gov/pubmed/36361785
http://dx.doi.org/10.3390/ijms232112995
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