Cargando…

Oxidation of Isodrimeninol with PCC Yields Drimane Derivatives with Activity against Candida Yeast by Inhibition of Lanosterol 14-Alpha Demethylase

Candida species cause an opportunistic yeast infection called Candidiasis, which is responsible for more than 50,000 deaths every year around the world. Effective treatments against candidiasis caused by non-albicans Candida species such as C. glabrata, C. parapsilosis, C. aureus, and C. krusei are...

Descripción completa

Detalles Bibliográficos
Autores principales: Marin, Victor, Iturra, Andres, Opazo, Andres, Schmidt, Bernd, Heydenreich, Matthias, Ortiz, Leandro, Jiménez, Verónica A., Paz, Cristian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7463952/
https://www.ncbi.nlm.nih.gov/pubmed/32722158
http://dx.doi.org/10.3390/biom10081101
_version_ 1783577252413308928
author Marin, Victor
Iturra, Andres
Opazo, Andres
Schmidt, Bernd
Heydenreich, Matthias
Ortiz, Leandro
Jiménez, Verónica A.
Paz, Cristian
author_facet Marin, Victor
Iturra, Andres
Opazo, Andres
Schmidt, Bernd
Heydenreich, Matthias
Ortiz, Leandro
Jiménez, Verónica A.
Paz, Cristian
author_sort Marin, Victor
collection PubMed
description Candida species cause an opportunistic yeast infection called Candidiasis, which is responsible for more than 50,000 deaths every year around the world. Effective treatments against candidiasis caused by non-albicans Candida species such as C. glabrata, C. parapsilosis, C. aureus, and C. krusei are limited due to severe resistance to conventional antifungal drugs. Natural drimane sesquiterpenoids have shown promising antifungal properties against Candida yeast and have emerged as valuable candidates for developing new candidiasis therapies. In this work, we isolated isodrimeninol (C1) from barks of Drimys winteri and used it as starting material for the hemi-synthesis of four sesquiterpenoids by oxidation with pyridinium chlorochromate (PCC). The structure of the products (C2, C3, C4, and C5) was elucidated by 1D and 2D NMR spectroscopy resulting in C4 being a novel compound. Antifungal activity assays against C. albicans, C. glabrata, and C. krusei revealed that C4 exhibited an increased activity (IC(50) of 75 μg/mL) compared to C1 (IC(50) of 125 μg/mL) in all yeast strains. The antifungal activity of C1 and C4 was rationalized in terms of their capability to inhibit lanosterol 14-alpha demethylase using molecular docking, molecular dynamics simulations, and MM/GBSA binding free energy calculations. In silico analysis revealed that C1 and C4 bind to the outermost region of the catalytic site of 14-alpha demethylase and block the entrance of lanosterol (LAN) to the catalytic pocket. Binding free energy estimates suggested that C4 forms a more stable complex with the enzyme than C1, in agreement with the experimental evidence. Based on this new approach it is possible to design new drimane-type sesquiterpenoids for the control of Candida species as inhibitors of 14-alpha demethylase.
format Online
Article
Text
id pubmed-7463952
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-74639522020-09-04 Oxidation of Isodrimeninol with PCC Yields Drimane Derivatives with Activity against Candida Yeast by Inhibition of Lanosterol 14-Alpha Demethylase Marin, Victor Iturra, Andres Opazo, Andres Schmidt, Bernd Heydenreich, Matthias Ortiz, Leandro Jiménez, Verónica A. Paz, Cristian Biomolecules Article Candida species cause an opportunistic yeast infection called Candidiasis, which is responsible for more than 50,000 deaths every year around the world. Effective treatments against candidiasis caused by non-albicans Candida species such as C. glabrata, C. parapsilosis, C. aureus, and C. krusei are limited due to severe resistance to conventional antifungal drugs. Natural drimane sesquiterpenoids have shown promising antifungal properties against Candida yeast and have emerged as valuable candidates for developing new candidiasis therapies. In this work, we isolated isodrimeninol (C1) from barks of Drimys winteri and used it as starting material for the hemi-synthesis of four sesquiterpenoids by oxidation with pyridinium chlorochromate (PCC). The structure of the products (C2, C3, C4, and C5) was elucidated by 1D and 2D NMR spectroscopy resulting in C4 being a novel compound. Antifungal activity assays against C. albicans, C. glabrata, and C. krusei revealed that C4 exhibited an increased activity (IC(50) of 75 μg/mL) compared to C1 (IC(50) of 125 μg/mL) in all yeast strains. The antifungal activity of C1 and C4 was rationalized in terms of their capability to inhibit lanosterol 14-alpha demethylase using molecular docking, molecular dynamics simulations, and MM/GBSA binding free energy calculations. In silico analysis revealed that C1 and C4 bind to the outermost region of the catalytic site of 14-alpha demethylase and block the entrance of lanosterol (LAN) to the catalytic pocket. Binding free energy estimates suggested that C4 forms a more stable complex with the enzyme than C1, in agreement with the experimental evidence. Based on this new approach it is possible to design new drimane-type sesquiterpenoids for the control of Candida species as inhibitors of 14-alpha demethylase. MDPI 2020-07-24 /pmc/articles/PMC7463952/ /pubmed/32722158 http://dx.doi.org/10.3390/biom10081101 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Marin, Victor
Iturra, Andres
Opazo, Andres
Schmidt, Bernd
Heydenreich, Matthias
Ortiz, Leandro
Jiménez, Verónica A.
Paz, Cristian
Oxidation of Isodrimeninol with PCC Yields Drimane Derivatives with Activity against Candida Yeast by Inhibition of Lanosterol 14-Alpha Demethylase
title Oxidation of Isodrimeninol with PCC Yields Drimane Derivatives with Activity against Candida Yeast by Inhibition of Lanosterol 14-Alpha Demethylase
title_full Oxidation of Isodrimeninol with PCC Yields Drimane Derivatives with Activity against Candida Yeast by Inhibition of Lanosterol 14-Alpha Demethylase
title_fullStr Oxidation of Isodrimeninol with PCC Yields Drimane Derivatives with Activity against Candida Yeast by Inhibition of Lanosterol 14-Alpha Demethylase
title_full_unstemmed Oxidation of Isodrimeninol with PCC Yields Drimane Derivatives with Activity against Candida Yeast by Inhibition of Lanosterol 14-Alpha Demethylase
title_short Oxidation of Isodrimeninol with PCC Yields Drimane Derivatives with Activity against Candida Yeast by Inhibition of Lanosterol 14-Alpha Demethylase
title_sort oxidation of isodrimeninol with pcc yields drimane derivatives with activity against candida yeast by inhibition of lanosterol 14-alpha demethylase
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7463952/
https://www.ncbi.nlm.nih.gov/pubmed/32722158
http://dx.doi.org/10.3390/biom10081101
work_keys_str_mv AT marinvictor oxidationofisodrimeninolwithpccyieldsdrimanederivativeswithactivityagainstcandidayeastbyinhibitionoflanosterol14alphademethylase
AT iturraandres oxidationofisodrimeninolwithpccyieldsdrimanederivativeswithactivityagainstcandidayeastbyinhibitionoflanosterol14alphademethylase
AT opazoandres oxidationofisodrimeninolwithpccyieldsdrimanederivativeswithactivityagainstcandidayeastbyinhibitionoflanosterol14alphademethylase
AT schmidtbernd oxidationofisodrimeninolwithpccyieldsdrimanederivativeswithactivityagainstcandidayeastbyinhibitionoflanosterol14alphademethylase
AT heydenreichmatthias oxidationofisodrimeninolwithpccyieldsdrimanederivativeswithactivityagainstcandidayeastbyinhibitionoflanosterol14alphademethylase
AT ortizleandro oxidationofisodrimeninolwithpccyieldsdrimanederivativeswithactivityagainstcandidayeastbyinhibitionoflanosterol14alphademethylase
AT jimenezveronicaa oxidationofisodrimeninolwithpccyieldsdrimanederivativeswithactivityagainstcandidayeastbyinhibitionoflanosterol14alphademethylase
AT pazcristian oxidationofisodrimeninolwithpccyieldsdrimanederivativeswithactivityagainstcandidayeastbyinhibitionoflanosterol14alphademethylase