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Didemnaketals F and G, New Bioactive Spiroketals from a Red Sea Ascidian Didemnum Species

In continuation of our ongoing efforts to identify bioactive compounds from Red Sea marine organisms, a new collection of the ascidian Didemnum species was investigated. Chromatographic fractionation and HPLC purification of the CH(2)Cl(2) fraction of an organic extract of the ascidian resulted in t...

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Autores principales: Shaala, Lamiaa A., Youssef, Diaa T.A., Ibrahim, Sabrin R.M., Mohamed, Gamal A., Badr, Jihan M., Risinger, April L., Mooberry, Susan L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4178479/
https://www.ncbi.nlm.nih.gov/pubmed/25257787
http://dx.doi.org/10.3390/md12095021
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author Shaala, Lamiaa A.
Youssef, Diaa T.A.
Ibrahim, Sabrin R.M.
Mohamed, Gamal A.
Badr, Jihan M.
Risinger, April L.
Mooberry, Susan L.
author_facet Shaala, Lamiaa A.
Youssef, Diaa T.A.
Ibrahim, Sabrin R.M.
Mohamed, Gamal A.
Badr, Jihan M.
Risinger, April L.
Mooberry, Susan L.
author_sort Shaala, Lamiaa A.
collection PubMed
description In continuation of our ongoing efforts to identify bioactive compounds from Red Sea marine organisms, a new collection of the ascidian Didemnum species was investigated. Chromatographic fractionation and HPLC purification of the CH(2)Cl(2) fraction of an organic extract of the ascidian resulted in the identification of two new spiroketals, didemnaketals F (1) and G (2). The structure determination of the compounds was completed by extensive study of 1D ((1)H, (13)C, and DEPT) and 2D (COSY, HSQC, and HMBC) NMR experiments in addition to high-resolution mass spectral data. Didemnaketal F (1) and G (2) differ from the previously reported compounds of this class by the lack the terminal methyl ester at C-1 and the methyl functionality at C-2. Instead, 1 and 2 possess a methyl ketone moiety instead of the terminal ester. Furthermore, didemnaketal F possesses a disubstituted double bond between C-2 and C-3, while the double bond was replaced by a secondary alcohol at C-3 in didemnaketal G. In addition, they possess the unique spiroketal/hemiketal functionality which was previously reported in didemnaketal E. Didemnaketals F (1) and G (2) displayed moderate activity against HeLa cells with of IC(50s) of 49.9 and 14.0 µM, respectively. In addition, didemnaketal F (1) displayed potent antimicrobial activity against E. coli and C. albicans. These findings provide further insight into the biosynthetic capabilities of this ascidian and the chemical diversity as well as the biological activity of this class of compounds.
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spelling pubmed-41784792014-10-02 Didemnaketals F and G, New Bioactive Spiroketals from a Red Sea Ascidian Didemnum Species Shaala, Lamiaa A. Youssef, Diaa T.A. Ibrahim, Sabrin R.M. Mohamed, Gamal A. Badr, Jihan M. Risinger, April L. Mooberry, Susan L. Mar Drugs Article In continuation of our ongoing efforts to identify bioactive compounds from Red Sea marine organisms, a new collection of the ascidian Didemnum species was investigated. Chromatographic fractionation and HPLC purification of the CH(2)Cl(2) fraction of an organic extract of the ascidian resulted in the identification of two new spiroketals, didemnaketals F (1) and G (2). The structure determination of the compounds was completed by extensive study of 1D ((1)H, (13)C, and DEPT) and 2D (COSY, HSQC, and HMBC) NMR experiments in addition to high-resolution mass spectral data. Didemnaketal F (1) and G (2) differ from the previously reported compounds of this class by the lack the terminal methyl ester at C-1 and the methyl functionality at C-2. Instead, 1 and 2 possess a methyl ketone moiety instead of the terminal ester. Furthermore, didemnaketal F possesses a disubstituted double bond between C-2 and C-3, while the double bond was replaced by a secondary alcohol at C-3 in didemnaketal G. In addition, they possess the unique spiroketal/hemiketal functionality which was previously reported in didemnaketal E. Didemnaketals F (1) and G (2) displayed moderate activity against HeLa cells with of IC(50s) of 49.9 and 14.0 µM, respectively. In addition, didemnaketal F (1) displayed potent antimicrobial activity against E. coli and C. albicans. These findings provide further insight into the biosynthetic capabilities of this ascidian and the chemical diversity as well as the biological activity of this class of compounds. MDPI 2014-09-25 /pmc/articles/PMC4178479/ /pubmed/25257787 http://dx.doi.org/10.3390/md12095021 Text en © 2014 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 license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Shaala, Lamiaa A.
Youssef, Diaa T.A.
Ibrahim, Sabrin R.M.
Mohamed, Gamal A.
Badr, Jihan M.
Risinger, April L.
Mooberry, Susan L.
Didemnaketals F and G, New Bioactive Spiroketals from a Red Sea Ascidian Didemnum Species
title Didemnaketals F and G, New Bioactive Spiroketals from a Red Sea Ascidian Didemnum Species
title_full Didemnaketals F and G, New Bioactive Spiroketals from a Red Sea Ascidian Didemnum Species
title_fullStr Didemnaketals F and G, New Bioactive Spiroketals from a Red Sea Ascidian Didemnum Species
title_full_unstemmed Didemnaketals F and G, New Bioactive Spiroketals from a Red Sea Ascidian Didemnum Species
title_short Didemnaketals F and G, New Bioactive Spiroketals from a Red Sea Ascidian Didemnum Species
title_sort didemnaketals f and g, new bioactive spiroketals from a red sea ascidian didemnum species
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4178479/
https://www.ncbi.nlm.nih.gov/pubmed/25257787
http://dx.doi.org/10.3390/md12095021
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