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Bioactive Bromotyrosine Derivatives from the Pacific Marine Sponge Suberea clavata (Pulitzer-Finali, 1982)

Chemical investigation of the South-Pacific marine sponge Suberea clavata led to the isolation of eight new bromotyrosine metabolites named subereins 1–8 (2–9) along with twelve known co-isolated congeners. The detailed configuration determination of the first representative major compound of this f...

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Autores principales: Moriou, Céline, Lacroix, Damien, Petek, Sylvain, El-Demerdash, Amr, Trepos, Rozenn, Leu, Tinihauarii Mareva, Florean, Cristina, Diederich, Marc, Hellio, Claire, Debitus, Cécile, Al-Mourabit, Ali
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7999702/
https://www.ncbi.nlm.nih.gov/pubmed/33800819
http://dx.doi.org/10.3390/md19030143
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author Moriou, Céline
Lacroix, Damien
Petek, Sylvain
El-Demerdash, Amr
Trepos, Rozenn
Leu, Tinihauarii Mareva
Florean, Cristina
Diederich, Marc
Hellio, Claire
Debitus, Cécile
Al-Mourabit, Ali
author_facet Moriou, Céline
Lacroix, Damien
Petek, Sylvain
El-Demerdash, Amr
Trepos, Rozenn
Leu, Tinihauarii Mareva
Florean, Cristina
Diederich, Marc
Hellio, Claire
Debitus, Cécile
Al-Mourabit, Ali
author_sort Moriou, Céline
collection PubMed
description Chemical investigation of the South-Pacific marine sponge Suberea clavata led to the isolation of eight new bromotyrosine metabolites named subereins 1–8 (2–9) along with twelve known co-isolated congeners. The detailed configuration determination of the first representative major compound of this family 11-epi-fistularin-3 (11R,17S) (1) is described. Their chemical characterization was achieved by HRMS and integrated 1D and 2D NMR (nuclear magnetic resonance) spectroscopic studies and extensive comparison with literature data. For the first time, a complete assignment of the absolute configurations for stereogenic centers C-11/17 of the known members (11R,17S) 11-epi-fistularin-3 (1) and 17-deoxyfistularin-3 (10) was determined by a combination of chemical modifications, Mosher’s technology, and ECD spectroscopy. Consequently, the absolute configurations of all our new isolated compounds 2–9 were determined by the combination of NMR, Mosher’s method, ECD comparison, and chemical modifications. Interestingly, compounds 2–7 were obtained by chemical transformation of the major compound 11-epi-fistularin-3 (1). Evaluation for acetylcholinesterase inhibition (AChE), DNA methyltransferase 1 (DNMT1) modulating activity and antifouling activities using marine bacterial strains are also presented.
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spelling pubmed-79997022021-03-28 Bioactive Bromotyrosine Derivatives from the Pacific Marine Sponge Suberea clavata (Pulitzer-Finali, 1982) Moriou, Céline Lacroix, Damien Petek, Sylvain El-Demerdash, Amr Trepos, Rozenn Leu, Tinihauarii Mareva Florean, Cristina Diederich, Marc Hellio, Claire Debitus, Cécile Al-Mourabit, Ali Mar Drugs Article Chemical investigation of the South-Pacific marine sponge Suberea clavata led to the isolation of eight new bromotyrosine metabolites named subereins 1–8 (2–9) along with twelve known co-isolated congeners. The detailed configuration determination of the first representative major compound of this family 11-epi-fistularin-3 (11R,17S) (1) is described. Their chemical characterization was achieved by HRMS and integrated 1D and 2D NMR (nuclear magnetic resonance) spectroscopic studies and extensive comparison with literature data. For the first time, a complete assignment of the absolute configurations for stereogenic centers C-11/17 of the known members (11R,17S) 11-epi-fistularin-3 (1) and 17-deoxyfistularin-3 (10) was determined by a combination of chemical modifications, Mosher’s technology, and ECD spectroscopy. Consequently, the absolute configurations of all our new isolated compounds 2–9 were determined by the combination of NMR, Mosher’s method, ECD comparison, and chemical modifications. Interestingly, compounds 2–7 were obtained by chemical transformation of the major compound 11-epi-fistularin-3 (1). Evaluation for acetylcholinesterase inhibition (AChE), DNA methyltransferase 1 (DNMT1) modulating activity and antifouling activities using marine bacterial strains are also presented. MDPI 2021-03-06 /pmc/articles/PMC7999702/ /pubmed/33800819 http://dx.doi.org/10.3390/md19030143 Text en © 2021 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 (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Moriou, Céline
Lacroix, Damien
Petek, Sylvain
El-Demerdash, Amr
Trepos, Rozenn
Leu, Tinihauarii Mareva
Florean, Cristina
Diederich, Marc
Hellio, Claire
Debitus, Cécile
Al-Mourabit, Ali
Bioactive Bromotyrosine Derivatives from the Pacific Marine Sponge Suberea clavata (Pulitzer-Finali, 1982)
title Bioactive Bromotyrosine Derivatives from the Pacific Marine Sponge Suberea clavata (Pulitzer-Finali, 1982)
title_full Bioactive Bromotyrosine Derivatives from the Pacific Marine Sponge Suberea clavata (Pulitzer-Finali, 1982)
title_fullStr Bioactive Bromotyrosine Derivatives from the Pacific Marine Sponge Suberea clavata (Pulitzer-Finali, 1982)
title_full_unstemmed Bioactive Bromotyrosine Derivatives from the Pacific Marine Sponge Suberea clavata (Pulitzer-Finali, 1982)
title_short Bioactive Bromotyrosine Derivatives from the Pacific Marine Sponge Suberea clavata (Pulitzer-Finali, 1982)
title_sort bioactive bromotyrosine derivatives from the pacific marine sponge suberea clavata (pulitzer-finali, 1982)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7999702/
https://www.ncbi.nlm.nih.gov/pubmed/33800819
http://dx.doi.org/10.3390/md19030143
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