Cross-Coupling as a Key Step in the Synthesis and Structure Revision of the Natural Products Selagibenzophenones A and B

Selagibenzophenone A (<b>1</b>) and its isomer selagibenzophenone B (<b>2</b>) were recently described as natural products from Selaginella genus plants with PDE4 inhibitory activity. Herein, we report the first total syntheses of both compounds. By comparing spectroscopic da...

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Main Authors: Ringaile Lapinskaite, Štefan Malatinec, Miguel Mateus, Lukas Rycek
Format: Article
Language:English
Published: MDPI AG 2021-06-01
Series:Catalysts
Subjects:
Online Access:https://www.mdpi.com/2073-4344/11/6/708
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spelling doaj-04988877a2dd46e7b3a66b475bc33e1c2021-06-30T23:17:45ZengMDPI AGCatalysts2073-43442021-06-011170870810.3390/catal11060708Cross-Coupling as a Key Step in the Synthesis and Structure Revision of the Natural Products Selagibenzophenones A and BRingaile Lapinskaite0Štefan Malatinec1Miguel Mateus2Lukas Rycek3Department of Organic Chemistry, Faculty of Science, Charles University, Albertov 6, 128 00 Prague 2, Czech RepublicDepartment of Organic Chemistry, Faculty of Science, Charles University, Albertov 6, 128 00 Prague 2, Czech RepublicDepartment of Organic Chemistry, Faculty of Science, Charles University, Albertov 6, 128 00 Prague 2, Czech RepublicDepartment of Organic Chemistry, Faculty of Science, Charles University, Albertov 6, 128 00 Prague 2, Czech RepublicSelagibenzophenone A (<b>1</b>) and its isomer selagibenzophenone B (<b>2</b>) were recently described as natural products from Selaginella genus plants with PDE4 inhibitory activity. Herein, we report the first total syntheses of both compounds. By comparing spectroscopic data of the synthetic compounds with reported data for the isolated material, we demonstrate that the structure of one of the two natural products was incorrectly assigned, and that in fact isolated selagibenzophenone A and selagibenzophenone B are identical compounds. The synthetic strategy for both <b>1</b> and <b>2</b> is based on a cross-coupling reaction and on the addition of organometallic species to assemble the framework of the molecules. Identifying a suitable starting material with the correct substitution pattern is crucial because its pattern is reflected in that of the targeted compounds. These syntheses are finalized via global deprotection. Protecting the phenols as methoxy groups provides the possibility for partial control over the selectivity in the demethylation thanks to differences in the reactivity of the various methoxy groups. Our findings may help in future syntheses of derivatives of the biologically active natural product and in understanding the structure–activity relationship.https://www.mdpi.com/2073-4344/11/6/708cross-couplingnatural productsstructure revision
collection DOAJ
language English
format Article
sources DOAJ
author Ringaile Lapinskaite
Štefan Malatinec
Miguel Mateus
Lukas Rycek
spellingShingle Ringaile Lapinskaite
Štefan Malatinec
Miguel Mateus
Lukas Rycek
Cross-Coupling as a Key Step in the Synthesis and Structure Revision of the Natural Products Selagibenzophenones A and B
Catalysts
cross-coupling
natural products
structure revision
author_facet Ringaile Lapinskaite
Štefan Malatinec
Miguel Mateus
Lukas Rycek
author_sort Ringaile Lapinskaite
title Cross-Coupling as a Key Step in the Synthesis and Structure Revision of the Natural Products Selagibenzophenones A and B
title_short Cross-Coupling as a Key Step in the Synthesis and Structure Revision of the Natural Products Selagibenzophenones A and B
title_full Cross-Coupling as a Key Step in the Synthesis and Structure Revision of the Natural Products Selagibenzophenones A and B
title_fullStr Cross-Coupling as a Key Step in the Synthesis and Structure Revision of the Natural Products Selagibenzophenones A and B
title_full_unstemmed Cross-Coupling as a Key Step in the Synthesis and Structure Revision of the Natural Products Selagibenzophenones A and B
title_sort cross-coupling as a key step in the synthesis and structure revision of the natural products selagibenzophenones a and b
publisher MDPI AG
series Catalysts
issn 2073-4344
publishDate 2021-06-01
description Selagibenzophenone A (<b>1</b>) and its isomer selagibenzophenone B (<b>2</b>) were recently described as natural products from Selaginella genus plants with PDE4 inhibitory activity. Herein, we report the first total syntheses of both compounds. By comparing spectroscopic data of the synthetic compounds with reported data for the isolated material, we demonstrate that the structure of one of the two natural products was incorrectly assigned, and that in fact isolated selagibenzophenone A and selagibenzophenone B are identical compounds. The synthetic strategy for both <b>1</b> and <b>2</b> is based on a cross-coupling reaction and on the addition of organometallic species to assemble the framework of the molecules. Identifying a suitable starting material with the correct substitution pattern is crucial because its pattern is reflected in that of the targeted compounds. These syntheses are finalized via global deprotection. Protecting the phenols as methoxy groups provides the possibility for partial control over the selectivity in the demethylation thanks to differences in the reactivity of the various methoxy groups. Our findings may help in future syntheses of derivatives of the biologically active natural product and in understanding the structure–activity relationship.
topic cross-coupling
natural products
structure revision
url https://www.mdpi.com/2073-4344/11/6/708
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AT miguelmateus crosscouplingasakeystepinthesynthesisandstructurerevisionofthenaturalproductsselagibenzophenonesaandb
AT lukasrycek crosscouplingasakeystepinthesynthesisandstructurerevisionofthenaturalproductsselagibenzophenonesaandb
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