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Metal-free alkene carbooxygenation following tandem intramolecular alkoxylation/Claisen rearrangement: stereocontrolled access to bridged [4.2.1] lactones

Alkene carbooxygenation has attracted considerable attention over the past few decades as this approach provides an efficient access to various oxygen-containing molecules, especially the valuable O-heterocycles. However, examples of catalytic alkene carbooxygenation via a direct C–O cleavage are qu...

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Autores principales: Li, Long, Zhu, Xin-Qi, Zhang, Ying-Qi, Bu, Hao-Zhen, Yuan, Peng, Chen, Jinyu, Su, Jingyi, Deng, Xianming, Ye, Long-Wu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6429610/
https://www.ncbi.nlm.nih.gov/pubmed/30996895
http://dx.doi.org/10.1039/c9sc00079h
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author Li, Long
Zhu, Xin-Qi
Zhang, Ying-Qi
Bu, Hao-Zhen
Yuan, Peng
Chen, Jinyu
Su, Jingyi
Deng, Xianming
Ye, Long-Wu
author_facet Li, Long
Zhu, Xin-Qi
Zhang, Ying-Qi
Bu, Hao-Zhen
Yuan, Peng
Chen, Jinyu
Su, Jingyi
Deng, Xianming
Ye, Long-Wu
author_sort Li, Long
collection PubMed
description Alkene carbooxygenation has attracted considerable attention over the past few decades as this approach provides an efficient access to various oxygen-containing molecules, especially the valuable O-heterocycles. However, examples of catalytic alkene carbooxygenation via a direct C–O cleavage are quite scarce, and the C–O cleavage in these cases is invariably initiated by transition metal-catalyzed oxidative addition. We report here a novel Brønsted acid-catalyzed intramolecular alkoxylation-initiated tandem sequence, which represents the first metal-free intramolecular alkoxylation/Claisen rearrangement. Significantly, an unprecedented Brønsted acid-catalyzed intramolecular alkene insertion into the C–O bond via a carbocation pathway was discovered. This method allows the stereocontrolled synthesis of valuable indole-fused bridged [4.2.1] lactones, providing ready access to biologically relevant scaffolds in a single synthetic step from an acyclic precursor. Moreover, such an asymmetric cascade cyclization has also been realized by employing a traceless chiral directing group. Control experiments favor the feasibility of a carbocation pathway for the process. In addition, biological tests showed that some of these newly synthesized indole-fused lactones exhibited their bioactivity as antitumor agents against different breast cancer cells, melanoma cells, and esophageal cancer cells.
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spelling pubmed-64296102019-04-17 Metal-free alkene carbooxygenation following tandem intramolecular alkoxylation/Claisen rearrangement: stereocontrolled access to bridged [4.2.1] lactones Li, Long Zhu, Xin-Qi Zhang, Ying-Qi Bu, Hao-Zhen Yuan, Peng Chen, Jinyu Su, Jingyi Deng, Xianming Ye, Long-Wu Chem Sci Chemistry Alkene carbooxygenation has attracted considerable attention over the past few decades as this approach provides an efficient access to various oxygen-containing molecules, especially the valuable O-heterocycles. However, examples of catalytic alkene carbooxygenation via a direct C–O cleavage are quite scarce, and the C–O cleavage in these cases is invariably initiated by transition metal-catalyzed oxidative addition. We report here a novel Brønsted acid-catalyzed intramolecular alkoxylation-initiated tandem sequence, which represents the first metal-free intramolecular alkoxylation/Claisen rearrangement. Significantly, an unprecedented Brønsted acid-catalyzed intramolecular alkene insertion into the C–O bond via a carbocation pathway was discovered. This method allows the stereocontrolled synthesis of valuable indole-fused bridged [4.2.1] lactones, providing ready access to biologically relevant scaffolds in a single synthetic step from an acyclic precursor. Moreover, such an asymmetric cascade cyclization has also been realized by employing a traceless chiral directing group. Control experiments favor the feasibility of a carbocation pathway for the process. In addition, biological tests showed that some of these newly synthesized indole-fused lactones exhibited their bioactivity as antitumor agents against different breast cancer cells, melanoma cells, and esophageal cancer cells. Royal Society of Chemistry 2019-01-24 /pmc/articles/PMC6429610/ /pubmed/30996895 http://dx.doi.org/10.1039/c9sc00079h Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Li, Long
Zhu, Xin-Qi
Zhang, Ying-Qi
Bu, Hao-Zhen
Yuan, Peng
Chen, Jinyu
Su, Jingyi
Deng, Xianming
Ye, Long-Wu
Metal-free alkene carbooxygenation following tandem intramolecular alkoxylation/Claisen rearrangement: stereocontrolled access to bridged [4.2.1] lactones
title Metal-free alkene carbooxygenation following tandem intramolecular alkoxylation/Claisen rearrangement: stereocontrolled access to bridged [4.2.1] lactones
title_full Metal-free alkene carbooxygenation following tandem intramolecular alkoxylation/Claisen rearrangement: stereocontrolled access to bridged [4.2.1] lactones
title_fullStr Metal-free alkene carbooxygenation following tandem intramolecular alkoxylation/Claisen rearrangement: stereocontrolled access to bridged [4.2.1] lactones
title_full_unstemmed Metal-free alkene carbooxygenation following tandem intramolecular alkoxylation/Claisen rearrangement: stereocontrolled access to bridged [4.2.1] lactones
title_short Metal-free alkene carbooxygenation following tandem intramolecular alkoxylation/Claisen rearrangement: stereocontrolled access to bridged [4.2.1] lactones
title_sort metal-free alkene carbooxygenation following tandem intramolecular alkoxylation/claisen rearrangement: stereocontrolled access to bridged [4.2.1] lactones
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6429610/
https://www.ncbi.nlm.nih.gov/pubmed/30996895
http://dx.doi.org/10.1039/c9sc00079h
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