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Peyssonnosides A–B, Unusual Diterpene Glycosides with a Sterically Encumbered Cyclopropane Motif: Structure Elucidation Using an Integrated Spectroscopic and Computational Workflow

[Image: see text] Two sulfated diterpene glycosides featuring a highly substituted and sterically encumbered cyclopropane ring have been isolated from the marine red alga Peyssonnelia sp. Combination of a wide array of 2D NMR spectroscopic experiments, in a systematic structure elucidation workflow,...

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Autores principales: Khatri Chhetri, Bhuwan, Lavoie, Serge, Sweeney-Jones, Anne Marie, Mojib, Nazia, Raghavan, Vijay, Gagaring, Kerstin, Dale, Brandon, McNamara, Case W., Soapi, Katy, Quave, Cassandra L., Polavarapu, Prasad L., Kubanek, Julia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6614789/
https://www.ncbi.nlm.nih.gov/pubmed/31244158
http://dx.doi.org/10.1021/acs.joc.9b00884
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author Khatri Chhetri, Bhuwan
Lavoie, Serge
Sweeney-Jones, Anne Marie
Mojib, Nazia
Raghavan, Vijay
Gagaring, Kerstin
Dale, Brandon
McNamara, Case W.
Soapi, Katy
Quave, Cassandra L.
Polavarapu, Prasad L.
Kubanek, Julia
author_facet Khatri Chhetri, Bhuwan
Lavoie, Serge
Sweeney-Jones, Anne Marie
Mojib, Nazia
Raghavan, Vijay
Gagaring, Kerstin
Dale, Brandon
McNamara, Case W.
Soapi, Katy
Quave, Cassandra L.
Polavarapu, Prasad L.
Kubanek, Julia
author_sort Khatri Chhetri, Bhuwan
collection PubMed
description [Image: see text] Two sulfated diterpene glycosides featuring a highly substituted and sterically encumbered cyclopropane ring have been isolated from the marine red alga Peyssonnelia sp. Combination of a wide array of 2D NMR spectroscopic experiments, in a systematic structure elucidation workflow, revealed that peyssonnosides A–B (1–2) represent a new class of diterpene glycosides with a tetracyclo [7.5.0.0(1,10).0(5,9)] tetradecane architecture. A salient feature of this workflow is the unique application of quantitative interproton distances obtained from the rotating frame Overhauser effect spectroscopy (ROESY) NMR experiment, wherein the β-d-glucose moiety of 1 was used as an internal probe to unequivocally determine the absolute configuration, which was also supported by optical rotatory dispersion (ORD). Peyssonnoside A (1) exhibited promising activity against liver stage Plasmodium berghei and moderate antimethicillin-resistant Staphylococcus aureus (MRSA) activity, with no cytotoxicity against human keratinocytes. Additionally, 1 showed strong growth inhibition of the marine fungus Dendryphiella salina indicating an antifungal ecological role in its natural environment. The high natural abundance and novel carbon skeleton of 1 suggests a rare terpene cyclase machinery, exemplifying the chemical diversity in this phylogenetically distinct marine red alga.
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spelling pubmed-66147892019-07-10 Peyssonnosides A–B, Unusual Diterpene Glycosides with a Sterically Encumbered Cyclopropane Motif: Structure Elucidation Using an Integrated Spectroscopic and Computational Workflow Khatri Chhetri, Bhuwan Lavoie, Serge Sweeney-Jones, Anne Marie Mojib, Nazia Raghavan, Vijay Gagaring, Kerstin Dale, Brandon McNamara, Case W. Soapi, Katy Quave, Cassandra L. Polavarapu, Prasad L. Kubanek, Julia J Org Chem [Image: see text] Two sulfated diterpene glycosides featuring a highly substituted and sterically encumbered cyclopropane ring have been isolated from the marine red alga Peyssonnelia sp. Combination of a wide array of 2D NMR spectroscopic experiments, in a systematic structure elucidation workflow, revealed that peyssonnosides A–B (1–2) represent a new class of diterpene glycosides with a tetracyclo [7.5.0.0(1,10).0(5,9)] tetradecane architecture. A salient feature of this workflow is the unique application of quantitative interproton distances obtained from the rotating frame Overhauser effect spectroscopy (ROESY) NMR experiment, wherein the β-d-glucose moiety of 1 was used as an internal probe to unequivocally determine the absolute configuration, which was also supported by optical rotatory dispersion (ORD). Peyssonnoside A (1) exhibited promising activity against liver stage Plasmodium berghei and moderate antimethicillin-resistant Staphylococcus aureus (MRSA) activity, with no cytotoxicity against human keratinocytes. Additionally, 1 showed strong growth inhibition of the marine fungus Dendryphiella salina indicating an antifungal ecological role in its natural environment. The high natural abundance and novel carbon skeleton of 1 suggests a rare terpene cyclase machinery, exemplifying the chemical diversity in this phylogenetically distinct marine red alga. American Chemical Society 2019-06-04 2019-07-05 /pmc/articles/PMC6614789/ /pubmed/31244158 http://dx.doi.org/10.1021/acs.joc.9b00884 Text en Copyright © 2019 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Khatri Chhetri, Bhuwan
Lavoie, Serge
Sweeney-Jones, Anne Marie
Mojib, Nazia
Raghavan, Vijay
Gagaring, Kerstin
Dale, Brandon
McNamara, Case W.
Soapi, Katy
Quave, Cassandra L.
Polavarapu, Prasad L.
Kubanek, Julia
Peyssonnosides A–B, Unusual Diterpene Glycosides with a Sterically Encumbered Cyclopropane Motif: Structure Elucidation Using an Integrated Spectroscopic and Computational Workflow
title Peyssonnosides A–B, Unusual Diterpene Glycosides with a Sterically Encumbered Cyclopropane Motif: Structure Elucidation Using an Integrated Spectroscopic and Computational Workflow
title_full Peyssonnosides A–B, Unusual Diterpene Glycosides with a Sterically Encumbered Cyclopropane Motif: Structure Elucidation Using an Integrated Spectroscopic and Computational Workflow
title_fullStr Peyssonnosides A–B, Unusual Diterpene Glycosides with a Sterically Encumbered Cyclopropane Motif: Structure Elucidation Using an Integrated Spectroscopic and Computational Workflow
title_full_unstemmed Peyssonnosides A–B, Unusual Diterpene Glycosides with a Sterically Encumbered Cyclopropane Motif: Structure Elucidation Using an Integrated Spectroscopic and Computational Workflow
title_short Peyssonnosides A–B, Unusual Diterpene Glycosides with a Sterically Encumbered Cyclopropane Motif: Structure Elucidation Using an Integrated Spectroscopic and Computational Workflow
title_sort peyssonnosides a–b, unusual diterpene glycosides with a sterically encumbered cyclopropane motif: structure elucidation using an integrated spectroscopic and computational workflow
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6614789/
https://www.ncbi.nlm.nih.gov/pubmed/31244158
http://dx.doi.org/10.1021/acs.joc.9b00884
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