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Polyacetylenes from Oplopanax horridus and Panax ginseng: Relationship between Structure and PPARγ Activation

[Image: see text] Oplopanax horridus and Panax ginseng are members of the plant family Araliaceae, which is rich in structurally diverse polyacetylenes. In this work, we isolated and determined structures of 23 aliphatic C(17) and C(18) polyacetylenes, of which five are new compounds. Polyacetylenes...

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Autores principales: Resetar, Mirta, Liu, Xin, Herdlinger, Sonja, Kunert, Olaf, Pferschy-Wenzig, Eva-Maria, Latkolik, Simone, Steinacher, Theresa, Schuster, Daniela, Bauer, Rudolf, Dirsch, Verena M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society and American Society of Pharmacognosy 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7187397/
https://www.ncbi.nlm.nih.gov/pubmed/32129622
http://dx.doi.org/10.1021/acs.jnatprod.9b00691
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author Resetar, Mirta
Liu, Xin
Herdlinger, Sonja
Kunert, Olaf
Pferschy-Wenzig, Eva-Maria
Latkolik, Simone
Steinacher, Theresa
Schuster, Daniela
Bauer, Rudolf
Dirsch, Verena M.
author_facet Resetar, Mirta
Liu, Xin
Herdlinger, Sonja
Kunert, Olaf
Pferschy-Wenzig, Eva-Maria
Latkolik, Simone
Steinacher, Theresa
Schuster, Daniela
Bauer, Rudolf
Dirsch, Verena M.
author_sort Resetar, Mirta
collection PubMed
description [Image: see text] Oplopanax horridus and Panax ginseng are members of the plant family Araliaceae, which is rich in structurally diverse polyacetylenes. In this work, we isolated and determined structures of 23 aliphatic C(17) and C(18) polyacetylenes, of which five are new compounds. Polyacetylenes have a suitable scaffold for binding to PPARγ, a ligand-activated transcription factor involved in metabolic regulation. Using a reporter gene assay, their potential was investigated to activate PPARγ. The majority of the polyacetylenes showed at least some PPARγ activity, among which oplopantriol B 18-acetate (1) and oplopantriol B (2) were the most potent partial PPARγ activators. By employing in silico molecular docking and comparing the activities of structural analogues, features are described that are involved in PPARγ activation, as well as in cytotoxicity. It was found that the type of C-1 to C-2 bond, the polarity of the terminal alkyl chain, and the backbone flexibility can impact bioactivity of polyacetylenes, while diol structures with a C-1 to C-2 double bond showed enhanced cytotoxicity. Since PPARγ activators have antidiabetic and anti-inflammatory properties, the present results may help explain some of the beneficial effects observed in the traditional use of O. horridus extracts. Additionally, they might guide the polyacetylene-based design of future PPARγ partial agonists.
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spelling pubmed-71873972020-04-29 Polyacetylenes from Oplopanax horridus and Panax ginseng: Relationship between Structure and PPARγ Activation Resetar, Mirta Liu, Xin Herdlinger, Sonja Kunert, Olaf Pferschy-Wenzig, Eva-Maria Latkolik, Simone Steinacher, Theresa Schuster, Daniela Bauer, Rudolf Dirsch, Verena M. J Nat Prod [Image: see text] Oplopanax horridus and Panax ginseng are members of the plant family Araliaceae, which is rich in structurally diverse polyacetylenes. In this work, we isolated and determined structures of 23 aliphatic C(17) and C(18) polyacetylenes, of which five are new compounds. Polyacetylenes have a suitable scaffold for binding to PPARγ, a ligand-activated transcription factor involved in metabolic regulation. Using a reporter gene assay, their potential was investigated to activate PPARγ. The majority of the polyacetylenes showed at least some PPARγ activity, among which oplopantriol B 18-acetate (1) and oplopantriol B (2) were the most potent partial PPARγ activators. By employing in silico molecular docking and comparing the activities of structural analogues, features are described that are involved in PPARγ activation, as well as in cytotoxicity. It was found that the type of C-1 to C-2 bond, the polarity of the terminal alkyl chain, and the backbone flexibility can impact bioactivity of polyacetylenes, while diol structures with a C-1 to C-2 double bond showed enhanced cytotoxicity. Since PPARγ activators have antidiabetic and anti-inflammatory properties, the present results may help explain some of the beneficial effects observed in the traditional use of O. horridus extracts. Additionally, they might guide the polyacetylene-based design of future PPARγ partial agonists. American Chemical Society and American Society of Pharmacognosy 2020-03-04 2020-04-24 /pmc/articles/PMC7187397/ /pubmed/32129622 http://dx.doi.org/10.1021/acs.jnatprod.9b00691 Text en Copyright © 2020 American Chemical Society and American Society of Pharmacognosy 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 Resetar, Mirta
Liu, Xin
Herdlinger, Sonja
Kunert, Olaf
Pferschy-Wenzig, Eva-Maria
Latkolik, Simone
Steinacher, Theresa
Schuster, Daniela
Bauer, Rudolf
Dirsch, Verena M.
Polyacetylenes from Oplopanax horridus and Panax ginseng: Relationship between Structure and PPARγ Activation
title Polyacetylenes from Oplopanax horridus and Panax ginseng: Relationship between Structure and PPARγ Activation
title_full Polyacetylenes from Oplopanax horridus and Panax ginseng: Relationship between Structure and PPARγ Activation
title_fullStr Polyacetylenes from Oplopanax horridus and Panax ginseng: Relationship between Structure and PPARγ Activation
title_full_unstemmed Polyacetylenes from Oplopanax horridus and Panax ginseng: Relationship between Structure and PPARγ Activation
title_short Polyacetylenes from Oplopanax horridus and Panax ginseng: Relationship between Structure and PPARγ Activation
title_sort polyacetylenes from oplopanax horridus and panax ginseng: relationship between structure and pparγ activation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7187397/
https://www.ncbi.nlm.nih.gov/pubmed/32129622
http://dx.doi.org/10.1021/acs.jnatprod.9b00691
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