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Comprehensive analysis of PPARγ agonist activities of stereo-, regio-, and enantio-isomers of hydroxyoctadecadienoic acids

Hydroxyoctadecadienoic acids (HODEs) are produced by oxidation and reduction of linoleates. There are several regio- and stereo-isomers of HODE, and their concentrations in vivo are higher than those of other lipids. Although conformational isomers may have different biological activities, comparati...

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Autores principales: Umeno, Aya, Sakashita, Mami, Sugino, Sakiko, Murotomi, Kazutoshi, Okuzawa, Tsugumi, Morita, Naoki, Tomii, Kentaro, Tsuchiya, Yuko, Yamasaki, Kazuhiko, Horie, Masanori, Takahara, Kentaro, Yoshida, Yasukazu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7198041/
https://www.ncbi.nlm.nih.gov/pubmed/32266936
http://dx.doi.org/10.1042/BSR20193767
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author Umeno, Aya
Sakashita, Mami
Sugino, Sakiko
Murotomi, Kazutoshi
Okuzawa, Tsugumi
Morita, Naoki
Tomii, Kentaro
Tsuchiya, Yuko
Yamasaki, Kazuhiko
Horie, Masanori
Takahara, Kentaro
Yoshida, Yasukazu
author_facet Umeno, Aya
Sakashita, Mami
Sugino, Sakiko
Murotomi, Kazutoshi
Okuzawa, Tsugumi
Morita, Naoki
Tomii, Kentaro
Tsuchiya, Yuko
Yamasaki, Kazuhiko
Horie, Masanori
Takahara, Kentaro
Yoshida, Yasukazu
author_sort Umeno, Aya
collection PubMed
description Hydroxyoctadecadienoic acids (HODEs) are produced by oxidation and reduction of linoleates. There are several regio- and stereo-isomers of HODE, and their concentrations in vivo are higher than those of other lipids. Although conformational isomers may have different biological activities, comparative analysis of intracellular function of HODE isomers has not yet been performed. We evaluated the transcriptional activity of peroxisome proliferator-activated receptor γ (PPARγ), a therapeutic target for diabetes, and analyzed PPARγ agonist activity of HODE isomers. The lowest scores for docking poses of 12 types of HODE isomers (9-, 10-, 12-, and 13-HODEs) were almost similar in docking simulation of HODEs into PPARγ ligand-binding domain (LBD). Direct binding of HODE isomers to PPARγ LBD was determined by water-ligand observed via gradient spectroscopy (WaterLOGSY) NMR experiments. In contrast, there were differences in PPARγ agonist activities among 9- and 13-HODE stereo-isomers and 12- and 13-HODE enantio-isomers in a dual-luciferase reporter assay. Interestingly, the activity of 9-HODEs was less than that of other regio-isomers, and 9-(E,E)-HODE tended to decrease PPARγ-target gene expression during the maturation of 3T3-L1 cells. In addition, 10- and 12-(Z,E)-HODEs, which we previously proposed as biomarkers for early-stage diabetes, exerted PPARγ agonist activity. These results indicate that all HODE isomers have PPARγ-binding affinity; however, they have different PPARγ agonist activity. Our findings may help to understand the biological function of lipid peroxidation products.
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spelling pubmed-71980412020-05-05 Comprehensive analysis of PPARγ agonist activities of stereo-, regio-, and enantio-isomers of hydroxyoctadecadienoic acids Umeno, Aya Sakashita, Mami Sugino, Sakiko Murotomi, Kazutoshi Okuzawa, Tsugumi Morita, Naoki Tomii, Kentaro Tsuchiya, Yuko Yamasaki, Kazuhiko Horie, Masanori Takahara, Kentaro Yoshida, Yasukazu Biosci Rep Diabetes & Metabolic Disorders Hydroxyoctadecadienoic acids (HODEs) are produced by oxidation and reduction of linoleates. There are several regio- and stereo-isomers of HODE, and their concentrations in vivo are higher than those of other lipids. Although conformational isomers may have different biological activities, comparative analysis of intracellular function of HODE isomers has not yet been performed. We evaluated the transcriptional activity of peroxisome proliferator-activated receptor γ (PPARγ), a therapeutic target for diabetes, and analyzed PPARγ agonist activity of HODE isomers. The lowest scores for docking poses of 12 types of HODE isomers (9-, 10-, 12-, and 13-HODEs) were almost similar in docking simulation of HODEs into PPARγ ligand-binding domain (LBD). Direct binding of HODE isomers to PPARγ LBD was determined by water-ligand observed via gradient spectroscopy (WaterLOGSY) NMR experiments. In contrast, there were differences in PPARγ agonist activities among 9- and 13-HODE stereo-isomers and 12- and 13-HODE enantio-isomers in a dual-luciferase reporter assay. Interestingly, the activity of 9-HODEs was less than that of other regio-isomers, and 9-(E,E)-HODE tended to decrease PPARγ-target gene expression during the maturation of 3T3-L1 cells. In addition, 10- and 12-(Z,E)-HODEs, which we previously proposed as biomarkers for early-stage diabetes, exerted PPARγ agonist activity. These results indicate that all HODE isomers have PPARγ-binding affinity; however, they have different PPARγ agonist activity. Our findings may help to understand the biological function of lipid peroxidation products. Portland Press Ltd. 2020-04-23 /pmc/articles/PMC7198041/ /pubmed/32266936 http://dx.doi.org/10.1042/BSR20193767 Text en © 2020 The Author(s). https://creativecommons.org/licenses/by/4.0/ This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY).
spellingShingle Diabetes & Metabolic Disorders
Umeno, Aya
Sakashita, Mami
Sugino, Sakiko
Murotomi, Kazutoshi
Okuzawa, Tsugumi
Morita, Naoki
Tomii, Kentaro
Tsuchiya, Yuko
Yamasaki, Kazuhiko
Horie, Masanori
Takahara, Kentaro
Yoshida, Yasukazu
Comprehensive analysis of PPARγ agonist activities of stereo-, regio-, and enantio-isomers of hydroxyoctadecadienoic acids
title Comprehensive analysis of PPARγ agonist activities of stereo-, regio-, and enantio-isomers of hydroxyoctadecadienoic acids
title_full Comprehensive analysis of PPARγ agonist activities of stereo-, regio-, and enantio-isomers of hydroxyoctadecadienoic acids
title_fullStr Comprehensive analysis of PPARγ agonist activities of stereo-, regio-, and enantio-isomers of hydroxyoctadecadienoic acids
title_full_unstemmed Comprehensive analysis of PPARγ agonist activities of stereo-, regio-, and enantio-isomers of hydroxyoctadecadienoic acids
title_short Comprehensive analysis of PPARγ agonist activities of stereo-, regio-, and enantio-isomers of hydroxyoctadecadienoic acids
title_sort comprehensive analysis of pparγ agonist activities of stereo-, regio-, and enantio-isomers of hydroxyoctadecadienoic acids
topic Diabetes & Metabolic Disorders
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7198041/
https://www.ncbi.nlm.nih.gov/pubmed/32266936
http://dx.doi.org/10.1042/BSR20193767
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