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Synthesis of 13(R)-Hydroxy-7Z,10Z,13R,14E,16Z,19Z Docosapentaenoic Acid (13R-HDPA) and Its Biosynthetic Conversion to the 13-Series Resolvins

[Image: see text] Specialized pro-resolving lipid mediators are biosynthesized during the resolution phase of acute inflammation from n-3 polyunsaturated fatty acids. Recently, the isolation and identification of the four novel mediators denoted 13-series resolvins, namely, RvT1 (1), RvT2 (2), RvT3...

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Autores principales: Primdahl, Karoline G., Aursnes, Marius, Walker, Mary E., Colas, Romain A., Serhan, Charles N., Dalli, Jesmond, Hansen, Trond V., Vik, Anders
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society and American Society of Pharmacognosy 2016
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5149404/
https://www.ncbi.nlm.nih.gov/pubmed/27704804
http://dx.doi.org/10.1021/acs.jnatprod.6b00634
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author Primdahl, Karoline G.
Aursnes, Marius
Walker, Mary E.
Colas, Romain A.
Serhan, Charles N.
Dalli, Jesmond
Hansen, Trond V.
Vik, Anders
author_facet Primdahl, Karoline G.
Aursnes, Marius
Walker, Mary E.
Colas, Romain A.
Serhan, Charles N.
Dalli, Jesmond
Hansen, Trond V.
Vik, Anders
author_sort Primdahl, Karoline G.
collection PubMed
description [Image: see text] Specialized pro-resolving lipid mediators are biosynthesized during the resolution phase of acute inflammation from n-3 polyunsaturated fatty acids. Recently, the isolation and identification of the four novel mediators denoted 13-series resolvins, namely, RvT1 (1), RvT2 (2), RvT3 (3) and RvT4 (4), were reported, which showed potent bioactions characteristic for specialized pro-resolving lipid mediators. Herein, based on results from LC/MS-MS metabololipidomics and the stereoselective synthesis of 13(R)-hydroxy-7Z,10Z,13R,14E,16Z,19Z docosapentaenoic acid (13R-HDPA, 5), we provide direct evidence that the four novel mediators 1–4 are all biosynthesized from the pivotal intermediate 5. The UV and LC/MS-MS results from synthetic 13R-HDPA (5) matched those from endogenously and biosynthetically produced material obtained from in vivo infectious exudates, endothelial cells, and human recombinant COX-2 enzyme. Stereochemically pure 5 was obtained with the use of a chiral pool starting material that installed the configuration at the C-13 atom as R. Two stereoselective Z-Wittig reactions and two Z-selective reductions of internal alkynes afforded the geometrically pure alkene moieties in 5. Incubation of 5 with isolated human neutrophils gave all four RvTs. The results presented herein provide new knowledge on the biosynthetic pathways and the enzymatic origin of RvTs 1–4.
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spelling pubmed-51494042016-12-14 Synthesis of 13(R)-Hydroxy-7Z,10Z,13R,14E,16Z,19Z Docosapentaenoic Acid (13R-HDPA) and Its Biosynthetic Conversion to the 13-Series Resolvins Primdahl, Karoline G. Aursnes, Marius Walker, Mary E. Colas, Romain A. Serhan, Charles N. Dalli, Jesmond Hansen, Trond V. Vik, Anders J Nat Prod [Image: see text] Specialized pro-resolving lipid mediators are biosynthesized during the resolution phase of acute inflammation from n-3 polyunsaturated fatty acids. Recently, the isolation and identification of the four novel mediators denoted 13-series resolvins, namely, RvT1 (1), RvT2 (2), RvT3 (3) and RvT4 (4), were reported, which showed potent bioactions characteristic for specialized pro-resolving lipid mediators. Herein, based on results from LC/MS-MS metabololipidomics and the stereoselective synthesis of 13(R)-hydroxy-7Z,10Z,13R,14E,16Z,19Z docosapentaenoic acid (13R-HDPA, 5), we provide direct evidence that the four novel mediators 1–4 are all biosynthesized from the pivotal intermediate 5. The UV and LC/MS-MS results from synthetic 13R-HDPA (5) matched those from endogenously and biosynthetically produced material obtained from in vivo infectious exudates, endothelial cells, and human recombinant COX-2 enzyme. Stereochemically pure 5 was obtained with the use of a chiral pool starting material that installed the configuration at the C-13 atom as R. Two stereoselective Z-Wittig reactions and two Z-selective reductions of internal alkynes afforded the geometrically pure alkene moieties in 5. Incubation of 5 with isolated human neutrophils gave all four RvTs. The results presented herein provide new knowledge on the biosynthetic pathways and the enzymatic origin of RvTs 1–4. American Chemical Society and American Society of Pharmacognosy 2016-10-05 2016-10-28 /pmc/articles/PMC5149404/ /pubmed/27704804 http://dx.doi.org/10.1021/acs.jnatprod.6b00634 Text en Copyright © 2016 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 Primdahl, Karoline G.
Aursnes, Marius
Walker, Mary E.
Colas, Romain A.
Serhan, Charles N.
Dalli, Jesmond
Hansen, Trond V.
Vik, Anders
Synthesis of 13(R)-Hydroxy-7Z,10Z,13R,14E,16Z,19Z Docosapentaenoic Acid (13R-HDPA) and Its Biosynthetic Conversion to the 13-Series Resolvins
title Synthesis of 13(R)-Hydroxy-7Z,10Z,13R,14E,16Z,19Z Docosapentaenoic Acid (13R-HDPA) and Its Biosynthetic Conversion to the 13-Series Resolvins
title_full Synthesis of 13(R)-Hydroxy-7Z,10Z,13R,14E,16Z,19Z Docosapentaenoic Acid (13R-HDPA) and Its Biosynthetic Conversion to the 13-Series Resolvins
title_fullStr Synthesis of 13(R)-Hydroxy-7Z,10Z,13R,14E,16Z,19Z Docosapentaenoic Acid (13R-HDPA) and Its Biosynthetic Conversion to the 13-Series Resolvins
title_full_unstemmed Synthesis of 13(R)-Hydroxy-7Z,10Z,13R,14E,16Z,19Z Docosapentaenoic Acid (13R-HDPA) and Its Biosynthetic Conversion to the 13-Series Resolvins
title_short Synthesis of 13(R)-Hydroxy-7Z,10Z,13R,14E,16Z,19Z Docosapentaenoic Acid (13R-HDPA) and Its Biosynthetic Conversion to the 13-Series Resolvins
title_sort synthesis of 13(r)-hydroxy-7z,10z,13r,14e,16z,19z docosapentaenoic acid (13r-hdpa) and its biosynthetic conversion to the 13-series resolvins
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5149404/
https://www.ncbi.nlm.nih.gov/pubmed/27704804
http://dx.doi.org/10.1021/acs.jnatprod.6b00634
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