Abstract

Abstract The resolvin family contains important anti-inflammatory and pro-resolution compounds enzymatically derived in vivo from the polyunsaturated omega-3 fatty acids, eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA). More recently, docosapentaenoic acid (DPA) has emerged as another potentially important precursor in the biological production of resolvin compounds. In this work we have used medium engineering to develop a simple method for the controlled synthesis of two di-hydroxylated diastereomers of DPAn−3 catalyzed by soybean 15-lipoxygenase-1 (15-sLOX-1) in the presence of short chain n -alcohols, including methanol, ethanol and propan-1-ol. The complete structures of the two major products, 7 S ,17 S -dihydroxydocosapenta-8 Z ,10 E ,13 Z ,15 E ,19 Z -enoic acid (7 S ,17 S -diHDPAn−3) and 7 R ,17 S -dihydroxydocosapenta-8 Z ,10 E ,13 Z ,15 E ,19 Z -enoic acid (7 R ,17 S -diHDPAn−3), have been elucidated using spectroscopic analysis. The alcohol-dependent R -dioxygenase activity of soybean 15-lipoxygenase with mono-hydroperoxide intermediate substrates has also been demonstrated with other biologically relevant PUFAs, including DHA, EPA and ARA. The developed method has applications in the production of closely related isomers of naturally occurring resolvins and protectins, demonstrating the versatility of 15-sLOX-1 as a biocatalyst.

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