Department of Bioscience and Biotechnology , Konkuk University , Seoul 05029 , Republic of Korea.
Synthetic Biology and Bioengineering Research Center , Korea Research Institute of Bioscience and Biotechnology (KRIBB) , Daejeon 34141 , Republic of Korea.
J Agric Food Chem. 2019 Mar 20;67(11):3209-3219. doi: 10.1021/acs.jafc.8b05857. Epub 2019 Mar 11.
Plant oxylipins, including hydroxy fatty acids, epoxy hydroxy fatty acids, and trihydroxy fatty acids, which are biosynthesized from C18 polyunsaturated fatty acids (PUFAs), are involved in pathogen-specific defense mechanisms against fungal infections. However, their quantitative biotransformation by plant enzymes has not been reported. A few bacteria produce C18 trihydroxy fatty acids, but the enzymes and pathways related to the biosynthesis of plant oxylipins in bacteria have not been reported. In this study, we first report the biotransformation of C18 PUFAs into plant C18 oxylipins by expressing linoleate 9 S-lipoxygenase with and without epoxide hydrolase from the proteobacterium Myxococcus xanthus in recombinant Escherichia coli. Among the nine types of plant oxylipins, 12,13-epoxy-14-hydroxy- cis, cis-9,15-octadecadienoic acid was identified as a new compound by NMR analysis, and 9,10,11-hydroxy- cis, cis-6,12-octadecadienoic acid and 12,13,14-trihydroxy- cis, cis-9,15-octadecadienoic were suggested as new compounds by LC-MS/MS analysis. This study shows that bioactive plant oxylipins can be produced by microbial enzymes.
植物氧化脂类,包括羟基脂肪酸、环氧羟基脂肪酸和三羟基脂肪酸,它们是由 C18 多不饱和脂肪酸(PUFAs)生物合成的,参与了针对真菌感染的病原体特异性防御机制。然而,植物酶对其的定量生物转化尚未见报道。一些细菌会产生 C18 三羟基脂肪酸,但细菌中与植物氧化脂类生物合成相关的酶和途径尚未见报道。在本研究中,我们首次报道了表达来自黄杆菌属粘球菌的亚油酸 9S-脂加氧酶及其环氧水解酶,在重组大肠杆菌中可将 C18 PUFAs 生物转化为植物 C18 氧化脂类。在这九种植物氧化脂类中,通过 NMR 分析鉴定出 12,13-环氧-14-羟基-顺式,顺式-9,15-十八碳二烯酸为新化合物,通过 LC-MS/MS 分析提出 9,10,11-羟基-顺式,顺式-6,12-十八碳二烯酸和 12,13,14-三羟基-顺式,顺式-9,15-十八碳二烯酸为新化合物。本研究表明,微生物酶可以产生具有生物活性的植物氧化脂类。