Marine Bioprospecting Section of Marine Biotechnology Division, ICAR-Central Marine Fisheries Research Institute, Ernakulam North, P.B. No. 1603, Cochin 682018, Kerala, India.
Marine Bioprospecting Section of Marine Biotechnology Division, ICAR-Central Marine Fisheries Research Institute, Ernakulam North, P.B. No. 1603, Cochin 682018, Kerala, India.
Food Res Int. 2017 Oct;100(Pt 1):640-649. doi: 10.1016/j.foodres.2017.07.006. Epub 2017 Jul 8.
Previously undescribed aryl polyketide lactones, 4-(8-ethyl-tetrahydro-7-oxo-2H-pyran-5-yl)-propyl-4'-methylbenzoate (compound 1) and methyl-2-(12-oxo-7-phenyl-8-vinyl-1-oxa-4,9-cyclododecadien-3-yl)-acetate (compound 2) were purified from ethyl acetate-methanol fraction of the brown seaweed Sargassum wightii. The structures were proposed based on their NMR and mass spectrometric data. The antioxidative activities of the lactones were significantly greater (P<0.05) (IC 1,1-diphenyl-2-picrylhydrazyl radical scavenging 0.24-0.32mg/mL) than α-tocopherol (IC 0.63mg/mL). The title compounds displayed considerably greater 5-lipoxygenase inhibitory activity (IC 0.56 and 0.29mg/mL, respectively) in conjunction with higher selectivity indices (anti-cycloxygense-1/anti-cycloxygense-2 >1) compared to non-steroidal anti-inflammatory drugs (SI 0.03, SI 0.43). Putative biosynthetic pathway of title polyketide products through polyketide synthase enzyme cascade catalyzed reactions substantiated the structural attributions of the hitherto unreported aryl polyketides. This is the first report of the occurrence and characterization of two rare skeletal types, oxo-2H-pyranyl and oxa-cyclododecadienyl macrolactone featuring the aryl substituent from marine organisms with potential antioxidative and anti-inflammatory activities.
先前未被描述的芳基聚酮内酯,4-(8-乙基-四氢-7-氧代-2H-吡喃-5-基)-丙基-4'-甲基苯甲酸酯(化合物 1)和甲基-2-(12-氧代-7-苯基-8-乙烯基-1-氧代-4,9-环十二二烯-3-基)-乙酸酯(化合物 2)从褐藻 Sargassum wightii 的乙酸乙酯-甲醇部分中被分离出来。根据它们的 NMR 和质谱数据提出了结构。内酯的抗氧化活性明显更高(P<0.05)(IC 1,1-二苯基-2-苦基肼自由基清除 0.24-0.32mg/mL)比α-生育酚(IC 0.63mg/mL)。与非甾体抗炎药相比,标题化合物显示出相当大的 5-脂氧合酶抑制活性(IC 0.56 和 0.29mg/mL,分别)和更高的选择性指数(抗环加氧酶-1/抗环加氧酶-2 >1)(SI 0.03,SI 0.43)。通过聚酮合酶酶级联催化反应的假定生物合成途径证实了迄今未报道的芳基聚酮的结构归属。这是首次报道从海洋生物中出现和表征具有潜在抗氧化和抗炎活性的两个罕见骨架类型,即氧代-2H-吡喃基和氧代-环十二二烯基大环内酯的芳基取代基。