Primdahl Karoline G, Aursnes Marius, Walker Mary E, Colas Romain A, Serhan Charles N, Dalli Jesmond, Hansen Trond V, Vik Anders
School of Pharmacy, Department of Pharmaceutical Chemistry, University of Oslo , P.O. Box 1068 Blindern, N-0316 Oslo, Norway.
William Harvey Research Institute, Barts and The London School of Medicine and Dentistry, Queen Mary University of London , Charterhouse Square, London, UK , EC1M 6BQ.
J Nat Prod. 2016 Oct 28;79(10):2693-2702. doi: 10.1021/acs.jnatprod.6b00634. Epub 2016 Oct 5.
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.
特殊促消退脂质介质是在急性炎症消退阶段由n-3多不饱和脂肪酸生物合成的。最近,有报道称分离并鉴定出了四种新型介质,即13系列类消退素,分别为RvT1(1)、RvT2(2)、RvT3(3)和RvT4(4),它们表现出特殊促消退脂质介质所特有的强大生物活性。在此,基于液相色谱/质谱-质谱代谢脂质组学结果以及13(R)-羟基-7Z,10Z,13R,14E,16Z,19Z-二十二碳五烯酸(13R-HDPA,5)的立体选择性合成,我们提供了直接证据,证明这四种新型介质1-4均由关键中间体5生物合成。合成的13R-HDPA(5)的紫外和液相色谱/质谱-质谱结果与从体内感染性渗出物、内皮细胞和人重组COX-2酶中内源性和生物合成产生的物质的结果相匹配。使用手性源起始原料获得了立体化学纯的5,该原料在C-13原子上的构型为R。通过两个立体选择性Z-维蒂希反应和两个内部炔烃的Z-选择性还原反应,得到了5中几何构型纯的烯烃部分。将5与分离的人中性粒细胞一起孵育,得到了所有四种RvT。本文给出的结果为RvT 1-4的生物合成途径和酶来源提供了新的知识。