Department of Pharmacology and Toxicology, Michigan State University, East Lansing, MI 48824.
Department of Entomology and Nematology University of California at Davis, Davis, CA 95616.
J Lipid Res. 2018 Nov;59(11):2237-2252. doi: 10.1194/jlr.D089136. Epub 2018 Sep 12.
Epoxy PUFAs are endogenous cytochrome P450 (P450) metabolites of dietary PUFAs. Although these metabolites exert numerous biological effects, attempts to study their complex biology have been hampered by difficulty in obtaining the epoxides as pure regioisomers and enantiomers. To remedy this, we synthesized 19,20- and 16,17-epoxydocosapentaenoic acids (EDPs) (the two most abundant EDPs in vivo) by epoxidation of DHA with WT and the mutant (F87V) P450 enzyme BM3 from WT epoxidation yielded a 4:1 mixture of 19,20:16,17-EDP exclusively as (,) enantiomers. Epoxidation with the mutant (F87V) yielded a 1.6:1 mixture of 19,20:16,17-EDP; the 19,20-EDP fraction was ∼9:1 (,):(,), but the 16,17-EDP was exclusively the (,) enantiomer. To access the (,) enantiomers of these EDPs, we used a short (four-step) chemical inversion sequence, which utilizes 2-(phenylthio)ethanol as the epoxide-opening nucleophile, followed by mesylation of the resulting alcohol, oxidation of the thioether moiety, and base-catalyzed elimination. This short synthesis cleanly converts the (,)-epoxide to the (,)-epoxide without loss of enantiopurity. This method, also applicable to eicosapentaenoic acid and arachidonic acid, provides a simple, cost-effective procedure for accessing larger amounts of these metabolites.
环氧多不饱和脂肪酸 (PUFAs) 是膳食 PUFAs 内源性细胞色素 P450 (P450) 代谢物。尽管这些代谢物具有多种生物学效应,但由于难以获得纯区域异构体和对映异构体的环氧化物,因此研究其复杂的生物学特性受到了阻碍。为了解决这个问题,我们通过用 WT 和突变体 (F87V) P450 酶 BM3 氧化 DHA 合成了 19,20-和 16,17-环氧二十二碳五烯酸 (EDPs)(体内最丰富的两种 EDPs),WT 氧化生成的 19,20:16,17-EDP 是 4:1 的混合物,仅为 (,)对映异构体。用突变体 (F87V) 氧化生成 19,20:16,17-EDP 的混合物为 1.6:1;19,20-EDP 部分为 ∼9:1(,):(,),但 16,17-EDP 仅为(,)对映异构体。为了获得这些 EDPs 的(,)对映异构体,我们使用了一个短的(四步)化学反转序列,该序列利用 2-(苯硫基)乙醇作为环氧化物开环亲核试剂,然后对生成的醇进行甲磺酸酯化、硫醚部分氧化、以及碱催化消除。这种短的合成方法可以在不损失对映体纯度的情况下,将(,)-环氧化物干净地转化为(,)-环氧化物。该方法也适用于二十碳五烯酸和花生四烯酸,为获得这些代谢物的更大数量提供了一种简单、经济有效的方法。