Department of Pharmacology, Vanderbilt Institute of Chemical Biology, Vanderbilt University, Nashville, TN 37232-6602, USA.
Chem Phys Lipids. 2013 Feb-Mar;167-168:21-32. doi: 10.1016/j.chemphyslip.2013.01.002. Epub 2013 Jan 23.
We characterize the allylic epoxyalcohols and their trihydroxy hydrolysis products generated from 9R- and 9S-hydroperoxy-octadecenoic acid (HPODE) under non-enzymatic conditions, reaction with hematin and subsequent acid hydrolysis, and enzymatic conditions, incubation with Beta vulgaris containing a hydroperoxide isomerase and epoxide hydrolase. The products were resolved by HPLC and the regio and stereo-chemistry of the transformations were determined through a combination of (1)H NMR and GC-MS analysis of dimethoxypropane derivatives. Four trihydroxy isomers were identified upon mild acid hydrolysis of 9S,10S-trans-epoxy-11E-13S-hydroxyoctadecenoate: 9S,10R,13S, 9S,12R,13S, 9S,10S,13S and 9S,12S,13S-trihydroxy-octadecenoic acids, in the ratio 40:26:22:12. We also identified a prominent δ-ketol rearrangement product from the hydrolysis as mainly the 9-hydroxy-10E-13-oxo isomer. Short incubation (5 min) of 9R- and 9S-HPODE with B. vulgaris extract yielded the 9R- and 9S-hydroxy-10E-12R,13S-cis-epoxy products respectively. Longer incubation (60 min) gave one specific hydrolysis product via epoxide hydrolase, the 9R/S,12S,13S-trihydroxyoctadecenoate. These studies provide a practical approach for the isolation and characterization of allylic epoxy alcohol and trihydroxy products using a combination of HPLC, GC-MS and (1)H NMR.
我们描述了非酶条件下 9R-和 9S-过氧十八烯酸(HPODE)与血红素反应及其三羟基水解产物,以及酶条件下β-甜菜地中海贫血含过氧化物异构酶和环氧化物水解酶孵育的情况。通过 HPLC 分离产物,并通过(1)H NMR 和 GC-MS 分析二甲氧基丙烷衍生物确定转化的区域和立体化学。温和酸水解 9S,10S-顺式-环氧-11E-13S-羟基十八碳烯酸酯得到四种三羟基异构体:9S,10R,13S、9S,12R,13S、9S,10S,13S 和 9S,12S,13S-三羟基十八碳烯酸,比例为 40:26:22:12。我们还从水解产物中鉴定出一种主要的 δ-酮醇重排产物,主要为 9-羟基-10E-13-氧代异构体。β-甜菜地中海贫血提取物短时间(5 分钟)孵育 9R-和 9S-HPODE 分别得到 9R-和 9S-羟基-10E-12R,13S-顺式环氧产物。长时间(60 分钟)孵育后,通过环氧化物水解酶得到一种特定的水解产物,即 9R/S,12S,13S-三羟基十八碳烯酸酯。这些研究提供了一种实用的方法,通过 HPLC、GC-MS 和(1)H NMR 的组合分离和鉴定烯丙基环氧化醇和三羟基产物。