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一种制备(5Z,8Z,11Z,14Z)-16-羟基二十碳-5,8,11,14-四烯酸对映体及相应14,15-脱氢类似物的简单方法:16-羟基基团在脂氧合酶反应中的作用

A simple method for the preparation of (5Z,8Z,11Z,14Z)-16-hydroxyeicosa-5,8,11,14-tetraenoic acid enantiomers and the corresponding 14,15-dehydro analogues: role of the 16-hydroxy group for the lipoxygenase reaction.

作者信息

Ivanov Igor V, Romanov Stepan G, Groza Nataliya V, Nigam Santosh, Kuhn Hartmut, Myagkova Galina I

机构信息

M.V. Lomonosov State Academy of Fine Chemical Technology, 117571 Pr. Vernadskogo 86, Moscow, Russian Federation.

出版信息

Bioorg Med Chem. 2002 Jul;10(7):2335-43. doi: 10.1016/s0968-0896(02)00024-x.

Abstract

(5Z,8Z,11Z,13E)-15-Hydroxy-5,8,11,13-eicosatetraenoic acid (15-HETE) is not well oxygenated by arachidonate 15-lipoxygenases because of two structural reasons: (i) it contains a hydrophilic OH-group in close proximity to its methyl end and (ii) it lacks the bisallylic methylene at C(13). We synthesized racemic (5Z,8Z,11Z,14Z)-16-hydroxy-5,8,11,14-eicosatetraenoic acid (16-HETE) which still contains the bisallylic C(13), separated the enantiomers reaching an optical purity of >99% and tested them as substrates for 5- and 15-lipoxygenases. Our synthetic pathway, which is based on stereospecific hydrogenation of a polyacetylenic precursor, yielded substantial amounts (30%) of 14,15-dehydro-16-HETE in addition to 16-HETE. When 16-HETE was tested as lipoxygenase substrate, we found that it is well oxygenated by the soybean 15-lipoxygenase and by the recombinant human 5-lipoxygenase. Analysis of the reaction products suggested an arachidonic acid-like alignment at the active site of the two enzymes. In contrast, the product pattern of 16-HETE methyl ester oxygenation by the soybean lipoxygenase (5-lipoxygenation) may be explained by an inverse head to tail substrate orientation.

摘要

(5Z,8Z,11Z,13E)-15-羟基-5,8,11,13-二十碳四烯酸(15-HETE)不能被花生四烯酸15-脂氧合酶很好地氧化,原因有两个结构方面的:(i)它在靠近甲基端的位置含有一个亲水性的OH基团,(ii)它在C(13)处缺乏双烯丙基亚甲基。我们合成了外消旋的(5Z,8Z,11Z,14Z)-16-羟基-5,8,11,14-二十碳四烯酸(16-HETE),它仍然含有双烯丙基C(13),分离出对映体,其光学纯度>99%,并将它们作为5-和15-脂氧合酶的底物进行测试。我们基于多炔前体的立体定向氢化的合成途径,除了16-HETE之外,还产生了大量(30%)的14,15-脱氢-16-HETE。当将16-HETE作为脂氧合酶底物进行测试时,我们发现它能被大豆15-脂氧合酶和重组人5-脂氧合酶很好地氧化。对反应产物的分析表明,在这两种酶的活性位点存在类似花生四烯酸的排列方式。相比之下,大豆脂氧合酶对16-HETE甲酯的氧化产物模式(5-脂氧合)可能是由底物的头尾反向排列来解释的。

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