Maas R L, Brash A R
Proc Natl Acad Sci U S A. 1983 May;80(10):2884-8. doi: 10.1073/pnas.80.10.2884.
Leukocyte preparations convert the hydroperoxy icosatetraenoic acids 5(S)-HPETE and 15(S)-HPETE to the unstable leukotriene epoxides LTA4 and 14,15-LTA4. In several ways, the conversion of 5- or 15-HPETE to leukotriene epoxide bears a formal mechanistic resemblance to the reaction catalyzed by the 12-lipoxygenase in the conversion of arachidonic acid to 12(S)-HPETE. Points of similarity include enzymatic removal of a hydrogen at carbon 10, double bond isomerization, and formation of a new carbon-to-oxygen bond. In the case of 15(S)-HPETE, two 8,15- and an erythro-14,15-dihydroxy acid (8,15- and 14,15-DiHETEs), which result from incorporation of molecular oxygen into each hydroxyl group, are coproducts in the formation of 14,15-LTA4. These facts prompted us to test the hypothesis that the biosynthesis of 14,15-LTA4 and of 8,15- and 14,15-DiHETEs from 15(S)-HPETE occurs by a mechanism similar to that observed in lipoxygenase reactions. Based on the results presented here, we conclude that the biosynthesis of 14,15-LTA4 and of 8,15- and 14,15-DiHETEs from 15(S)-HPETE occurs via a common intermediate and that, moreover, the formation of these metabolites from 15(S)-HPETE is catalyzed by an enzyme with many mechanistic features in common with the 12-lipoxygenase.
白细胞制剂可将氢过氧化二十碳四烯酸5(S)-HPETE和15(S)-HPETE转化为不稳定的白三烯环氧化物LTA4和14,15-LTA4。在几个方面,5-或15-HPETE向白三烯环氧化物的转化在形式上的机制类似于12-脂氧合酶催化花生四烯酸转化为12(S)-HPETE的反应。相似之处包括在碳10处酶促去除一个氢、双键异构化以及形成新的碳-氧键。就15(S)-HPETE而言,两个8,15-二羟基酸和一个赤式-14,15-二羟基酸(8,15-和14,15-DiHETEs),它们是由分子氧掺入每个羟基而产生的,是14,15-LTA4形成过程中的副产物。这些事实促使我们检验这样一个假设,即从15(S)-HPETE生物合成14,15-LTA4以及8,15-和14,15-DiHETEs的机制类似于在脂氧合酶反应中观察到的机制。基于此处给出的结果,我们得出结论,从15(S)-HPETE生物合成14,15-LTA4以及8,15-和14,15-DiHETEs是通过一个共同的中间体进行的,而且,从15(S)-HPETE形成这些代谢产物是由一种酶催化的,该酶具有许多与