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嗜酸性粒细胞15-脂氧合酶是一种白三烯A4合酶。

Eosinophil 15-lipoxygenase is a leukotriene A4 synthase.

作者信息

MacMillan D K, Hill E, Sala A, Sigal E, Shuman T, Henson P M, Murphy R C

机构信息

National Jewish Center for Immunology and Respiratory Medicine, Denver, Colorado 80206.

出版信息

J Biol Chem. 1994 Oct 28;269(43):26663-8.

PMID:7929400
Abstract

5-Lipoxygenase is the first committed enzyme in the leukotriene biosynthetic pathway and is known to catalyze not only the first oxygenation of arachidonate to form 5(S)-hydroperoxyeicosatetraenoic acid (5(S)-HPETE), but also dehydration of this intermediate into leukotriene A4 (LTA4) by an activity termed leukotriene A4 synthase. Inhibition of cytosolic 5-lipoxygenase prepared from human blood granulocytes with zileuton (100 microM) was virtually complete, but LTA4 synthase activity was only inhibited by 47%. Structural characterization of eicosanoids synthesized in these preparations revealed an abundance of 15-lipoxygenase metabolites including 15-HETE when arachidonate was used as substrate and 5(S),15(S)-dihydroxy-6,8,11,13(E,E,Z,Z)-eicosatetraenoic acid when 5(S)-HPETE was used as substrate. When neutrophils were prepared that contained less than 1% eosinophil contamination, zileuton was found to almost completely inhibit all 5-lipoxygenase, as well as LTA4 synthase products. Immunochemical analysis of the supernatants from purified neutrophils and eosinophils confirmed the previous observation that neutrophils do not express 15-lipoxygenase. Incubation of 5(S)-HPETE with recombinant mammalian 15-lipoxygenase resulted in the formation of 6-trans-LTB4 and 6-trans-12-epi-LTB4 as LTA4 products, as well as the 12-lipoxygenase product 5(S),12(S)-diHPETE. The mechanism of action of 15-lipoxygenase acting as an LTA4 synthase is proposed to involve removing the pro-R hydrogen atom at carbon-10 of 5(S)-HPETE, which is antarafacial to the hydroperoxy group to yield LTA4.

摘要

5-脂氧合酶是白三烯生物合成途径中的首个关键酶,已知它不仅催化花生四烯酸的首次氧化生成5(S)-氢过氧化二十碳四烯酸(5(S)-HPETE),还通过一种称为白三烯A4合酶的活性将该中间体脱水生成白三烯A4(LTA4)。用齐留通(100微摩尔)抑制从人血粒细胞制备的胞质5-脂氧合酶几乎是完全的,但LTA4合酶活性仅被抑制47%。在这些制备物中合成的类花生酸的结构表征显示,当以花生四烯酸为底物时,有大量15-脂氧合酶代谢产物,包括15-HETE;当以5(S)-HPETE为底物时,有5(S),15(S)-二羟基-6,8,11,13(E,E,Z,Z)-二十碳四烯酸。当制备的中性粒细胞中嗜酸性粒细胞污染少于1%时,发现齐留通几乎完全抑制所有5-脂氧合酶以及LTA4合酶产物。对纯化的中性粒细胞和嗜酸性粒细胞的上清液进行免疫化学分析证实了先前的观察结果,即中性粒细胞不表达15-脂氧合酶。5(S)-HPETE与重组哺乳动物15-脂氧合酶孵育导致形成作为LTA4产物的6-反式-LTB4和6-反式-12-表-LTB4,以及12-脂氧合酶产物5(S),12(S)-二氢过氧化二十碳四烯酸。有人提出15-脂氧合酶作为LTA4合酶的作用机制涉及去除5(S)-HPETE碳-10位的前-R氢原子,该氢原子与氢过氧基呈反式排列以生成LTA4。

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