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白三烯是脂质过氧化产生的具有生物活性的自由基产物。

Isoleukotrienes are biologically active free radical products of lipid peroxidation.

作者信息

Harrison K A, Murphy R C

机构信息

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

出版信息

J Biol Chem. 1995 Jul 21;270(29):17273-8. doi: 10.1074/jbc.270.29.17273.

DOI:10.1074/jbc.270.29.17273
PMID:7615527
Abstract

The free radical oxidation of arachidonic acid esterified to glycerophospholipids is known to generate complex metabolites, termed isoprostanes, that share structural features of prostaglandins derived from prostaglandin H2 synthase. Furthermore, certain isoprostanes have been found to exert biological activity through endogenous receptors on cell surfaces. Using mass spectrometry and ancillary techniques, the free radical oxidation of 1-hexadecanoyl-2-arachidonoyl-glycerophosphocholine was studied in the search for products of arachidonic acid isomeric to the leukotrienes that are derived from 5-lipoxygenase-catalyzed metabolism of arachidonic acid. Several conjugated triene metabolites were chromatographically separated from known 5-lipoxygenase products and structures characterized as 5,12-dihydroxy-6,8,10,14-eicosatetraenoic acid esterified to the glycerophosphocholine backbone. We have termed these products as B4-isoleukotrienes. Following saponification some, but not all, B4-isoleukotrienes were found to exert biological activity in elevating intracellular calcium in Indo-1-loaded human polymorphonuclear leukocytes. This activity could be blocked by a leukotriene B4 receptor antagonist. An EC50 of approximately 30 nM was determined for one unique B4-isoleukotriene with a relative retention index of 2.54. We have shown that free radical processes can lead to the formation of biologically active isoleukotrienes in glycerophosphocholine liposomes, and we propose that B4-isoleukotrienes may also be formed in membrane glycerophospholipids as a result of lipid peroxidation during tissue injury. Such B4-isoleukotrienes could then mediate events of tissue damage through activation of leukotriene B4 receptors on target cells.

摘要

已知酯化到甘油磷脂上的花生四烯酸的自由基氧化会生成复杂的代谢产物,即异前列腺素,它们具有源自前列腺素H2合酶的前列腺素的结构特征。此外,已发现某些异前列腺素通过细胞表面的内源性受体发挥生物活性。利用质谱和辅助技术,研究了1-十六烷酰基-2-花生四烯酰基-甘油磷酸胆碱的自由基氧化,以寻找与白三烯异构的花生四烯酸产物,白三烯是由5-脂氧合酶催化的花生四烯酸代谢产生的。通过色谱法从已知的5-脂氧合酶产物中分离出几种共轭三烯代谢产物,其结构被表征为酯化到甘油磷酸胆碱主链上的5,12-二羟基-6,8,10,14-二十碳四烯酸。我们将这些产物称为B4-异白三烯。皂化后发现,部分而非全部B4-异白三烯在升高负载Indo-1的人多形核白细胞内的钙水平方面具有生物活性。这种活性可被白三烯B4受体拮抗剂阻断。对于一种相对保留指数为2.54的独特B4-异白三烯,测定其EC50约为30 nM。我们已经表明,自由基过程可导致甘油磷酸胆碱脂质体中形成具有生物活性的异白三烯,并且我们提出,在组织损伤期间,由于脂质过氧化,膜甘油磷脂中也可能形成B4-异白三烯。这样的B4-异白三烯随后可通过激活靶细胞上的白三烯B4受体来介导组织损伤事件。

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1
Isoleukotrienes are biologically active free radical products of lipid peroxidation.白三烯是脂质过氧化产生的具有生物活性的自由基产物。
J Biol Chem. 1995 Jul 21;270(29):17273-8. doi: 10.1074/jbc.270.29.17273.
2
Metabolism of 6-trans-isomers of leukotriene B4 in cultured hepatoma cells and in human polymorphonuclear leukocytes. Identification of a delta 6-reductase metabolic pathway.白三烯B4 6-反式异构体在培养的肝癌细胞和人多形核白细胞中的代谢。δ6-还原酶代谢途径的鉴定。
J Biol Chem. 1995 Aug 25;270(34):19845-52. doi: 10.1074/jbc.270.34.19845.
3
Leukotrienes.白三烯
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4
Epidermal cell-polymorphonuclear leukocyte cooperation in the formation of leukotriene B4 by transcellular biosynthesis.
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Metabolism of arachidonic acid by canine polymorphonuclear leukocytes synthesis of lipoxygenase and omega-oxidized metabolites.犬多形核白细胞对花生四烯酸的代谢:脂氧合酶和ω-氧化代谢产物的合成
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Calcium-dependent eicosanoid metabolism by concanavalin A-stimulated human monocytes in vitro. Synergism with phorbol ester indicates separate regulation of leukotriene B4 synthesis and release.体外伴刀豆球蛋白A刺激的人单核细胞的钙依赖性类花生酸代谢。与佛波酯的协同作用表明白三烯B4合成和释放的调节是分开的。
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Metabolism of arachidonic acid by peripheral and elicited rat polymorphonuclear leukocytes. Formation of 18- and 19-oxygenated dihydro metabolites of leukotriene B4.外周及诱导的大鼠多形核白细胞中花生四烯酸的代谢。白三烯B4的18-和19-氧化二氢代谢物的形成。
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12-Lipoxygenase from bovine polymorphonuclear leukocytes, an enzyme with leukotriene A4-synthase activity.来自牛多形核白细胞的12-脂氧合酶,一种具有白三烯A4合酶活性的酶。
Biochem Biophys Res Commun. 1987 Nov 30;149(1):258-65. doi: 10.1016/0006-291x(87)91633-0.
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Omega-oxidation is the major pathway for the catabolism of leukotriene B4 in human polymorphonuclear leukocytes.ω-氧化是人类多形核白细胞中白三烯B4分解代谢的主要途径。
J Biol Chem. 1984 Aug 25;259(16):10181-7.

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