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首页> 外文期刊>Lipids >Biosynthesis of 14,15-hepoxilins in human l1236 Hodgkin lymphoma cells and eosinophils.
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Biosynthesis of 14,15-hepoxilins in human l1236 Hodgkin lymphoma cells and eosinophils.

机译:在人1236霍奇金淋巴瘤细胞和嗜酸性粒细胞中生物合成14,15-hepoxilins。

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摘要

Hepoxilins are epoxy alcohols synthesized through the 12-lipoxygenase (12-LO) pathway in animal cells. The epidermis is the principal source of hepoxilins in humans. Here we report on the formation of novel hepoxilin regioisomers formed by the 15-LO pathway in human cells. The Hodgkin lymphoma cell line L1236 possesses high 15-lipoxygenase-1 (15-LO-1) activity and incubation of L1236 cells with arachidonic acid led to the formation of 11(S)-hydroxy-14(S),15(S)-epoxy 5(Z),8(Z),12(E) eicosatrienoic acid (14,15-HxA(3) 11(S)) and 13(R)-hydroxy-14(S),15(S)-epoxy 5(Z),8(Z),11(Z) eicosatrienoic acid (14,15-HxB(3) 13(R)). In addition, two hitherto unidentified products were detected and these products were collected and analyzed by positive ion electrospray tandem mass spectrometry. These metabolites were identified as 11(S),15(S)-dihydroxy-14(R)-glutathionyl-5(Z),8(Z),12(E)-eicosatrienoic acid (14,15-HxA(3)-C) and 11(S),15(S)-dihydroxy-14(R)-cysteinyl-glycyl-5(Z),8(Z),12(E)-eicosatrienoic acid (14,15-HxA(3)-D). Incubation of L1236 cells with synthetic 14,15-HxA(3) 11(S) also led to the formation of 14,15-HxA(3)-C and 14,15-HxA(3)-D. Several soluble glutathione transferases, in particular GST M1-1 and GST P1-1, were found to catalyze the conversion of 14,15-HxA(3) to 14,15-HxA(3)-C. L1236 cells produced approximately twice as much eoxins as cysteinyl-containing hepoxilins upon stimulation with arachidonic acid. Human eosinophils, nasal polyps and dendritic cells selectively formed 14,15-HxA(3) 11(S) and 14,15-HxB(3) 13(R) stereoisomers, but not cysteinyl-containing hepoxilins, after stimulation with arachidonic acid. Furthermore, purified recombinant 15-LO-1 alone catalyzed the conversion of arachidonic acid to 14,15-HxA(3) 11(S) and 14,15-HxB(3) 13(R), showing that human 15-LO-1 possesses intrinsic 14,15-hepoxilin synthase activity.
机译:Hepoxilins是通过12-脂氧合酶(12-LO)途径在动物细胞中合成的环氧醇。表皮是人类中hexixilins的主要来源。在这里,我们报道了人类细胞中15-LO途径形成的新型hexixilin区域异构体的形成。霍奇金淋巴瘤细胞系L1236具有高15-脂氧合酶-1(15-LO-1)活性,L1236细胞与花生四烯酸温育导致形成11(S)-hydroxy-14(S),15(S) -环氧5(Z),8(Z),12(E)二十碳三烯酸(14,15-HxA(3)11(S))和13(R)-羟基-14(S),15(S)-环氧5(Z),8(Z),11(Z)二十碳三烯酸(14,15-HxB(3)13(R))。此外,还检测到两个迄今未鉴定的产物,并通过阳离子电喷雾串联质谱法对其进行了收集和分析。这些代谢物被鉴定为11(S),15(S)-二羟基-14(R)-谷胱甘肽-5(Z),8(Z),12(E)-二十碳三烯酸(14,15-HxA(3) -C)和11(S),15(S)-二羟基-14(R)-半胱氨酰-甘氨酰-5(Z),8(Z),12(E)-二十碳三烯酸(14,15-HxA(3 )-D)。 L1236细胞与合成14,15-HxA(3)11(S)的孵育也导致形成14,15-HxA(3)-C和14,15-HxA(3)-D。发现了几种可溶性谷胱甘肽转移酶,特别是GST M1-1和GST P1-1,可以催化14,15-HxA(3)转化为14,15-HxA(3)-C。在用花生四烯酸刺激后,L1236细胞产生的Eoxin约为含半胱氨酰的Hepoxilins的两倍。在用花生四烯酸刺激后,人类嗜酸性粒细胞,鼻息肉和树突状细胞选择性地形成了14,15-HxA(3)11(S)和14,15-HxB(3)13(R)立体异构体,但未形成含半胱氨酰的hepoxilins。此外,纯净的重组15-LO-1单独催化花生四烯酸向14,15-HxA(3)11(S)和14,15-HxB(3)13(R)的转化,表明人15-LO- 1具有固有的14,15-hepoxilin合酶活性。

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