Huang Long Shuang, Kang Jong Seong, Kim Mee Ree, Sok Dai-Eun
College of Pharmacy and Department of Food and Nutrition, Chungnam National University, Taejon, Korea.
J Agric Food Chem. 2008 Feb 27;56(4):1224-32. doi: 10.1021/jf073016i. Epub 2008 Feb 2.
Oxygenation of arachidonoyl lysophosphatidylcholine (lysoPC) or arachidonoyl lysophosphatidic acid (lysoPA) by lipoxygenase (LOX) was examined. The oxidized products were identified by HPLC/UV spectrophotometry/mass spectrometry analyses. Straight-phase and chiral-phase HPLC analyses indicated that soybean LOX-1 and rabbit reticulocyte LOX oxygenated arachidonoyl lysophospholipids mainly at C-15 with the S form as major enantiomer, whereas porcine leukocyte LOX oxygenated at C-12 with the S form. Next, the sequential exposure of arachidonoyl-lysoPC to soybean LOX-1 and porcine leukocyte LOX afforded two major isomers of dihydroxy derivatives with conjugated triene structure, suggesting that 15(S)-hydroperoxyeicosatetraenoyl derivatives were converted to 8,15(S)-dihydroxyeicosatetraenoyl derivatives. Separately, arachidonoyl-lysoPA, but not arachidonoyl-lysoPC, was found to be susceptible to double oxygenation by soybean LOX-1 to generate a dihydroperoxyeicosatetraenoyl derivative. Overall, arachidonoyl lysophospholipids were more efficient than arachidonic acid as LOX substrate. Moreover, the catalytic efficiency of arachidonoyl-lysoPC as substrate of three lipoxygenases was much greater than that of arachidonoyl-lysoPA or arachidonic acid. Taken together, it is proposed that arachidonoyl-lysoPC or arachidonoyl-lysoPA is efficiently oxygenated by plant or animal lipoxygenases, C12- or C15-specific, to generate oxidized products with conjugated diene or triene structure.
研究了脂氧合酶(LOX)对花生四烯酰溶血磷脂酰胆碱(溶血磷脂酰胆碱)或花生四烯酰溶血磷脂酸(溶血磷脂酸)的氧化作用。通过高效液相色谱/紫外分光光度法/质谱分析鉴定氧化产物。正相和手性相高效液相色谱分析表明,大豆LOX-1和兔网织红细胞LOX主要在C-15位氧化花生四烯酰溶血磷脂,S型为主要对映体,而猪白细胞LOX在C-12位氧化,S型为主要对映体。接下来,将花生四烯酰溶血磷脂酰胆碱依次暴露于大豆LOX-1和猪白细胞LOX中,得到了两种具有共轭三烯结构的二羟基衍生物的主要异构体,这表明15(S)-氢过氧二十碳四烯酰衍生物被转化为8,15(S)-二羟基二十碳四烯酰衍生物。另外,发现花生四烯酰溶血磷脂酸而非花生四烯酰溶血磷脂酰胆碱易被大豆LOX-1双氧化生成二氢过氧二十碳四烯酰衍生物。总体而言,花生四烯酰溶血磷脂作为LOX底物比花生四烯酸更有效。此外,花生四烯酰溶血磷脂酰胆碱作为三种脂氧合酶底物的催化效率远高于花生四烯酰溶血磷脂酸或花生四烯酸。综上所述,有人提出花生四烯酰溶血磷脂酰胆碱或花生四烯酰溶血磷脂酸可被植物或动物的脂氧合酶(C12或C15特异性)有效氧化,生成具有共轭二烯或三烯结构的氧化产物。