Matsumoto K, Morita I, Hibino H, Murota S
Section of Physiological Chemistry, Faculty of Dentistry, Tokyo Medical and Dental University, Japan.
Prostaglandins Leukot Essent Fatty Acids. 1993 Nov;49(5):861-6. doi: 10.1016/0952-3278(93)90211-e.
5-Lipoxygenase has been recognized to be an important enzyme that catalyzes the first step in leukotriene production. In this study we examine whether or not phospholipids containing docosahexaenoic acid (DHA) affect 5-lipoxygenase activity of a rat basophilic leukemia cell line (RBL-1). Among the synthesized phospholipids examined, 1-oleoyl-2-docosahexaenoyl-sn-glycero-3-phosphocholine (1-oleoyl-2-DHA-PC) was found to be the most potent inhibitor of 5-lipoxygenase. The inhibition was dose-dependent and the ID50 value was 4.0 microM. When the fatty acid at the sn-2-position was replaced by other unsaturated fatty acids, the inhibitory activity decreased with decreasing numbers of both carbon atoms and double bonds in the fatty acids. Substitution at the 1-position of the DHA-containing PC also affected the inhibitory potency. If oleic acid was substituted with palmitic acid, the inhibition activity was completely abolished. Lineweaver-Burk plot analysis showed that the inhibition of 5-lipoxygenase by 1-oleoyl-2-DHA-PC was non-competitive. The inhibition by this synthesized phospholipid was very specific to 5-lipoxygenase; that is, it did not extend to fatty acid cyclooxygenase, 12-lipoxygenase or 15-lipoxygenase. These results suggest that endogenously existing DHA-containing phospholipids may affect 5-lipoxygenase activity and thus control leukotriene biosynthesis in vivo.
5-脂氧合酶被认为是催化白三烯生成第一步的重要酶。在本研究中,我们检测了含有二十二碳六烯酸(DHA)的磷脂是否会影响大鼠嗜碱性白血病细胞系(RBL-1)的5-脂氧合酶活性。在所检测的合成磷脂中,1-油酰基-2-二十二碳六烯酰基-sn-甘油-3-磷酸胆碱(1-油酰基-2-DHA-PC)被发现是5-脂氧合酶最有效的抑制剂。这种抑制作用呈剂量依赖性,ID50值为4.0微摩尔。当sn-2位的脂肪酸被其他不饱和脂肪酸取代时,抑制活性随着脂肪酸中碳原子数和双键数的减少而降低。含DHA的PC在1位的取代也会影响抑制效力。如果用棕榈酸取代油酸,抑制活性则完全消失。Lineweaver-Burk作图分析表明,1-油酰基-2-DHA-PC对5-脂氧合酶的抑制作用是非竞争性的。这种合成磷脂的抑制作用对5-脂氧合酶非常特异;也就是说,它不会扩展到脂肪酸环氧化酶、12-脂氧合酶或15-脂氧合酶。这些结果表明,内源性存在的含DHA磷脂可能会影响5-脂氧合酶活性,从而在体内控制白三烯的生物合成。