van den Berg J J, Op den Kamp J A, Lubin B H, Kuypers F A
Children's Hospital Oakland Research Institute, California 94609.
Biochemistry. 1993 May 11;32(18):4962-7. doi: 10.1021/bi00069a035.
Cleavage of oxidized fatty acids by phospholipase A2 has been implicated as the first step in the repair mechanism for oxidative damage to membrane phospholipids. However, the mechanism by which this enzyme preferentially hydrolyzes oxidized fatty acyl chains is poorly understood. Using a lipid monolayer technique, we found that the molecular surface areas of 1-palmitoyl-2-(9/13-hydroperoxylinoleoyl)-phosphatidylcholine (PLPC-OOH) and 1-palmitoyl-2-(9/13-hydroxylinoleoyl)phosphatidylcholine (PLPC-OH) were increased by as much as 50% relative to the parent nonoxidized 1-palmitoyl-2-linoleoylphosphatidylcholine (PLPC). These experimental data directly indicate a drastically changed molecular conformation of oxidized phospholipids in which the hydroperoxy or hydroxy group in the sn-2 fatty acid is close to the lipid-water interface. Phospholipases A2 from porcine pancreas and from bee venom were shown to break down PLPC-OOH and PLPC-OH monolayers much faster than PLPC monolayers. In all cases, the presence of serum albumin in the subphase enhanced monolayer breakdown by extracting hydrolysis products from the monolayer, but monolayer breakdown was always much faster for oxidized than for nonoxidized PLPC. This did not appear to be due to change in the extent of monolayer penetration by phospholipase A2, since enzyme-monolayer interaction studies revealed essentially identical penetration behavior of bee venom phospholipase A2 with PLPC, PLPC-OOH, and PLPC-OH monolayers. We propose that the altered molecular conformation of oxidized phospholipids facilitates access to the sn-2 ester bond, thereby ensuring their preferential hydrolysis in the presence of a phospholipase A2.
磷脂酶A2对氧化脂肪酸的裂解被认为是膜磷脂氧化损伤修复机制的第一步。然而,该酶优先水解氧化脂肪酰链的机制尚不清楚。使用脂质单层技术,我们发现1-棕榈酰-2-(9/13-氢过氧亚油酰基)-磷脂酰胆碱(PLPC-OOH)和1-棕榈酰-2-(9/13-羟基亚油酰基)磷脂酰胆碱(PLPC-OH)的分子表面积相对于未氧化的母体1-棕榈酰-2-亚油酰基磷脂酰胆碱(PLPC)增加了50%之多。这些实验数据直接表明氧化磷脂的分子构象发生了剧烈变化,其中sn-2脂肪酸中的氢过氧基或羟基靠近脂质-水界面。结果表明,来自猪胰腺和蜂毒的磷脂酶A2分解PLPC-OOH和PLPC-OH单层的速度比PLPC单层快得多。在所有情况下,亚相中血清白蛋白的存在通过从单层中提取水解产物增强了单层的分解,但氧化PLPC的单层分解总是比未氧化的PLPC快得多。这似乎不是由于磷脂酶A2对单层的穿透程度发生了变化,因为酶-单层相互作用研究表明蜂毒磷脂酶A2与PLPC单层、PLPC-OOH单层和PLPC-OH单层的穿透行为基本相同。我们认为,氧化磷脂分子构象的改变便于接近sn-2酯键,从而确保它们在磷脂酶A2存在下被优先水解。