Pérez-Gilabert M, Veldink G A, Vliegenthart J F
Bijvoet Center for Biomolecular Research, Department of Bio-organic Chemistry, Utrecht University, The Netherlands.
Arch Biochem Biophys. 1998 Jun 1;354(1):18-23. doi: 10.1006/abbi.1998.0673.
Soybean lipoxygenase-1 is able to oxidize dilinoleoyl phosphatidylcholine at pH 7.5 and 10. The reaction could be followed spectrophotometrically from the increase of the absorbance at 234 nm. An intermediate product and a final product were detected. In the intermediate product only one of the linoleoyl chains (either sn1 or sn2) was oxidized. In the final product, both linoleic acid units were converted into hydroperoxides. Apparently, oxidation of one of the linoleoyl chains leads to a disruption of the structure of the mixed bilayer disk, making the remaining fatty acid unit more accessible to the action of the enzyme. The specificity of lipoxygenase-1 when acting on phospholipids is not affected by pH. The exclusive production of 13-hydroperoxyoctadecadienoic acid derivatives of dilinoleoyl phosphatidylcholine at pH 7.5 and 10 may result from the blockage of the carboxylic end of the fatty acid.
大豆脂氧合酶-1能够在pH值为7.5和10的条件下氧化二亚油酰磷脂酰胆碱。该反应可通过分光光度法跟踪234nm处吸光度的增加来进行监测。检测到一种中间产物和一种最终产物。在中间产物中,只有一个亚油酰链(sn1或sn2)被氧化。在最终产物中,两个亚油酸单元都转化为氢过氧化物。显然,其中一个亚油酰链的氧化导致混合双层盘结构的破坏,使得剩余的脂肪酸单元更容易受到酶的作用。脂氧合酶-1作用于磷脂时的特异性不受pH值影响。在pH值为7.5和10时,二亚油酰磷脂酰胆碱仅产生13-氢过氧十八碳二烯酸衍生物,这可能是由于脂肪酸羧基末端的阻断所致。