Arthur G
Department of Biochemistry and Molecular Biology, Faculty of Medicine, University of Manitoba, Winnipeg, Canada.
Biochem J. 1989 Jul 15;261(2):581-6. doi: 10.1042/bj2610581.
Lysophospholipases A1 which catalyse the hydrolysis of acyl groups from 1-acylglycerophosphocholine (GPC) have been characterized in a number of mammalian tissues and do not exhibit any acyl specificity. In the present study lysophospholipase activity in guinea-pig heart microsomes (microsomal fractions) that hydrolyses 2-acyl-GPC was detected and characterized. The enzyme showed a high degree of acyl specificity. The relative rates of hydrolysis of individual 2-acyl-GPCs with different fatty acids was as follows: C18:2/C20:1/C18:1/C16:0, 14:6:1:1. When substrates were presented in pairs, the hydrolysis of each substrate by the enzyme was inhibited, but to very different extents. Of each pair of lysolipids examined (2-arachidonoyl- and 2-palmitoyl-GPC; 2-arachidonoyl- and 2-linoleoyl-GPC), the one with the expected higher rate of hydrolysis was more severely inhibited and the degree of inhibition was dependent on the concentration of the other lysolipid. The characteristics of the lysophospholipase A2 suggest the enzyme could work in concert with phospholipase A1 to release arachidonic and linoeic acids for further metabolism. The properties of lysophospholipase A2 and A1 suggest that they are different enzymes.
催化从1-酰基甘油磷酸胆碱(GPC)水解酰基的溶血磷脂酶A1已在多种哺乳动物组织中得到表征,且不表现出任何酰基特异性。在本研究中,检测并表征了豚鼠心脏微粒体(微粒体部分)中水解2-酰基-GPC的溶血磷脂酶活性。该酶表现出高度的酰基特异性。不同脂肪酸的单个2-酰基-GPC的相对水解速率如下:C18:2/C20:1/C18:1/C16:0,为14:6:1:1。当以成对形式提供底物时,酶对每种底物的水解均受到抑制,但程度差异很大。在所检查的每对溶血脂质(2-花生四烯酰基-和2-棕榈酰基-GPC;2-花生四烯酰基-和2-亚油酰基-GPC)中,预期水解速率较高的那一种受到的抑制更严重,且抑制程度取决于另一种溶血脂质的浓度。溶血磷脂酶A2的特性表明该酶可能与磷脂酶A1协同作用,释放花生四烯酸和亚油酸以进行进一步代谢。溶血磷脂酶A2和A1的特性表明它们是不同的酶。