Maury G, Ginestar E, Sraïri D, Thaler-Dao H, Dembélé-Duchesne M J, Lorquin J, Crastes de Paulet A
Laboratoire de Chimie Organique Enzymatique et Microbiologique, U.S.T.L., Montpellier, France.
Biochem Int. 1987 Dec;15(6):1127-35.
It has been shown that various glutathione transferases can synthesize leukotriene C4, or its methyl ester, from glutathione and leukotriene A4. We questioned whether the same enzymes could be used to resolve racemic leukotriene A4 methyl ester (more easily prepared than the optically active enantiomer) and to produce leukotriene C4 methyl ester selectively. We present in this paper a study of the enantioselectivity of some rat liver glutathione transferase isozymes and of the glutathione transferase of human placenta for the leukotriene A4 methyl ester isomers. The rat liver 3-4 glutathione transferase exhibited the highest conversion rate but preferentially converted the (5R, 6R) leukotriene A4 methyl ester. The placental enzyme was fairly selective for the natural (5S, 6S) enantiomer but the rate of conversion was low.
业已表明,多种谷胱甘肽转移酶可由谷胱甘肽和白三烯A4合成白三烯C4或其甲酯。我们质疑同样的酶是否可用于拆分外消旋白三烯A4甲酯(比旋光活性对映体更容易制备)并选择性地生成白三烯C4甲酯。我们在本文中展示了对一些大鼠肝脏谷胱甘肽转移酶同工酶以及人胎盘谷胱甘肽转移酶对白三烯A4甲酯异构体的对映选择性的研究。大鼠肝脏3-4谷胱甘肽转移酶表现出最高的转化率,但优先转化(5R, 6R)白三烯A4甲酯。胎盘酶对天然(5S, 6S)对映体具有相当的选择性,但转化率较低。