Blee E, Schuber F
Institut de Biologie Moléculaire des Plantes (CNRS UPR-406), DECM, Strasbourg, France.
Biochem Biophys Res Commun. 1992 Aug 31;187(1):171-7. doi: 10.1016/s0006-291x(05)81475-5.
Soybean epoxide hydrolase efficiently catalyzes the hydration of the two positional isomers of linoleic acid monoepoxides into their corresponding vic-diols. Kinetic analysis of the progress curves, obtained at low substrate concentrations (i.e. [So] much less than Km), and analysis of the residual substrates by chiral-phase HPLC, indicate that the hydrolase is highly enantioselective, i.e. cis-9R,10S-epoxy-12(Z)-octadecenoic and cis-12R,13S-epoxy-9(Z)-octadecenoic acids are preferentially hydrolyzed (the enantioselectivity ratios are 15 and 28, respectively). Importantly, these two enantiomers are the one formed preponderantly by epoxidation of linoleic acid by peroxygenase, a hydroperoxide-dependent oxidase we have previously described in soybean (Blée, E., and Schuber, F., Biochem. Biophys. Res. Commun. (1990) 173, 1354-1360).
大豆环氧水解酶能高效催化亚油酸单环氧化物的两种位置异构体水合生成相应的邻二醇。在低底物浓度(即[So]远小于Km)下获得的进程曲线动力学分析,以及通过手性相高效液相色谱法对残留底物的分析表明,该水解酶具有高度对映选择性,即顺式-9R,10S-环氧-12(Z)-十八碳烯酸和顺式-12R,13S-环氧-9(Z)-十八碳烯酸优先被水解(对映选择性比率分别为15和28)。重要的是,这两种对映体是由过氧合酶催化亚油酸环氧化反应主要生成的对映体,过氧合酶是一种我们之前在大豆中描述过的氢过氧化物依赖性氧化酶(Blée, E., and Schuber, F., Biochem. Biophys. Res. Commun. (1990) 173, 1354 - 1360)。