Blee E, Ståhl U, Schuber F, Stymne S
Institut de Biologie Moléculaire des Plantes (CNRS UPR 406), DECM, Strasbourg, France.
Biochem Biophys Res Commun. 1993 Dec 15;197(2):778-84. doi: 10.1006/bbrc.1993.2546.
Two oxygenases associated with microsomes prepared from Euphorbia lagascae developing seeds were found to convert linoleic acid into cis-12,13-epoxy-9(Z)-octadecenoic acid (vernolate): a cytochrome P-450 and a peroxygenase. The cytochrome P-450 dependent epoxidation is characterized by a remarkable regio- and enantioselectivity, i.e. only the 12(S),13(R)-enantiomer is formed in the endosperm. In germinating seeds, peroxygenase was active but no cytochrome P-450 epoxidase could be detected. Moreover, because of the very high enantioselectivity of the fatty acid epoxide hydrolase, which is also found in these tissues and which preferentially hydrates the 12(R),13(S)-epoxide enantiomer, 12(S),13(R)-epoxy-9(Z)-octadecenoic acid is the only isomer which can accumulate in E. lagascae.
研究发现,从大戟属植物拉加斯卡大戟发育中的种子制备的微粒体中存在两种加氧酶,它们可将亚油酸转化为顺式-12,13-环氧-9(Z)-十八碳烯酸(vernolate):一种细胞色素P-450和一种过氧酶。细胞色素P-450依赖性环氧化反应具有显著的区域和对映体选择性,即胚乳中仅形成12(S),13(R)-对映体。在萌发的种子中,过氧酶具有活性,但未检测到细胞色素P-450环氧化酶。此外,由于这些组织中也存在脂肪酸环氧水解酶,且该酶对12(R),13(S)-环氧对映体具有优先水合作用,其对映体选择性非常高,因此12(S),13(R)-环氧-9(Z)-十八碳烯酸是唯一能够在拉加斯卡大戟中积累的异构体。