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一种植物月桂酸ω-羟化酶的区域选择性。植物细胞色素P-450对顺式和反式不饱和月桂酸类似物的ω-羟化作用以及末端烯烃的环氧化作用。

Regioselectivity of a plant lauric acid omega hydroxylase. Omega hydroxylation of cis and trans unsaturated lauric acid analogs and epoxygenation of the terminal olefin by plant cytochrome P-450.

作者信息

Weissbart D, Salaün J P, Durst F, Pflieger P, Mioskowski C

机构信息

Laboratoire d'Enzymologie Cellulaire et Moléculaire, Université Louis Pasteur-CNRS URA 1182, Strasbourg, France.

出版信息

Biochim Biophys Acta. 1992 Mar 4;1124(2):135-42. doi: 10.1016/0005-2760(92)90089-e.

Abstract

The study of the stereochemistry and regioselectivity of plant fatty acid hydroxylases is hampered by the difficulty to purify plant cytochrome P-450 enzymes. To provide an alternative, we have now defined an experimental plant system which expresses only one hydroxylase activity towards lauric acid: microsomes from clofibrate-induced Vicia sativa seedlings hydroxylate this fatty acid exclusively at the methyl terminus. To explore the catalytic capabilities of this laurate oxidase, a series of 1-14C-radiolabeled unsaturated lauric acid analogs (7-, 8-, 9-, 10- and 11-dodecenoic acids) were synthesized. Microsomes from clofibrate induced Vicia sativa seedling catalyzed the omega-oxidation of the lauric acid analogs in the presence of O2 and NADPH. The cis and trans forms of the four in-chain unsaturated analogs of lauric acid were 12-hydroxylated with similar efficiency. The terminal olefin was readily converted to the epoxide with only marginal autocatalytic inactivation of the enzyme. The formation of each metabolite was inhibited to the same extend when microsomes were incubated in presence of carbon monoxide or a suicide-substrate for omega LAH, suggesting that a single cytochrome P-450 isoenzyme from Vicia sativa microsomes is able to omega hydroxylate lauric acid and in-chain unsaturated analogs, and to epoxygenate 11-dodecenoic acid.

摘要

植物脂肪酸羟化酶的立体化学和区域选择性研究因难以纯化植物细胞色素P-450酶而受阻。为了提供一种替代方法,我们现在定义了一个实验性植物系统,该系统对月桂酸仅表现出一种羟化酶活性:氯贝丁酯诱导的蚕豆幼苗微粒体仅在甲基末端将这种脂肪酸羟化。为了探索这种月桂酸氧化酶的催化能力,合成了一系列1-¹⁴C放射性标记的不饱和月桂酸类似物(7-、8-、9-、10-和11-十二碳烯酸)。氯贝丁酯诱导的蚕豆幼苗微粒体在O₂和NADPH存在下催化月桂酸类似物的ω-氧化。月桂酸的四种链内不饱和类似物的顺式和反式形式以相似的效率被12-羟化。末端烯烃很容易转化为环氧化物,而酶的自催化失活作用很小。当微粒体在一氧化碳或ω-LAH的自杀底物存在下孵育时,每种代谢物的形成受到相同程度的抑制,这表明蚕豆微粒体中的一种单一细胞色素P-450同工酶能够对月桂酸和链内不饱和类似物进行ω-羟化,并将11-十二碳烯酸环氧化。

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