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CYP94A1对环氧脂肪酸和羟基脂肪酸的ω-羟基化作用:可能参与植物防御。

omega-Hydroxylation of epoxy- and hydroxy-fatty acids by CYP94A1: possible involvement in plant defence.

作者信息

Pinot F, Skrabs M, Compagnon V, Salaün J P, Benveniste I, Schreiber L, Durst F

机构信息

IBMP-CNRS UPR406 Dept. d'Enzymologie Cellulaire et Moléculaire, 28 rue Goethe 67083 Strasbourg, France.

出版信息

Biochem Soc Trans. 2000 Dec;28(6):867-70.

Abstract

The C(18) fatty acid derivatives 9,10-epoxystearic acid and 9,10-dihydroxystearic acid were hydroxylated on the terminal methyl by microsomes of yeast expressing CYP94A1 cloned from Vicia sativa. The reactions did not occur in incubations of microsomes from yeast transformed with a void plasmid or in the absence of NADPH. After incubation of a synthetic racemic mixture of 9,10-epoxystearic acid, the chirality of the residual epoxide was shifted to 66:34 in favour of the 9S,10R enantiomer. Both the 9S,10R and 9R,10S enantiomers were incubated separately. We determined respective K(m) and V(max) values of 1.2+/-0.1 microM and 19.2+/-0.3 nmol/min per nmol of cytochrome P450 for the 9R,10S enantiomer and of 5.9+/-0.1 microM and 20.2+/-1.0 nmol/min per nmol of cytochrome P450 for the 9S,10R enantiomer. This demonstrated that CYP94A1 is enantioselective for the 9R,10S, which is preferentially formed in V. sativa microsomes. Cutin analysis of V. sativa seedlings revealed that it is mainly constituted of derivatives of palmitic acid, a C(16) fatty acid. Our results suggest that CYP94A1 might play a minor role in cutin synthesis and could be involved in plant defence. Indeed, 18-hydroxy-9,10-epoxystearic acid and 9,10,18-trihydroxystearic acid have been described as potential messengers in plant-pathogen interactions.

摘要

来自表达从蚕豆中克隆的CYP94A1的酵母微粒体,可将C(18)脂肪酸衍生物9,10-环氧硬脂酸和9,10-二羟基硬脂酸的末端甲基羟基化。在用空质粒转化的酵母微粒体孵育时,或在没有NADPH的情况下,反应不会发生。在孵育9,10-环氧硬脂酸的合成外消旋混合物后,残留环氧化物的手性转变为66:34,有利于9S,10R对映体。9S,10R和9R,10S对映体分别进行孵育。我们测定了9R,10S对映体每nmol细胞色素P450的K(m)值和V(max)值分别为1.2±0.1 microM和19.2±0.3 nmol/min,9S,10R对映体每nmol细胞色素P450的K(m)值和V(max)值分别为5.9±0.1 microM和20.2±1.0 nmol/min。这表明CYP94A1对9R,10S具有对映选择性,而9R,10S在蚕豆微粒体中优先形成。对蚕豆幼苗的角质分析表明,它主要由C(16)脂肪酸棕榈酸的衍生物组成。我们的结果表明,CYP94A1可能在角质合成中起次要作用,并可能参与植物防御。事实上,18-羟基-9,10-环氧硬脂酸和9,10,18-三羟基硬脂酸已被描述为植物-病原体相互作用中的潜在信使。

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