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细胞色素P450 CYP81B1的克隆、在酵母中的表达及功能表征,该细胞色素P450催化脂肪酸的链内羟基化反应

Cloning, expression in yeast, and functional characterization of CYP81B1, a plant cytochrome P450 that catalyzes in-chain hydroxylation of fatty acids.

作者信息

Cabello-Hurtado F, Batard Y, Salaün J P, Durst F, Pinot F, Werck-Reichhart D

机构信息

Département d'Enzymologie Cellulaire et Moléculaire, Institut de Biologie Moléculaire des Plantes, Centre National de la Recherche Scientifique UPR 406, 28 rue Goethe, 67000 Strasbourg, France.

出版信息

J Biol Chem. 1998 Mar 27;273(13):7260-7. doi: 10.1074/jbc.273.13.7260.

Abstract

Several omega and in-chain fatty acid hydroxylases have been characterized in higher plants. In microsomes from Helianthus tuberosus tuber the omega-2, omega-3, and omega-4 hydroxylation of lauric acid is catalyzed by one or a few closely related aminopyrine- and MnCl2-inducible cytochrome P450(s). To isolate the cDNA and determine the sequences of the(se) enzyme(s), we used antibodies directed against a P450-enriched fraction purified from Mn2+-induced tissues. Screening of a cDNA expression library from aminopyrine-treated tubers led to the identification of a cDNA (CYP81B1) corresponding to a transcript induced by aminopyrine. CYP81B1 was expressed in yeast. A systematic exploration of its function revealed that it specifically catalyzes the hydroxylation of medium chain saturated fatty acids, capric (C10:0), lauric (C12:0), and myristic (C14:0) acids. The same metabolites were obtained with transgenic yeast and plant microsomes, a mixture of omega-1 to omega-5 monohydroxylated products. The three fatty acids were metabolized with high and similar efficiencies, the major position of attack depending on chain length. When lauric acid was the substrate, turnover was 30.7 +/- 1.4 min-1 and Km(app) 788 +/- 400 nM. No metabolism of long chain fatty acids, aromatic molecules, or herbicides was detected. This new fatty acid hydroxylase is typical from higher plants and differs from those already isolated from other living organisms.

摘要

在高等植物中,已对几种ω-脂肪酸和链内脂肪酸羟化酶进行了表征。在菊芋块茎的微粒体中,月桂酸的ω-2、ω-3和ω-4羟基化反应由一种或几种密切相关的氨基比林和MnCl₂诱导的细胞色素P450催化。为了分离cDNA并确定这些酶的序列,我们使用了针对从Mn²⁺诱导组织中纯化的富含P450的组分的抗体。筛选来自氨基比林处理块茎的cDNA表达文库,鉴定出一个与氨基比林诱导转录本相对应的cDNA(CYP81B1)。CYP81B1在酵母中表达。对其功能的系统探索表明,它特异性催化中链饱和脂肪酸癸酸(C10:0)、月桂酸(C12:0)和肉豆蔻酸(C14:0)的羟基化。转基因酵母和植物微粒体产生了相同的代谢产物,即ω-1至ω-5单羟基化产物的混合物。这三种脂肪酸以高且相似的效率被代谢,主要攻击位置取决于链长。当月桂酸为底物时,周转率为30.7±1.4 min⁻¹,表观Km为788±400 nM。未检测到长链脂肪酸、芳香分子或除草剂的代谢。这种新的脂肪酸羟化酶是高等植物特有的,与已从其他生物体中分离出的酶不同。

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