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一种香豆素特异性异戊烯基转移酶催化欧芹中呋喃香豆素形成的关键生物合成反应。

A coumarin-specific prenyltransferase catalyzes the crucial biosynthetic reaction for furanocoumarin formation in parsley.

作者信息

Karamat Fazeelat, Olry Alexandre, Munakata Ryosuke, Koeduka Takao, Sugiyama Akifumi, Paris Cedric, Hehn Alain, Bourgaud Frédéric, Yazaki Kazufumi

机构信息

Laboratoire Agronomie et Environnement Nancy-Colmar, UMR 1121, Université de Lorraine, 2 Avenue de la Forêt de Haye TSA 40602, 54518, Vandoeuvre-lès-Nancy, France; Laboratoire Agronomie et Environnement Nancy-Colmar, UMR 1121, INRA, 2 Avenue de la Forêt de Haye TSA 40602, 54518, Vandoeuvre-lès-Nancy, France.

出版信息

Plant J. 2014 Feb;77(4):627-38. doi: 10.1111/tpj.12409. Epub 2014 Jan 24.

DOI:10.1111/tpj.12409
PMID:24354545
Abstract

Furanocoumarins constitute a sub-family of coumarin compounds with important defense properties against pathogens and insects, as well as allelopathic functions in plants. Furanocoumarins are divided into two sub-groups according to the alignment of the furan ring with the lactone structure: linear psoralen and angular angelicin derivatives. Determination of furanocoumarin type is based on the prenylation position of the common precursor of all furanocoumarins, umbelliferone, at C6 or C8, which gives rise to the psoralen or angelicin derivatives, respectively. Here, we identified a membrane-bound prenyltransferase PcPT from parsley (Petroselinum crispum), and characterized the properties of the gene product. PcPT expression in various parsley tissues is increased by UV irradiation, with a concomitant increase in furanocoumarin production. This enzyme has strict substrate specificity towards umbelliferone and dimethylallyl diphosphate, and a strong preference for the C6 position of the prenylated product (demethylsuberosin), leading to linear furanocoumarins. The C8-prenylated derivative (osthenol) is also formed, but to a much lesser extent. The PcPT protein is targeted to the plastids in planta. Introduction of this PcPT into the coumarin-producing plant Ruta graveolens showed increased consumption of endogenous umbelliferone. Expression of PcPT and a 4-coumaroyl CoA 2'-hydroxylase gene in Nicotiana benthamiana, which does not produce furanocoumarins, resulted in formation of demethylsuberosin, indicating that furanocoumarin production may be reconstructed by a metabolic engineering approach. The results demonstrate that a single prenyltransferase, such as PcPT, opens the pathway to linear furanocoumarins in parsley, but may also catalyze the synthesis of osthenol, the first intermediate committed to the angular furanocoumarin pathway, in other plants.

摘要

呋喃香豆素是香豆素化合物的一个亚家族,具有重要的抗病原体和昆虫防御特性,以及在植物中的化感作用。呋喃香豆素根据呋喃环与内酯结构的排列分为两个亚组:线性补骨脂素和角型白芷素衍生物。呋喃香豆素类型的确定基于所有呋喃香豆素的共同前体伞形花内酯在C6或C8位的异戊烯基化位置,分别产生补骨脂素或白芷素衍生物。在此,我们从欧芹(Petroselinum crispum)中鉴定出一种膜结合异戊烯基转移酶PcPT,并对该基因产物的特性进行了表征。紫外线照射可增加PcPT在欧芹各组织中的表达,同时呋喃香豆素的产量也会增加。该酶对伞形花内酯和二甲基烯丙基二磷酸具有严格的底物特异性,并且强烈偏好异戊烯基化产物(去甲基异紫堇素)的C6位,从而产生线性呋喃香豆素。也会形成C8异戊烯基化衍生物(欧前胡醇),但程度要小得多。PcPT蛋白在植物中靶向质体。将这种PcPT导入产生香豆素的植物芸香(Ruta graveolens)中,显示内源性伞形花内酯的消耗增加。在不产生呋喃香豆素的本氏烟草(Nicotiana benthamiana)中表达PcPT和一个4-香豆酰辅酶A 2'-羟化酶基因,导致去甲基异紫堇素的形成,这表明呋喃香豆素的产生可能通过代谢工程方法进行重建。结果表明,单一的异戊烯基转移酶,如PcPT,开启了欧芹中线性呋喃香豆素的合成途径,但在其他植物中也可能催化角型呋喃香豆素途径的第一个中间体欧前胡醇的合成。

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