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三唑衍生物与油菜素甾醇生物合成途径中的细胞色素P450单加氧酶DWF4的选择性相互作用与植物体内油菜素甾醇缺乏相关。

Selective interaction of triazole derivatives with DWF4, a cytochrome P450 monooxygenase of the brassinosteroid biosynthetic pathway, correlates with brassinosteroid deficiency in planta.

作者信息

Asami T, Mizutani M, Fujioka S, Goda H, Min Y K, Shimada Y, Nakano T, Takatsuto S, Matsuyama T, Nagata N, Sakata K, Yoshida S

机构信息

RIKEN, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.

出版信息

J Biol Chem. 2001 Jul 13;276(28):25687-91. doi: 10.1074/jbc.M103524200. Epub 2001 Apr 23.

Abstract

Brassinazole, a synthetic chemical developed in our laboratory, is a triazole-type brassinosteroid biosynthesis inhibitor that induces dwarfism in various plant species. The target sites of brassinazole were investigated by chemical analyses of endogenous brassinosteroids (BRs) in brassinazole-treated Catharanthus roseus cells. The levels of castasterone and brassinolide in brassinazole-treated plant cells were less than 6% of the levels in untreated cells. In contrast, campestanol and 6-oxocampestanol levels were increased, and levels of BR intermediates with hydroxy groups on the side chains were reduced, suggesting that brassinazole treatment reduced BR levels by inhibiting the hydroxylation of the C-22 position. DWF4, which is an Arabidopsis thaliana cytochrome P450 isolated as a putative steroid 22-hydroxylase, was expressed in Escherichia coli, and the binding affinity of brassinazole and its derivatives to the recombinant DWF4 were analyzed. Among several triazole derivatives, brassinazole had both the highest binding affinity to DWF4 and the highest growth inhibitory activity. The binding affinity and the activity for inhibiting hypocotyl growth were well correlated among the derivatives. In brassinazole-treated A. thaliana, the CPD gene involved in BR biosynthesis was induced within 3 h, most likely because of feedback activation caused by the reduced levels of active BRs. These results indicate that brassinazole inhibits the hydroxylation of the C-22 position of the side chain in BRs by direct binding to DWF4 and that DWF4 catalyzes this hydroxylation reaction.

摘要

油菜素唑是我们实验室研发的一种合成化学物质,是一种三唑型油菜素甾醇生物合成抑制剂,可诱导多种植物物种出现矮化现象。通过对油菜素唑处理的长春花细胞内源性油菜素甾醇(BRs)进行化学分析,研究了油菜素唑的作用靶点。经油菜素唑处理的植物细胞中,castasterone和油菜素内酯的水平不到未处理细胞中水平的6%。相比之下,campestanol和6-氧代campestanol的水平升高,而侧链带有羟基的BR中间体水平降低,这表明油菜素唑处理通过抑制C-22位的羟基化降低了BR水平。DWF4是从拟南芥中分离出的一种细胞色素P450,被认为是一种类固醇22-羟化酶,在大肠杆菌中表达,并分析了油菜素唑及其衍生物与重组DWF4的结合亲和力。在几种三唑衍生物中,油菜素唑对DWF4的结合亲和力最高,生长抑制活性也最高。这些衍生物的结合亲和力与抑制下胚轴生长的活性之间具有良好的相关性。在经油菜素唑处理的拟南芥中,参与BR生物合成的CPD基因在3小时内被诱导,这很可能是由于活性BR水平降低引起的反馈激活。这些结果表明,油菜素唑通过直接与DWF4结合抑制BR侧链C-22位的羟基化,且DWF4催化这种羟基化反应。

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