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CYP90A1/CPD a Brassinosteroid Biosynthetic Cytochrome P450 of Arabidopsis Catalyzes C-3 Oxidation

机译:拟南芥的油菜素类固醇生物合成细胞色素P450 CYP90A1 / CPD催化C-3氧化

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摘要

Brassinosteroids (BRs) are steroidal phytohormones that regulate plant growth and development. Whereas in Arabidopsis the network-like routes of BR biosynthesis have been elucidated in considerable detail, the roles of some of the biosynthetic enzymes and their participation in the different subpathways remained to be clarified. We investigated the function of the cytochrome P450 monooxygenase CYP90A1/CPD, which earlier had been proposed to act as a BR C-23 hydroxylase. Our GC-MS and genetic analyses demonstrated that the cpd mutation arrests BR synthesis upstream of the DET2-mediated 5α reduction step and that overexpression of the C-23 hydroxylase CYP90C1 does not alleviate BR deficiency in the cpd mutant. In line with these results, we found that CYP90A1/CPD heterologously expressed in a baculovirus-insect cell system catalyzes C-3 oxidation of the early BR intermediates (22S)-22-hydroxycampesterol and (22R,23R)-22,23-dihydroxycampesterol, as well as of 6-deoxocathasterone and 6-deoxoteasterone. Enzyme kinetic data of CYP90A1/CPD and DET2, together with those of the earlier studied CYP90B1, CYP90C1, and CYP90D1, suggest that BR biosynthesis proceeds mainly via the campestanol-independent pathway.
机译:油菜素类固醇(BRs)是可调节植物生长和发育的甾体类植物激素。尽管在拟南芥中已经详细阐明了BR生物合成的网络状途径,但某些生物合成酶的作用及其在不同亚途径中的参与尚待阐明。我们研究了细胞色素P450单加氧酶CYP90A1 / CPD的功能,该功能先前已被提议充当BR C-23羟化酶。我们的GC-MS和遗传分析表明,cpd突变在DET2介导的5α还原步骤的上游阻止了BR的合成,C-23羟化酶CYP90C1的过表达不能缓解cpd突变体中BR的缺乏。与这些结果一致,我们发现在杆状病毒-昆虫细胞系统中异源表达的CYP90A1 / CPD催化早期BR中间体(22S)-22-羟基樟脑醇和(22R,23R)-22,23-二羟基樟脑醇的C-3氧化,以及6-脱氧茶黄酮和6-脱氧茶黄酮。 CYP90A1 / CPD和DET2的酶动力学数据,以及较早研究的CYP90B1,CYP90C1和CYP90D1的酶动力学数据,表明BR生物合成主要通过与樟脑甾醇无关的途径进行。

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