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首页> 外文期刊>The Plant Cell >CYP703 is an ancient cytochrome P450 in land plants catalyzing in-chain hydroxylation of lauric acid to provide building blocks for sporopollenin synthesis in pollen
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CYP703 is an ancient cytochrome P450 in land plants catalyzing in-chain hydroxylation of lauric acid to provide building blocks for sporopollenin synthesis in pollen

机译:CYP703是陆地植物中的一种古老的细胞色素P450,可催化月桂酸的链内羟基化,为花粉中孢粉的合成提供基础

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摘要

CYP703 is a cytochrome P450 family specific to land plants. Typically, each plant species contains a single CYP703. Arabidopsis thaliana CYP703A2 is expressed in the anthers of developing flowers. Expression is initiated at the tetrad stage and restricted to microspores and to the tapetum cell layer. Arabidopsis CYP703A2 knockout lines showed impaired pollen development and a partial male-sterile phenotype. Scanning electron and transmission electron microscopy of pollen from the knockout plants showed impaired pollen wall development with absence of exine. The fluorescent layer around the pollen grains ascribed to the presence of phenylpropanoid units in sporopollenin was absent in the CYP703A2 knockout lines. Heterologous expression of CYP703A2 in yeast cells demonstrated that CYP703 catalyzes the conversion of medium-chain saturated fatty acids to the corresponding monohydroxylated fatty acids, with a preferential hydroxylation of lauric acid at the C-7 position. Incubation of recombinant CYP703 with methanol extracts from developing flowers confirmed that lauric acid and in-chain hydroxy lauric acids are the in planta substrate and product, respectively. These data demonstrate that in-chain hydroxy lauric acids are essential building blocks in sporopollenin synthesis and enable the formation of ester and ether linkages with phenylpropanoid units. This study identifies CYP703 as a P450 family specifically involved in pollen development.
机译:CYP703是陆地植物特有的细胞色素P450家族。通常,每个植物物种都包含一个CYP703。拟南芥CYP703A2在发育中的花药的花药中表达。表达在第四个阶段开始,并限于小孢子和绒毡层细胞层。拟南芥CYP703A2敲除品系显示花粉发育受损和部分雄性不育表型。来自敲除植物的花粉的扫描电子和透射电子显微镜显示在没有外wall的情况下花粉壁发育受损。在CYP703A2敲除品系中不存在归因于孢粉中苯丙素单元的花粉颗粒周围的荧光层。 CYP703A2在酵母细胞中的异源表达表明,CYP703催化中链饱和脂肪酸向相应的单羟基化脂肪酸的转化,在C-7位有月桂酸优先羟基化。将重组CYP703与发育中的花朵的甲醇提取物一起孵育,证实月桂酸和链内羟基月桂酸分别是植物体内的底物和产物。这些数据表明,链内羟基月桂酸是孢粉蛋白合成中必不可少的组成部分,并且能够与苯基丙烷基单元形成酯键和醚键。这项研究确定CYP703是一个专门参与花粉发育的P450家族。

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