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Cytochrome P450s in plant steroid hormone synthesis and metabolism

机译:细胞色素P450s在植物甾类激素合成和代谢中

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Cytochrome P450s(P450s)are essential for both plant steroid hormone biosynthesis and inactivation.Synthesis of plant steroid hormones,brassinosteroids(BRs),requires P450s of the CYP85 clan.This includes members of the CYP85,CYP90 and CYP724B families of P450s.These enzymes are associated with the hydroxyl-ation/oxidation of the C-2,C-3,C-6,C-22 and C-23 positions with their function being determined via genetic and biochemical approaches.P450s involved in BR metabolism belong to the CYP72C and CYP734A families in the CYP72 clan of P450s.The CYP734A family is associated with C-26 hydroxylation of BRs.The transcriptional regulation of these genes via feedback regulation provides a mechanism for the maintenance of optimum BR levels.Phylogenetic analysis of these P450s highlights that the biosynthesis and metabolism genes have evolved independently.Similar analysis suggests that the Baeyer-Villiger reaction catalysed by the CYP85 family of P450s may have evolved independently in several dicotyledonous species.
机译:细胞色素P450的(色素P450)对于两个植物类固醇激素的生物合成的植物类固醇激素,油菜素内酯(BRS)的inactivation.Synthesis和必不可少的,需要CYP85 clan.This的色素P450包括CYP85的成员,P450s.These酶的CYP90和CYP724B家庭与C-2,C-3,C-6,C-22和C-23的羟基的通货膨胀/氧化相关经由参与BR代谢属于遗传和生化approaches.P450s确定它们的功能的位置在P450s.The CYP734A家族与经由反馈调节这些基因的BRs.The转录调控的C-26羟基化相关联的CYP72族CYP72C和CYP734A家庭提供了用于维护这些色素P450亮点最佳BR levels.Phylogenetic分析的机制该生物合成和代谢的基因已经进化independently.Similar的分析表明,由CYP85家族的P450的催化的拜尔 - 维利格反应可以在几个二独立进化双子叶物种。

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