首页> 外文OA文献 >A Cytochrome P-450 Monooxygenase Catalyzes the First Step in the Conversion of Tabersonine to Vindoline in Catharanthus roseus.
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A Cytochrome P-450 Monooxygenase Catalyzes the First Step in the Conversion of Tabersonine to Vindoline in Catharanthus roseus.

机译:细胞色素P-450单加氧酶催化长春花中的塔布森碱向长春新碱转化的第一步。

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摘要

Hydroxylation at the C-16 position of the indole alkaloid tabersonine has been suggested as the first step toward vindoline biosynthesis in Catharanthus roseus. Tabersonine 16-hydroxylase (16-OH) activity was detected in total protein extracts from young leaves of C. roseus using a novel coupled assay system. Enzyme activity was dependent on NADPH and molecular oxygen and was inhibited by CO, clotrimazole, miconazole, and cytochrome c. 16-OH was localized to the endoplasmic reticulum by linear sucrose density gradient centrifugation. These data suggest that 16-OH is a cytochrome P-450-dependent monooxygenase. The activity of 16-OH reached a maximum in seedlings 9 d postimbibition and was induced by light. The leaf-specific distribution of 16-OH in the mature plant is consistent with the localization of other enzymes in the tabersonine to vindoline pathway. However, in contrast to enzymes that catalyze the last four steps of vindoline biosynthesis, enzymes responsible for the first two steps from tabersonine (16-OH and 16-O-methyltransfersase) were detected in C. roseus cell-suspension cultures. These data complement the complex model of vindoline biosynthesis that has evolved with respect to enzyme compartmentalization, metabolic transport, and control mechanisms.
机译:已经有人提出,在长春花中长春花碱生物合成的第一步是在吲哚生物碱大黄酮碱的C-16位置进行羟化。使用新型偶联测定系统,从玫瑰色念珠菌幼叶的总蛋白提取物中检测到大黄酮16-羟化酶(16-OH)活性。酶活性取决于NADPH和分子氧,并被CO,克霉唑,咪康唑和细胞色素c抑制。通过线性蔗糖密度梯度离心将16-OH定位于内质网。这些数据表明16-OH是细胞色素P-450依赖的单加氧酶。吸水9 d后幼苗中16-OH的活性达到最大值,并被光诱导。成熟植物中16-OH的叶特异性分布与烟粉碱到长春藤碱途径中其他酶的定位一致。但是,与催化长春花碱生物合成的最后四个步骤的酶相反,在玫瑰色梭菌细胞悬浮培养物中检测到了来自烟粉碱的前两个步骤的酶(16-OH和16-O-甲基转移酶)。这些数据补充了在酶区室化,代谢转运和控制机制方面已发展起来的长春藤碱生物合成的复杂模型。

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    St-Pierre, B.; De Luca, V.;

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  • 年度 1995
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