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Taxol biosynthesis: Taxane 13α-hydroxylase is a cytochrome P450-dependent monooxygenase

机译:紫杉醇的生物合成:紫杉烷13α-羟化酶是一种细胞色素P450依赖性单加氧酶

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摘要

A central feature in the biosynthesis of Taxol is oxygenation at multiple positions of the taxane core structure, reactions that are considered to be mediated by cytochrome P450-dependent monooxygenases. A PCR-based differential display-cloning approach, using Taxus (yew) cells induced for Taxol production, yielded a family of related cytochrome P450 genes, one of which was assigned as a taxane 10β-hydroxylase by functional expression in yeast. The acquired clones that did not function in yeast were heterologously expressed by using the Spodoptera fugiperda-baculovirus-based system and were screened for catalytic capability by using taxa-4(20),11(12)-dien-5α-ol and its acetate ester as test substrates. This approach allowed identification of one of the cytochrome P450 clones (which bore 63% deduced sequence identity to the aforementioned taxane 10β-hydroxylase) as a taxane 13α-hydroxylase by chromatographic and spectrometric characterization of the corresponding recombinant enzyme product. The demonstration of a second relevant hydroxylase from the induced family of cytochrome P450 genes validates this strategy for elucidating the oxygenation steps of taxane diterpenoid (taxoid) metabolism. Additionally, substrate specificity studies with the available cytochrome P450 hydroxylases now indicate that there is likely more than one biosynthetic route to Taxol in yew species.
机译:紫杉醇的生物合成的主要特征是在紫杉烷核心结构的多个位置上的氧化,该反应被认为是由细胞色素P450依赖性单加氧酶介导的。一种基于PCR的差异显示克隆方法,利用为产生紫杉醇而诱导的红豆杉(紫杉)细胞产生了一系列相关的细胞色素P450基因,其中一个通过酵母中的功能表达被指定为紫杉烷10β-羟化酶。使用基于斜纹夜蛾-杆状病毒的系统异源表达获得的在酵母中不起作用的克隆,并使用taxa-4(20),11(12)-dien-5α-ol及其乙酸盐筛选其催化能力酯作为测试底物。该方法允许通过相应重组酶产物的色谱和光谱表征将一种细胞色素P450克隆(其与上述紫杉烷10β-羟化酶具有63%的推导序列同一性)鉴定为紫杉烷13α-羟化酶。来自诱导的细胞色素P450基因家族的第二种相关羟化酶的论证证实了这种阐明紫杉烷二萜类化合物(紫杉醇)代谢的氧化步骤的策略。此外,利用可用的细胞色素P450羟化酶进行的底物特异性研究现在表明,在紫杉物种中可能有不止一种生物合成途径转化为紫杉醇。

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